NASA Is Blasting Just the Biggest Balloon Into the Stratosphere – Popular Mechanics

NASA's Goddard Space Flight Center Conceptual Image Lab/Michael Lentz

NASA is blasting a balloon the size of a football stadium to the edge of space. The balloon will hoist a brand new infrared telescope designed to map dust and gases around baby stars.

According to the agency, the Astrophysics Stratospheric Telescope for High Spectral Resolution Observations at Submillimeter-wavelengths (ASTHROS) mission, which will be run out of NASA's Jet Propulsion Laboratory (JPL) in Pasadena, California, is scheduled to launch in 2023 from Antarctica.

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"We will launch ASTHROS to the edge of space from the most remote and harsh part of our planet," JPL engineer and ASTHROS project manager Jose Siles said in a statement. "If you stop to think about it, it's really challenging, which makes it so exciting at the same time."

The ASTHROS telescope will snap pictures of the universe from an altitude of 130,000 feet above Earth's surface. From these heights, the telescope can make observations about the stars without atmospheric interference, which blocks some wavelengths of light.

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The telescope will attempt to measure how dust and gases behave around newly formed stars. Specifically, it will measure the motion, speed, and density of this dust and gas, according to the statement. Messier 83 and the proto-planetary disk around the star TQ Hydrae will be two of the prime targets for the new telescope.

Critically, scientists hope to study a violent phenomenon called stellar feedback. These jets of material are a key component in star formation, yet little is known about the effect they have on their surroundings. In a first for NASA, the telescope is designed to map nitrogen ions, which illuminate how these supernova-propelled stellar winds shape star nurseries.

In order to do all this, the telescope has to be chilled to extreme temperatureswe're talking absolute zero, or minus 451.3 degrees Fahrenheit. Instead of ferrying reserves of the super-chilled liquid helium commonly used on other missions, NASA has installed a solar-powered cryocooler that will help keep all the sensors cold and operational during the mission.

Eventually, after about a month of operation and a few loops around the South Pole, engineers will ping the gondola carrying the telescope and command it to disconnect from the 400-foot balloon. But that's not the end of the line for the ASTHROS telescope. NASA says it will refurbish the instrument for future use.

"Balloon missions like ASTHROS are higher-risk than space missions but yield high-rewards at modest cost," Siles said. "With ASTHROS, we're aiming to do astrophysics observations that have never been attempted before."

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NASA Is Blasting Just the Biggest Balloon Into the Stratosphere - Popular Mechanics

Stadium-sized balloon to carry NASA telescope to the edge of space – New Atlas

Balloons may seem like an outdated mode of transportation, but for high-flying scientific instruments theyre making a comeback. NASA has unveiled ASTHROS, a new infrared telescope that will be carried to the edge of space by a balloon the size of a football stadium.

ASTHROS, short for Astrophysics Stratospheric Telescope for High Spectral Resolution Observations at Submillimeter-wavelengths, will view the cosmos in far-infrared light. These wavelengths are blocked by Earths atmosphere, so infrared observatories are usually space-based, such as Spitzer, Herschel, and the Infrared Space Observatory.

ASTHROS, on the other hand, will be hitched to a high-altitude balloon, which will carry it to a height of 130,000 ft (40,000 m). Thats about four times higher than commercial airliners fly although its still less than halfway to the edge of space.

When fully inflated, the balloon will be about 400 ft (150 m) wide, which makes it about the size of a football stadium. Attached to this will be the ASTHROS instrument, including an 8.4-ft (2.5 m) antenna dish, as well as the mirrors, lenses and cooling systems that will let the telescope observe in far-infrared.

The balloon will be launched from Antarctica, and the stratospheric winds will carry it in two or three loops around the south pole, in a flight that will last between 21 and 28 days. When the work is done, the instrument will separate from the balloon and a parachute will carry it safely to the ground. After that, the telescope can be refurbished for reuse.

ASTHROS will specialize in making 3D maps of the density, speed and motion of gas in regions where newly-forged stars are churning the clouds of debris they were born in. The telescope will focus on four targets: the galaxy Messier 83, a young star called TW Hydrae where planets may be coagulating, and two star-forming regions in the Milky Way.

The team says that ASTHROS will be able to achieve what orbital telescopes can, at a fraction of the cost.

"Balloon missions like ASTHROS are higher-risk than space missions but yield high-rewards at modest cost," says Jose Siles, a project manager for ASTHROS. "With ASTHROS, we're aiming to do astrophysics observations that have never been attempted before. The mission will pave the way for future space missions by testing new technologies and providing training for the next generation of engineers and scientists.

The design of the instrument is now complete, and this month JPL engineers will begin testing the subsystems. If all goes to plan, ASTHROS is pencilled in for launch in December 2023.

Source: NASA

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Stadium-sized balloon to carry NASA telescope to the edge of space - New Atlas

Low-Alcohol Drinks Are the Future of Booze – GQ Magazine

On the periphery of the hard seltzers and the low-ABV spirits, a whole bar cart of other ascendant new products are jockeying to change how you think about drinking. A company called Kin Euphorics markets an amaro-adjacent concoction with a novel twist: It has replaced the booze with a mixture of adaptogens and nootropics. If you tripped over those words, you're not alone, but nootropicsessentially supplements said to increase cognitive functionhave become fiercely popular in certain tech-world circles and among the sort of ambitious, self-optimizing tinkerers for whom a hangover would be anathema. To them, nootropics work as a type of miracle drug; you might think of them as Ritalin for people with an aversion to pharmaceuticals.

Jen Batchelor, cofounder of Kin Euphorics, realized that nootropics could be useful not only at the office but also in social situations. Why would we relegate them to simply being able to code for eight hours at a time? she recalls thinking. I certainly want to be more coherent, more articulate, when I'm hanging out with friends. Batchelor was looking for something that would allow a person to participate in drinking culture without having to drinkand, crucially, without having to palm a tonic and lime all night. She wanted to make something that was more than just a prop.

A similar aspiration guided Ben Branson to launch his nonalcoholic brand, Seedlip, in the U.K. in 2015. It has since spread to cocktail lounges and bar carts in the U.S. Seedlip is an actual distilled spirit, not a substitute for one, meaning it's got all the heft of gin but none of the alcoholan idea that prompted an early investment, and then outright acquisition, by liquor giant Diageo last year.

I think we're a bit more conscious of what we put in our bodies. We read the labels, we like to know where things come from, we like to know who's behind them, says Branson. And I think, secondly, we are more focused than ever before on our health and wellness. We have access to products, tools, software, podcasts, et cetera, that can help us be more informed as to the choices we make in our lives. We know that we should exercise. We know that we should eat better.

While Kin and Seedlip both serve the actual sober folks among us, their appeal is far wider. About 20 percent of our consumers are in the sober-curious category, Batchelor says, referring to people who still drink but see the value in a dry nightor week, or month. There's so many reasons that people come to [Kin]. More than anything, we hear that it's additive, as opposed to having to get rid of something entirelyit's more of a moderation.

This tinkering with old habits, this retooling for the future by trying something new, has become a theme across the culture this year. We've been taking stock of our routines, have we not? When we locked things down during quarantine, we cracked spines on cookbooks, listened to audiobooks about the Spanish flu, devised exercise routines in a corner of the living room. And we taught ourselves how to drink on Zoom. The new spirits we'd been flirting with turned out to be the perfect companions. No surprise then that Seedlip and Kin both saw a significant uptick in orders in April. And from March to April, Haus recorded growth of 500 percent on its core line of spirits, according to Hambrecht.

Across the industry, the data reflects the moment of transition. Liquor-store sales may be up, but with bars having been closed, the producers have spent the year selling significantly less booze overall. Which is to say: People are drinking at home more than ever before, and many of them are drinking more frequently, but in general we're consuming less alcohol. We've discovered, finally, and partially by accident, a sort of new moderationone that's marked by an explosion of new things to try and new ways to experiment. The more and more these other options are available, I think, the more people realize, yeah, it actually is possible to find some sort of consumption schedule that works for you, Haus's Helena Price Hambrecht says. People are realizing there's a mix now. Indeed. Just add seltzer.

Mark Byrne is a writer in New York who has also been a consultant and an entrepreneur in the liquor industry.

A version of this story originally appears in the August 2020 issue with the title "The Future of Drinking Has a Very Light Buzz".

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Low-Alcohol Drinks Are the Future of Booze - GQ Magazine

I chewed brain boosting nootropic gum for a week straight. Heres how it went – Digital Trends

Genevieve Poblano/Digital Trends Graphic

As a writer who covers the tech scene, Im always hearing about people in Silicon Valley doing wild and crazy things to boost their performance at work things like micro-dosing shrooms or taking drugs like the narcolepsy medication modafinil. These supposedly brain-boosting smart drugs, often referred to as nootropics, have been gaining popularity over the years and now appear in a wide range of different products, but the extent to which they actually work is unclear.

Wild claims have been made about the effects of nootropics over the years, but the science surrounding their effects is foggy at best. Most nootropics havent been studied in any kind of clinical trial, so its hard to know if they work or not.

One nootropic Ive heard mentioned a lot recently is called Neuro Gum, which contains caffeine, vitamin B6, vitamin B12, and an amino acid called L-theanine. The caffeine and vitamins are meant to give you energy and improve your focus while the L-theanine, which is known for its calming effects, is meant to keep things balanced out.

However, like most other nootropics, Neuro Gum has never been the subject of a clinical trial. So instead of spending half a year wading through the scientific literature on each of its component chemicals to determine its legitimacy as a brain booster, I decided that the best thing to do was to try it myself and see if it actually works. Who needs objective observation when youve got subjective experience?

To start things off, I hopped on Amazon, bought a 20 pack of mint-flavored Neuro Gum, and waited eagerly for it to arrive. When it did, I chewed it every day for a week straight.

For the first few days, I only chewed one piece of gum in the morning after a meal. I also didnt drink any coffee or use any other stimulants that might mess with the experiment, so I was only flying on pure, unadulterated Neuro Gum.

The experience was surreal. I remember walking up to a blackboard on the first day, and there was an equation scribbled on it that it was clear no one had ever been able to solve. I was able to solve it immediately. I could also see in four dimensions, and was suddenly fluent in Japanese.

