Thematic ETFs are red-hot. Analysts assess the market’s newest darlings – CNBC

Thematic ETFs are trending.

From the numerous attempts to list a bitcoin ETF to the rise and plateau of cannabis-based funds, thematic ETFs have been growing in popularity for years. Lately, the focus has shifted to new-age technologies such as cloud computing, artificial intelligence, fintech and social media as well as social causes including environmental protection and civil rights.

According to Global X, which presides over a suite of thematic ETFs including the Global X Cloud Computing ETF (CLOU) and the Global X Robotics and Artificial Intelligence ETF (BOTZ), assets under management in thematic ETFs are up 65% quarter over quarter.

"We really think thematic ETFs are here to stay," Todd Rosenbluth, senior director of ETF and mutual fund research at CFRA Research, told CNBC's "ETF Edge" on Monday.

He highlighted the WisdomTree Cloud Computing Fund(WCLD), theFirst Trust NASDAQ Cybersecurity ETF(CIBR), Ark Invest's Genomic Revolution ETF (ARKG) andiShares Global Clean Energy ETF(ICLN) as just a few names that have recently seen interest from investors.

"They're not only a replacement for some of the sector ETFs you talked about, but if you're an old stock jockey, as I used to be as a financial advisor, these ETFs offer the benefits of diversification in a relatively low cost structure and one trade to be able to get 30, 40, 50 names to get your exposure," Rosenbluth said. "It's a really good concept."

Part of the appeal is also the ability to adjust your exposure according to your own views, Chris Hempstead, director of institutional business development at IndexIQ, said in the same "ETF Edge" interview.

"It's not always about artificial intelligence. It's not always about electronic vehicles and things like that. Sometimes thematic can also include a way to express an overweight or an underweight, in some cases, to a particular sector," Hempstead said.

"We talk about broad-based, passive indices like health care or energy," he said. "But if you want to overweight oncology, for example, you can find a thematic ETF that overweights those names."

Low-volatility or currency-hedged products can also be considered thematic, Hempstead said, pointing to his firm's ownIQ S&P High Yield Low Volatility Bond ETF(HYLV).

"That's also a thematic way of expressing your view in a broader index-based world," Hempstead said.

If anything, the recent success of Direxion's Work From Home ETF (WFH) proves that thematic ETFs are here for the long haul, Rosenbluth said.

Since its launch on June 25, WFH is up nearly 2% and has accrued nearly $62 million in assets under management.

"This is just three weeks old. It used to be [that] investors would wait three years before buying an ETF, and then they started going into it earlier once they got a look at the underlying holdings. Three weeks is really impressive," Rosenbluth said. "It's a sign that this ETF has certainly resonated with investors."

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Thematic ETFs are red-hot. Analysts assess the market's newest darlings - CNBC

Edutainment Market 2020-2025 Adoption Of Cloud Computing Technologies Boost The Growth With Pororo Parks, Kidzania, Plabo, Legoland Discovery Center,…

The Edutainment Market is expected to grow worth of US$ +11348 Million and at a CAGR of +16% over the forecast period 2020-2025.

A comprehensive statistical scope of Edutainment market has been published by The Research Insights. Acumen business knowledge of the competent team provides a precise overview of qualitative and quantitative analysis techniques which are used to examine trade data. This accurate market wisdom provides useful insights into dynamic aspects of the businesses, such as shares, profit margin, thus drawing attention to basic crucial factors of a business structure.

The growing penetration of internet services and technological advancement in the education sector is attracting investment. Also, it has been noticed that out of more than US$ 37 Billion in the education technology since 1997, over 60% of the investment comes from the past three years. This is encouraging the adoption of the edutainment market. Moreover, the integration of the AI, augmented reality and virtual reality into the education sector is driving the market growth.

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Pororo Parks, Kidzania, Plabo, Legoland Discovery Center, CurioCity, Kindercity, Mattel Play Town, Totters Otterville, Kidz Holding S.A.L, Little Explorers

Revolution in the games, need of physical activity in todays lifestyle and substantial increasing investments by established players are some of the major factors fueling the growth of the edutainment market. However, the design of edutainment games and lack of knowledge are some of the major challenges that are hampering the edutainment market growth.

