The global aerospace composites market size is projected to grow from USD 23.8 billion in 2020 to USD 41.4 billion by 2025, at a CAGR of 11.7% -…

New York, July 23, 2020 (GLOBE NEWSWIRE) -- Reportlinker.com announces the release of the report "Aerospace Composites Market by Fiber Type, Matrix Type, Application, Manufacturing Process, Aircraft Type And Region - Global Forecast to 2025" - https://www.reportlinker.com/p05208354/?utm_source=GNW Owing to these outstanding properties, conventional materials, such as aluminum and steel, are less preferred in high-performance applications such as aircraft interiors and exteriors. However, the global pandemic disease COVID-19 has forced the aerospace component manufacturers to shut down their operations partially, which is expected to decrease the demand for aerospace composites in 2020.

The ceramic fiber composite segment of aerospace composites to be the fastest-growing segment in terms of value.The aerospace composites in the ceramic fiber composite segment are expected to register faster growth.There is a high demand for ceramic fiber composites for making jet engines from commercial, military, civil, business, and general aviation aircraft.

On account of the development of production facilities by major companies and increased investments in R&D, these fiber composites have a significant market share in Europe and North America.

Ceramic matrix composites to be the faster-growing matrix type, in terms of value.

Ceramic matrix composites are reinforced with discontinuous reinforcement, such as particles, whiskers or chopped, fibers, or with continuous fibers.The matrix is used to keep the reinforcing phase in the required orientation, which acts as a load transfer media, and protects the reinforcement from the environment.

The ceramic matrix composites offer properties such as high damage tolerance, fracture toughness, and high temperature, wear, and corrosion resistance, which are driving the use of ceramic matrix composites in the aerospace composites market.

Owing to the COVID-19 pandemic, the new aircraft deliveries are expected to reduce in 2020, which will result in reduced less demand for ceramic matrix composites from gas turbine engines, nose caps, and exhaust nozzles applications. The demand is expected to recover after 2020.

The commercial aircraft segment to be the fastest-growing aircraft type, in terms of value, in the aerospace composites market.The commercial aircraft segment is the fastest-growing aircraft type in terms of value, of the overall aerospace composites market in 2019.There is a high demand for carbon fiber composites in commercial airliners as they enable reduction of weight, increase fuel efficiency, reduce assembly time & maintenance, and improve performance.

A large number of commercial airplane deliveries in the single-aisle, widebody, twin-aisle, and regional jet segments are expected to increase the demand for carbon fiber composites during the forecast period. Due to COVID-19, the travel restrictions are affecting negatively, which has resulted in fewer aircraft deliveries and expected to reduce composite demand in 2020.

APAC is projected to be the fastest-growing aerospace composites industry.

APAC is projected to be the fastest-growing aerospace composites market during the forecast period.The region comprises countries, such as Japan, China, and India, having significant potential owing to the presence of established raw material suppliers, product manufacturers, and increasing new aircraft deliveries in the region.

There is a high demand for aerospace composites from the aerospace industry in the region.However, COVID-19 has negatively affected the aerospace industry in the APAC region.

Japan, China, and Malaysia provides various components to aircraft manufacturers; the COVID-19 pandemic has resulted in less demand for the new aircraft, which is expected to reduce composite consumption in these countries in 2020.This study has been validated through primaries conducted with various industry experts, globally. These primary sources have been divided into the following three categories: By Company Type- Tier 1- 40%, Tier 2- 33%, and Tier 3- 27% By Designation- C Level- 50%, Director Level- 20%, and Others- 30% By Region- North America- 15%, Europe- 50%, APAC- 20%, Latin America-5%, MEA-10%,

The report provides a comprehensive analysis of company profiles listed below: Solvay (Belgium) Toray Industries, Inc. (Japan) Mitsubishi Chemical Holdings (Japan) Hexcel Corporation (US) Teijin Limited (Japan) SGL Group (Germany) Materion Corporation (US) Owens Corning (US) Spirit AeroSystems (US) Lee Aerospace (US)

Research CoverageThis report covers the global aerospace composites and forecasts the market size until 2025.The report includes the market segmentation By Fiber Type (Carbon Fiber Composites, Ceramic Fiber Composites, Glass Fiber Composites, Others), Matrix Type (Polymer Matrix, Ceramic Matrix, Metal Matrix), Application (Interior and Exterior), Manufacturing Process (AFP/ATL, Lay-up, Resin Transfer Molding, Aircraft Type (Commercial Aircrafts, Business & General Aviation, Military Aircrafts, Civil Helicopters, Others)) and Region (Europe, North America, APAC, Latin America, and MEA).

Porters Five Forces analysis, along with the drivers, restraints, opportunities, and challenges, are discussed in the report. It also provides company profiles and competitive strategies adopted by the major players in the global aerospace composites.

Key benefits of buying the report:

The report will help market leaders/new entrants in this market in the following ways:1. This report segments the global aerospace composites comprehensively. It provides the closest approximations of the revenues for the overall market and the sub-segments across different verticals and regions.2. The report helps stakeholders understand the pulse of the aerospace composites industry and provides them with information on key market drivers, restraints, challenges, and opportunities.3. This report will help stakeholders to understand competitors better and gain more insights to better their position in their businesses. The competitive landscape section includes the competitor ecosystem and expansion.

Reasons to buy the report:The report will help market leaders/new entrants in this market by providing them with the closest approximations of the revenues for the overall aerospace composites and the sub-segments.It will help stakeholders to understand the competitive landscape and gain more insights to position their businesses and market strategies in a better way.

The report will also help stakeholders understand the pulse of the market and provide them with information on key market drivers, restraints, opportunities, and challenges.

Read the full report: https://www.reportlinker.com/p05208354/?utm_source=GNW

About ReportlinkerReportLinker is an award-winning market research solution. Reportlinker finds and organizes the latest industry data so you get all the market research you need - instantly, in one place.

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The global aerospace composites market size is projected to grow from USD 23.8 billion in 2020 to USD 41.4 billion by 2025, at a CAGR of 11.7% -...

Global Impact of Covid-19 on Aerospace Thermal Management System Market to Record Significant Revenue Growth During the Forecast Period 20202026 |…

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Global Impact of Covid-19 on Aerospace Thermal Management System Market to Record Significant Revenue Growth During the Forecast Period 20202026 |...

Aerospace Parts Market Sales Channel Analysis: by Competitive Industry Overview and Futuristic Trends with Forecast to 2026 |Report Including COVID-19…

Global Aerospace Parts Market Report 2020 by Key Players, Types, Applications, Countries, Market Size, Forecast to 2026 (Based on 2020 COVID-19 Worldwide Spread)

This comprehensive Aerospace Parts Market research report includes a brief on these trends that can help the businesses operating in the industry to understand the market and strategize for their business expansion accordingly. The research report analyzes the market size, industry share, growth, key segments, CAGR and key drivers.

Market Segment by Companies: Engineered Propulsion System,Intrex Aerospace,Superior Air Parts,CAMAR Aircraft Parts,Rolls Royce,Honeywell International,JAMCO,Woodward,Aero Engineering & Manufacturing,GE Aviation,Aequs,Eaton,Lycoming Engines,Safran,Pratt & Whitney,MTU Aero Engines

New vendors in the Aerospace Parts Market are facing tough competition from established international vendors as they struggle with technological innovations, reliability and quality issues. The report will answer questions about the current market developments and the scope of competition, opportunity cost and more.

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Aerospace Parts Market Sales Channel Analysis: by Competitive Industry Overview and Futuristic Trends with Forecast to 2026 |Report Including COVID-19...

Aerospace industry takes off in the Chihuahua desert – KGBT-TV

CHIHUAHUA, Mexico (Border Report) The aerospace industry is flying high in Chihuahua despite COVID-19.

Forty-five American and European airplane and helicopter parts manufacturers now have a presence in the state, and Paris-based Safran just announced a $10 million expansion in the capital.

These factories churn out anything from turbines to landing-gear components, from airplane seats to life rafts and sliders. The industry now employs more than 60,000 workers in Mexico and most of that countrys $8 billion in aerospace exports wind-up in the United States.

Industry officials attribute the growth to various factors. Being close to the U.S. border cuts down on transportation costs. Automotive maquiladora suppliers have been able to adapt and serve the aerospace sector. And, above all, states like Chihuahua are getting good at developing a skilled labor force.

When I go recruiting companies in advanced manufacturing, they ask about land and infrastructure, of course. But the main concern is having a trained workforce, said Jerry Pacheco, president and CEO of the Border Industrial Association.

He said states like Chihuahua which borders Texas and New Mexico have a 50-year track record of working with U.S.-run maquiladoras and are getting very good at providing skilled employees for each industry.

Aerospace has taken off in Chihuahua for two main reasons: the supply base and that skilled labor force, Pacheco said. We have lots of young people with technical skills. And we have copper-wiring companies that supply the auto industry and that overlaps into aerospace. In essence, the aerospace industry is piggy-backing on the auto industry.

Mexican universities graduate thousands of engineers a year. But the bulk of the work remains manual. Vocational schools and training centers bear responsibility for making sure young people out of high school and older workers with limited schooling can use and service million-dollar machinery and reliably put together airplane fuselage.

Keep driving south on Mexican Highway 45 (the old Pan-American Highway) and you might miss the earth-toned buildings of an industrial park in the outskirts of Chihuahua City.

The park is home to half a dozen maquiladoras and Cenaltec, the state-owned Center for High Technology. Its an institution that prior to the pandemic was training an average of 2,500 workers per month.

We have lots of students from technical schools, but most are between 20 and 35 years old and are production workers, said center Director Aaron Olivas Ochoa. Many people work in maintenance or production lines. But when youre servicing a machine you need to know electricity, when youre working with helicopter rotors, you need very specific skills.

The center played a pivotal role in the Safran expansion. A company official earlier said one of the conditions for opening a new plant in Chihuahua City was for the state to provide trained workers.

The center resembles a maquiladora, with wide, open aisles and machines neatly spaced. Inside, instructors teach factory workers how to do plastic-injection molding, program tool and die machines and apply rivets to metal thatll become the body of an aircraft.

Olivas said he realizes that some people may find learning in a classroom difficult. Thats why the center is 80% hands-on.

We make sure they have the practice they need to be productive when they (step into) the plant. Otherwise, they might spend six months learning how to operate a machine, said Jorge Luis Fernandez, one of the instructors at Cenaltec.

If a worker applies the wrong amount of force on a mock airplane part, no one gets hurt and the worker just learned what to avoid the next time. Electrical pods give workers supervised training without the risk of electrocution or damaging an expensive machine at a factory.

On a corner of the building, Jose Ramiro Cedillo taught maquiladora worker Jorge Cano how to program a tool and die cutting machine.

The student seemed tentative at first, but quickly caught on.

Victor Acosta, another worker, watched from the sidelines.

Making airplane parts is a big responsibility. You must make a quality product and you feel proud knowing that what you make at the factory is used all over the world, Acosta said.

The Chihuahua City native said hes worked in maquiladoras since finishing school. We learn the processes before going on to the production line. They have very strict quality controls, he said.

Cedillo said hes been involved in worker training for several years. His students range from young Mexican engineers to skilled workers in California, Arizona and Texas.

All of us (instructors) have experience in the industry. What we do here is provide accelerated training programs in regards to machining, dimensioning, milling, turning, he said. They go from zero to being able to get the job done and move on to a higher salary.

Cenaltec officials say maquiladoras have donated many of their training machines and raw materials.

Some even bring their personnel for specialized training at the center, while others allow the trainees to complete their instruction at the plants, under the supervision of Cenaltec instructors.

The training can take anywhere from 25 hours for some certifications, to 350 hours to turn production-line workers into skilled aerospace manufacturing specialists. The state runs four campuses, one each in Chihuahua City, Juarez, Cuauhtmoc and Parral.

For more information on Cenaltec, visit its website or the state of Chihuahua Ministry of Economic Development and Innovation.

Visit the BorderReport.com homepage for the latest exclusive stories and breaking news about issues along the United States-Mexico border.

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Aerospace industry takes off in the Chihuahua desert - KGBT-TV

AvidPlay is the First DIY Music Distribution Service to Support Dolby Atmos Music – GlobeNewswire

BURLINGTON, Mass., July 29, 2020 (GLOBE NEWSWIRE) -- Longtime partners Avid (Nasdaq: AVID) and Dolby Laboratories (NYSE: DLB) are breaking new ground for DIY music distribution by providing independent artists, producers and record labels the ability to easily self-distribute their music in Dolby Atmos to streaming services Amazon Music and TIDAL1. With Dolby Atmos Music and AvidPlay, music creators can now bring next-level immersive listening experiences to their fans, deliver unlimited singles and albums annually and grow their fanbase while keeping 100 percent of their rights and earnings.