Just kidding. heres how it actually went:

On the first day, I felt the effects of the gum pretty immediately. It may have been psychosomatic, or it could be that I havent been drinking coffee lately so I noticed the effects of the caffeine more than others might. Each piece of gum has 40mg of caffeine in it, plus the vitamin B, which means its not far from the 64mg of caffeine youd get from an average shot of espresso.

The gum had a nice if a little intense mint flavor, and the physical effects were surprisingly familiar. It was a bit like doing a bump of cocaine, but without the uncomfortable jaw clenching that often comes with it. I felt both energized and focused, and those feelings persisted for at least a few hours before they went away.

Luckily, I didnt crash in any noticeable way after the effects faded. I wouldnt say this gum is a hangover cure, but it definitely helped abate a hangover I was experiencing at the time.

On day two, the effects were similar but perhaps a little less pronounced. I was focused while I was writing and was able to get a slightly-higher-than-normal amount of work done. On day three, it was again a little less effective. Perhaps I was developing a tolerance to it? Whatever the reason was, I decided on day four that I would chew two pieces of gum in the morning, as the package says to take one or two pieces at a time.

The first two-piece day was remarkable. I would say my IQ jumped by at least 20 points. I was shooting lasers out of my eyes, too.

Not really. Two pieces amplified the effects rather noticeably, but I also didnt feel cracked out. Again, it felt like doing a bump of cocaine. I had a productive day, and everything was good.

Days five and six werent noticeably different from day four. So on day seven, I decided to kick things up a notch and take three pieces in the morning.

Suddenly, I was punching through concrete walls and nevermind. Youve caught on by now. Three pieces gave me a significant amount of energy, and I did some good writing, but I also found myself quite tired within a couple of hours of chewing the pieces. Im not sure if I was experiencing a general caffeine crash, if the L-theanine was relaxing me too much, or if it was something else entirely. So I did the only logical thing to do in such a situation: I took a nap. Thankfully, I felt fine after that.

Overall, my experience with Neuro Gum was a good one. Ive actually been taking it for eight days now, because I took two pieces this morning just for a little extra energy. Im on it right now!

Its certainly not the wonder drug from Limitless or anything, but its a very practical stimulant, and Id say its worth trying if youre in the market for something thatll put some extra pep in your step. If you decide to try it, Id start with one piece and then graduate to two if that doesnt do much for you and see what you like. If I end up trying four pieces at once sometime soon and Im suddenly able to make nuclear fusion work, Ill let you know.

This whole experience has made me more curious about nootropics, and I may very well try some others in the future. This gum did help me focus, even if its effects may not have been that much different than just taking a caffeine pill but who knows if another nootropic might do even more for me. Perhaps soon Ill go further down the rabbit hole and write about those experiences. Anything for science, I always say.

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I chewed brain boosting nootropic gum for a week straight. Heres how it went - Digital Trends

Nanotechnology in Medical Devices Market Highly Favourable with new Demand to the Growth Rate by 2027| 3M, Dentsply Sirona., Thermo Fisher Scientific…

DBMR has added a new report titled Nanotechnology in Medical Devices Market with data Tables for historical and forecast years represented with Chats & Graphs spread through Pages with easy to understand detailed analysis. This Nanotechnology in Medical Devices report is quite useful to find out the general market conditions and tendencies. It also estimates the probable market for a new product to be launched in the market. This also Report has compiled to provide various market aspects such as size, share, trends, dynamics, growth, sales, and industry analysis. The competitive analysis taken place in this Nanotechnology in Medical Devices report include strategic profiling of key market players, their core competencies, their strong and weak points, and competitive landscape of the market which supports businesses illustrate their individual strategies.

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DBMR Analyses the Global Nanotechnology in medical devices market is expected to reach a market value of USD 20.52 billion by 2027 growing with the CAGR of 11.9% in the forecast period of 2020-2027.

Increasing geriatric population along with rising occurrences of diseases across the globe and growing adoption and need of high and advanced technology for the treatment of chronic diseases will accelerate the growth of the nanotechnology in medical devices market in the forecast period of 20202-2027. Rising number of applications from the emerging countries and advancement to technology for rich mid to late stage product pipeline will further create new opportunities for the growth of the market in the forecast period. Strict rules and regulations that will consume time in product approval and increasing process of nanotechnology based medical devices will hamper the growth of the market in the forecast period of 2020-2027.

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The Segments and Sub-Section of Nanotechnology in Medical Devices Market are shown below:

By Product (Active Implantable Devices, Biochips, Implantable Materials, Medical Textiles and Wound Dressings, Others

By Application (Therapeutic Applications, Diagnostic Applications, Research Applications)

List of Companies Profiled in the Nanotechnology in Medical Devices Market Report are:

3M

Dentsply Sirona

Thermo Fisher Scientific Inc

PerkinElmer Inc

GENERAL ELECTRIC

Ferro Corporation

Eppendorf AG

Greiner Bio One International GmbH

ZELLMECHANIK DRESDEN

TV Rheinland

Medtronic

Boston Scientific Corporation

BIOTRONIK SE & Co. KG

LivaNova PLC

Demant A/S

Cochlear Ltd

Sonova

MED-EL

DEKRA

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Nanotechnology in Medical Devices Report displays data on key players, major collaborations, merger & acquisitions along with trending innovation and business policies. The report highlights current and future market trends and carries out analysis of the effect of buyers, substitutes, new entrants, competitors, and suppliers on the market. The key topics that have been explained in this Nanotechnology in Medical Devices market report include market definition, market segmentation, key developments, competitive analysis and research methodology. To accomplish maximum return on investment (ROI), its very essential to be acquainted with market parameters such as brand awareness, market landscape, possible future issues, industry trends and customer behavior where this Nanotechnology in Medical Devices report comes into play.

Nanotechnology in Medical Devices Market-Geographical Segment

North America (Canada, United States & Mexico) Europe (Germany, the United Kingdom, BeNeLux, France, Russia & Italy) Asia-Pacific (Japan, South Korea, China, India & Southeast Asia) South America (Argentina, Brazil, Peru, Colombia, Etc.) Middle East & Africa (United Arab Emirates, Egypt, Saudi Arabia, Nigeria & South Africa)

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Global Nanotechnology in Medical Devices Market Scope and Market Size

Nanotechnology in medical devices market is segmented on the basis of product and application. The growth amongst these segments will help you analyse meagre growth segments in the industries, and provide the users with valuable market overview and market insights to help them in making strategic decisions for identification of core market applications.

Based on product, the nanotechnology in medical devices market is segmented into active implantable devices, biochips, implantable materials, medical textiles and wound dressings, others. Active implantable devices have been segmented into cardiac rhythm management devices, hearing aid devices and retinal implants. Biochips have been further segmented into DNA microarrays and lab-on-chip. Implantable materials have been further segmented into dental restorative materials and bone substitute materials.

Nanotechnology in medical devices market has also been segmented on the basis of applications into therapeutic applications, diagnostic applications and research applications.

Key questions answered

What impact does COVID-19 have made on Global Nanotechnology in Medical Devices Market Growth & Sizing?

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Strategic Points Covered in Table of Content of Global Nanotechnology in Medical Devices Market:

Chapter 1: Introduction, market driving force product Objective of Study and Research Scope the Nanotechnology in Medical Devices market

Chapter 2: Exclusive Summary the basic information of the Nanotechnology in Medical Devices Market.

Chapter 3: Displaying the Market Dynamics- Drivers, Trends and Challenges of the Nanotechnology in Medical Devices

Chapter 4: Presenting the Nanotechnology in Medical Devices Market Factor Analysis Porters Five Forces, Supply/Value Chain, PESTEL analysis, Market Entropy, Patent/Trademark Analysis.

Chapter 5: Displaying market size by Type, End User and Region 2010-2019

Chapter 6: Evaluating the leading manufacturers of the Nanotechnology in Medical Devices market which consists of its Competitive Landscape, Peer Group Analysis, BCG Matrix & Company Profile

Chapter 7: To evaluate the market by segments, by countries and by manufacturers with revenue share and sales by key countries (2020-2027).

Chapter 8 & 9: Displaying the Appendix, Methodology and Data Source

Finally, Nanotechnology in Medical Devices Market is a valuable source of guidance for individuals and companies in decision framework.

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Nanotechnology in Medical Devices Market Highly Favourable with new Demand to the Growth Rate by 2027| 3M, Dentsply Sirona., Thermo Fisher Scientific...

PCC to lead $7 million effort to expand nanotechnology education – Patch.com

The National Science Foundation Advanced Technological Education program has named PCC the lead agency on a $7 million grant that will develop new approaches to educating students in micro nano technology.

PCC Natural Sciences professor Jared Ashcroft will direct the project, which will bring together a network of nearly 30 higher education institutions, industry partners and as many researchers, scientists, and educators.

Over the past half century, micro nano technologies have progressed from experimental applications in electrical and mechanical engineering to biotechnology, optical sciences, and other fields. As the field has expanded quickly, community colleges have a growing duty to educate lab technicians and other personnel to operate machinery, manage cleanrooms and conduct research in increasingly unpredictable ways.

"Community colleges have to evolve in what they teach," Ashcroft explained. "We need to converge these different technologies so we can prepare students for future jobs, not the jobs in the field of five years ago. Industry and research are driving nanotechnology forward and it's time for us to have our teaching be a part of that."

The grant will create the Micro Nano Technology Education Center at PCC, a consortium bringing together community college and baccalaureate granting educational institutions, research laboratories, and private corporations working in micro nano technology fields. The Center will serve as a hub of curriculum development, professional learning, and information exchange for college educators and researchers looking for new ideas in building the nation's micro nano technology workforce.

As advanced academic research uncovers new uses for nano-scale technologies, the implementation and commercialization of these discoveries requires a constantly evolving and highly skilled workforce. Unfortunately, many community colleges have resisted making large investments in teaching at the scale of individual atoms, which requires expensive microscopes, fabrication devices, and data processing technologies, not to mention skilled educators at the front of the classroom.

In building a network of institutions around the country, the Center will pool resources and make them available to member institutions and others for their students. At PCC, for example, Ashcroft has used online videoconferencing to give his students experience with a scanning electron microscope located in the undergraduate research laboratory housed in the E Building. Access to more of these machines will boost his students' exposure to recent developments in the field, as well as providing vital work-based learning opportunities as they advance in their studies.