Inclusive of a blanket survey for global regions, such as North America, Latin America, Japan, Asia-Pacific and India have been analyzed on the basis of productivity of several industries, the report provides a thorough scope of the current global market size. In addition, the report also offers an appropriate synopsis of leading global key players of the market.

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Table of Content:

Global Edutainment Market Research Report 2020-2025

Chapter 1: Industry Overview

Chapter 2: Edutainment Market International and China Market Analysis

Chapter 3: Environment Analysis of Market.

Chapter 4: Analysis of Revenue by Classifications

Chapter 5: Analysis of Revenue by Regions and Applications

Chapter 6: Analysis of Edutainment Market Revenue Market Status.

Chapter 7: Analysis of Industry Key Manufacturers

Chapter 8: Sales Price and Gross Margin Analysis of Market.

Chapter 9: Continue to TOC

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At least seven British universities hit by ransomware attack on cloud provider – www.computing.co.uk

At least six British universities were targeted in Blackbaud ransomware attack

At least seven higher education institutions in the UK have been hit in a global ransomware attack targeting US-based cloud computing provider Blackbaud.

Blackbaud's systems were hacked in May, but the incident was not publicly disclosed until 16th July.

According to the BBC, the institutions that were affected in the cyber attack include:

In a statement on its website, Blackbaud revealed that it had paid an undisclosed ransom to hackers after being promised that the data stolen from the Blackbaud's systems would be destroyed.

"Because protecting our customers' data is our top priority, we paid the cybercriminal's demand with confirmation that the copy they removed had been destroyed," the company said.

"Based on the nature of the incident, our research and third party (including law enforcement) investigation, we have no reason to believe that any data went beyond the cybercriminal, was or will be misused; or will be disseminated or otherwise made available publicly," it added.

No bank account details, credit card details or social security numbers of any individual were accessed by hackers, according to the company.

According to BBC, the hackers were able to steal names, gender, contact information, email address and donation history in some cases.

Some affected institutions, including the University of London, University of York, Oxford Brookes and Ambrose University have written to their former students, faculty and donors about the security incident warning them that their data may have been compromised in the breach.

In a statement, the University of York said that university officials were "working with Blackbaud to understand why there was a delay between them finding the breach and notifying us, as well as what actions they have taken to increase their security."

The university said it has informed Information Commissioner Office (ICO) about the incident and was "awaiting further guidance".

The ICO said: "People have the right to expect that organisations will handle their personal information securely and responsibly."

"The University of York has reported an incident to us, and we will be making inquiries."

But, this is not the first incident in which British universities have been targeted in cyber attacks.

In 2018, a group of Iranian hackers attempted to hack into the systems of 18 or more UK universities in a campaign that lasted for several months and successfully penetrated the defences of at least one target.

The hackers tried to phish people with university log-ins in an attempt to learn their passwords. To make the emails look genuine, the group created several fake websites that looked similar to the originals.

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At least seven British universities hit by ransomware attack on cloud provider - http://www.computing.co.uk

AWS And VW Open Industrial Cloud Project To Partners – CRN: Technology news for channel partners and solution providers

Automaker Volkswagen Group and cloud computing partner Amazon Web Services are opening up their industrial cloud project to other manufacturing and technology companies, with AWS Partner Network members ABB, ASCon, BearingPoint, Celonis, Drr, GROB-WERKE, MHP, NavVis, SYNAOS, Teradata and WAGO joining in the first cohort contributing software applications.

The Seattle-based AWS and Germanys VW announced a multi-year agreement in March 2019 to build the industrial cloud, a cloud-based digital production platform to help transform the automotive companys manufacturing and logistics processes using AWS cloud infrastructure and compute services and technologies including internet of things (IoT), machine learning and analytics. The goal is to digitize and connect production and logistics data at VWs 124 manufacturing plants to improve efficiencies and increase the quality of VW vehicles.

The opportunity for AWS to tackle industrial transformation or Industry 4.0 at a mega-scale with the leading automotive manufacturer is a formidable challenge, according to Dirk Didascalou, vice president of IoT at AWS (pictured above).

But then having the chance to open this up to the entire value chain, thats truly a transformative process, said Didascalou, who noted VW itself has 1,500 suppliers with 30,000 of their own factories. If you really want the overall industrial industry to benefit from the cloud, from new technologies and digitalization, the only way to do this is open, becausethe biggest impediment to industry transformation was the siloing. Making this an open architecture, inviting everybody to participate and benefit, will truly havethe macro-optimization that digitalization can bring to this industry.