To get started, artists and labels can subscribe to an AvidPlay distribution plan that matches their needs through the free AvidLink app for mobile or desktop, and then intuitively upload their completed Dolby Atmos Music tracks and artwork. Subscribers can also create songs and albums using any compatible Dolby Atmos enabled digital audio workstation (DAW), including Avid Pro Tools, and then upload their music to the AvidPlay dashboard to manage their tracks and albums and see how much money theyre earning from each song.

Dolby Atmos has changed how we think about music and it allows us to create things that were previously not possible. Its unlike anything youve ever heard, said Arno Kammermeier, co-founder of the Berlin-based electronic duo Booka Shade. And most importantly, with AvidPlay, we can now share this elevated experience with our fans. Its mind-blowing and the ultimate way to experience our music.

For independent labels, AvidPlay opens up a whole new opportunity to support artists interested in creating new music or reimagining existing stereo tracks in Dolby Atmos. Combined with Dolbys proven and mature set of Dolby Atmos creative tools already in market, artist and labels can quickly get up and running so that they can start creating and sharing music in Dolby Atmos with their fans.

Dolby Atmos has changed my life. As a producer, I am often told I need to take things out of my mixes and there is just not enough space for all the sounds and ideas to come through. When I got introduced to Dolby Atmos, I was finally able to create the music I always heard in my head," said Leah Chisholm, producer, pianist, and DJ known as LP Giobbi and co-owner of the record label Animal Talk Collective, which she co-founded with SOFI TUKKER. AvidPlay has allowed me to bring my music to the world as an artist and label owner. I am very grateful to have the opportunity to release my music, and the music I believe in, in an immersive and heightened experience.

Dolby Atmos Music is an immersive audio technology that is redefining how music is created and experienced. It allows people to connect with music in a whole new way, pulling them into the track and revealing what was lost with stereo recordings. Listeners can discover hidden details and subtleties with unparalleled clarity. Whether its a complex harmony of instruments placed around a listener, a legendary guitar solo that fills a room, a massive bass drop that washes over the audience, or the subtle breath a singer takes between lyrics, Dolby Atmos gives music more space and the freedom to unleash every detail and emotion as the artist intended.

With a majority of todays new music created using Avid tools, enabling any artist or label to now distribute Dolby Atmos Music is a game-changer and highlights Avids continued commitment to providing an end-to-end music production solution from recording to mixing to distribution, said Rob DAmico, Director of Product Marketing, Audio Solutions at Avid. Avid and Dolby are helping artists transport their fans to new and exciting immersive listening experiences, while giving them the ability to easily expand their creativity, distribute their music and, most importantly, get paid for the content they produce.

Dolby Atmos Music unlocks a new level of creative expression that allows listeners to connect with their favorite songs and albums on a deeper, more immersive level, said Christine Thomas, Senior Director of Music Partnerships, Dolby Laboratories. Through AvidPlay, any artist and label outside the major label system, regardless if they are a Multi-Platinum GRAMMY Award-winning performer or emerging singer-songwriter, can share their music in Dolby Atmos with the world.

AvidPlay is a DIY music distribution service designed to assist artists and labels in expanding their opportunities and getting discoveredwhile keeping 100% of their rights and earnings. Artists select the single or albums theyd like to release, and AvidPlay takes care of the restfrom distributing music to over 150 major outlets like Spotify, Apple Music, Amazon Music, and TIDAL, including automatic distribution to streaming outlets added in the future. The Avid Link app, which has more than 775,000 users, enables community members to expand their creative possibilities by connecting with other artists, producers, mixers, composers, editors, videographers, and moviemakers, letting them grow their network, collaborate and gain valuable exposure.

About AvidAvid delivers the most open and efficient media platform, connecting content creation with collaboration, asset protection, distribution, and consumption. Avids preeminent customer community uses Avids comprehensive tools and workflow solutions to create, distribute and monetize the most watched, loved and listened to media in the worldfrom prestigious and award-winning feature films to popular television shows, news programs and televised sporting events, and celebrated music recordings and live concerts. With the most flexible deployment and pricing options, Avids industry-leading solutions include Media Composer, Pro Tools, Avid NEXIS, MediaCentral, iNEWS, AirSpeed, Sibelius, Avid VENUE, FastServe, and Maestro. For more information about Avid solutions and services, visitwww.avid.com, connect with Avid onFacebook,Instagram, Twitter,YouTube,LinkedIn, or subscribe toAvid Blogs.

AboutDolby LaboratoriesDolby Laboratories(NYSE: DLB) is based in San Franciscowith offices in over 20 countries around the globe.Dolbytransforms the science of sight and sound into spectacular experiences. Through innovative research and engineering, we create breakthrough experiences for billions of people worldwide through a collaborative ecosystem spanning artists, businesses, and consumers. The experiences people have with DolbyCinema, DolbyVision, DolbyAtmos, DolbyAudio, and DolbyVoice revolutionize entertainment and communications at the cinema, on the go, in the home, and at work.

2020 Avid Technology, Inc. All rights reserved. Avid, the Avid logo, Avid NEXIS, FastServe, AirSpeed, iNEWS, Maestro, MediaCentral, Media Composer, Media Composer | First, Media Composer | Ultimate,Pro Tools, Avid VENUE, and Sibelius are trademarks or registered trademarks of Avid Technology, Inc. or its subsidiaries in the United States and/or other countries. All other trademarks are the property of their respective owners. Product features, specifications, system requirements and availability are subject to change without notice.

Dolby, Dolby Atmos, Dolby Audio, Dolby Cinema, Dolby Vision, Dolby Voice, and the double-D symbol are among the registered and unregistered trademarks of Dolby Laboratories, Inc. in the United States and/or other countries. Other trademarks remain the property of their respective owners. DLB-G

PR Contacts:

AvidDave Smith978.502.9607david.smith@avid.com

DolbyCairon Armstrong530.305.2852Cairon.armstrong@dolby.com

1 To experience Dolby Atmos Music on Amazon Music, an Amazon Music HD subscription is required. To experience Dolby Atmos Music on TIDAL, a HiFi membership is required.

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AvidPlay is the First DIY Music Distribution Service to Support Dolby Atmos Music - GlobeNewswire

How To Upload Your Garmin Workout During the Outage – DC Rainmaker

For the last 18 or so hours, Garmin.com has been unavailable. And, if we know anything about endurance sports its that if a workout isnt uploaded to Strava, it definitely didnt happen. So, Im here to help you get the Kudos you deserve.

Now of course, theres rumors and speculation out there on the cause of Garmins outage, none of it is concrete (and none of it from Garmin, except to say theyre down totally down). What is concrete though is the fact that Garmin and the entire platform is down. Dead-down. Totally unresponsive like your legs the day after a marathon. Ultimately, every company out there has their Oh snap sized outage. No matter how big or small, it eventually happens. For Garmin, today was eventually.

The good news though is that if theres one thing to give Garmin credit for here, its that *EVERY* Garmin wearable, bike computer, hiking handheld, and so on, can be plugged into any computer and easily uploaded to any site you want. Be it Strava, TrainingPeaks, Myspace, or even MapMyRun. And, if you were around this block a few years ago before Bluetooth in watches you might even still remember how to do it.

I note this because not all wearables actually support using a computer during an outage. In fact, surprisingly few do (such as not Polar, Suunto, Fitbit, COROS, and more). Whereas most bike computers do (including Wahoo, Lezyne, Stages, Sigma, and Hammerhead). Ive never really understood why wearable companies are so against it, whereas bike computer companies do it just fine.

In any case, like Garmin.com, thats neither here nor there. So, lets get your workout up to Strava.

Note: For those with much older FR310XT, FR910XT, and some of the FR405/410 models, you can still do things locally, but you need slightly different instructions. See this comment here in the comments section, which outlines the steps. Theres a few variants of how you can do this, none of which is hard. Both variants are outlined below.

Update: Unrelated to this post (but in case people are ending up here looking for a solution), some people have reported issues where their Garmin wont save activities anymore. This is both related and unrelated to the outage issue. Essentially the pattern is all those people had 199 activities on their units. and it turns out that behind the scenes Garmin Connect was clearing out the older activities to make room for the next one when it synced. But with that piece not online, the garbage man didnt clear it out. To remedy this, simply move a chunk (or all) of the files in the Activities folder to your computer. Its the same folder this entire post is about down below in each section, so you can just follow those steps and simply remove the older activities (which have undoubtedly synced long ago).

First, find the cable. Undoubtedly you know where that is, since its what you charge your Garmin with. However, if you have a Garmin Edge device which uses micro-USB (if newer) or mini-USB (if older), just be sure that if its not the Garmin cable (which are literally labeled with Garmin at the end), that its a data transfer cable and not just a charging-only cable. Ive got plenty of micro-USB cables that are charge-only, and they wont work. In short, if the device doesnt show up in your computer, then youve got a charge-only cable.

Step 1: Plug the device in: This is simple. Itll automatically turn on, wait a few seconds.

Step 2A: (non-Music devices) Open Windows Explorer: For this step, Im just showing you where the file is, before we actually upload it. Its a practice run. Once your Garmin device shows up, itll usually have a Garmin icon and a drive letter. Inside that, youll find a folder called Garmin, and then another folder called Activities. Within that, if you sort by date modified, youll find a bunch of files. Your file is the one dated today, or, if not dated like a normal file, then itll be the most recent one.

Step 2B: (Music devices) Open Windows Explorer: In the case of music-enabled devices (like a Garmin Forerunner 245/645 Music, Forerunner 945, Fenix 5 Plus Series, Fenix 6 Pro Series, Vivoactive 3 Music, Vivoactive 4, Venu, etc), these will show up slightly differently. Youll see them listed by their full name without a drive letter, and then below that, youll need to go into the Primary folder, and then the Garmin, then Activity folders to find your activity file.

Step 3: Upload the file: Now, navigate over to your platform of choice, and choose the file to upload. For this example, Ill use Strava. In the upper right corner, select the drop-down + icon, and then choose Upload activity.

Step 4: Choose to Upload File: Now, simply hit Choose Files:

Step 5: Upload the file: Thatll pop-open a dialog box, which allows you to choose the file. Navigate back to the same place as before. Pro Tip: If you still have that Windows Explorer window open from before, then you can click on your file and select Copy, and then paste it into the File Name spot below and itll find it automatically. Either way, hit Open.

And with that youre done! Your workout is now available and good to go and available on Strava! In a few seconds youll be able to edit all the usual fields and save it:

Rinse, repeat for any other workouts during the outage (especially if this thing lasts a while).

First, find the cable. Undoubtedly you know where that is, since its what you charge your Garmin with. However, if you have a Garmin Edge device which uses micro-USB (if newer) or mini-USB (if older), just be sure that if its not the Garmin cable (which are literally labeled with Garmin at the end), that its a data transfer cable and not just a charging-only cable. Ive got plenty of micro-USB cables that are charge-only, and they wont work. In short, if the device doesnt show up in your computer, then youve got a charge-only cable.

And, if you need a dongle to connect to USB-C, then undoubtedly you know where that is. Its probably attached to your Mac, because you still need that thing every day.

Step 1: Plug the device in (unless its a music-enabled watch, then skip to Step 2B): This is simple. Itll automatically turn on, wait a few seconds.

Step 2A: (non-Music device) Open Finder: For this step, Im just showing you where the file is, before we actually upload it. Its a practice run. Once your Garmin device shows up, itll usually be under Locations and just say GARMIN. Inside that, youll find a folder also called Garmin, and then another folder called Activities. Within that, if you sort by date modified, youll find a bunch of files. Your file is the one dated today, or, if not dated like a normal file, then itll be the most recent one.

Step 2B: (Music devices only) Install Android File Transfer: In the case of music-enabled devices (like a Garmin Forerunner 245/645 Music, Forerunner 945, Fenix 5 Plus Series, Fenix 6 Pro Series, Vivoactive 3 Music, Vivoactive 4, Venu, etc), these will show up slightly differently.

Thats because the Garmin wearables are in MTP mode, which is great for music, but sucky for accessing the normal files. Youll need to install a little (and crazy-widely used) utility called Android File Transfer, as well, and then close/quit Garmin Express if you have it installed/running on your Mac (itll block access otherwise). Normally this utility is used to allow Macs to connect to Android phones. But works here well.

Once youve got it installed, open it up (again, remember to fully close Garmin Express first), and then plug in your Garmin device. Itll show up just like below. Then, simply navigate to the Garmin > Activities folder within that to find the file.

Step 3: Upload the file: Now, navigate over to your platform of choice, and choose the file to upload. For this example, Ill use Strava. In the upper right corner, select the drop-down + icon, and then choose Upload activity.

Step 4: Choose to Upload File: Now, simply hit Choose Files (you may need to first select File from the left side):

Step 5: Upload the file: Thatll pop-open a dialog box, which allows you to choose the file. Navigate back to the same place as before. Again, youre going to Garmin > Activities, and looking for the most recent file, updated today, hit Open.