Ashcroft's partners bring a range of approaches to the work. Kate Alcott is the associate director of the Northeast Advanced Technological Education Center at the State University of New York Polytechnic Institute in Utica. "We know that the technician shortage is real, so we're working really hard to help these industries pull in these technologies," she said. She trains with U.S. Army veterans from nearby Fort Drum in nano skills so they can find jobs when they leave the service.

At the University of New Mexico Support Center for Microsytsems Education, Matt Pleil has been building nano education since 2004. The university brings faculty and students to workshops in their sophisticated cleanroom on the Albuquerque campus, giving them the opportunity to not only advance research but to chart the future of advanced technology education. A group of ten PCC students attended a week-long cleanroom workshop at the facility last summer.

One of the most promising outlets for future micro nano tech investment is in the development of vaccines that target the genetic code of individual diseases. Todd Christenson, the chief technology officer at HT Micro, a 15,000 square-foot engineering and fabrication facility also in Albuquerque, said that his company and, in some cases, the society at large depends on sophisticated technicians who are ready to work. "It's incumbent on us to realize this field is growing into areas, other markets, than it has in a long time," he said.

Over the next six months, the PCC Center will lay the groundwork for the five-year effort to have maximum impact. Contracts and subawards are being made to solidify the network. Infrastructure is being laid and partnerships are being made so that information can begin to flow.

The first priority is to recruit more faculty to the network, with a particular focus on younger instructors and faculty from diverse backgrounds. Mentor relationships with established educators will help maintain a vibrant field. "If we don't get younger and more diverse," Ashcroft explained, "we're going to lose the knowledge we've already accumulated." Much of the educational workforce will be approaching retirement in the next decade, so it's crucial to prepare the next generation of micro nano tech professors.

As the work gets underway, Ashcroft is already noticing the network effects of the work. "It used to be that we would get together once a year," he said of the practitioners and educators working in nano. "We don't have it all together, but together we have it all."

In nano as in all things, a series of small steps can lead to very big things.

###

Since 1924, Pasadena City College has provided the San Gabriel Valley with a high-quality, innovative learning environment that inspires student success. Our academic programs encompass a variety of degrees, transfer programs, certificates of achievement, and occupational skills certificates that challenge students and support progress toward their goals. Widely recognized as a transfer leader, PCC is one of Californias top schools for transfers to local universities, including the CSU and UC system, APU, USC, Art Center College of Design, Caltech, and more.

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PCC to lead $7 million effort to expand nanotechnology education - Patch.com

Trending Now: Global and Japan Nanotechnology in Cancer Treatment Market 2020-2026: Key Vendor Landscape By Regional Output, Demand By Countries And…

LOS ANGELES, United States: QY Research has recently published a report, titled Global and Japan Nanotechnology in Cancer Treatment Market Size, Status and Forecast 2020-2026. The research report gives the potential headway openings that prevails in the global market. The report is amalgamated depending on research procured from primary and secondary information. The global Global and Japan Nanotechnology in Cancer Treatment market is relied upon to develop generously and succeed in volume and value during the predicted time period. Moreover, the report gives nitty gritty data on different manufacturers, region, and products which are important to totally understanding the market.

Key Companies/Manufacturers operating in the global Global and Japan Nanotechnology in Cancer Treatment market include: , Merck, Ferro, AMAG Pharmaceuticals, Capsulution Nanoscience, AstraZeneca, Affymetrix, PerkinElmer, Stryker Corporation, Starkey Hearing Technologie, Smith & Nephew, St. Jude Medica, Acusphere

Get PDF Sample Copy of the Report to understand the structure of the complete report: (Including Full TOC, List of Tables & Figures, Chart) :

https://www.qyresearch.com/sample-form/form/2026988/global-and-japan-nanotechnology-in-cancer-treatment-market

Segmental Analysis

Both developed and emerging regions are deeply studied by the authors of the report. The regional analysis section of the report offers a comprehensive analysis of the global Global and Japan Nanotechnology in Cancer Treatment market on the basis of region. Each region is exhaustively researched about so that players can use the analysis to tap into unexplored markets and plan powerful strategies to gain a foothold in lucrative markets.

Global Global and Japan Nanotechnology in Cancer Treatment Market Segment By Type:

Nanostructured MaterialsNanotoolsNanodevicesOther Nanotechnology in Cancer Treatment

Global Global and Japan Nanotechnology in Cancer Treatment Market Segment By Application:

HospitalLaboratoryOther Based on

Competitive Landscape

Competitor analysis is one of the best sections of the report that compares the progress of leading players based on crucial parameters, including market share, new developments, global reach, local competition, price, and production. From the nature of competition to future changes in the vendor landscape, the report provides in-depth analysis of the competition in the global Global and Japan Nanotechnology in Cancer Treatment market.

Key companies operating in the global Global and Japan Nanotechnology in Cancer Treatment market include , Merck, Ferro, AMAG Pharmaceuticals, Capsulution Nanoscience, AstraZeneca, Affymetrix, PerkinElmer, Stryker Corporation, Starkey Hearing Technologie, Smith & Nephew, St. Jude Medica, Acusphere

Key questions answered in the report:

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TOC

1 Report Overview1.1 Study Scope1.2 Market Analysis by Type1.2.1 Global Nanotechnology in Cancer Treatment Market Size Growth Rate by Type: 2020 VS 20261.2.2 Nanostructured Materials1.2.3 Nanotools1.2.4 Nanodevices1.2.5 Other1.3 Market by Application1.3.1 Global Nanotechnology in Cancer Treatment Market Share by Application: 2020 VS 20261.3.2 Hospital1.3.3 Laboratory1.3.4 Other1.4 Study Objectives1.5 Years Considered 2 Global Growth Trends2.1 Global Nanotechnology in Cancer Treatment Market Perspective (2015-2026)2.2 Global Nanotechnology in Cancer Treatment Growth Trends by Regions2.2.1 Nanotechnology in Cancer Treatment Market Size by Regions: 2015 VS 2020 VS 20262.2.2 Nanotechnology in Cancer Treatment Historic Market Share by Regions (2015-2020)2.2.3 Nanotechnology in Cancer Treatment Forecasted Market Size by Regions (2021-2026)2.3 Industry Trends and Growth Strategy2.3.1 Market Trends2.3.2 Market Drivers2.3.3 Market Challenges2.3.4 Market Restraints 3 Competition Landscape by Key Players3.1 Global Top Nanotechnology in Cancer Treatment Players by Market Size3.1.1 Global Top Nanotechnology in Cancer Treatment Players by Revenue (2015-2020)3.1.2 Global Nanotechnology in Cancer Treatment Revenue Market Share by Players (2015-2020)3.2 Global Nanotechnology in Cancer Treatment Market Share by Company Type (Tier 1, Tier 2 and Tier 3)3.3 Players Covered: Ranking by Nanotechnology in Cancer Treatment Revenue3.4 Global Nanotechnology in Cancer Treatment Market Concentration Ratio3.4.1 Global Nanotechnology in Cancer Treatment Market Concentration Ratio (CR5 and HHI)3.4.2 Global Top 10 and Top 5 Companies by Nanotechnology in Cancer Treatment Revenue in 20193.5 Key Players Nanotechnology in Cancer Treatment Area Served3.6 Key Players Nanotechnology in Cancer Treatment Product Solution and Service3.7 Date of Enter into Nanotechnology in Cancer Treatment Market3.8 Mergers & Acquisitions, Expansion Plans 4 Nanotechnology in Cancer Treatment Breakdown Data by Type (2015-2026)4.1 Global Nanotechnology in Cancer Treatment Historic Market Size by Type (2015-2020)4.2 Global Nanotechnology in Cancer Treatment Forecasted Market Size by Type (2021-2026) 5 Nanotechnology in Cancer Treatment Breakdown Data by Application (2015-2026)5.1 Global Nanotechnology in Cancer Treatment Historic Market Size by Application (2015-2020)5.2 Global Nanotechnology in Cancer Treatment Forecasted Market Size by Application (2021-2026) 6 North America6.1 North America Nanotechnology in Cancer Treatment Market Size (2015-2026)6.2 North America Nanotechnology in Cancer Treatment Market Size by Type (2015-2020)6.3 North America Nanotechnology in Cancer Treatment Market Size by Application (2015-2020)6.4 North America Nanotechnology in Cancer Treatment Market Size by Country (2015-2020)6.4.1 United States6.4.2 Canada 7 Europe7.1 Europe Nanotechnology in Cancer Treatment Market Size (2015-2026)7.2 Europe Nanotechnology in Cancer Treatment Market Size by Type (2015-2020)7.3 Europe Nanotechnology in Cancer Treatment Market Size by Application (2015-2020)7.4 Europe Nanotechnology in Cancer Treatment Market Size by Country (2015-2020)7.4.1 Germany7.4.2 France7.4.3 U.K.7.4.4 Italy7.4.5 Russia7.4.6 Nordic7.4.7 Rest of Europe 8 China8.1 China Nanotechnology in Cancer Treatment Market Size (2015-2026)8.2 China Nanotechnology in Cancer Treatment Market Size by Type (2015-2020)8.3 China Nanotechnology in Cancer Treatment Market Size by Application (2015-2020)8.4 China Nanotechnology in Cancer Treatment Market Size by Region (2015-2020)8.4.1 China8.4.2 Japan8.4.3 South Korea8.4.4 Southeast Asia8.4.5 India8.4.6 Australia8.4.7 Rest of Asia-Pacific 9 Japan9.1 Japan Nanotechnology in Cancer Treatment Market Size (2015-2026)9.2 Japan Nanotechnology in Cancer Treatment Market Size by Type (2015-2020)9.3 Japan Nanotechnology in Cancer Treatment Market Size by Application (2015-2020)9.4 Japan Nanotechnology in Cancer Treatment Market Size by Country (2015-2020)9.4.1 Mexico9.4.2 Brazil 10 Southeast Asia10.1 Southeast Asia Nanotechnology in Cancer Treatment Market Size (2015-2026)10.2 Southeast Asia Nanotechnology in Cancer Treatment Market Size by Type (2015-2020)10.3 Southeast Asia Nanotechnology in Cancer Treatment Market Size by Application (2015-2020)10.4 Southeast Asia Nanotechnology in Cancer Treatment Market Size by Country (2015-2020)10.4.1 Turkey10.4.2 Saudi Arabia10.4.3 UAE10.4.4 Rest of Middle East & Africa 11 Key Players Profiles11.1 Merck11.1.1 Merck Company Details11.1.2 Merck Business Overview11.1.3 Merck Nanotechnology in Cancer Treatment Introduction11.1.4 Merck Revenue in Nanotechnology in Cancer Treatment Business (2015-2020))11.1.5 Merck Recent Development11.2 Ferro11.2.1 Ferro Company Details11.2.2 Ferro Business Overview11.2.3 Ferro Nanotechnology in Cancer Treatment Introduction11.2.4 Ferro Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.2.5 Ferro Recent Development11.3 AMAG Pharmaceuticals11.3.1 AMAG Pharmaceuticals Company Details11.3.2 AMAG Pharmaceuticals Business Overview11.3.3 AMAG Pharmaceuticals Nanotechnology in Cancer Treatment Introduction11.3.4 AMAG Pharmaceuticals Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.3.5 AMAG Pharmaceuticals Recent Development11.4 Capsulution Nanoscience11.4.1 Capsulution Nanoscience Company Details11.4.2 Capsulution Nanoscience Business Overview11.4.3 Capsulution Nanoscience Nanotechnology in Cancer Treatment Introduction11.4.4 Capsulution Nanoscience Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.4.5 Capsulution Nanoscience Recent Development11.5 AstraZeneca11.5.1 AstraZeneca Company Details11.5.2 AstraZeneca Business Overview11.5.3 AstraZeneca Nanotechnology in Cancer Treatment Introduction11.5.4 AstraZeneca Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.5.5 AstraZeneca Recent Development11.6 Affymetrix11.6.1 Affymetrix Company Details11.6.2 Affymetrix Business Overview11.6.3 Affymetrix Nanotechnology in Cancer Treatment Introduction11.6.4 Affymetrix Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.6.5 Affymetrix Recent Development11.7 PerkinElmer11.7.1 PerkinElmer Company Details11.7.2 PerkinElmer Business Overview11.7.3 PerkinElmer Nanotechnology in Cancer Treatment Introduction11.7.4 PerkinElmer Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.7.5 PerkinElmer Recent Development11.8 Stryker Corporation11.8.1 Stryker Corporation Company Details11.8.2 Stryker Corporation Business Overview11.8.3 Stryker Corporation Nanotechnology in Cancer Treatment Introduction11.8.4 Stryker Corporation Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.8.5 Stryker Corporation Recent Development11.9 Starkey Hearing Technologie11.9.1 Starkey Hearing Technologie Company Details11.9.2 Starkey Hearing Technologie Business Overview11.9.3 Starkey Hearing Technologie Nanotechnology in Cancer Treatment Introduction11.9.4 Starkey Hearing Technologie Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.9.5 Starkey Hearing Technologie Recent Development11.10 Smith & Nephew11.10.1 Smith & Nephew Company Details11.10.2 Smith & Nephew Business Overview11.10.3 Smith & Nephew Nanotechnology in Cancer Treatment Introduction11.10.4 Smith & Nephew Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)11.10.5 Smith & Nephew Recent Development11.11 St. Jude Medica10.11.1 St. Jude Medica Company Details10.11.2 St. Jude Medica Business Overview10.11.3 St. Jude Medica Nanotechnology in Cancer Treatment Introduction10.11.4 St. Jude Medica Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)10.11.5 St. Jude Medica Recent Development11.12 Acusphere10.12.1 Acusphere Company Details10.12.2 Acusphere Business Overview10.12.3 Acusphere Nanotechnology in Cancer Treatment Introduction10.12.4 Acusphere Revenue in Nanotechnology in Cancer Treatment Business (2015-2020)10.12.5 Acusphere Recent Development 12 Analysts Viewpoints/Conclusions 13 Appendix13.1 Research Methodology13.1.1 Methodology/Research Approach13.1.2 Data Source13.2 Disclaimer13.3 Author Details