Participating partners will contribute industrial software applications that will be available to individual VW plants via an app store-like approach to help optimize their operations.

In addition to AWS hyperscale and cloud capabilities, VW knew it needed other partners already in the automotive business in terms of manufacturing, level of use case capabilities and supply chain logistics, according to Nihar Patel, who works on strategy with VWs chief information officer as executive vice president of new business development for the Americas and Germany.

Our starting point has been our production systems, our manufacturing systems, so those partners who help us put the things together -- from stamping to robotics, to paint shops, paint booths, he said. Then as we broaden thattheres the whole value chain of incoming parts all the way until the vehicle departs.

Siemens, an AWS Advanced Technology Partner, has been an integration partner for the project since March 2019.

They are really great on the shop floor, they really understand how that works, Didascalou said, noting Siemens MindSphere product -- a cloud-based, open IoT operating system that connects customers products, plants, systems and machines and its factory automation capabilities.

Some of the new partners announced today already have been working with VW.

Now, to put them on to an AWS level of technology, activate that into our plantsand then scale it across the plants -- thats something we would always need, Patel said. This is the right time now to open it up, because weve done enough testing, weve done enough PDCA -- plan, do, check, adjustments. It was now time to start scaling with a few people and learn a little bit more before we take bigger steps later on.

Teradata, a San Diego cloud data and analytics company with industrial IoT experience, will be providing cloud-based data analytics to optimize VWs production processes and improve plant productivity.

Our cloud-based data and analytics solution provides comprehensive data intelligence and supports Volkswagen in fully leveraging the value of data in production to increase efficiency and quality, Sascha Puljic, vice president of Central Europe at Teradata, an AWS Advanced Technology and Consulting Partner, said in a statement.

One initial use case is leveraging the companys Teradata Vantage analytics platform to analyze data from VWs welding procedures in manufacturing to improve the production and quality of manufactured parts.

Zurich-based ABB, a provider of industrial robots and robot software, equipment and application solutions, said the VW partnership is vital to ensuring its industrial cloud solutions fulfill and exceed customer expectations.

We will combine our domain expertise and advanced analytics with the industrial cloud to enhance system overall equipment effectiveness, said Michael Larsson, managing director of automotive original equipment manufacturing for ABB Robotics. By predicting micro-stops, for example, we can help VW improve their productivity, quality and flexibility.

Miguel Milano, co-owner and chief revenue officer at Celonis, called his companys AI-enhanced process mining and process excellence software a game-changer that drives significant bottom-line value for the automotive industry across key processes in production, sales and marketing, finance, and supply chain and logistics.

We cant wait to deliver this value to all of Volkswagens lines of business, Milano said. Celonis is based in Munich and has U.S. headquarters in New York.

Since unveiling the industrial cloud project in March 2019, VW and AWS have put together use cases to find solutions to problems or challenges affecting VWs production system.

We were able to take AWS tools sets, configure them towards our VW requirements and then launch them into about three to four plants at the end of last year, Patel said. This year, we have a goal of going all the way across almost five times those numbers of use cases across five times the number of plants.

One use case was a digital shop floor management application, deployed in multiple VW plants, that helps plant operators and managers measure their equipments effectiveness.

Thats one of the key KPIs (key performance indicators) that you really want to understand in your manufacturing lines, Didascalou said.

AWS also developed an application for VW press shops, where steel is processed for vehicle body components, aimed at improving quality and throughput.

That was one of the most important agreements that we made -- that we dont first have a few years of platform development, that immediately we needed to create these use cases that deliver value for VW, Didascalou said. Thats the only way that you can prove what we build together delivers the actual business results, both for the factories themselves, but VW overall.

Other partners who join the industrial cloud effort whether its independent software vendors, hardware vendors or system integrators also can benefit from the applications created for the industrial cloud project. Development is under way for a marketplace for their industrial applications for use outside of Volkswagen.

They can make their capabilities available first for VW to get their digital production running, but then they could use the very same applications and use cases (so) their own manufacturing and their own supply chain is also getting the same benefits and improvements, Didascalou said.