And with that youre done! Your workout is now available and good to go and available on Strava! In a few seconds youll be able to edit all the usual fields and save it:

Rinse, repeat for any other workouts during the outage (especially if this thing lasts a while).

Ok, with that good luck! Note, theres no method available to get things like steps, distance walked, or anything else onto other platforms (never really was, save some corporate wellness programs). That data is actually sitting on your watch in little .FIT files, but by itself it wont sync without Garmin Connect being online. And given thats not online, youre not getting that data.

Fear not though once Garmin.com is back up, that data will simply flow over to your account.

Also dont worry about duplicates on Strava. Its smart enough to easily detect a duplicate file, and so when Garmin eventually syncs your workouts behind the scenes, it just discards duplicate files. This is a feature I test every single day. So it works pretty darn well.

With that thanks for reading!

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How To Upload Your Garmin Workout During the Outage - DC Rainmaker

Garmin outage: did Garmin pay the ransom to revive Garmin Connect? – T3 (US)

After almost a week of suspense, it seems the Garmin Outage story is finally over at least for now. In the Garmin Connect app, instead of the ominous 'Server Maintenance' warning window, Garmin watch users are relieved to see a different message:

(Image credit: Future)

As relieved as we all are, we can't help but wonder: did Garmin pay the $10 million ransom, as requested by the 'Evil Corp', or have the developers found a way to eliminate the threat somehow without paying the money? The Times suggests "Garmin must have paid a large ransom to recover computer files stolen by hackers", but until any official communication is received from Garmin, we can't be sure.

The Garmin outage has been the hottest topic last weekend in running and cycling circles but it seems like the panic is over and everyone can calm down finally as Garmin announced on Twitter that "many of the systems and services affected by the recent outage, including Garmin Connect, are returning to operation".

However, the company also added that "some features still have temporary limitations while all of the data is being processed".

The ransomware attack on Garmin thought to be the work of 'Evil Corp', a group of Russian hackers who allegedly mainly targets US corporations, The Guardian reports. Garmin services started to go offline Thursday 23 July 2020 and many of the most popular services, including Garmin Connect and most of the Strava integrations, were unavailable to users over the weekend period.

Check out Garmin's 'Outage FAQ'

As reported by The Independent on Monday morning, Garmin Connect was supposedly coming back to life, although at that point most users still reported issues with Garmin Connect. The website and the Garmin webshop was available, however.

Garmin issued a few statements on Twitter, stating the outage also affected its call centers and that they were unable to receive any calls, emails and also couldn't fire up online chats either, making a lot of Garmin watch users rather anxious.

In case you are worried about your personal information being leaked due to the attack, on its FAQ page, Garmin reassured users that there has been "no indication that this outage has affected [the users] data, including activity, payment or other personal information." That is not the same as saying your data definitely hasnt been stolen, but its a lot better than nothing. But never mind that, what about your run and cycle data? Is it lost forever?

The following services and features are online:

The following services and features are online but might have limited functionality:

Strava services are also limited at the moment:

(Image credit: Garmin)

As many people also pointed out, workouts can be directly uploaded to Strava using a USB cable but we wonder how many people actually went through the hassle of manually uploading their workouts this way when they could have just waited five days for the issue to be resolved.

Despite the fact you can't upload data to Garmin Connect, most Garmin watches have the ability to store training data on the device so you can still log exercises and sync them with Garmin Connect once you can.

The Garmin Fenix 6 Pro, for example, has 32GB of internal memory, plenty of space to store hundreds of workouts. Cheaper Garmin watches have way less, of course, so maybe dont try for any personal bests until this gets fixed.

(Image credit: Garmin)

The Garmin Outage has been going on since last Thursday when initially users noticed that certain Garmin online services are unavailable (making my life harder too as I was halfway through writing up my Garmin Instinct Solar review). Since then, Garmin issued the following statement on its Garmin outage FAQ page:

"Garmin Ltd. was the victim of a cyber attack that encrypted some of our systems on July 23, 2020. As a result, many of our online services were interrupted including website functions, customer support, customer facing applications, and company communications. We immediately began to assess the nature of the attack and started remediation.

We have no indication that any customer data, including payment information from Garmin Pay, was accessed, lost or stolen. Additionally, the functionality of Garmin products was not affected, other than the ability to access online services. Affected systems are being restored and we expect to return to normal operation over the next few days.

As our affected systems are restored, we expect some delays as the backlog of information is being processed. We are grateful for our customers patience and understanding during this incident and look forward to continuing to provide the exceptional customer service and support that has been our hallmark and tradition."

Fitbit Versa 2 Special Edition | On sale for 174.68 | Was 219.99 | You save 45.31 at AmazonDon't fancy a Garmin watch after all the bad news? Get a Fitbit instead. Feature-wise, the Special Edition is identical with the standard Fitbit Versa 2 and comes with built-in voice assistant, 24/7 heart rate tracking, smart notifications, over four days of battery life and even integrated memory for music. The difference is the fancy strap and considering that both variety are roughly the same price with the current discounts, you might as well get this version.View Deal

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Its Time to Redefine Broadband Speeds – Gizmodo Australia

Lets face it: A 25 Mbps download speed isnt enough internet these days. It wasnt necessarily enough before the current pandemic, but with many families now working and going to school from home, those with the minimum broadband speed have probably discovered there isnt enough bandwidth to go around. Which is why its time for the FCC to change its already weak definition of minimum broadband, a measly 25 Mbps download, 3 Mbps upload, to something that accurately reflects the internet needs of households today.

Im just one person and 25 Mbps would not come close to meeting my needs, especially since I regularly play online games, stream 4K videos, and download hundreds of gigabytes of game data for all the laptops I review for Gizmodo. If thats not enough for me, its not enough for a family trying to manage work and school from home during the pandemic right now. BroadbandNow wants the new definition to be a minimum of 100 Mbps download, 25 Mbps upload to reflect the shifting needs of an increasingly digital economy. Considering all the video streaming and gaming many households do on a daily basis, 100 Mbps is the right minimum amount.

In its latest The State of Broadband in America published this morning, BroadbandNow points out that covid-19 continues to prove to policy makers that reliable internet connection is an absolute necessity in the modern world. Yet much of the U.S. still does not have access to what the FCC defines as minimum broadband. Under the current definition, 93% of the U.S. has access to at least 25 Mbps download, 3 Mbps upload. Much of that remaining 7% (or 21.3 million according to the FCC) is rural America, part of what is called the Digital Divide, or households in the U.S. that dont have reliable, affordable access to the internet.

That number is likely higher, though, due to the way the ISPs have reported their internet coverage to the FCC in the past. ISPs were allowed to claim they served an entire area if just one house subscribed to their service within that area, so its more like 42 million dont have minimum broadband access as defined by the FCC, according to BroadbandNow. Though a 2019 study from Microsoft and Nextlink says that number could be as high as 162 million people across the United States. Thats nearly half.

Tricky accounting by ISPs is only part of the problem. In 2015, the FCC changed its minimum broadband definition to the current one from 4 Mbps download, 1 Mbps upload, which had been implemented in 2010. The change in 2015 reflected President Obama and FCC Chairman Tom Wheelers desire to close the Digital Divide, especially in rural America. That changed when Trump took office and appointed Aji Pait to the Chairman role. Pai has led the charge dismantling net neutrality allowingAT&T to bring back zero-rating schemes and Cox to create a paid add-on to its services for people who want to prioritise their gaming internet traffic. Tell me how this helps people get reliable, affordable internet access again?

Taking into account the intervals of time in between the FCCs definition changes, and how much technology has changed in the last five years alone, were overdue for a new, official broadband standard. But the FCC has traditionally been behind the times on this sort of thing. When it first defined broadband back in 1996, it was a measly 200 Kbps download, 200 Kbps upload. For a mind-boggling 14 years it remained the same, even though by the late 2000s video streaming and online gaming were commonplace thanks to services like Netflix and Xbox Live.

The FCCs broadband speed guide is also still wildly out of touch with how many households connect to and use the internet in their every day lives today too. It says multiplayer online gaming requires a minimum of 4 Mbps. If youve ever tried to play Overwatch, PUBG, League of Legends, World of Warcraft, or any other similar type of game at that low of download speed, you know thats impossible. Because while ISPs work to provide a minimum you likely know minimum doesnt mean fast or reliable.

Worse, the FCCs minimum speed definitions only take into account a single device. The higher your internet speed, the better your ability to transmit larger packets of data simultaneously to multiple devices. Even ISPs like Xfinity acknowledge this. If Im watching a movie on Netflix in Ultra HD 4K video while another person in my household is trying to play Overwatch, and we only have a 25 Mbps internet connection, were both going to experience lag because our router splits bandwidth between the two devices.

Imagine being in a household where both parents are working from home and the kids are attending school online, all trying to video conference at the same time with only a 25 Mbps or less connection. Audio and video get out of sync, or lag so bad everyone youre talking to turns to still images and then you have to restart the program because your internet connection wasnt fast enough to catch up with all the data that was trying to be transmitted to your computer.

Gaming via a cloud streaming service like Google Stadia or GeForce Now also comes with the same set of issues and bandwidth demands, and perhaps more noticeably, too. Ive previously tested both services at a download speed of 5 Mbps and encountered massive lag, video pixelation, and connection drops.

BroadbandNow is right in saying the FCC needs to redefine minimum broadband as 100 Mbps download because that will take into account many households that stream video or game on multiple devices at once, and make sure there is enough bandwidth to cover them all. But even if the FCC does eventually decide to redefine minimum broadband, its unlikely that ISPs will be on board with it. If the standard was 100 Mbps, that would mean only 75% of the U.S. would be served under the current infrastructure according to BroadbandNow, and would force ISPs to play catch-up. All while limiting many consumers to choose from only one ISP (two if they won the jackpot) in their area and charging outlandish monthly prices for speeds under the FCC defined minimum. I live in a major city and AT&T fibre still isnt available in my area but theyll charge me $US50 ($70) goddamn dollars a month for 18 Mbps, which forces me to get my internet from the only other ISP in my area, Spectrum.

Companies like AT&T and Frontier Communications have been reluctant to take FCC funding to expand minimum broadband access to rural America too. In a December 2019 filing in response to new requirements for the rural broadband fund, Frontier Communications said a 20 Mbps upload target provides little to no additional benefits to the end user customer. The new rural broadband fund requirement increased the upload target from 10 Mbps to 20 Mbps, which still falls well under the FCCs own definition of high-speed internet. Rural broadband access is closer to 2010 standards than it is to modern standards. And back in 2015, AT&T said rural customers didnt need more than a 4 Mbps download speed.

This sounds like ISPs are making generalized assumptions about people who live in rural parts of the country. Oh, you live on a farm in the middle of nowhere? Why would you need internet to milk cows? The United States Department of Agriculture put it best in a 2019 report:

Digital technologies in agriculture, including Precision Agriculture, can substantially increase crop and animal yields, improve distribution, and reduce input costs. However, without reliable, affordable high-speed Internet connectivity at both the farmhouse and in the field, many of these technologies cannot realise their full potential. As a result, producers face inconsistent ability to tap into and master new technologies, compromising the higher productivity and greater profitability needed to sustain and grow United States agriculture, meet the dietary needs of a growing global population, and maintain national competitiveness in international markets.

In other words, dearest ISPs, if you wanna keep throwing stakes on the barbecue every weekend or juice in your kids sippy cups, farmers need at least the minimum defined broadband, or higher, to make having access to these technologies worth it.

But thats only one part of the picture in rural America. Groups like the newly formed American Connection Project Broadband Coalition (ACPBC), comprised of companies like Land O Lakes and Microsoft, and organisations like Minnesota Farmers Union, are advocating for better rural broadband and the benefits that it will bring: more resources for remote education, health and mental health services, and job opportunities, just to name a few.

The American Connection Project Broadband Coalition represents a mix of companies from tech, health care, agriculture, and more who understand the ramifications of our countrys broken internet infrastructure and who have the willingness and expertise to help address this need, said Beth Ford, president and CEO of Land OLakes, Inc. Earlier this month, the ACPBC sent a letter to President Trump and congressional leadership urging them to take real steps toward closing the digital divide.

In the middle of this pandemic, the internet has become far more of a panacea rather than an easy means to do business or binge true crime shows. But even during normal times millions of Americans still lack access to reliable, affordable internet. It may take a while to get ISPs on board with providing equitable access across the entire nation, but at least the FCC can get with the times and accurately reflect appropriate internet download/upload speeds for the average U.S. household.

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Things to do this weekend, from drive-in movies to the City of Steel Virtual Walk/Run – NEXTpittsburgh

Here are the events you need to know about this weekend in Pittsburgh: July 31-August 2. Know of a good event taking place soon?Email us here.