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Trending Now: Global and Japan Nanotechnology in Cancer Treatment Market 2020-2026: Key Vendor Landscape By Regional Output, Demand By Countries And...

Nanotechnology in Energy Market Consumption and Revenue Analysis by Top Key Players and Forecast 2028 – Owned

QMI comes with an in-depth analysis and prediction report on the Nanotechnology in Energy Market. New research has been carried out across many regions and sectors. It offers a wide-ranging survey report of market players, product type and application level from all key regions like North America, Western Europe, Eastern Europe, Asia Pacific, Middle East, and Rest of the World. This study report shows growth in revenues of Nanotechnology in the Energy market in USD from the 2020-2028 forecast periods.

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The Global Nanotechnology in Energy Market Research Report covers all of the significant developments that are being implemented recently across the global market. The study also offers reliable industry values highly dependent on the end-user as well as manufacturers in Global Nanotechnology in the Energy market. The Nanotechnology in Energy market study also makes extensive mention of the major market players operating in this sector. According to this report, the market will show promising CAGR during the forecast period.By Material (Nanostructured Material, Carbon Nanotubes, Fullerenes and Others), By Application (Electrical (Transmission and Storage), Manufacturing, Renewable and Nonrenewable energy production, Others)

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A lot of companies are key players in the Nanotechnology in Energy market which are studied extensively in this report. To strengthen their product portfolio and increase their market share the key manufacturers/ companies are constantly improvising their goods and services. The report provides an in-depth review of the Growth Factors, Potential Challenges, Distinctive Patterns and Market Participant Opportunities to allow readers to fully understand the Nanotechnology in the Energy market. Major vendors included in the market study along with stock determinations, market share, and sales, figures, efficiency, size, production, cost, and revenue. The QMIs chief objective is to offer crucial insights into current trends, competitive positioning, market potential, alternative related statistics, and growth rates.

The Key Players Mentioned in our report are: Nano Dimension, Ablynx, Advance reproductions corporation, Z-medica, LLC, InMat, Inc., APS material, Inc., SolarMar energy, Inc., Solar Botanic Ltd., Rogue Valley Micro.

This Press Release primarily offers current trends that control the market.

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Nanotechnology in Energy Market Consumption and Revenue Analysis by Top Key Players and Forecast 2028 - Owned

Global Nanotechnology and Nanomaterials Market 2025 To Expect Maximum Benefit and Growth Potential During this COVID 19 Outbreak : BASF SE, Minerals…

Aimed at providing report readers with a discerning picture of the current market scenario dominant in the Nanotechnology and Nanomaterials market, this holistic report output encapsulating historic as well as current market developments are poised to specifically grab the pulse of the Nanotechnology and Nanomaterials market.

Owing to the sudden onset of dynamic macro-economic factors the Nanotechnology and Nanomaterials market has been thoroughly affected by the current developments, thus manifesting in a myriad alterations and tangible deviations from the regular growth course of the Nanotechnology and Nanomaterials market. Our researchexperts and industry analysts.

The study encompasses profiles of major companies operating in the Nanotechnology and Nanomaterials Market. Key players profiled in the report includes:BASF SEMinerals Technologies IncLiquidia TechnologiesNanoOptoFrontier Carbon CorporationHosokawa Micron GroupHyperion Catalysis International IncorporatedNanophase Technologies CorporationBBI SolutionsCline ScientificCytodiagnosticsGoldsolMeliorum TechnologiesnanoComposixSigma AldrichTanaka TechnologiesInnova Biosciences

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The report specifically hovers over vital, market specific details concerning both historical as well as current scenario, such that readers can seamlessly grab ready-to-use information from a singular, compact documentation on the Nanotechnology and Nanomaterials market.This section of the report further aims to enlighten report readers about various market influencers with a thorough overview of barrier analysis as well as an opportunity mapping that collectively influence and decide the upcoming growth trajectory of the Nanotechnology and Nanomaterials market in all favorable terms.

By the product type, the market is primarily split into CarbonNanotubesNanoclaysNanofibersNanosilverOthers

By the end-users/application, this report covers the following segments AerospaceAutomotiveMedicalMilitaryElectronicsOthers

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As the report makes further progress, it unveils a real-time scenario of the market, besides also shedding substantial light on other historical developments that had influenced sustainable revenue flow in the Nanotechnology and Nanomaterials market. Minute details about lucrative business strategies, trouble-shooting approach as well as customer enticing tactics have been thoroughly addressed in this section of the report such that readers can well comprehend real developments to ascertain an-evidence based business strategy, with ample competitive edge, such that market players can definitely cement their lead despite the high intensity in the Nanotechnology and Nanomaterials market.

Global Nanotechnology and Nanomaterials Geographical Segmentation Includes: North America (U.S., Canada, Mexico) Europe (U.K., France, Germany, Spain, Italy, Central & Eastern Europe, CIS) Asia Pacific (China, Japan, South Korea, ASEAN, India, Rest of Asia Pacific) Latin America (Brazil, Rest of L.A.) Middle East and Africa (Turkey, GCC, Rest of Middle East)

These details are indicated in the report to allow market players undertake a systematic analytical review of the Nanotechnology and Nanomaterials market to arrive at logical conclusions governing the growth trajectory of the Nanotechnology and Nanomaterials market and their subsequent implications on the growth of the aforementioned market.

Some Major TOC Points: Chapter 1. Report Overview Chapter 2. Global Growth Trends Chapter 3. Market Share by Key Players Chapter 4. Breakdown Data by Type and Application Chapter 5. Market by End Users/Application Chapter 6. COVID-19 Outbreak:Nanotechnology and Nanomaterials Industry Impact Chapter 7. Opportunity Analysis in Covid-19 Crisis Chapter 9. Market Driving ForceAnd Many More

Global Nanotechnology and Nanomaterials Market Report: Research Methodology

Moving forward, report readers are also presented with a unique portfolio presentation that houses minute details about prominent market players. The report is a unique, one stop solution to unravel complexities concerning player specific information their asset, competitive edge, influential market specific decision that eventually harness a lucrative stance despite cut-throat competition in the Nanotechnology and Nanomaterials market.