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AWS And VW Open Industrial Cloud Project To Partners - CRN: Technology news for channel partners and solution providers

Cloud Computing in Healthcare Market Segmentation By Qualitative And Quantitative Research Incorporating Impact Of Economic and Non-Economic Aspects…

New Jersey, United States,- The recent report on Cloud Computing in Healthcare Market offered by Verified Market Research, comprises of a comprehensive investigation into the geographical landscape, industry size along with the revenue estimation of the business. Additionally, the report also highlights the challenges impeding market growth and expansion strategies employed by leading companies in the Cloud Computing in Healthcare market.

This is the most recent report inclusive of the COVID-19 effects on the functioning of the market. It is well known that some changes, for the worse, were administered by the pandemic on all industries. The current scenario of the business sector and pandemics impact on the past and future of the industry are covered in this report.

In market segmentation by manufacturers, the report covers the following companies-

Exploring the growth rate over a period

Business owners looking to scale up their business can refer this report that contains data regarding the rise in sales within a given consumer base for the forecast period, 2020 to 2027. Product owners can use this information along with the driving factors such as demographics and revenue generated from other products discussed in the report to get a better analysis of their products and services. Besides, the research analysts have compared the market growth rate with product sales to enable business owners to determine the success or failure of a specific product or service.

By Type

Type 1

Type 2

By Application

Application1

Application 2

Global Cloud Computing in Healthcare Market Report 2020 Market Size, Share, Price, Trend and Forecast is a professional and in-depth study on the current state of the global Cloud Computing in Healthcare industry.

The report at a glance

The Cloud Computing in Healthcare market report focuses on economic developments and consumer spending trends across different countries for the forecast period 2019 to 2026. The research further reveals which countries and regions will have a better standing in the years to come. Apart from this, the study talks about the growth rate, market share as well as the recent developments in the Cloud Computing in Healthcare industry worldwide. Besides, the special mention of major market players adds importance to the overall market study.

Market segment by Region/Country including:

North America (United States, Canada and Mexico)Europe (Germany, UK, France, Italy, Russia and Spain etc.)Asia-Pacific (China, Japan, Korea, India, Australia and Southeast Asia etc.)South America (Brazil, Argentina, Colombia and Chile etc.)Middle East & Africa (South Africa, Egypt, Nigeria and Saudi Arabia etc.)

The research provides answers to the following key questions:

What is the expected growth rate of the Cloud Computing in Healthcare market? What will be the market size for the forecast period, 20202027?

What are the major driving forces responsible for transforming the trajectory of the industry?

Who are major vendors dominating the Cloud Computing in Healthcare industry across different regions? What are their winning strategies to stay ahead in the competition?

What are the market trends business owners can rely upon in the coming years?

What are the threats and challenges expected to restrict the progress of the industry across different countries?

What are the key opportunities that business owners can bank on for the forecast period, 20202027?

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To summarize, the global Cloud Computing in Healthcare market report studies the contemporary market to forecast the growth prospects, challenges, opportunities, risks, threats, and the trends observed in the market that can either propel or curtail the growth rate of the industry. The market factors impacting the global sector also include provincial trade policies, international trade disputes, entry barriers, and other regulatory restrictions.

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Verified Market Research is a leading Global Research and Consulting firm servicing over 5000+ customers. Verified Market Research provides advanced analytical research solutions while offering information enriched research studies. We offer insight into strategic and growth analyses, Data necessary to achieve corporate goals, and critical revenue decisions.

Our 250 Analysts and SMEs offer a high level of expertise in data collection and governance use industrial techniques to collect and analyze data on more than 15,000 high impact and niche markets. Our analysts are trained to combine modern data collection techniques, superior research methodology, expertise, and years of collective experience to produce informative and accurate research.

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Cloud Computing in Healthcare Market Segmentation By Qualitative And Quantitative Research Incorporating Impact Of Economic and Non-Economic Aspects...