Friday, July 31: Lit Fridays with the August Wilson African American Cultural Center6 p.m.Take a virtual visit to the studio of artist Dominic Chambers as he talks with Visual Arts Curator Kilolo Luckett and Literary Curator Jessica Lanay. In September, dont miss Chambers first solo exhibition, Like the Shapes of Clouds on Water, which will showcase his work referencing narratives cited in novels, mythologies and African-American history.

Friday, July 31: Virtual Pride Celebration7 p.m.Show your pride with The Westmoreland Museum of Art. The museums Virtual Pride Celebration Week culminates with a musical performance and live Q&A featuring Bryce Bowyn, who will captivate audiences with his catchy melodies and high-octane dance-pop.

Artist Dominic Chambers. Photo courtesy of the August Wilson African American Cultural Center.

Friday, July 31: Allegheny County Parks Unplugged7 p.m.Leave the stress of the week behind and enjoy upbeat electronic pop music by Tupelo Donovan. Broadcast via the Allegheny County Parks Facebook page and YouTube channel, this free new series features virtual acoustic performances by local artists in natural park environments.

Friday, July 31: White State | Black Mind7 p.m.Dont miss this night of culture with Nigerian American performance artist Jaamil Olawale Kosoko and the Kelly Strayhorn Theater. Streamed via City of Asylums The Show Must Go On(line) channel, the pay what makes you happy event includes a documentary chronicling the making of Kosokos performance, #negrophobia, a poetry reading and a discussion.

Friday, July 31 & Saturday, August 1: A Taste of Picklesburgh in Downtown PittsburghVarious timesYouve got two more days to savor all of the briney goodness (and get your free Heinz pickle pin) at dozens of Downtown establishments. If pickle pizza, pierogies and fudge, spicy pickle cocktails and fried tempura pickles make your mouth water, then you should run not walk to Downtown.

Jaamil Olawale Kosoko. Photo courtesy of the Kelly Strayhorn Theater.

Friday, July 31 through Sunday, August 2: City of Steel Virtual Walk/Run 5K/10KVarious timesIts the last weekend to join this virtual event benefiting BikePGH and the Greater Pittsburgh Community Food Bank. Run, walk or stroll in your own neighborhood anytime by the end of July, and youll help provide 25 meals for families in need and support safer city streets. Plus youll snag a really cool bandana.

Saturday, August 1 & Sunday, August 2: Antique Skyscrapers Rooftops & Views TourVarious timesAscend local landmarks to get a birds eye view of the Burgh and hear remarkable stories about our citys iconic skyscrapers and the tycoons who commissioned them. From high above Downtown, youll enjoy dazzling skyline views and snap cool selfies. Tickets are going fast so buy yours now.

Saturday, August 1: MeadowcroftRockshelterand Historic Village10 a.m.-4 p.m.August rocks, because kids 17 and underwill receive free admission all month long at this National Historic Landmark in Avella. Get the kiddos out the house towatch a blacksmith forge red-hot ironin a 19th-century village,usea prehistoricspear-thrower in a MonongahelaIndian village,and explore North Americas oldest site of human habitation.

Saturday, August 1: Kayaking Discovery Course at North Park Lake11 a.m.-12:30 p.m.Glide into August as you set out in a kayak on a guided tour of North Park Lake. Experience the freedom of skimming across the water, and learn about the ecosystem and history of the area. The class meets at the L.L. Bean Trailer at the corner of Babcock Blvd. and Pearce Mill Rd.

Saturday, August 1: Laser Queen with Carnegie Science Centers Buhl Planetarium2:30 p.m.Turn that stay-at-home movie date into a jubilant dance party. Freddie Mercury lives on in this glowing, pulsing playlist pairing favorite Queen anthems like Crazy Little Thing Called Love, Another One Bites the Dust and Bohemian Rhapsody with eye-popping lasers.

Photo courtesy of BikePGH.

Saturday, August 1: Picturing My World Photography Class with Carnegie Museum of Art Various timesDuring this on-demand virtual class, teaching artist Joke Slagle will teach students in grades 6 through 8 to alter pictures in imaginative ways, experiment with lighting techniques and combine images to make a three-part display.

Saturday, August 1: Drive-in Movies at Hartwood Acres7 p.m.The Hartwood Acres Amphitheater has been transformed into a free drive-in movie venue for the summer. This weekends feature is the action-adventure comedy, Sonic the Hedgehog, and Ekernally Yours Popcorn will be on hand selling popcorn, candy and more.

Sunday, July 26: Pittsburgh Penguins 6.6KVarious times

Celebrate the new Pens season by joining this years virtual race benefiting the Mario Lemieux Foundation and Pittsburgh Penguins Foundation. To receive a race packet, shirt and medal, make sure to upload your time by August 15. The event includes a Bench to 6.6K program with weekly training activities.

Photo courtesy of the Mario Lemieux Foundation.

Sunday, August 2: Archery Discovery Course in North Park11 a.m-12:30 p.m.Channel your inner Robin Hood during this introductory archery session led by the pros at L.L. Bean. Youll master proper techniques for holding a bow and releasing an arrow, and learn tips for accuracy, precision and safety.

Sunday, August 2: Watch the Allegheny County Summer Concert Series on Pittsburghs CW7 p.m.The Allegheny County Summer Concert Series has moved the music from South Park and Hartwood Acres to Pittsburghs CW channel. Tonight the series welcomes the Funky Fly Project, a sophisticated ensemble featuring saxophone, keyboards, bass and drums. Follow the funk and jazz sounds via the Allegheny County Parks Facebook page and YouTube channel.

For more events,go here. Know about an interesting event taking place this summer? Email us here.

Pittsburgh eventsPittsburgh virtual eventsThings to do in AugustThings to do in JulyThings to do in PittsburghThings to do this weekend

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Things to do this weekend, from drive-in movies to the City of Steel Virtual Walk/Run - NEXTpittsburgh

WCS to Open School Year with 9 Weeks of Remote Learning After a Vote at Tuesday Night Meeting – High Country Press

Based on guidance from local health officials, the Watauga County Board of Education voted Tuesday to begin the 2020-21 school year with 9 weeks of remote instruction for students.

School officials announced what Superintendent Scott Elliott called a modified Plan B that helps us phase our students and staff back into school while also doing everything possible to protect the health and safety of our community. Previously, school officials announced that students will return under a 23 Flex plan where students attend school in person for two days and work remotely for three days.

Over the past several weeks, weve invested a great deal of time and energy into plans for reopening our schools on the Governors Plan B schedule. Of all the plans available to us, Plan B is the most challenging to implement but it gives us the best opportunity to meet the many different needs of our students. Elliott stated. Unfortunately, right now our local public health trends continue to move in the wrong direction. After extensive conversations with our local public health partners and after hearing the concerns of many of our staff members and parents, I think this modified plan gives us our best chance to get students back into school safely as soon as possible.

Elliott explained that all students in Kindergarten through 12th grade on the 23 Flex plan will start the school year in an all remote format on August 17. If local conditions allow, students will return to in person instruction under Plan B on the 23 Flex plan on October 19.

Families who applied for the all online Watauga Virtual Academy (WVA) will be contacted by school personnel by August 5th and given the option to decline WVA if they have changed their mind since applying. The WVA students will also begin on August 17 and will remain in the WVA through the end of first semester.

We realize the change to remote learning for the first nine weeks will cause some families to rethink their enrollment in the virtual academy, Elliott said. We need to know no later than August 5 if those families want to switch back to the 23 Flex plan now that we are starting remotely. Once those decisions are made, we ask families to stick with those plans for at least the first semester. We will not be able to reschedule students, teachers, and courses once we make those decisions based on start of year numbers.

Elliott went on to explain that, while the school system is starting the year remotely, it is not exactly adopting the states all remote Plan C protocols.

We will continue to operate under the Plan B safety protocols but with an emphasis on serving the students most in need of school based services while most other students are at home full time, Elliott said. Teachers and staff will work from the school building to ensure they have access to all their resources, time to plan together, and the opportunity to see small numbers of students as needed.

School officials will allow small numbers of students to come to the school site by appointment to receive specialized assistance and support. These likely will include support for students with disabilities, students who need counseling and therapeutic services and students who need access to high speed internet to download assignments and upload completed work.

The school system will also allow students in each of the districts eight Pre-K programs to attend school in person.

Board of Education Chairman Ron Henries praised the revised plan.

We think this plan strikes the right balance between protecting our staff and students while also providing some much needed services to students who really do suffer through remote instruction. I applaud Superintendent Elliott and his staff for listening to all the concerns and considering all the options. There are some students who need support that can only be provided at school, and hopefully conditions will allow those students to be served in a safe way.

Elliott commented on the monumental task ahead.

The guidance we have received from the Department of Health and Human Services is intended to help protect our students and staff, but it is going to be difficult to implement, Elliott said. Also, the guidance seems to be changing daily. This phased reopening will give our staff the opportunity to slowly implement those protocols while giving public health officials more time to monitor changing conditions in the community.

The decision comes after a recommendation from Watauga Countys local health department, AppHealthCare, that schools consider delaying the start to in-person instruction for students while the county monitors what has been an upward trend in COVID-19 cases.

We continue to see our numbers of positive COVID cases going up, stated AppHealthCare Director Jennnifer Greene. While we currently have a lower impact from cases than in other areas of the state, these are the kinds of decisions which will hopefully keep our community from becoming one of those hot spots.

Superintendent Elliott and I agree that the best thing for students is for them to be in school. We are seeing many different health concerns emerging among children in our community because of this interruption to their lives. School is a safe and healthy place where so many needs are met. We will continue to support the school system to move forward with their plan to get students back into the school buildings as soon as possible.

Greene also acknowledged the COVID cases among young adults aged 18 to 24 and concerns about the return of students to Appalachian State in the coming weeks. The nine week remote start for the school system will allow us to monitor changing community spread of the virus and determine the impact on our school families.

Watauga County Schools Superintendent Scott Elliott said the boards decision to begin schools with a period of remote learning was difficult, but necessary in light of the countys COVID-19 metrics and guidance from AppHealthCare.

Elliott said that while the system preferred to have students back in school buildings, he was confident that lessons learned over the remote learning period this Spring would ensure that students would have better experience in the coming nine weeks.

When we entered remote learning in March, our teachers had only a few days to prepare, Elliott said. Given that immense time constraint and workload, they did an outstanding job. As we go into remote learning this fall, Im confident that our teachers and students will be even better prepared to have a positive and productive remote learning experience.

Related Articles

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WCS to Open School Year with 9 Weeks of Remote Learning After a Vote at Tuesday Night Meeting - High Country Press

Science and skulduggery: Newton, Hooke and the missing portrait – TheArticle

Isaac Newton has a strong claim to be one of the greatest men who ever lived, but he was not a very nice one. His Principia established the laws of motion and gravity, his Opticks did the same for light and he was the first mathematician to use a version of differential calculus. But his pride in his own priority and suspicion of plagiarism led him to behave like an absolute monarch in what was known as the Republic of Letters.

As President of the Royal Society, Newton used his institutional power to crush his rivals and trash their reputations, pursuing them beyond the grave. As Master of the Mint, he was even more ruthless: he used his judicial power to ensure that forgers who came before him were executed. His pathological vindictiveness and paranoia embroiled him in lifelong disputes and litigation.

And Newton had much to hide. His secretive experiments in alchemy were eccentric enough, but his voluminous researches into theology and ecclesiastical history led him to a unitarian theology that risked professional suicide. Denial of the Holy Trinity was heresy and, had it become public, would have destroyed his academic, scientific and social status.

Newtons own reputation has now come under the spotlight again. One of several long-running disputes which absorbed his time and energy involved the Secretary of the Royal Society, Robert Hooke. Hooke was a great polymath in his own right. He is immortalised by Hookes Law, which governs elasticity, and helped Christopher Wren to rebuild London after the Great Fire. Hooke is celebrated above all as the discoverer of the cell, thanks to his pioneering use of the microscope. Indeed, his engravings of the flea and other denizens of the microscopic world in his Microcosmographia remain one of the great revelations of the 17th century scientific revolution.

Hitherto, it had been thought that no portrait of Hooke had survived. According to Professor Larry Giffing, an American biologist, such a likeness exists and was sold to a private buyer at Sothebys in 2006. Dr Giffing argues that this image of an anonymous mathematician is by the well-known artist Mary Beale and depicts Hooke at the age of 50. He argues that this was the portrait that hung in the Royal Societys original meeting room at Gresham College. More provocative and speculative is his claim that Newton deliberately suppressed the portrait when he took over as President in 1703, the year of Hookes death. Dr Giffing believes that the picture includes an orrery and a drawing embodying Hookes theory of the elliptical orbits of the planets the very subject of his dispute with Newton.