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The report allows its readers to gain optimum cues about the market progression such that players can well comprehend potential opportunities as well as persistent challenges and probable threats in the Nanotechnology and Nanomaterials market. This dedicated research articulation on the Nanotechnology and Nanomaterials market structuresinclusive outlook of various drivers and threats that eventually impact the growth course in the Nanotechnology and Nanomaterials market.

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Global Nanotechnology and Nanomaterials Market 2025 To Expect Maximum Benefit and Growth Potential During this COVID 19 Outbreak : BASF SE, Minerals...

NANOTECHNOLOGY IN ENERGY MARKET IS THRIVING WORLDWIDE BY SIZE, REVENUE, EMERGING TRENDS AND TOP GROWING COMPANIES 2028 – Market Research Correspondent

This detailed market study covers nanotechnology in energy market growth potentials which can assist the stake holders to understand key trends and prospects in nanotechnology in energy market identifying the growth opportunities and competitive scenarios. The report also focuses on data from different primary and secondary sources, and is analyzed using various tools. It helps to gain insights into the markets growth potential, which can help investors identify scope and opportunities. The analysis also provides details of each segment in the global nanotechnology in energy market

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According to the report, the nanotechnology in energy market report points out national and global business prospects and competitive conditions for Nanotechnology in energy. Market size estimation and forecasts were given based on a detailed research methodology tailored to the conditions of the demand for Nanotechnology in energy. The Nanotechnology in energy market has been segmented by material (nanostructured material, carbon nanotubes, fullerenes and others), by application (electrical (transmission and storage), manufacturing, renewable and nonrenewable energy production, others. Historical background for the demand of Nanotechnology in energy has been studied according to organic and inorganic innovations in order to provide accurate estimates of the market size. Primary factors influencing the growth of the demand Nanotechnology in energy have also been established with potential gravity.

This report provides:1) An overview of the global market for nanotechnology in energy market and related technologies.2) Analysis of global market trends, yearly estimates and annual growth rate projections for compounds (CAGRs).3) Identification of new market opportunities and targeted consumer marketing strategies for global nanotechnology in energy market .4) Analysis of R&D and demand for new technologies and new applications5) Extensive company profiles of key players in industry.

The researchers have studied the market in depth and have developed important segments such as product type, application and region. Each and every segment and its sub-segments are analyzed based on their market share, growth prospects and CAGR. Each market segment offers in-depth, both qualitative and quantitative information on market outlook.

Regional segmentation and analysis to understand growth patterns:The market has been segmented in major regions to understand the global development and demand patterns of this market.

Detailed information for markets like North America, Western Europe, Eastern Europe, Asia Pacific, Middle East, and Rest of the World is provided by the global outlook for nanotechnology in energy market . During the forecast period, North America and Western Europe are projected as main regions for nanotechnology in energy market . As one of the developed regions, the energy & power sector is important for the operations of different industries in this area

This is one of the key factors regulating nanotechnology in energy market growth in those regions. Some of the major countries covered in this region include the USA, Germany, United Kingdom, France, Italy, Canada, etc.

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During the forecast period Asia Pacific is expected to be one of the fastest growing regions for the nanotechnology in energy market . Some of the fastest-growing economies and increasing energy & power demand to cater for high population & industries are expected to drive demand in this area. During the forecast period, China and India are expected to record large demand. During the forecast period, the Middle East which includes the UAE, Saudi Arabia, Iran, Qatar and others promises high market potential. In terms of market demand during the forecast period, the rest of the world including South America and Africa are developing regions.

With an emphasis on strategies there have been several primary developments done by major companies such as Nano Dimension, Ablynx, Advance reproductions corporation, Z-medica, LLC, InMat, Inc., APS material, Inc., SolarMar energy, Inc., Solar Botanic Ltd., Rogue Valley Micro.

Market Segmentation:By Material:o Nanostructured Materialo Carbon Nanotubeso Fullerenes and Others

By Application:o Electricalo Transmissiono and Storageo Manufacturingo Renewable and Nonrenewable energy productiono Others

By Region:North Americao North America, by Countryo USo Canadao Mexicoo North America, by Materialo North America, by Application

Western Europeo Western Europe, by Countryo Germanyo UKo Franceo Italyo Spaino The Netherlandso Rest of Western Europeo Western Europe, by Materialo Western Europe, by Application

Asia Pacifico Asia Pacific, by Countryo Chinao Indiao Japano South Koreao Australiao Indonesiao Rest of Asia Pacifico Asia Pacific, by Materialo Asia Pacific, by Application

Eastern Europeo Eastern Europe, by Countryo Russiao Turkeyo Rest of Eastern Europeo Eastern Europe, by Materialo Eastern Europe, by Application

Middle Easto Middle East, by Countryo UAEo Saudi Arabiao Qataro Irano Rest of Middle Easto Middle East, by Materialo Middle East, by Application

Rest of the Worldo Rest of the World, by Countryo South Americao Africao Rest of the World, by Materialo Rest of the World, by Application

Customization:This study is customized to meet your specific requirements:o By Segmento By Sub-segmento By Region/Countryo Product Specific Competitive Analysis

Contact:Quince Market InsightsAjay D. (Knowledge Partner)Office No- A109Pune, Maharashtra 411028Phone: US +1 208 405 2835 UK +44 121 364 6144 APAC +91 706 672 4848Email:[emailprotected]Web:www.quincemarketinsights.com

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NANOTECHNOLOGY IN ENERGY MARKET IS THRIVING WORLDWIDE BY SIZE, REVENUE, EMERGING TRENDS AND TOP GROWING COMPANIES 2028 - Market Research Correspondent

Biomimetics Market to Explore Emerging Trends of Coming Years – Science Examiner

Global Biomimetic Technology Market: Introduction

Biomimetic consists of human-made processes, substances, devices, or systems that are replica of nature. The art and science of designing and building biomimetic apparatus is also known as biomimicry because it mimics biological systems. The applications of biomimetic include nanorobot antibodies that seek and destroy disease-causing bacteria, artificial organs, artificial arms, legs, hands, and feet, and various electronic devices. For instance, the kingfisher bird was the model for the engineers in Japan for designing high-speed bullet trains to reduce the massive amount of noise created by the displacement of air ahead of the train. The design team found out the fault which was in the design of blunt front nose cap. Kingfisher birds have a special structural beak allowing them to dive into water to hunt while making a minimal splash. According to Designtechnica Corporation, after applying the idea of Kingfishers beak, the next generation 500 series trains were 10% faster, consumed 15% less electricity, and did not make noise in the tunnel.

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Key Drivers of Global Biomimetic Technology Market

Advancements in Nanotechnology

Biomimetic research is being advanced by nanotechnology, a new wave of biomimetic is being extended to the imitation of animals. Applications of biomimetic in biomedical engineering have potential to significantly impact and create abundant value for human society in the future. Protein functionalized nanoparticles, peptide functionalized gold nanoparticles, and carbohydrate functionalized nanoparticles are areas of nanotechnology that are finding biomimetic applications. The applications of nanotechnology in biomimetic are expected to drive the market.

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Growing Tissue Engineering

Tissue engineeringevolved from the field ofbiomaterials development and refers to the practice of combiningscaffolds, cells, and biologically active molecules into functional tissues. Regenerative medicine is a broad field that includes tissue engineering but also incorporates research on self-healing where the body uses its own systems, sometimes with help foreign biological material to recreate cells and rebuild tissues and organs. Tissue engineering and regenerative medicines together are expected to drive the market.

North America to Account for Major Share of Global Biomimetic Technology Market

The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.

The report has been compiled through extensive primary research (through interviews, surveys, and observations of seasoned analysts) and secondary research (which entails reputable paid sources, trade journals, and industry body databases). The report also features a complete qualitative and quantitative assessment by analyzing data gathered from industry analysts and market participants across key points in the industrys value chain.

A separate analysis of prevailing trends in the parent market, macro- and micro-economic indicators, and regulations and mandates is included under the purview of the study. By doing so, the report projects the attractiveness of each major segment over the forecast period.

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Our data repository is continuously updated and revised by a team of research experts, so that it always reflects the latest trends and information. With a broad research and analysis capability, Transparency Market Research employs rigorous primary and secondary research techniques in developing distinctive data sets and research material for business reports.

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Biomimetics Market to Explore Emerging Trends of Coming Years - Science Examiner

C-Bond Systems Reports Record Monthly Revenue of $128000 in July – GlobeNewswire

HOUSTON, Aug. 03, 2020 (GLOBE NEWSWIRE) -- C-Bond Systems (the Company or C-Bond) (OTC: CBNT), a nanotechnology solutions company, announced today that it has reported record monthly revenue of more than $128,000 in July driven by robust sales of the Companys nanoproducts.

Unaudited revenue generated in July was primarily a result of robust sales of C-Bond NanoShield, the Companys patented windshield strengthener, and an order for MB-10 Tablets from an overseas distributor.

In the first quarter of 2020, C-Bond Systems delineated its business model into the Transportation Solutions Group and Safety Solutions Group in order to expand and better position its business for strategic partnership opportunities. C-Bond Transportation Solutions includes the C-Bond NanoShield product line and C-Bond Safety Solutions includes C-Bond BRS (ballistic-resistant system).

Following the establishment of the two divisions, through various national and international distribution agreements with strategic partners, the Company has added new branded nanoproducts to its portfolio ranging from automotive paint sealants to surface protectors. Other new products include FN NANO, a photocatalytic coating used in hospitals, schools, and other facilities to reduce the spread of airborne toxins and allergens; and most recently, MB-10 Tablets, an EPA registered, broad spectrum disinfectant effective against a wide range of bacteria and viruses, including SARS-CoV-2, which causes COVID-19.

Earlier this year when the COVID-19 pandemic was initially taking hold across the world, we made the decision to broaden our focus from our core businesses of transportation and safety solutions to add complementary nanoproducts to better address the urgent needs our customers faced, said Scott R. Silverman, Chairman and Chief Executive Officer of C-Bond Systems. Based on our current visibility and sales pipeline, we believe this decision to evolve our business to attract a wider customer base and anticipate industry trends has been a success. As a result, we expect continued sales growth for the remainder of 2020.