Cell Biology Cloud Computing Market 2020:Key market Insights, Drivers and Restraints, Opportunities and Challenges, Sales and Revenue and Forecast…

QY Research has Published Latest Trending Report on Global Cell Biology Cloud Computing Market

Los Angeles, United State, The report titledGlobal Cell Biology Cloud Computing Marketis one of the most comprehensive and important additions to QY Researchs archive of market research studies. It offers detailed research and analysis of key aspects of the global Cell Biology Cloud Computing market. The market analysts authoring this report have provided in-depth information on leading growth drivers, restraints, challenges, trends, and opportunities to offer a complete analysis of the global Cell Biology Cloud Computing market. Market participants can use the analysis on market dynamics to plan effective growth strategies and prepare for future challenges beforehand. Each trend of the global Cell Biology Cloud Computing market is carefully analyzed and researched about by the market analysts.

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The Essential Content Covered in the GlobalCell Biology Cloud Computing Market Report:

* Top Key Company Profiles.* Main Business and Rival Information* SWOT Analysis and PESTEL Analysis* Production, Sales, Revenue, Price and Gross Margin* Market Share and Size

Global Cell Biology Cloud Computing Market is estimated to reach xxx million USD in 2020 and projected to grow at the CAGR of xx% during 2020-2026. According to the latest report added to the online repository of QY Research the Cell Biology Cloud Computing market has witnessed an unprecedented growth till 2020. The extrapolated future growth is expected to continue at higher rates by 2025.

Top Players of Cell Biology Cloud Computing Market are Studied: , Accenture, Amazon Web Services, Benchling, Cisco Systems, Dell Emc, IBM, DXC Technology, Oracle, ScaleMatrix, IPERION, NovelBio

The report provides a 6-year forecast (2020-2026) assessed based on how the Cell Biology Cloud Computing market is predicted to grow in major regions likeUSA, Europe, Japan, China, India, Southeast Asia, South America, South Africa, Others.

Segmentation by Type:, Public Cloud Computing, Private Cloud Computing, Hybrid Cloud Computing

Segmentation by Application:,Genomics, Diagnostics, Clinical Trials, Pharma Manufacturing, Others

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Table of Contents

1 Market Overview of Cell Biology Cloud Computing1.1 Cell Biology Cloud Computing Market Overview1.1.1 Cell Biology Cloud Computing Product Scope1.1.2 Market Status and Outlook1.2 Global Cell Biology Cloud Computing Market Size Overview by Region 2015 VS 2020 VS 20261.3 Global Cell Biology Cloud Computing Market Size by Region (2015-2026)1.4 Global Cell Biology Cloud Computing Historic Market Size by Region (2015-2020)1.5 Global Cell Biology Cloud Computing Market Size Forecast by Region (2021-2026)1.6 Key Regions Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.1 North America Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.2 Europe Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.3 China Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.4 Rest of Asia Pacific Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.5 Latin America Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.6.6 Middle East & Africa Cell Biology Cloud Computing Market Size YoY Growth (2015-2026)1.7 Coronavirus Disease 2019 (Covid-19): Cell Biology Cloud Computing Industry Impact1.7.1 How the Covid-19 is Affecting the Cell Biology Cloud Computing Industry

1.7.1.1 Cell Biology Cloud Computing Business Impact Assessment Covid-19

1.7.1.2 Supply Chain Challenges

1.7.1.3 COVID-19s Impact On Crude Oil and Refined Products1.7.2 Market Trends and Cell Biology Cloud Computing Potential Opportunities in the COVID-19 Landscape1.7.3 Measures / Proposal against Covid-19