Such a pictorial reminder of his rivals claims might indeed have triggered Newtons paranoia and he was quite capable of going to almost any lengths to assert his own priority. The Royal Society moved premises to Fleet Street soon after Hookes death and no more is heard about his portrait. But there is no proof that Newton would stoop so low as to consign his rivals only likeness to oblivion. At most, the evidence against him is circumstantial. And even if Dr Giffing is right, it does not prove that Hooke really was plagiarised by Newton or vice versa. A leading article in the Times goes too far when it asserts: Had Newton and Wren never lived, we might be accustomed to Hookes picture on British banknotes.

That was never likely to happen. Hooke was a great scientist and perhaps an underrated one. Newton, though, was a scientific genius, perhaps the greatest of all time. As his contemporary Alexander Pope put it: Nature and Natures laws lay hid in night: God said, Let Newton be and all was light.

The truth is that the author of the Principia deserves his preeminence. He almost certainly did discover the inverse square law of universal gravitation before Hooke, just as he worked out his version of calculus, known as fluxions, before the great German philosopher and mathematician Leibniz although the latter devised a better form of notation that is still used today. Newtons obsessive campaigns against these competitors merely diminish him in the eyes of posterity.

Why, then, did Newton mind so much about priority? The answer seems to be that he was a perfectionist who waited many years before committing his results to print. By then, others had already published theirs with the predictable consequence that disputes abounded. Hooke was a victim of the inevitable imperfections of early modern science, which often proceeded informally. Hooke undoubtedly grasped the ideas that underlay Newtons laws, without being able to demonstrate them. But Newton ought to have been more generous in acknowledging his contribution in the Principia, as he did those of others.

Today, it is easy for scientists who are impatient with learned journals to create their own home pages, using sites such as academia.edu , where they can upload their papers and make them accessible to their peers. This ease of publication has not abolished arguments over priority or plagiarism, though it has made them easier to resolve. Today, Newtons disputes with Hooke, Leibniz and Flamsteed might have caused less bitterness.

But there is a new problem. There are thought to be more than 100 million published scientific papers. Nobody can read them all, nor even all that is published in their own fields. It is a good thing that no scientist now has the power once wielded by Newton for such intellectual power may corrupt just as surely as political power. Yet the possibility remains that a Hooke may languish somewhere, neglected and unjustly maligned, because he or she has defied the consensus. If at last we can put a face to Hookes name, it is time to do him posthumous justice.

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Science and skulduggery: Newton, Hooke and the missing portrait - TheArticle

Gene Therapy for Age-related Macular Degeneration Market 2020 | Present Scenario and Growth Prospects 2025 – Bulletin Line

Global Gene Therapy for Age-related Macular Degeneration (COVID-19) Market Report 2020 by Key Players, Types, Applications, Countries, Market Size, Forecast to 2026 (Based on 2020 COVID-19 Worldwide Spread)

The Gene Therapy for Age-related Macular Degeneration market report provides a detailed analysis of global market size, regional and country-level market size, segmentation market growth, market share, competitive Landscape, sales analysis, the impact of domestic and global market players, value chain optimization, trade regulations, recent developments, opportunities analysis, strategic market growth analysis, product launches, area marketplace expanding, and technological innovations.

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Latest research report on Gene Therapy for Age-related Macular Degeneration Market delivers a comprehensive study on current market trends. The outcome also includes revenue forecasts, statistics, market valuations which illustrates its growth trends and competitive landscape as well as the key players in the business.

Macular degeneration is a condition in which, macula, a part of the retina, gets damaged or deteriorated. This condition usually affects individuals who are aged 50 years and above and therefore, it is called age-related macular degeneration (AMD). AMD is the leading cause of vision loss and is directly related to the advancement of age. But smoking also plays a vital role in causing AMD. AMD is characterized by the presence of a blurred area near the center of vision that leads to distorted vision. There are two different types of AMD, including dry (atrophic) AMD (dAMD) and wet (neovascular/exudative) AMD (wAMD). The dAMD is the most common type of AMD and accounts for almost 80%-90% of the overall AMD cases.

It has been observed that age-related macular degeneration (AMD) is one of the major causes for vision loss and is characterized by the formation of a blurred area near the center of vision, a condition that mostly affects the geriatric population. According to the CDC, almost 2 million individuals in the US suffer from AMD and by 2050, this number will reach more than 5 million. This will subsequently demand the need for the development of innovative treatments for AMD, driving the markets growth.

The market research analysts have predicted that with the introduction of techniques such as fluorescein angiography, the global age-related macular degeneration market will register a CAGR of more than 7% by 2020. With the unavailability of FDA-approved treatment for dry AMD (dAMD) and the treatment of wet AMD (wAMD) involving the need of intravitreal injections for an indefinite period, gene therapy is emerging as the most-efficient approach for the treatment of age-related macular degeneration (AMD).

According to this pipeline analysis report, most of the gene therapy molecules in the pipeline are being developed for wet AMD (wAMD). Our market research analysts have also identified that most of these molecules are in the pre-clinical development stage and a considerable number of molecules have been discontinued from development.

This report focuses on the global Gene Therapy for Age-related Macular Degeneration status, future forecast, growth opportunity, key market and key players. The study objectives are to present the Gene Therapy for Age-related Macular Degeneration development in United States, Europe and China.

The key players covered in this study RetroSense Therapeutics REGENXBIO AGTC

Market segment by Type, the product can be split into Subretinal Intravitreal Unspecified

Market segment by Application, split into Monotherapy Combination Therapy

In this study, the years considered to estimate the market size of Gene Therapy for Age-related Macular Degeneration are as follows: History Year: 2014-2018 Base Year: 2018 Estimated Year: 2019 Forecast Year 2019 to 2025

Market segment by Regions/Countries, this report covers United States Europe China Japan Southeast Asia India Central & South America

The study objectives of this report are: To analyze global Gene Therapy for Age-related Macular Degeneration status, future forecast, growth opportunity, key market and key players. To present the Gene Therapy for Age-related Macular Degeneration development in United States, Europe and China. To strategically profile the key players and comprehensively analyze their development plan and strategies. To define, describe and forecast the market by product type, market and key regions.

For the data information by region, company, type and application, 2018 is considered as the base year. Whenever data information was unavailable for the base year, the prior year has been considered.

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Gene Therapy for Age-related Macular Degeneration Market 2020 | Present Scenario and Growth Prospects 2025 - Bulletin Line

ZMR Revises Gene Therapy Market Forecast, as COVID-19 Continues to Expand Quickly Across the Globe – Market Research Posts

TheGlobal Gene Therapy Market Is Expected To Reach Around USD 2,269 Million By 2024report covers all of the aspects required to gain a complete understanding of the pre-market conditions, current conditions as well as a well-measured forecast.This report also researches and evaluates the impact of Covid-19 outbreak on theGene Therapy Market, involving potential opportunity and challenges, drivers and risks. We present the impact assessment of Covid-19 effects onGene Therapy Market growth forecast based on different scenario (optimistic, pessimistic, very optimistic, most likely etc.).

Theresearch report published by Zion Market Researchis a comprehensive study of the globalGene Therapy Market. The subject matter experts and team of highly-skilled researchers have put in hours of work to collate an authentic research report on the globalGene Therapy Market. Analysts have studied the various products in the market and offered an unbiased opinion about the factors that likely to drive the market and restrain it. For a detailed study, researchers have used primary and secondary research methodologies. Analysts have also studied the key milestones of achieved by the globalGene Therapy Marketand compared it to the current market trends to give the readers a holistic picture of the market.

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GlobalGene Therapy Market: Drivers and Restraints

This section of the report assesses various drivers, opportunities, and restrains that lie in the market. These drivers and restraints are determined by various factors such as region, key players, innovations, and others. The report will help readers determine the key drivers and solutions for restraints. It also highlights the possible opportunities. The drivers and restraints are identified by current trends and historic milestones achieved by the market. The chapter on drivers and restraints also offers an evaluation of the investments made in production innovation through the years. The changes in environmental perspective have also been factored in to understand their impact on the growth of the globalGene Therapy Market.

The Leading Market Players Covered in this Report are:

UniQure N.V, Spark Therapeutics LLC, Bluebird Bio, Juno Therapeutics, GlaxoSmithKline, Celgene Corporation, Shire Plc, Sangamo Biosciences, Dimension Therapeutics

Analysts have also highlighted the potential restraints present in the globalGene Therapy Market. With the help of market experts the report points out what changes companies can make to overcome these hurdles over the forecast years.

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GlobalGene Therapy Market: Segment Analysis

The market has various segments such as applications, end users, and products. These help in determining the growth of a particular segment of a market. The readers can assess why a certain segment is performing better than the other and then make strategic investments. The type segment includes sales value for the forecast period of 2014 to 2025. The application segment includes sales by volume and consumption for the forecast period of 2014 to 2025.

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GlobalGene Therapy Market: Regional Analysis

Different regions of the global market influence growth differently. Various factors such as economic growth, technological developments, government policies, availability of labour, and others are compared with each to determine which region will outperform other. The regions included in this report are North America, Europe, Asia Pacific, and the Middle East and Africa.

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Strategic Points Covered in TOC:

Chapter 1:Introduction, market driving force product scope, market risk, market overview, and market opportunities of the globalGene Therapy Market

Chapter 2:Evaluating the leading manufacturers of the globalGene Therapy Market which consists of its revenue, sales, and price of the products

Chapter 3:Displaying the competitive nature among key manufacturers, with market share, revenue, and sales

Chapter 4:Presenting globalGene Therapy Market by regions, market share and with revenue and sales for the projected period

Chapter 5, 6, 7, 8 and 9: To evaluate the market by segments, by countries and by manufacturers with revenue share and sales by key countries in these various regions

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The classification of the globalGene Therapy Marketis done based on the product type, segments, and end-users. The report provides an analysis of each segment together with the prediction of their development in the upcoming period. Additionally, the latest research report studies various segments of the globalGene Therapy Marketin the anticipated period.

Thanks for reading this article; you can also get individual chapter wise section or region wise report version like North America, Europe or Asia.

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Protect the Institutionalized and Defeat the Inhumanity of Eugenics – CNSNews.com

A horse visits the elderly. (Photo credit: Elizabeth W. Kearley/Getty Images)

In 2006, I was invited to speak in Alkoven, Austria at a conference on human rights located adjacent toHartheim Castle. Hartheim Castle was built in the ninth century and, in the 19thcentury, it came to serve as a home for children with physical and mental disabilities.

However, in the early 1940s, Hartheims humanitarian purpose was poisoned by the Nazi government as it began to use the castle for itsT4 euthanasia program, a nationwide eugenics program managed by mostly German physicians with the intent to eradicate those seen as being unworthy of lifein this case, the institutionalized.

This included the incurably ill, mentally or physically disabled, the elderly, and the emotionally distraught. In the hierarchy of Nazi values, inferiors like these were exterminated. Indeed, it is estimated that the T4 program was responsible for the death of upwards of 200,000 individuals either by starvation, lethal injection, or poison gas. The T4 program started before the Holocaust, in which 6 million people, predominately of Jewish heritage, were murdered. During my visit, I toured Hartheim Castle where 30,000 of these so-called inferiors fell victim to the T4 program. It was a harrowing experience.

Unbeknownst to most Americans, the eugenics movement was becoming a full-fledged intellectual craze in the United States some 20 years prior to Germanys T4 program. U.S. Supreme Court Justice Clarence Thomas documents this grim history in his concurring opinion inBox v. Planned Parenthood of Indiana and Kentucky, Inc.

Justice Thomas writes that the U.S. eugenics movement undermined the American education system, particularly among progressives, professionals, and intellectual elites. Perhaps surprisingly, leaders in the eugenics movement held prominent positions at Harvard, Stanford, and Yale, among other schools, and eugenics was taught at 376 universities and colleges.

Justice Thomas asserts that there was an aggressive movement to convince the government to enact eugenics laws targeting black people who were considered inferior to the white race. Thomas notes, however, that although race was pertinent, eugenicists did not qualify a persons fitness solely by race. He writes thata typical list of dysgenic individuals would also include some combination of the feeble-minded, insane, criminalistic, deformed, crippled, epileptic, inebriate, diseased, blind, deaf, and dependent (including orphans and paupers).

As the scope of the atrocities of the Holocaust came to light, the U.S. eugenics movement was dealt a serious blow it had been their ideology that facilitated the murder of millions. However, times changed, and in 1973 the U.S. Supreme Court passedRoe v. Wade, which led to the legalization of abortion throughout theentirety of pregnancy. Abortion as we know it today has become a vehicle for a modern-day eugenics program, this time under the banner of choice rather than compulsion.