About C-Bond C-Bond Systems, Inc. (OTC: CBNT) is a Houston-based advanced nanotechnology company and marketer of the patented C-Bond technology, developed in conjunction with Rice University and independently proven to significantly strengthen glass in key automotive and structural applications. The Companys Transportation Solutions Group sells C-Bond NanoShield, a liquid solution applied directly to automotive windshields, sold through distributors. The Companys Safety Solutions Group sells ballistic-resistant glass solutions and FN NANO Coating directly to private enterprises, schools, hospitals and government agencies. For more information, please visit our website:www.cbondsystems.com, Facebook: https://www.facebook.com/cbondsys/ and Twitter: https://twitter.com/CBond_Systems.

Forward-Looking StatementsStatements in this press release about our future expectations, including the likelihood that management expects continued revenue growth throughout 2020; the likelihood that based on our current visibility and sales pipeline, we believe this decision to evolve our business to attract a wider customer base and anticipate industry trends has been a success; the likelihood that as a result, we expect continued sales growth for the remainder of 2020; constitute "forward-looking statements" within the meaning of Section 27A of the Securities Act of 1933, Section 21E of the Securities Exchange Act of 1934, and as that term is defined in the Private Litigation Reform Act of 1995. Such forward-looking statements involve risks and uncertainties and are subject to change at any time, and our actual results could differ materially from expected results. These risks and uncertainties include, without limitation, C-Bonds ability to raise capital; the Companys ability to successfully commercialize its products; the effect of the COVID-19 global pandemic on the Companys ability to operate; the timing and recognition of revenue; as well as other risks. Additional information about these and other factors may be described in the Companys filings with the Securities and Exchange Commission (SEC) including its Form 10-K filed on March 25, 2020, its Forms 10-Q filed on May 15, 2020, November 14, 2019, and August 12, 2019, and in future filings with the SEC. The Company undertakes no obligation to update or release any revisions to these forward-looking statements to reflect events or circumstances after the date of this statement or to reflect the occurrence of unanticipated events, except as required by law.

Contact:

Luke ZimmermanSenior Vice PresidentMZ Group - MZ North America949-259-4987CBNT@mzgroup.us http://www.mzgroup.us

Allison TomekC-Bond Systems6035 South Loop East Houston, TX 77033atomek@cbondsystems.com

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C-Bond Systems Reports Record Monthly Revenue of $128000 in July - GlobeNewswire

Nanotech Security Corp. to Host 2020 Third Quarter Investor Conference Call – GlobeNewswire

VANCOUVER, British Columbia, July 30, 2020 (GLOBE NEWSWIRE) -- Nanotech Security Corp. (TSXV: NTS) (OTCQX: NTSFF) (Nanotech or the Company), a leader in the development of secure and memorable nano-optic security features used in the government and banknote and brand protection markets, announces the Company will release financial results for its 2020 third quarter after the market closes on Thursday August 6, 2020. President and CEO Troy Bullock and CFO Monika Russell will host a conference call at 5:00 P.M. Eastern the same day. All interested parties are invited to join this call:

Toll/International:

1-604-638-5340

Toll/International:

Replay pin number:

Replay start:

Replay expiry:

1-604-638-9010

4848

Thursday, August 7, 2020, 8:00 PM Eastern

Sunday, September 6, 2020, 11:59 PM Eastern

About Nanotech

With billions of security features in circulation, Nanotechs products include secure and memorable security labels, stripes, patches, and colour-shifting films for currency authentication and brand protection.

KolourOptikis a patented technology that is exclusive to the government and banknote market and combines sub-wavelength nanostructures and microstructures to create modern overt security features with a unique and customizable visual effect. KolourOptik pure plasmonic colour pixels produce full colour, 3D depth, and movement used in security stripes and threads that are nearly impossible to replicate. At less than 5 microns thick, KolourOptik products seamlessly integrate into banknotes and other secure government documents.

LiveOptik is a patented technology that utilizes innovative nano-optics one tenth the size of traditional holographic structures to create next generation overt security features customized to our customers unique requirements. LiveOptik delivers multi-colour, 3D depth, movement, and image switches for secure brand protection stripes, threads, and labels that are nearly impossible to replicate.

Additional information about Nanotech can be found at the Companys website http://www.nanosecurity.ca, the Canadian disclosure filings website http://www.sedar.com or the OTCMarkets disclosure filings website http://www.otcmarkets.com.

Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

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Nanotech Security Corp. to Host 2020 Third Quarter Investor Conference Call - GlobeNewswire

Biomedical Nanotechnology Market Applications Overview 2020-2026: by Upstream and Downstream Analysis Forecast to 2026 – Owned

Global Biomedical Nanotechnology Market: Trends Estimates High Demand by 2026

The Biomedical Nanotechnology Market 2020 report includes the market strategy, market orientation, expert opinion and knowledgeable information. The Biomedical Nanotechnology Industry Report is an in-depth study analyzing the current state of the Biomedical Nanotechnology Market. It provides a brief overview of the market focusing on definitions, classifications, product specifications, manufacturing processes, cost structures, market segmentation, end-use applications and industry chain analysis. The study on Biomedical Nanotechnology Market provides analysis of market covering the industry trends, recent developments in the market and competitive landscape.

Global Biomedical Nanotechnology Market 2020-2026 Research Report categorizes the global Biomedical Nanotechnology market by key players, product type, applications and regions, etc. The report also covers the latest industry data, key players analysis, market share, growth rate, opportunities and trends, investment strategy for your reference in analyzing the global Biomedical Nanotechnology market.

The final report will add the analysis of the Impact of Covid-19 in this report Biomedical Nanotechnology industry.

Major Companies Covered in Research Report: Advanced Diamond Technologies, Inc., Advanced Nano Products Co., Limited, Altair Nanotechnologies Inc., Arrowhead Pharmaceuticals, Inc., Bruker Corporation, Catalytic Materials, LLC, Chemat Technology Inc., eSpin Technologies, Inc., ELITech Group, Genefluidics, Inc., Hanwha Nanotech Corporation (South Korea), Hybrid Plastics, Hyperion Catalysis International, Inc., Integran Technologies, Inc., and Intrinsiq Materials Limited (IML).

Download Full PDF Sample Copy of [emailprotected] https://www.reportsandmarkets.com/sample-request/global-biomedical-nanotechnology-market-size-status-and-forecast-2025?utm_source=primefeed&utm_medium=33

The report scrutinizes different business approaches and frameworks that pave the way for success in businesses. The report used Porters five techniques for analyzing the Biomedical Nanotechnology Market; it also offers the examination of the global market. To make the report more potent and easy to understand, it consists of info graphics and diagrams. Furthermore, it has different policies and development plans which are presented in summary. It analyzes the technical barriers, other issues, and cost-effectiveness affecting the market.

Global Biomedical Nanotechnology Market Research Report 2020 carries in-depth case studies on the various countries which are involved in the Biomedical Nanotechnology market. The report is segmented according to usage wherever applicable and the report offers all this information for all major countries and associations. It offers an analysis of the technical barriers, other issues, and cost-effectiveness affecting the market. Important contents analyzed and discussed in the report include market size, operation situation, and current & future development trends of the market, market segments, business development, and consumption tendencies. Moreover, the report includes the list of major companies/competitors and their competition data that helps the user to determine their current position in the market and take corrective measures to maintain or increase their share holds.

What questions does the Biomedical Nanotechnology market report answer pertaining to the regional reach of the industry

The report claims to split the regional scope of the Biomedical Nanotechnology market into North America, Europe, Asia-Pacific, South America & Middle East and Africa. Which among these regions has been touted to amass the largest market share over the anticipated duration

How do the sales figures look at present How does the sales scenario look for the future

Considering the present scenario, how much revenue will each region attain by the end of the forecast period

How much is the market share that each of these regions has accumulated presently

How much is the growth rate that each topography will depict over the predicted timeline

A short overview of the Biomedical Nanotechnology market scope:

Global market remuneration

Overall projected growth rate

Industry trends

Competitive scope

Product range

Application landscape

Supplier analysis

Marketing channel trends Now and later

Sales channel evaluation

Market Competition Trend

Market Concentration Rate

Reasons for Read this Report

This report provides pin-point analysis for changing competitive dynamics

It provides a forward looking perspective on different factors driving or restraining market growth

It provides a six-year forecast assessed on the basis of how the market is predicted to grow

It helps in understanding the key product segments and their future

It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors

It helps in making informed business decisions by having complete insights of market and by making in-depth analysis of market segments

Key Points from TOC:

1 Biomedical Nanotechnology Market Overview

2 Company Profiles

3 Market Competition, by Players

3.1 Global Biomedical Nanotechnology Revenue and Share by Players

3.2 Market Concentration Rate

3.2.1 Top 5 Biomedical Nanotechnology Players Market Share

3.2.2 Top 10 Biomedical Nanotechnology Players Market Share

3.3 Market Competition Trend

4 Market Size by Regions

10 Market Size Segment by Type

10.1 Global Biomedical Nanotechnology Revenue and Market Share by Type

10.2 Global Biomedical Nanotechnology Market Forecast by Type

10.3 On-Premise Revenue Growth Rate

10.4 Cloud-Based Revenue Growth Rate

11 Global Biomedical Nanotechnology Market Segment by Application

11.1 Global Biomedical Nanotechnology Revenue Market Share by Application

11.2 Biomedical Nanotechnology Market Forecast by Application

11.3 Small and Medium Enterprises Revenue Growth

11.4 Large Enterprises Revenue Growth

13 Research Findings and Conclusion

14 Appendix

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Biomedical Nanotechnology Market Applications Overview 2020-2026: by Upstream and Downstream Analysis Forecast to 2026 - Owned

Entheogen – PsychonautWiki

Entheogens (from the Ancient Greek entheos ["god", "divine"] and genesthai ["generate" - "generating the divine within"]) are a family of psychoactive substances, typically of plant origin, that are used in religious, ritual, or spiritual contexts. Jonathan Ott is credited with coining the term in 1979.[2]

Entheogens have been used in a ritualized context for thousands of years and their religious significance is well established with anthropological and academic literature. Examples of traditional entheogens include psychedelics like peyote, psilocybin mushrooms, ayahuasca, and iboga; atypical hallucinogens like salvia and Amanita muscaria; quasi-psychedelics like cannabis; and deliriants like datura.