1.7.3.1 Government Measures to Combat Covid-19 Impact

1.7.3.2 Proposal for Cell Biology Cloud Computing Players to Combat Covid-19 Impact 2 Cell Biology Cloud Computing Market Overview by Type2.1 Global Cell Biology Cloud Computing Market Size by Type: 2015 VS 2020 VS 20262.2 Global Cell Biology Cloud Computing Historic Market Size by Type (2015-2020)2.3 Global Cell Biology Cloud Computing Forecasted Market Size by Type (2021-2026)2.4 Public Cloud Computing2.5 Private Cloud Computing2.6 Hybrid Cloud Computing 3 Cell Biology Cloud Computing Market Overview by Type3.1 Global Cell Biology Cloud Computing Market Size by Application: 2015 VS 2020 VS 20263.2 Global Cell Biology Cloud Computing Historic Market Size by Application (2015-2020)3.3 Global Cell Biology Cloud Computing Forecasted Market Size by Application (2021-2026)3.4 Genomics3.5 Diagnostics3.6 Clinical Trials3.7 Pharma Manufacturing3.8 Others 4 Global Cell Biology Cloud Computing Competition Analysis by Players4.1 Global Cell Biology Cloud Computing Market Size (Million US$) by Players (2015-2020)4.2 Global Top Manufacturers by Company Type (Tier 1, Tier 2 and Tier 3) (based on the Revenue in Cell Biology Cloud Computing as of 2019)4.3 Date of Key Manufacturers Enter into Cell Biology Cloud Computing Market4.4 Global Top Players Cell Biology Cloud Computing Headquarters and Area Served4.5 Key Players Cell Biology Cloud Computing Product Solution and Service4.6 Competitive Status4.6.1 Cell Biology Cloud Computing Market Concentration Rate4.6.2 Mergers & Acquisitions, Expansion Plans 5 Company (Top Players) Profiles and Key Data5.1 Accenture5.1.1 Accenture Profile5.1.2 Accenture Main Business and Companys Total Revenue5.1.3 Accenture Products, Services and Solutions5.1.4 Accenture Revenue (US$ Million) (2015-2020)5.1.5 Accenture Recent Developments5.2 Amazon Web Services5.2.1 Amazon Web Services Profile5.2.2 Amazon Web Services Main Business and Companys Total Revenue5.2.3 Amazon Web Services Products, Services and Solutions5.2.4 Amazon Web Services Revenue (US$ Million) (2015-2020)5.2.5 Amazon Web Services Recent Developments5.3 Benchling5.5.1 Benchling Profile5.3.2 Benchling Main Business and Companys Total Revenue5.3.3 Benchling Products, Services and Solutions5.3.4 Benchling Revenue (US$ Million) (2015-2020)5.3.5 Cisco Systems Recent Developments5.4 Cisco Systems5.4.1 Cisco Systems Profile5.4.2 Cisco Systems Main Business and Companys Total Revenue5.4.3 Cisco Systems Products, Services and Solutions5.4.4 Cisco Systems Revenue (US$ Million) (2015-2020)5.4.5 Cisco Systems Recent Developments5.5 Dell Emc5.5.1 Dell Emc Profile5.5.2 Dell Emc Main Business and Companys Total Revenue5.5.3 Dell Emc Products, Services and Solutions5.5.4 Dell Emc Revenue (US$ Million) (2015-2020)5.5.5 Dell Emc Recent Developments5.6 IBM5.6.1 IBM Profile5.6.2 IBM Main Business and Companys Total Revenue5.6.3 IBM Products, Services and Solutions5.6.4 IBM Revenue (US$ Million) (2015-2020)5.6.5 IBM Recent Developments5.7 DXC Technology5.7.1 DXC Technology Profile5.7.2 DXC Technology Main Business and Companys Total Revenue5.7.3 DXC Technology Products, Services and Solutions5.7.4 DXC Technology Revenue (US$ Million) (2015-2020)5.7.5 DXC Technology Recent Developments5.8 Oracle5.8.1 Oracle Profile5.8.2 Oracle Main Business and Companys Total Revenue5.8.3 Oracle Products, Services and Solutions5.8.4 Oracle Revenue (US$ Million) (2015-2020)5.8.5 Oracle Recent Developments5.9 ScaleMatrix5.9.1 ScaleMatrix Profile5.9.2 ScaleMatrix Main Business and Companys Total Revenue5.9.3 ScaleMatrix Products, Services and Solutions5.9.4 ScaleMatrix Revenue (US$ Million) (2015-2020)5.9.5 ScaleMatrix Recent Developments5.10 IPERION5.10.1 IPERION Profile5.10.2 IPERION Main Business and Companys Total Revenue5.10.3 IPERION Products, Services and Solutions5.10.4 IPERION Revenue (US$ Million) (2015-2020)5.10.5 IPERION Recent Developments5.11 NovelBio5.11.1 NovelBio Profile5.11.2 NovelBio Main Business and Companys Total Revenue5.11.3 NovelBio Products, Services and Solutions5.11.4 NovelBio Revenue (US$ Million) (2015-2020)5.11.5 NovelBio Recent Developments 6 North America Cell Biology Cloud Computing by Players and by Application6.1 North America Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)6.2 North America Cell Biology Cloud Computing Market Size by Application (2015-2020) 7 Europe Cell Biology Cloud Computing by Players and by Application7.1 Europe Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)7.2 Europe Cell Biology Cloud Computing Market Size by Application (2015-2020) 8 China Cell Biology Cloud Computing by Players and by Application8.1 China Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)8.2 China Cell Biology Cloud Computing Market Size by Application (2015-2020) 9 Rest of Asia Pacific Cell Biology Cloud Computing by Players and by Application9.1 Rest of Asia Pacific Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)9.2 Rest of Asia Pacific Cell Biology Cloud Computing Market Size by Application (2015-2020) 10 Latin America Cell Biology Cloud Computing by Players and by Application10.1 Latin America Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)10.2 Latin America Cell Biology Cloud Computing Market Size by Application (2015-2020) 11 Middle East & Africa Cell Biology Cloud Computing by Players and by Application11.1 Middle East & Africa Cell Biology Cloud Computing Market Size and Market Share by Players (2015-2020)11.2 Middle East & Africa Cell Biology Cloud Computing Market Size by Application (2015-2020) 12 Cell Biology Cloud Computing Market Dynamics12.1 Industry Trends12.2 Market Drivers12.3 Market Challenges12.4 Porters Five Forces Analysis 13 Research Finding /Conclusion 14 Methodology and Data Source 14.1 Methodology/Research Approach14.1.1 Research Programs/Design14.1.2 Market Size Estimation14.1.3 Market Breakdown and Data Triangulation14.2 Data Source14.2.1 Secondary Sources14.2.2 Primary Sources14.3 Disclaimer14.4 Author List