Since 1973, the U.S. has permitted the legal murder of more than60 million children. Tragically, upwards of70 percentof mothers whose children are given a prenatal disability diagnosis, like Down Syndrome, abort to avoid the possibility of a disabled child.

Simultaneously, euthanasia confronts those who are institutionalized due to incurable illness, cognitive disability, old age, and medical dependency. In other words, the dysgenic individuals identified by Justice Thomas are still at risk today, both pre-born and born, but the basis for their elimination is disguised behind pleasant-sounding euphemisms.

Whether one earns the full rights of a human person increasingly depends on the degree of ones cognitive capacitiesanarbitrary and dehumanizing standard by design. If a person does not meet society'sever-changing criteria of humanity, then life-affirming care can be stripped from the individual by subjective decision-makers who adhere to what they call a quality-of-life assessment. Rather than recognizing the inherent dignity of all human life, this assessment focuses on productivity, utility, and economic status. Human rights and due process are noticeably absent under this new regime.

Indeed, since the first end-of-life case was heard by theNew Jersey Supreme Courtnearly forty years ago, the right to die has gained broader cultural acceptance with the near universal backing of academia, particularly in medical and law schools. New generations are taught that physicians are the arbiters of the value of life rather than patients themselves or their loved ones.

New laws and policies seek to enshrine subjectivity and quality of life assessments as paramount, to officially label some human beings as unworthy of life. Indeed,Michael Hickson, a 46-year-old disabled man who was starved and died from untreated sicknesses related to COVID-19 after physicians refused to treat him on quality-of-life grounds, represents one of the latest victims of our new regime. Mr. Hicksons tragedy illustrates how we deny care to those who have become burdensome to us.

The deadly-by-design consequences of our new regime are abundantly clear in the coronavirus pandemic. It began at a nursing home inWashington State, the center of the first known virus outbreak in the United States. The virus rapidly made its way across the country in institutions that were treating the disabled and elderly who were dying in frightening numbers. Concern quickly grew that the pandemic was particularly deadly to this population, so much so that the Trump administration issued a stern warning not to treat these individuals any differently if they contracted the virus.

Inexplicably, New York began forcing patients who had already contracted thecoronavirus into nursing homes with virus-free, at-risk patients. Unsurprisingly, New York quickly found itself dealing with an onslaught of deaths due to this high-risk population placed directly in the crosshairs of the virus.

The reaction of the nation is what you would hope as they were shocked and outraged with what was happening. Sadly, however, all the pandemic did was expose a prevailing attitude and what is occurring every day across countless nursing homes and health care systems: a prejudice toward the institutionalized, and the reality that we are a throwaway culture for those who have lost the ability to contribute in a way society decides is meaningful.

There are reasons for hope.Oklahoma Gov. Kevin Stitt recently signed the Nondiscrimination in Health Care Coverage Act, which puts an end to the rationing of health care based on quality-of-life assessments.

This is good news and underscores that laws exist to protect those most in need of protection.

Legitimate law and policy never endorse treating equal human beings as if they were not equal, or the violence, marginalization, or killing that makes such lethal bigotry a threat to our society.

Our hope lies in more leaders understanding the magnitude of what is happening and joining together with all walks of life people of all ages, backgrounds, and beliefs to foster a more equitable and justice-oriented future.

Bobby Schindler is a Senior Fellow with Americans United for Life, Associate Scholar at the Charlotte Lozier Institute, and President of the Terri Schiavo Life & Hope Network.

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Protect the Institutionalized and Defeat the Inhumanity of Eugenics - CNSNews.com

Letter: Where are the protests about abortion? | The Globe – The Globe

Sometime this coming week in the Twin Cities and other U.S. cities, an adult stranger will enter the room of a small child. The child will sense something is wrong as the adult begins to prod and make contact with some type of metal instrument. The child will try to move away, but the room is very small, so any means of escape are blocked off. The instrument will now clamp onto the childs limb or torso and proceed to tear, pull and crush. The child will scream, but no one will hear because the room is too well insulated. The screams will eventually stop. His or her body parts will be incinerated, or maybe even be sold to some health research center.

No name will be given and no grave will be marked for the unwanted child, whose unique personality is known only to God.

With all the opinions on racism in the media, do any of them deal with the following:

1. Do any of the protests condemn the taking of lives of Black babies at abortion centers?

2. Margaret Sanger, who founded Planned Parenthood, believed in eugenics: the mass of ignorant Negroes still breed carelessly and disastrously, so that the increase among Negroes, even more than the increase among whites, is from that part of the population least intelligent and fit, and least able to rear their children properly. (Birth Control Review, Volume XXII, Number 8 (New Series, May 1938, the Negro Number)

Do any of the protesters deal with Planned Parenthoods founder? Do they protest at Planned Parenthood?

A St. Cloud Times editorial stated: We want the best leadership we can get for our cities, schools, counties and state ensuring protection of the rights of every American, born or naturalized. What kind of leadership is it when our two U.S. Senators, Smith and Klobuchar vote to allow killing of children who survive an abortion?

What so ever you do to the least of my people, that you do unto me (Matt. 25:40)

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Letter: Where are the protests about abortion? | The Globe - The Globe

Tar Heels stomped out the Phantoms; Scorpions next? – Elkin Jonesville Tribune

Stephen Harris

Back in the Hometown

A news reports in from an alternate Earth in the DC Comics Multiverse:

A large gathering of multicultural protesters from Minneapolis, San Francisco and New York City converged today on the north quad of the University of North Carolina at Chapel Hill, surrounded the Silent Sam Confederate soldier statue and vehemently chanted for hours, demanding that UNC drop its nickname, the White Phantoms.

That last parts true. North Carolinas sports teams once were called the Phantoms, principally its undefeated 1923-24 basketball team (before the Dean Smith era) that posthumously was named the universitys first national champions.

The Phantom nickname didnt stick, however, and by 1950 those at the school had settled on Tar Heels, the nickname of the state.

Now, a small Chapel Hill group called Union Soldier Campaign has called for the elimination of Tar Heels as UNC-CHs nickname because of its association with Confederate soldiers. Imagine the sticky situation (heh-heh) today if the nickname instead was still White Phantoms (white from the uniforms, phantoms because of untouchable speed nothing to do with racism).

Tar Heel also has nothing to do with racism or blackness except for the natural color of tar. Eastern North Carolinas extensive pine forests once produced tar and pitch starting before the Revolutionary War to help waterproof and preserve wooden sailing ships. When Cornwallis British Redcoats crossed the Tar River in 1781 trying to conquer North Carolina, their shoes became stained by tar dumped in the river by Patriots, my old UNC-CH N.C. history professor the late Bill Powell once taught.

But because Confederate commander Robert E. Lee once famously praised God bless the Tar Heel boys during the Civil War for North Carolina soldiers sticking to their ground in battle, it now provides an opening for an attack on the hallowed nickname.

Whats puzzling in all of this is the silence surrounding more problematic nicknames at Duke and Wake Forest.

The Blue Devils of Duke were named by a 1921 student newspaper contest after les Diables Bleus, a group of French soldiers in World War I known for long blue capes worn in the cold Alps mountains. The nickname has nothing to do with devilment or Satanism, so the nickname is left alone.

Similarly, the student newspaper at Wake Forest, back when the school was in Wake County, named that colleges sports teams Demon Deacons following a coy 1923 description of devilish play against the Blue Devils. Wake Forest had been called The Baptists, a reference to the schools denominational origins. Again, no ties to Satan.

Even N.C. States cute wolfpack moniker has not avoided attack. In 1946, chancellor John Harrelson did not like wolfpack. He famously said the only thing lower than a wolf is a snake in the grass. Harrelson asked students to come up with a new nickname. They refused.

Weve yet to hear from UNC-CH or the governor about the modern assault on Tar Heels. History and heritage and good sense may just win out on this one.

North Carolina residents have sat back on their heels ever since, happy to be Tar Heels, once opined professor Powell, so often quick with a wicked little grin and a playful poke at a rival. Whod want to be a Sandlapper, anyway? Oh, professor, better let the South Carolinians alone during these sensitive times. As well as those on the mountain of conceit, as you described Virginia.

Now, East Wilkes Middle School, about that disgusting nickname Scorpions

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Tar Heels stomped out the Phantoms; Scorpions next? - Elkin Jonesville Tribune

SLIDESHOW: Black Lives Matter Rally takes place at the Beverly City Hall – The Salem News

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SLIDESHOW: Black Lives Matter Rally takes place at the Beverly City Hall - The Salem News

Six Things Everyone Should Know About Quantum Physics

Quantum physics is usually just intimidating from the get-go. It's kind of weird and can seem counter-intuitive, even for the physicists who deal with it every day. But it's not incomprehensible. If you're reading something about quantum physics, there are really six key concepts about it that you should keep in mind. Do that, and you'll find quantum physics a lot easier to understand.

Everything Is Made Of Waves; Also, Particles

Light as both a particle and a wave. (Image credit: Fabrizio Carbone/EPFL)

There's lots of places to start this sort of discussion, and this is as good as any: everything in the universe has both particle and wave nature, at the same time. There's a line in Greg Bear's fantasy duology (The Infinity Concerto and The Serpent Mage), where a character describing the basics of magic says "All is waves, with nothing waving, over no distance at all." I've always really liked that as a poetic description of quantum physics-- deep down, everything in the universe has wave nature.

Of course, everything in the universe also has particle nature. This seems completely crazy, but is an experimental fact, worked out by a surprisingly familiar process:

(there's also an animated version of this I did for TED-Ed).

Of course, describing real objects as both particles and waves is necessarily somewhat imprecise. Properly speaking, the objects described by quantum physics are neither particles nor waves, but a third category that shares some properties of waves (a characteristic frequency and wavelength, some spread over space) and some properties of particles (they're generally countable and can be localized to some degree). This leads to some lively debate within the physics education community about whether it's really appropriate to talk about light as a particle in intro physics courses; not because there's any controversy about whether light has some particle nature, but because calling photons "particles" rather than "excitations of a quantum field" might lead to some student misconceptions. I tend not to agree with this, because many of the same concerns could be raised about calling electrons "particles," but it makes for a reliable source of blog conversations.

This "door number three" nature of quantum objects is reflected in the sometimes confusing language physicists use to talk about quantum phenomena. The Higgs boson was discovered at the Large Hadron Collider as a particle, but you will also hear physicists talk about the "Higgs field" as a delocalized thing filling all of space. This happens because in some circumstances, such as collider experiments, it's more convenient to discuss excitations of the Higgs field in a way that emphasizes the particle-like characteristics, while in other circumstances, like general discussion of why certain particles have mass, it's more convenient to discuss the physics in terms of interactions with a universe-filling quantum field. It's just different language describing the same mathematical object.

Quantum Physics Is Discrete

These oscillations created an image of "frozen" light. (Credit: Princeton)

It's right there in the name-- the word "quantum" comes from the Latin for "how much" and reflects the fact that quantum models always involve something coming in discrete amounts. The energy contained in a quantum field comes in integer multiples of some fundamental energy. For light, this is associated with the frequency and wavelength of the light-- high-frequency, short-wavelength light has a large characteristic energy, which low-frequency, long-wavelength light has a small characteristic energy.

In both cases, though, the total energy contained in a particular light field is an integer multiple of that energy-- 1, 2, 14, 137 times-- never a weird fraction like one-and-a-half, , or the square root of two. This property is also seen in the discrete energy levels of atoms, and the energy bands of solids-- certain values of energy are allowed, others are not. Atomic clocks work because of the discreteness of quantum physics, using the frequency of light associated with a transition between two allowed states in cesium to keep time at a level requiring the much-discussed "leap second" added last week.

Ultra-precise spectroscopy can also be used to look for things like dark matter, and is part of the motivation for a low-energy fundamental physics institute.

This isn't always obvious-- even some things that are fundamentally quantum, like black-body radiation, appear to involve continuous distributions. But there's always a kind of granularity to the underlying reality if you dig into the mathematics, and that's a large part of what leads to the weirdness of the theory.

Quantum Physics Is Probabilistic

(Credit: Graham Barclay/Bloomberg News)

One of the most surprising and (historically, at least) controversial aspects of quantum physics is that it's impossible to predict with certainty the outcome of a single experiment on a quantum system. When physicists predict the outcome of some experiment, the prediction always takes the form of a probability for finding each of the particular possible outcomes, and comparisons between theory and experiment always involve inferring probability distributions from many repeated experiments.

The mathematical description of a quantum system typically takes the form of a "wavefunction," generally represented in equations by the Greek letter psi:. There's a lot of debate about what, exactly, this wavefunction represents, breaking down into two main camps: those who think of the wavefunction as a real physical thing (the jargon term for these is "ontic" theories, leading some witty person to dub their proponents "psi-ontologists") and those who think of the wavefunction as merely an expression of our knowledge (or lack thereof) regarding the underlying state of a particular quantum object ("epistemic" theories).