With the advent of organic chemistry, there now exist many synthetic drugs with similar psychoactive properties, many of which are derived from these plants. Many pure active compounds with psychoactive properties have been isolated from these respective organisms and synthesized chemically. These include the naturally occurring mescaline, psilocybin, DMT, salvinorin A, ibogaine, ergine, and muscimol, the semi-synthetic LSD, and synthetic substances (e.g., DPT used by the Temple of the True Inner Light and 2C-B used by the Sangoma).[3]

More broadly, the term entheogen is used to refer to any psychoactive substance used for its religious or spiritual effects, whether or not in a formal religious or traditional structure. This terminology is often chosen to contrast with the recreational use of the same substances. Studies such as the Marsh Chapel Experiment have documented reports of spiritual experiences from participants who were administered psychoactive substances in controlled trials.[4] Ongoing research is limited due to widespread drug prohibition; however, some countries have legislation that allows for traditional entheogen use.

The term "entheogen" comes from the Greek en, meaning in or within; theo, meaning god or divine; and gen, meaning creates or generates. It translates as generating or creating the divine within".[citation needed]

Many modern chemicals with little human history have been recognized to be able to catalyze intense spiritual experiences, and many synthetic entheogens are simply slight modifications of their naturally occurring counterparts. Some synthetic substances like 4-AcO-DMT are prodrugs that metabolize into psychoactive substances that have been used as entheogens.

While synthetic DMT and mescaline are reported to have identical entheogenic qualities as extracted or plant-based sources, the experience may wildly vary due to the lack of numerous psychoactive alkaloids that constitute the material. This is similar to how isolated THC produces very different effects than an extract that retains the many cannabinoids of the plant such as cannabidiol and cannabinol.

Consumption of the imaginary mushroom anochi as the entheogen underlying the creation of Christianity is the premise of Philip K. Dick's last novel, "The Transmigration of Timothy Archer".

Aldous Huxley's final novel, Island (1962), depicted a fictional entheogenic mushroom termed "moksha medicine" used by the people of Pala in rites of passage, such as the transition to adulthood and at the end of life.

In his book "The Sacred Mushroom and the Cross: A Study of the Nature and Origins of Christianity within the Fertility Cults of the Ancient Near East", John M. Allegro argues etymologically that Christianity developed out of the use of a psychedelic mushroom, the true body of Christ, which was later forgotten by its adherents.

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Entheogen - PsychonautWiki

Qumulo cloud approach gang-tackles file-to-object conversion – TechTarget

NAS vendor Qumulo is moving beyond its startup status. The eight-year-old company recently closed a $125 million funding round that brings its total haul from private investors to $350 million. Qumulo CEO Bill Richter said his company took the additional financing to accelerate product development, particularly to support a surge in unstructured data. Qumulo cloud customers span government, healthcare, high-performance computing and media and entertainment, along with other industries that rely heavily on streaming data.

"We last raised capital [in 2018] and still have about 50% of it still in the bank. We chose to raise this additional round because our market opportunity is so big," Richter said.

Qumulo's founders helped create the Isilon scale-out technology that is now part of Dell EMC. Richter, also an Isilon alum, became Qumulo CEO four years ago. While the Seattle-based company initially broke into storage selling branded appliances, Richter said Qumulo's future growth depends on furthering its software-defined storage approach to data management in the cloud. The Qumulo distributed file system is packaged on branded Qumulo appliances, on Hewlett Packard Enterprise Apollo-branded servers, or licensed in AWS and Google Compute Platform.

The software platform recently expanded to include Qumulo Shift, which allows customers to run native file services in AWS and convert files to data objects that access Amazon Simple Storage Service-based services.

We recently spoke with Richter to discuss how growth in unstructured data shaped the Qumulo cloud roadmap.

You have indicated that Qumulo may pursue an initial public offering (IPO). How will the latest funding haul influence your decision to go public?

Bill Richter: Our goal to build a long-term independent, sustainable company. I think that journey implies an IPO one day, but we'll go public whenever we're ready. We have been relatively cash-efficient. Based on the way we've built and managed Qumulo, and given the amount of capital we raised, we get to decide when or if we do an IPO. It will not be decided for us.

The storage sector seems more dynamic than ever. What challenges does that pose for Qumulo? What opportunities does it present?

Richter: To understand Qumulo's success, you have to zoom out and look at a couple of mega trends affecting our business. The first is massive and unrelenting digitization of data. The scale of the data sets that we help customers with is many orders of magnitude larger than what is commonly referred to as big data. The massive proliferation of unstructured data is one trend.

A second trend is the advent of cloud computing and software to solve these massive data problems. People used to try to solve this by buying new storage boxes in their data centers. We saw a different opportunity: to tackle the unstructured data challenge by using our file software in the public cloud. That was the early thesis of Qumulo when it was founded eight years ago. Those mega trends have only accelerated and we believe it positions us to build a strong and successful company.

You started out with file storage, then added object support for the cloud. Do you envision expanding to block for unified storage?

Richter: We are highly specialized around file data. We don't provide a block data system. We don't provide a transactional data system. Qumulo is not a backup company. In fact, there's a vibrant conversation about this inside Qumulo. We use this phrase 'focus is your friend.' We focus on file data, which is an overlooked market segment [for cloud workloads]. The incumbents are not innovating in that area, because it happens to be a very difficult problem to solve.

We see customers whose applications are better suited for the public cloud, and those applications all use file data. Another aspect is that many customers aren't sure whether those applications should live on premises or in the cloud. When they buy Qumulo, they buy the optionality to transport an application from Point A to Point B and back again, without having to change the application.

AI data inferencing and cloud data management are fueling demand for faster storage in the cloud. How do these dynamics change the way customers evaluate their storage?

Richter: As a matter of fact, storage is important, right? If you can't store the data somewhere, you can't get started. But storage really is just the starting place. There is an intersection of three things: data, applications and users. Storage is the foundational element.

We are to data storage like a fire truck is to water storage. Bill RichterCEO, Qumulo

We are to data storage like a fire truck is to water storage. Qumulo is all about enabling data-intensive applications to grow at scale. What inferences can you draw from that data? What kind of data services can you offer? How can you move that data around? And how can you get insights from that data? You can do some interesting things by selling a new storage box, but if it were a baseball game, that storage box only gets you to the second inning.

Where is the Qumulo cloud software most taking root? Who are your typical customers?

Richter: The vast majority of our business comes from the lines of business inside an enterprise. When we sell to Fortune or Dow 30 media companies, we are not dealing with the CIO. We have conversations with the creative department. We have conversations with the production department. We have conversations with broadcasters. These are deep discussions about workflows and what customers need Qumulo to do to enable the data-intensive applications those environments need.

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Qumulo cloud approach gang-tackles file-to-object conversion - TechTarget

Quick Investors Will Buy Fastly Stock Before Q2 Earnings Beat The Street – InvestorPlace

The sheer momentum of the cloud-computing sector has taken some traders by surprise in the first half of 2020. Fastly (NYSE:FSLY) has certainly been a fast mover and FSLY stock has shown no signs of slowing down anytime soon.

Source: Pavel Kapysh / Shutterstock.com

Yet theres a wild-card event up ahead, as Fastly will report second-quarter earnings on August 5.

Admittedly, expectations on Wall Street are ambitious for Fastly. With the onset of the novel coronavirus, many businesses moved their computing operations onto the cloud. Fastly was there all along, facilitating the move to more powerful sites and applications on the companys secure, programmable edge cloud platform.

With expectations running high, will Fastly deliver what the experts and market participants are demanding?

The quarterly results will be closely watched. An earnings beat could send the FSLY stock bears into hibernation.

In actuality, there probably arent a whole lot of bears left, as FSLY stock has shown incredible and relentless momentum. Just take a moment to consider that FSLYs 52-week low is just $10.63 while its 52-week high is $105.47.

Thus, momentum-focused traders should be delighted by the price action in FSLY stock. However, not everyone is entirely pleased with the stocks current valuation.

AsInvestorPlace contributor Chris Lau points out, Seven analysts who cover Fastly have a $67.33 price target. Thats far below the current share price, which is near $100. Lau concludes, At current valuations, caution is warranted.

Thats a fair assessment, so Ill leave value and momentum traders alone to debate whether FSLY stock is due for a pullback. The upcoming earnings report could induce such a pullback, but that would require Fastly to disappoint the market somehow. And thats not an outcome that I would advise investors to bet on.

What sets Fastly apart from other cloud-centered companies is that this company offers content-delivery solutions from the edge. In other words, while data can still be stored in the cloud, it can be processed at a location closer to the clients and their devices (who are, we might say, on the edge of the overall data ecosystem).

As CB Insights explains better than I ever could, edge computing promises faster processing at lower costs right at the source of the data. Moreover, Some of the biggest players in tech are exploring edge computing, potentially giving rise to the next big computing race.

Fastly is facilitating this race while empowering its clients to take the pole position. In the domain on content delivery, having an edge (pun fully intended) is crucial: By moving data and applications as close to your end users as possible, you can deliver fast, highly personalized experiences to customers around the world.

To be frank, if youre planning on standing in the way of Fastlys relentless growth, you might get steamrolled. Attempting to short FSLY stock prior to the quarterly earnings report could prove utterly self-destructive.

Bear in mind that during the three month period ended March 31, Fastly generated $62.9 million in revenues. Thats a 38% year-over-year improvement.

Looking towards the second-quarter results, Fastlys management forecasts $70 million to $72 million in revenues. This expectation is in line with the analyst consensus estimate of $71.65 million.

At the same time, Wall Street is modeling a second-quarter earnings loss of a penny per share. This seems like a modest projection for a company firmly in hyper-growth mode. This could end up being a launching pad for a major earnings beat, which might take FSLY to fresh highs.

Value investors concerns are duly noted in regard to FSLY stock. With edge-centered cloud computing being a fast-expanding market, however, theres the potential for an earnings-event blowout to continue the stocks powerful momentum.

As of this writing, David Moadel did not hold a position in any of the aforementioned securities.