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Cell Biology Cloud Computing Market 2020:Key market Insights, Drivers and Restraints, Opportunities and Challenges, Sales and Revenue and Forecast...

Report Explained: The Potential Impact Of Coronavirus (Covid-19) For Healthcare Cloud Computing Market | Product Type, Application, Share and Size -…

This Healthcare Cloud Computing market report encases comprehensive investigation on the market available and are overviewed through volume and worth data endorsed on three methodologies including top associations earnings. It wraps up with careful and real market estimations considering all the limits and market components. Every fundamental and unequivocal detail for the new development and restriction of the market is referenced in fine concentrations with game plans and proposition that may impact the market in not all that far off future. Division of the market are thought unequivocally to give noteworthy data for important market adventures.

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

Healthcare Cloud Computing MarketKey Players: CareCloud Corporation, ClearData Networks Inc, athenahealth Inc, Cerner Corporation, Epic Systems Corporation, NextGen Healthcare Information Systems LLC, Carestream Health Inc, Dell Inc, DICOM Grid Inc

In spite of the fact that the COVID-19 pandemic keeps on changing the development of different businesses, the quick effect of the flare-up is fluctuated. While a couple of businesses will enlist a drop in demand, various others will keep on unscathed and show promising development opportunities. MarketResearch.Bizs in-depth research has all your needs covered as our examination reports incorporate all predictable market situations, including pre-and post-COVID-19 investigation.

(*** Our analysis includes the investigation of the market taking over the effect of the COVID-19 pandemic. It would be ideal if you connect with us to get your hands on a thorough inclusion of the effect of the current circumstance available. Our expert group of analysts will give according to report altered to your requirement.)

Main pointers featured in the Healthcare Cloud Computing market report:

Highlights the following key factors:

Report Objectives

There Are 13 Chapters To Thoroughly Display The Healthcare Cloud Computing Market:

Chapter 1:Global Healthcare Cloud Computing Market Overview, Product Overview, Market Segmentation, Market Overview of Regions, Market Dynamics, Limitations, Opportunities and Industry News and Policies.

Chapter 2:Global Healthcare Cloud Computing Market Chain Analysis, Upstream Raw Material Suppliers, Major Players, Production Process Analysis, Cost Analysis, Market Channels and Major Downstream Buyers.

Chapter 3:Value Analysis, Production, Growth Rate and Price Analysis by Type of Healthcare Cloud Computing.

Chapter 4:Downstream Characteristics, Consumption and Market Share by Application of Healthcare Cloud Computing.

Chapter 5:Production Volume, Price, Gross Margin, and Revenue ($) of Healthcare Cloud Computing by Regions (2013-2020).

Chapter 6:Healthcare Cloud Computing Production, Consumption, Export and Import by Regions (2013-2020).