In either class of foundational model, the probability of finding an outcome is not given directly by the wavefunction, but by the square of the wavefunction (loosely speaking, anyway; the wavefunction is a complex mathematical object (meaning it involves imaginary numbers like the square root of negative one), and the operation to get probability is slightly more involved, but "square of the wavefunction" is enough to get the basic idea). This is known as the "Born Rule" after German physicist Max Born who first suggested this (in a footnote to a paper in 1926), and strikes some people as an ugly ad hoc addition. There's an active effort in some parts of the quantum foundations community to find a way to derive the Born rule from a more fundamental principle; to date, none of these have been fully successful, but it generates a lot of interesting science.

This is also the aspect of the theory that leads to things like particles being in multiple states at the same time. All we can predict is probability, and prior to a measurement that determines a particular outcome, the system being measured is in an indeterminate state that mathematically maps to a superposition of all possibilities with different probabilities. Whether you consider this as the system really being in all of the states at once, or just being in one unknown state depends largely on your feelings about ontic versus epistemic models, though these are both subject to constraints from the next item on the list:

Quantum Physics Is Non-Local

A quantum teleportation experiment in action. (Credit: IQOQI/Vienna)

The last great contribution Einstein made to physics was not widely recognized as such, mostly because he was wrong. In a 1935 paper with his younger colleagues Boris Podolsky and Nathan Rosen (the "EPR paper"), Einstein provided a clear mathematical statement of something that had been bothering him for some time, an idea that we now call "entanglement."

The EPR paper argued that quantum physics allowed the existence of systems where measurements made at widely separated locations could be correlated in ways that suggested the outcome of one was determined by the other. They argued that this meant the measurement outcomes must be determined in advance, by some common factor, because the alternative would require transmitting the result of one measurement to the location of the other at speeds faster than the speed of light. Thus, quantum mechanics must be incomplete, a mere approximation to some deeper theory (a "local hidden variable" theory, one where the results of a particular measurement do not depend on anything farther away from the measurement location than a signal could travel at the speed of light ("local"), but are determined by some factor common to both systems in an entangled pair (the "hidden variable")).

This was regarded as an odd footnote for about thirty years, as there seemed to be no way to test it, but in the mid-1960's the Irish physicist John Bell worked out the consequences of the EPR paper in greater detail. Bell showed that you can find circumstances in which quantum mechanics predicts correlations between distant measurements that are stronger than any possible theory of the type preferred by E, P, and R. This was tested experimentally in the mid-1970's by John Clauser, and a series of experiments by Alain Aspect in the early 1980's is widely considered to have definitively shown that these entangled systems cannot possibly be explained by any local hidden variable theory.

The most common approach to understanding this result is to say that quantum mechanics is non-local: that the results of measurements made at a particular location can depend on the properties of distant objects in a way that can't be explained using signals moving at the speed of light. This does not, however, permit the sending of information at speeds exceeding the speed of light, though there have been any number of attempts to find a way to use quantum non-locality to do that. Refuting these has turned out to be a surprisingly productive enterprise-- check out David Kaiser's How the Hippies Saved Physics for more details. Quantum non-locality is also central to the problem of information in evaporating black holes, and the "firewall" controversy that has generated a lot of recent activity. There are even some radical ideas involving a mathematical connection between the entangled particles described in the EPR paper and wormholes.

Quantum Physics Is (Mostly) Very Small

Images of a hydrogen atom as seen through a quantum telescope. (Credit: Stodolna et al. Phys. Rev.... [+] Lett.)

Quantum physics has a reputation of being weird because its predictions are dramatically unlike our everyday experience (at least, for humans-- the conceit of my book is that it doesn't seem so weird to dogs). This happens because the effects involved get smaller as objects get larger-- if you want to see unambiguously quantum behavior, you basically want to see particles behaving like waves, and the wavelength decreases as the momentum increases. The wavelength of a macroscopic object like a dog walking across the room is so ridiculously tiny that if you expanded everything so that a single atom in the room were the size of the entire Solar System, the dog's wavelength would be about the size of a single atom within that solar system.

This means that, for the most part, quantum phenomena are confined to the scale of atoms and fundamental particles, where the masses and velocities are small enough for the wavelengths to get big enough to observe directly. There's an active effort in a bunch of areas, though, to push the size of systems showing quantum effects up to larger sizes. I've blogged a bunch about experiments by Markus Arndt's group showing wave-like behavior in larger and larger molecules, and there are a bunch of groups in "cavity opto-mechanics" trying to use light to slow the motion of chunks of silicon down to the point where the discrete quantum nature of the motion would become clear. There are even some suggestions that it might be possible to do this with suspended mirrors having masses of several grams, which would be amazingly cool.

Quantum Physics Is Not Magic

Comic from "Surviving the World" by Dante Shepherd. (http://survivingtheworld.net/Lesson1518.html )... [+] Used with permission.

The previous point leads very naturally into this one: as weird as it may seem, quantum physics is most emphatically not magic. The things it predicts are strange by the standards of everyday physics, but they are rigorously constrained by well-understood mathematical rules and principles.

So, if somebody comes up to you with a "quantum" idea that seems too good to be true-- free energy, mystical healing powers, impossible space drives-- it almost certainly is. That doesn't mean we can't use quantum physics to do amazing things-- you can find some really cool physics in mundane technology-- but those things stay well within the boundaries of the laws of thermodynamics and just basic common sense.

So there you have it: the core essentials of quantum physics. I've probably left a few things out, or made some statements that are insufficiently precise to please everyone, but this ought to at least serve as a useful starting point for further discussion.

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Six Things Everyone Should Know About Quantum Physics

quantum mechanics | Definition, Development, & Equations …

Quantum mechanics, science dealing with the behaviour of matter and light on the atomic and subatomic scale. It attempts to describe and account for the properties of molecules and atoms and their constituentselectrons, protons, neutrons, and other more esoteric particles such as quarks and gluons. These properties include the interactions of the particles with one another and with electromagnetic radiation (i.e., light, X-rays, and gamma rays).

Britannica Quiz

All About Physics Quiz

What is the name of the theoretical explanation of the behaviour of subatomic particles offered by British physicist P.A.M. Dirac in the 1920s?

The behaviour of matter and radiation on the atomic scale often seems peculiar, and the consequences of quantum theory are accordingly difficult to understand and to believe. Its concepts frequently conflict with common-sense notions derived from observations of the everyday world. There is no reason, however, why the behaviour of the atomic world should conform to that of the familiar, large-scale world. It is important to realize that quantum mechanics is a branch of physics and that the business of physics is to describe and account for the way the worldon both the large and the small scaleactually is and not how one imagines it or would like it to be.

The study of quantum mechanics is rewarding for several reasons. First, it illustrates the essential methodology of physics. Second, it has been enormously successful in giving correct results in practically every situation to which it has been applied. There is, however, an intriguing paradox. In spite of the overwhelming practical success of quantum mechanics, the foundations of the subject contain unresolved problemsin particular, problems concerning the nature of measurement. An essential feature of quantum mechanics is that it is generally impossible, even in principle, to measure a system without disturbing it; the detailed nature of this disturbance and the exact point at which it occurs are obscure and controversial. Thus, quantum mechanics attracted some of the ablest scientists of the 20th century, and they erected what is perhaps the finest intellectual edifice of the period.

At a fundamental level, both radiation and matter have characteristics of particles and waves. The gradual recognition by scientists that radiation has particle-like properties and that matter has wavelike properties provided the impetus for the development of quantum mechanics. Influenced by Newton, most physicists of the 18th century believed that light consisted of particles, which they called corpuscles. From about 1800, evidence began to accumulate for a wave theory of light. At about this time Thomas Young showed that, if monochromatic light passes through a pair of slits, the two emerging beams interfere, so that a fringe pattern of alternately bright and dark bands appears on a screen. The bands are readily explained by a wave theory of light. According to the theory, a bright band is produced when the crests (and troughs) of the waves from the two slits arrive together at the screen; a dark band is produced when the crest of one wave arrives at the same time as the trough of the other, and the effects of the two light beams cancel. Beginning in 1815, a series of experiments by Augustin-Jean Fresnel of France and others showed that, when a parallel beam of light passes through a single slit, the emerging beam is no longer parallel but starts to diverge; this phenomenon is known as diffraction. Given the wavelength of the light and the geometry of the apparatus (i.e., the separation and widths of the slits and the distance from the slits to the screen), one can use the wave theory to calculate the expected pattern in each case; the theory agrees precisely with the experimental data.

By the end of the 19th century, physicists almost universally accepted the wave theory of light. However, though the ideas of classical physics explain interference and diffraction phenomena relating to the propagation of light, they do not account for the absorption and emission of light. All bodies radiate electromagnetic energy as heat; in fact, a body emits radiation at all wavelengths. The energy radiated at different wavelengths is a maximum at a wavelength that depends on the temperature of the body; the hotter the body, the shorter the wavelength for maximum radiation. Attempts to calculate the energy distribution for the radiation from a blackbody using classical ideas were unsuccessful. (A blackbody is a hypothetical ideal body or surface that absorbs and reemits all radiant energy falling on it.) One formula, proposed by Wilhelm Wien of Germany, did not agree with observations at long wavelengths, and another, proposed by Lord Rayleigh (John William Strutt) of England, disagreed with those at short wavelengths.

In 1900 the German theoretical physicist Max Planck made a bold suggestion. He assumed that the radiation energy is emitted, not continuously, but rather in discrete packets called quanta. The energy E of the quantum is related to the frequency by E = h. The quantity h, now known as Plancks constant, is a universal constant with the approximate value of 6.62607 1034 joulesecond. Planck showed that the calculated energy spectrum then agreed with observation over the entire wavelength range.

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quantum mechanics | Definition, Development, & Equations ...

The strange link between the human mind and quantum physics

"I cannot define the real problem, therefore I suspect there's no real problem, but I'm not sure there's no real problem."

The American physicist Richard Feynman said this about the notorious puzzles and paradoxes of quantum mechanics, the theory physicists use to describe the tiniest objects in the Universe. But he might as well have been talking about the equally knotty problem of consciousness.

Some scientists think we already understand what consciousness is, or that it is a mere illusion. But many others feel we have not grasped where consciousness comes from at all.

The perennial puzzle of consciousness has even led some researchers to invoke quantum physics to explain it. That notion has always been met with skepticism, which is not surprising: it does not sound wise to explain one mystery with another. But such ideas are not obviously absurd, and neither are they arbitrary.

For one thing, the mind seemed, to the great discomfort of physicists, to force its way into early quantum theory. What's more, quantum computers are predicted to be capable of accomplishing things ordinary computers cannot, which reminds us of how our brains can achieve things that are still beyond artificial intelligence. "Quantum consciousness" is widely derided as mystical woo, but it just will not go away.

Quantum mechanics is the best theory we have for describing the world at the nuts-and-bolts level of atoms and subatomic particles. Perhaps the most renowned of its mysteries is the fact that the outcome of a quantum experiment can change depending on whether or not we choose to measure some property of the particles involved.

When this "observer effect" was first noticed by the early pioneers of quantum theory, they were deeply troubled. It seemed to undermine the basic assumption behind all science: that there is an objective world out there, irrespective of us. If the way the world behaves depends on how or if we look at it, what can "reality" really mean?

The most famous intrusion of the mind into quantum mechanics comes in the "double-slit experiment"

Some of those researchers felt forced to conclude that objectivity was an illusion, and that consciousness has to be allowed an active role in quantum theory. To others, that did not make sense. Surely, Albert Einstein once complained, the Moon does not exist only when we look at it!

Today some physicists suspect that, whether or not consciousness influences quantum mechanics, it might in fact arise because of it. They think that quantum theory might be needed to fully understand how the brain works.

Might it be that, just as quantum objects can apparently be in two places at once, so a quantum brain can hold onto two mutually-exclusive ideas at the same time?

These ideas are speculative, and it may turn out that quantum physics has no fundamental role either for or in the workings of the mind. But if nothing else, these possibilities show just how strangely quantum theory forces us to think.

The most famous intrusion of the mind into quantum mechanics comes in the "double-slit experiment". Imagine shining a beam of light at a screen that contains two closely-spaced parallel slits. Some of the light passes through the slits, whereupon it strikes another screen.

Light can be thought of as a kind of wave, and when waves emerge from two slits like this they can interfere with each other. If their peaks coincide, they reinforce each other, whereas if a peak and a trough coincide, they cancel out. This wave interference is called diffraction, and it produces a series of alternating bright and dark stripes on the back screen, where the light waves are either reinforced or cancelled out.

The implication seems to be that each particle passes simultaneously through both slits

This experiment was understood to be a characteristic of wave behaviour over 200 years ago, well before quantum theory existed.