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Quick Investors Will Buy Fastly Stock Before Q2 Earnings Beat The Street - InvestorPlace

Black Athletes Are Abandoning Liberty University Because of the School’s Racism – Friendly Atheist – Patheos

Over the past few months, whenever Jerry Falwell, Jr. and Liberty University havent been busy suing reporters for doing their jobs, theyve been tearing apart their athletic department. But not on purpose.

One of the best ways to advertise a school and create an exciting atmosphere for potential students is through athletics. A successful football program alas, not so much quality teaching or research opportunities will do wonders for donations and recruiting.

Its no wonder, then, that Liberty has spent more than $150 million on sports facilities since 2016. Their Division I football team won a bowl game last year, and their basketball team won a March Madness game as well. Theyve been recruiting athletes who may, in the past, have been considered too good for a school like theirs.

But all of that collapsed in recent months as players (and professors) began leaving the school in response to Falwells overt racism as well as the racist culture on campus.

In a piece for Slate, Joel Anderson writes about how some of the schools most prized recruits have left the school due in large part to the bigotry they experienced there.

Heres just the opening story:

One Thursday morning, class was partway through when the instructor told one of [football player Tayvion Tank] Lands teammates that he needed a tutor. Sensing some reticence, Land said, the instructor followed up with an attempt at a joke. Dont be scared, he allegedly told the player. Im not going to pull out my whip and hit you with it.

One question often comes up whenever we hear stories like these: Why did these athletes go to Liberty in the first place?

Its because Liberty was recruiting them (and giving them a scholarship) when other schools were not.

Its because their top choices eventually passed on them and they had to settle.

Its because they wanted to go to a Christian school, but they didnt realize Liberty was a batshit crazy Christian school.

Several of the students in the piece mention how they just didnt know much about the schools culture and place in right-wing politics but when they visited campus and saw the facilities, they were sold. Many of them even said they had no problem with the teams or coaches; it was the rest of the school that became a problem.

For basketball star Asia Todd, one key moment was having to listen to conservative commentator Candace Owens repeat right-wing theories about Black people.

Todd and her friends most of them Blacklooked around the arena that morning, taking in the scene of the overwhelmingly white audience applauding and nodding along with Owens.

I can say that my parents did warn me about some of their ideology and that it didnt align with things that they raised me and stuff they stood for, Todd said. I definitely shouldve listened. I feel like if I did know more about [Falwell] and what he stands for, I dont know if I wouldve gone there.

Good for them for making the transfer. Its hard to leave a program and join a new one even when youre not thinking about eligibility rules. But given the pandemic, with everything sports-related in chaos anyway. this may be the year to do it.

If the top athletes at Liberty are warning students to stay the hell away, and leading by example, it would arguably do more damage to Libertys reputation than Falwell ever could.

Thats a sad reflection of our culture, but if it works, more power to them.

(Image via Shutterstock)

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Black Athletes Are Abandoning Liberty University Because of the School's Racism - Friendly Atheist - Patheos

Liberty Utility nixes Granite Bridge pipeline, gets increased capacity from another pipeline – The Union Leader

Liberty Utilities has abandoned its proposed Granite Bridge project and plans to seek an alternative to the pipeline, which would have followed Route 101 to bring natural gas from Exeter to Manchester.

The utility now hopes the Public Utilities Commission approves a filing for a 20-year contract for capacity on an existing pipeline known as Concord Lateral. That proposal would eliminate more than one million tons of greenhouse gas emissions while enabling more customers to receive gas service, according to the company.

Liberty Utility proposed the Granite Bridge project in 2017 during a natural gas capacity shortfall in New Hampshire. It would have linked to existing gas pipelines and included a storage tank in Epping. The project was opposed by several environmental groups and politicians.

When we originally filed Granite Bridge, the capacity was not available, said Emily Burnett, a spokeswoman for Liberty Utilities. At the end of 2019, another company did not renew a contract to use a portion of the Concord Lateral pipeline.

Were always looking for the cheapest option available for our customers. This was flagged for us, Burnett said.

Liberty Utilities provides natural gas service to a growing customer base of more than 96,000 homes and businesses in 35 New Hampshire communities, including the cities of Manchester, Nashua, Concord, Laconia, Franklin and surrounding towns. The company struggled to meet the demand with more than about 1,000 customers a year signing up for gas service.

Making sure natural gas is available for customers who want it is critical not only for New Hampshires economy and for families pocketbooks, but also to enable the deepest, fastest, and most achievable pathway for decarbonizing our economy and taking action on climate change, said Sue Fleck, president of Liberty-New Hampshire, in a statement.

One group, 350NH, has fought the project for the past three years.

I personally am really happy that Liberty Utilities pulled the plug on the project because now I am not going to have a fracked methane gas pipeline running through my town of Raymond, said Jennifer Dube, pipeline resistance organizer for 350NH. There is not going to be a giant LNG storage tank in Epping.

She got word via text and phone calls Friday afternoon while at work. The key to the new proposal is that it doesnt expand fossil fuel infrastructure, she said.

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Liberty Utility nixes Granite Bridge pipeline, gets increased capacity from another pipeline - The Union Leader

It’s all relative with the Statue of Liberty – The Spectator USA

She stands in the smoky morning air, her copper lamp held elegantly aloft across the waters from Manhattan. Oh, say can you see Americas most instantly recognizable monument and, perhaps more to the immediate point, for how much longer?

The Statue of Liberty has been in front of the world now for nearly 134 years, the rousingly famous sonnet engraved on the bronze plaque on her pedestal for almost the same length of time. Long may both continue. We have in recent weeks lost God knows how many statues, and I really wouldnt want to see this one go the way of the recently toppled.

The future prospects for Americas grand symbol arent simply an academic question for me although when I say symbol here Im thinking as much of the words as the statue. I would naturally be sorry to see the Mother of Exiles ever depart the scene. But if the poetry that gave her that name also gets dumped into the harbor, it would be like I had lost a member of my own family.

Give me your tired, your poor,Your huddled masses yearning to breathe free,The wretched refuse of your teeming shore.

So stirring are the 14 lines of the ever-so-slightly mysterious Emma Lazaruss poem that its sometimes forgotten the statue with which they are associated originally celebrated the end of slavery, rather than being a global lamp flickering for all comers by the golden American door.

According to Yasmin Sabina Khan, author of Enlightening the World: The Creation of the Statue of Liberty, the neoclassical works French creator, douard de Laboulaye, was searching for an idealistic representation of what the new republic could yet promise for its freshly emancipated citizens.

Almost 120 years ago, in 1903, Lazaruss The New Colossus pasted a much broader meaning over the original one: newly bestowed liberty for all, to be sure, but also the idea-implicit that were all somehow bound up in this thing together, at least if we know where to look.

Lazaruss verse was a shoo-in for the pedestal having already scooped an earlier fundraising poetry competition for the planned statue. The author herself had died 16 years earlier, probably from cancer, at the still-tender age of 38, so she never actually saw her works final resting place; today, on any normal year, 4.5 million tourists each year make that pilgrimage in her stead.

What would she have made of all this subsequent love and attention? For a long time it was hard to say, because it was hard to say much about Lazarus, period. Aside from a flurry of rather lightly detailed writings in 1949 marking the centenary of her birth, not a great deal has been published over the subsequent 70 or so years, either.

Quite a bit of what we have known (the stuff about the chronically withdrawn spinster who lived as a true woman, too distinctly feminine to wish to be exceptional or to stand alone and apart, even by virtue of superiority) has never felt terribly specific.

As the Princeton scholar Ester Schor suggests in one of a relatively few of the in-depth studies, which was published in 2006, Lazarus comes more into sync when thought about in terms of what she emphatically wasnt. She wasnt a woman who was into scandalous affairs. She never got arrested at protest marches. She never punched anyone out. As one of Manhattans decidedly un-huddled masses, she never had any experience of going without.

We do know she was Jewish, of Sephardic stock, and belatedly Orthodox in her beliefs as the fate of Russian Jewry came to fire her up during the final years of her life. A collection of her works, Songs of a Semite(1882), has been described as the first serious volume of distinctly Jewish-American poetry.

People often assume as a non-American outsider, I know I did back in the 1990s when I first went to New York City looking for her ghost that somewhere in her immediate family background Lazarus must have been French because the statue itself came from France. But Lazarus wasnt French at all. She was a fifth-generation American. Her parents, Moses and Esther Lazarus, who did rather well in the sugar-refining business, traced their family roots from Portugal. Most of their original forebears were indeed from that part of the world. But not all of them.

Among the lesser-known branches in the family tree was one stretching back to Germany, Moses Levy, who was born there in 1665, went on to England before heading over to the New World. Thanks to the troves of new material now available on websites such as Ancestry.com, its now possible to learn more specifics about people like him: the fact that he wore a slightly ridiculous wig, for instance, or that a brother back in London, Joseph, got done for fraud and was sentenced to an hour in pillory as well as two years in the slammer.

Moses arrived in New York by boat in 1695. Rather a bit too early in the piece to encounter any statue in the harbor, but in sufficient time to meet and marry a poet, Grace Mears. They had seven children. A daughter, Rachel, became the great-great grandmother of Emma Lazarus.

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Meanwhile on the other side of the Atlantic, Joseph went forth and multiplied, too. This is where the story gets interesting for me, because that side of the family mainly stayed on in the British capital. Most of them were successful, or at any rate avoided the pillory, with one descendent marrying into another establishment family with German roots, the Karamellis. These Karamellis seem to have been a lively bunch. One of them, Leo, translated Yiddish (in his words, the lowest of the low German dialects) into English at the inquest for the victims of the Jack the Ripper.

Leos sister, Rachel, named her daughter Rachel, who in turn named her own daughter (presumably for variety of spelling) Rachael. The last of these Rachels, who was born in 1901, married an East End restaurateur called Samuel Levy. Thirty years on, she had her own child whom she did not name Rachel because it was a boy. So she called him Lionel instead. He was my late father.

Thus the idealistic words about the family of man, as issued from my blood relative Emma Lazarus a fifth cousin four times removed remain vouchsafed even today. And tomorrow, or next year, when the crazy cultural smoke over the American harbor hopefully disappears, I look forward to getting back to New York and beholding them once again.

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It's all relative with the Statue of Liberty - The Spectator USA