The double slit experiment can also be performed with quantum particles like electrons; tiny charged particles that are components of atoms. In a counter-intuitive twist, these particles can behave like waves. That means they can undergo diffraction when a stream of them passes through the two slits, producing an interference pattern.

Now suppose that the quantum particles are sent through the slits one by one, and their arrival at the screen is likewise seen one by one. Now there is apparently nothing for each particle to interfere with along its route yet nevertheless the pattern of particle impacts that builds up over time reveals interference bands.

The implication seems to be that each particle passes simultaneously through both slits and interferes with itself. This combination of "both paths at once" is known as a superposition state.

But here is the really odd thing.

If we place a detector inside or just behind one slit, we can find out whether any given particle goes through it or not. In that case, however, the interference vanishes. Simply by observing a particle's path even if that observation should not disturb the particle's motion we change the outcome.

The physicist Pascual Jordan, who worked with quantum guru Niels Bohr in Copenhagen in the 1920s, put it like this: "observations not only disturb what has to be measured, they produce it We compel [a quantum particle] to assume a definite position." In other words, Jordan said, "we ourselves produce the results of measurements."

If that is so, objective reality seems to go out of the window.

And it gets even stranger.

If nature seems to be changing its behaviour depending on whether we "look" or not, we could try to trick it into showing its hand. To do so, we could measure which path a particle took through the double slits, but only after it has passed through them. By then, it ought to have "decided" whether to take one path or both.

The sheer act of noticing, rather than any physical disturbance caused by measuring, can cause the collapse

An experiment for doing this was proposed in the 1970s by the American physicist John Wheeler, and this "delayed choice" experiment was performed in the following decade. It uses clever techniques to make measurements on the paths of quantum particles (generally, particles of light, called photons) after they should have chosen whether to take one path or a superposition of two.

It turns out that, just as Bohr confidently predicted, it makes no difference whether we delay the measurement or not. As long as we measure the photon's path before its arrival at a detector is finally registered, we lose all interference.

It is as if nature "knows" not just if we are looking, but if we are planning to look.

Whenever, in these experiments, we discover the path of a quantum particle, its cloud of possible routes "collapses" into a single well-defined state. What's more, the delayed-choice experiment implies that the sheer act of noticing, rather than any physical disturbance caused by measuring, can cause the collapse. But does this mean that true collapse has only happened when the result of a measurement impinges on our consciousness?

It is hard to avoid the implication that consciousness and quantum mechanics are somehow linked

That possibility was admitted in the 1930s by the Hungarian physicist Eugene Wigner. "It follows that the quantum description of objects is influenced by impressions entering my consciousness," he wrote. "Solipsism may be logically consistent with present quantum mechanics."

Wheeler even entertained the thought that the presence of living beings, which are capable of "noticing", has transformed what was previously a multitude of possible quantum pasts into one concrete history. In this sense, Wheeler said, we become participants in the evolution of the Universe since its very beginning. In his words, we live in a "participatory universe."

To this day, physicists do not agree on the best way to interpret these quantum experiments, and to some extent what you make of them is (at the moment) up to you. But one way or another, it is hard to avoid the implication that consciousness and quantum mechanics are somehow linked.

Beginning in the 1980s, the British physicist Roger Penrose suggested that the link might work in the other direction. Whether or not consciousness can affect quantum mechanics, he said, perhaps quantum mechanics is involved in consciousness.

What if, Penrose asked, there are molecular structures in our brains that are able to alter their state in response to a single quantum event. Could not these structures then adopt a superposition state, just like the particles in the double slit experiment? And might those quantum superpositions then show up in the ways neurons are triggered to communicate via electrical signals?

Maybe, says Penrose, our ability to sustain seemingly incompatible mental states is no quirk of perception, but a real quantum effect.

Perhaps quantum mechanics is involved in consciousness

After all, the human brain seems able to handle cognitive processes that still far exceed the capabilities of digital computers. Perhaps we can even carry out computational tasks that are impossible on ordinary computers, which use classical digital logic.

Penrose first proposed that quantum effects feature in human cognition in his 1989 book The Emperor's New Mind. The idea is called Orch-OR, which is short for "orchestrated objective reduction". The phrase "objective reduction" means that, as Penrose believes, the collapse of quantum interference and superposition is a real, physical process, like the bursting of a bubble.

Orch-OR draws on Penrose's suggestion that gravity is responsible for the fact that everyday objects, such as chairs and planets, do not display quantum effects. Penrose believes that quantum superpositions become impossible for objects much larger than atoms, because their gravitational effects would then force two incompatible versions of space-time to coexist.

Penrose developed this idea further with American physician Stuart Hameroff. In his 1994 book Shadows of the Mind, he suggested that the structures involved in this quantum cognition might be protein strands called microtubules. These are found in most of our cells, including the neurons in our brains. Penrose and Hameroff argue that vibrations of microtubules can adopt a quantum superposition.

But there is no evidence that such a thing is remotely feasible.

It has been suggested that the idea of quantum superpositions in microtubules is supported by experiments described in 2013, but in fact those studies made no mention of quantum effects.

Besides, most researchers think that the Orch-OR idea was ruled out by a study published in 2000. Physicist Max Tegmark calculated that quantum superpositions of the molecules involved in neural signaling could not survive for even a fraction of the time needed for such a signal to get anywhere.

Other researchers have found evidence for quantum effects in living beings

Quantum effects such as superposition are easily destroyed, because of a process called decoherence. This is caused by the interactions of a quantum object with its surrounding environment, through which the "quantumness" leaks away.

Decoherence is expected to be extremely rapid in warm and wet environments like living cells.

Nerve signals are electrical pulses, caused by the passage of electrically-charged atoms across the walls of nerve cells. If one of these atoms was in a superposition and then collided with a neuron, Tegmark showed that the superposition should decay in less than one billion billionth of a second. It takes at least ten thousand trillion times as long for a neuron to discharge a signal.

As a result, ideas about quantum effects in the brain are viewed with great skepticism.

However, Penrose is unmoved by those arguments and stands by the Orch-OR hypothesis. And despite Tegmark's prediction of ultra-fast decoherence in cells, other researchers have found evidence for quantum effects in living beings. Some argue that quantum mechanics is harnessed by migratory birds that use magnetic navigation, and by green plants when they use sunlight to make sugars in photosynthesis.

Besides, the idea that the brain might employ quantum tricks shows no sign of going away. For there is now another, quite different argument for it.

In a study published in 2015, physicist Matthew Fisher of the University of California at Santa Barbara argued that the brain might contain molecules capable of sustaining more robust quantum superpositions. Specifically, he thinks that the nuclei of phosphorus atoms may have this ability.

Phosphorus atoms are everywhere in living cells. They often take the form of phosphate ions, in which one phosphorus atom joins up with four oxygen atoms.

Such ions are the basic unit of energy within cells. Much of the cell's energy is stored in molecules called ATP, which contain a string of three phosphate groups joined to an organic molecule. When one of the phosphates is cut free, energy is released for the cell to use.

Cells have molecular machinery for assembling phosphate ions into groups and cleaving them off again. Fisher suggested a scheme in which two phosphate ions might be placed in a special kind of superposition called an "entangled state".

Phosphorus spins could resist decoherence for a day or so, even in living cells

The phosphorus nuclei have a quantum property called spin, which makes them rather like little magnets with poles pointing in particular directions. In an entangled state, the spin of one phosphorus nucleus depends on that of the other.

Put another way, entangled states are really superposition states involving more than one quantum particle.

Fisher says that the quantum-mechanical behaviour of these nuclear spins could plausibly resist decoherence on human timescales. He agrees with Tegmark that quantum vibrations, like those postulated by Penrose and Hameroff, will be strongly affected by their surroundings "and will decohere almost immediately". But nuclear spins do not interact very strongly with their surroundings.

All the same, quantum behaviour in the phosphorus nuclear spins would have to be "protected" from decoherence.

This might happen, Fisher says, if the phosphorus atoms are incorporated into larger objects called "Posner molecules". These are clusters of six phosphate ions, combined with nine calcium ions. There is some evidence that they can exist in living cells, though this is currently far from conclusive.

I decided... to explore how on earth the lithium ion could have such a dramatic effect in treating mental conditions

In Posner molecules, Fisher argues, phosphorus spins could resist decoherence for a day or so, even in living cells. That means they could influence how the brain works.

The idea is that Posner molecules can be swallowed up by neurons. Once inside, the Posner molecules could trigger the firing of a signal to another neuron, by falling apart and releasing their calcium ions.

Because of entanglement in Posner molecules, two such signals might thus in turn become entangled: a kind of quantum superposition of a "thought", you might say. "If quantum processing with nuclear spins is in fact present in the brain, it would be an extremely common occurrence, happening pretty much all the time," Fisher says.

He first got this idea when he started thinking about mental illness.

"My entry into the biochemistry of the brain started when I decided three or four years ago to explore how on earth the lithium ion could have such a dramatic effect in treating mental conditions," Fisher says.

At this point, Fisher's proposal is no more than an intriguing idea

Lithium drugs are widely used for treating bipolar disorder. They work, but nobody really knows how.

"I wasn't looking for a quantum explanation," Fisher says. But then he came across a paper reporting that lithium drugs had different effects on the behaviour of rats, depending on what form or "isotope" of lithium was used.

On the face of it, that was extremely puzzling. In chemical terms, different isotopes behave almost identically, so if the lithium worked like a conventional drug the isotopes should all have had the same effect.

But Fisher realised that the nuclei of the atoms of different lithium isotopes can have different spins. This quantum property might affect the way lithium drugs act. For example, if lithium substitutes for calcium in Posner molecules, the lithium spins might "feel" and influence those of phosphorus atoms, and so interfere with their entanglement.

We do not even know what consciousness is

If this is true, it would help to explain why lithium can treat bipolar disorder.

At this point, Fisher's proposal is no more than an intriguing idea. But there are several ways in which its plausibility can be tested, starting with the idea that phosphorus spins in Posner molecules can keep their quantum coherence for long periods. That is what Fisher aims to do next.

All the same, he is wary of being associated with the earlier ideas about "quantum consciousness", which he sees as highly speculative at best.

Physicists are not terribly comfortable with finding themselves inside their theories. Most hope that consciousness and the brain can be kept out of quantum theory, and perhaps vice versa. After all, we do not even know what consciousness is, let alone have a theory to describe it.

We all know what red is like, but we have no way to communicate the sensation

It does not help that there is now a New Age cottage industry devoted to notions of "quantum consciousness", claiming that quantum mechanics offers plausible rationales for such things as telepathy and telekinesis.

As a result, physicists are often embarrassed to even mention the words "quantum" and "consciousness" in the same sentence.

But setting that aside, the idea has a long history. Ever since the "observer effect" and the mind first insinuated themselves into quantum theory in the early days, it has been devilishly hard to kick them out. A few researchers think we might never manage to do so.

In 2016, Adrian Kent of the University of Cambridge in the UK, one of the most respected "quantum philosophers", speculated that consciousness might alter the behaviour of quantum systems in subtle but detectable ways.

Kent is very cautious about this idea. "There is no compelling reason of principle to believe that quantum theory is the right theory in which to try to formulate a theory of consciousness, or that the problems of quantum theory must have anything to do with the problem of consciousness," he admits.

Every line of thought on the relationship of consciousness to physics runs into deep trouble

But he says that it is hard to see how a description of consciousness based purely on pre-quantum physics can account for all the features it seems to have.

One particularly puzzling question is how our conscious minds can experience unique sensations, such as the colour red or the smell of frying bacon. With the exception of people with visual impairments, we all know what red is like, but we have no way to communicate the sensation and there is nothing in physics that tells us what it should be like.

Sensations like this are called "qualia". We perceive them as unified properties of the outside world, but in fact they are products of our consciousness and that is hard to explain. Indeed, in 1995 philosopher David Chalmers dubbed it "the hard problem" of consciousness.

"Every line of thought on the relationship of consciousness to physics runs into deep trouble," says Kent.

This has prompted him to suggest that "we could make some progress on understanding the problem of the evolution of consciousness if we supposed that consciousnesses alters (albeit perhaps very slightly and subtly) quantum probabilities."

"Quantum consciousness" is widely derided as mystical woo, but it just will not go away

In other words, the mind could genuinely affect the outcomes of measurements.

It does not, in this view, exactly determine "what is real". But it might affect the chance that each of the possible actualities permitted by quantum mechanics is the one we do in fact observe, in a way that quantum theory itself cannot predict. Kent says that we might look for such effects experimentally.

He even bravely estimates the chances of finding them. "I would give credence of perhaps 15% that something specifically to do with consciousness causes deviations from quantum theory, with perhaps 3% credence that this will be experimentally detectable within the next 50 years," he says.

If that happens, it would transform our ideas about both physics and the mind. That seems a chance worth exploring.

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The strange link between the human mind and quantum physics