Chapter 7:Healthcare Cloud Computing Market Status and SWOT Analysis by Regions.

Chapter 8:Global Competitive Landscape, Product Introduction, Company Profiles, Market Distribution Status by Players of Healthcare Cloud Computing.

Chapter 9:Healthcare Cloud Computing Market Analysis and Forecast by Type and Application (2020-2029).

Chapter 10:Global Market Analysis and Forecast by Regions (2020-2029).

Chapter 11:Global Industry Characteristics, Key Factors, New Entrants SWOT Analysis, Investment Feasibility Analysis.

Chapter 12:Market Conclusion of the Whole Report.

Chapter 13:Appendix Such as Methodology and Data Resources of This Research

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Report Explained: The Potential Impact Of Coronavirus (Covid-19) For Healthcare Cloud Computing Market | Product Type, Application, Share and Size -...

Aerospace industry takes off in the Chihuahua desert – Border Report

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

Victor Acosta, another worker, watched from the sidelines.

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

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

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

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

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

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

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

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

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

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Aerospace industry takes off in the Chihuahua desert - Border Report

‘Don’t Give Up on Your Dreams’: Rendezvous with Kashmir’s Aerospace Girl – MENAFN.COM

(MENAFN - Kashmir Observer) Faiqa Anbreen

FAIQA Anbreen is an aerospace engineer pursuing doctorate in Engineering and Mathematics in United States.

As a young girl fascinated by physics and mathematics, she made up her mind to be 'among stars' after watching televised crash of the celebrated Indian astronaut's space shuttle.

Her resolve to make a name in a male-dominated profession has already made Faiqa an inspiration for many youngsters back home.

In a candid chat with Kashmir Observer, the aerospace girl talks about her passion and profession.

Please tell us something about your current professional engagements and your academic journey?

Well, I'm a Ph.D. student in aerospace engineering and computational mathematics at California State University and Claremont Graduate University. I also work for Safran as a proposal engineer.

Safran is an international high-technology company catering to aviation, space and defense markets.

I did my initial schooling from Shiekhul Alam Islamic Model (SIM) School, Charari Sharief and later on joined Delhi Public School (DPS), Srinagar where I passed my Senior Secondary School Examination.

Both these schools had a constructive role in shaping up who I am today. SIM offered a decent environment to be able to ask questions but DPS offered more resources and a platform to develop a multi-dimensional personality.

Later on, I started my career at Amity University where I finished Bachelors in Aerospace Engineering, and then I came to US for Masters at California State University.

Aerospace is one of the toughest engineering streams, how did you get into it?

As a curious child, when someone used to ask me about my career goals, my response would be 'a scientist'.

When you start learning about great scientists like Isaac Newton and Albert Einstein, it gets quite fascinating to know how they came up with such complicated laws and equations. Only with time, one realizes that it takes an enormous effort and dedication to be a scientist.

I've always been interested in reading about planets, stars, and creation of the universe and would ask teachers questions to which sometimes they wouldn't even have answers.

In 2003, I watched space shuttle Columbia disintegrating on re-entry into the earth's atmosphere. Returning from a space mission, it took precious lives of six astronauts. It may sound counterintuitive that a disaster helped me shape up an idea in my head that I want to become an aerospace engineer.

Kalpana Chawla, the first Indian astronaut, got killed in that accident. Reading her biography has always been exciting. What she studied and how she reached NASA always intrigued me. It was this event that in some way helped me to decide and pursue Aerospace Engineering as a career choice.

But now, all the research I am doing is more motivated by working on something that furthers the aerospace technology and solve some of the unexplored problems of computational fluid dynamics.

Throughout your academic journey, what kept you motivated, focused and energized to keep going?

I feel as humans, we continue to keep finding the meaning of life. There's a curiosity and inquisition that keeps pushing you to know more about this universe and existence. And I consider science feeds to that curiosity within me.

Aerospace is all about physics and mathematics. Those things keep me interested and motivated.

I still sometimes go back to read Class 9 Physics textbook, where we start understanding physics at a detailed level. Physics is at the heart of the whole universe. The manifestations of the subject amaze me, from the order of the universe to the music; it keeps me glued to what I'm studying and what I want to do in the future.

Besides, I have always tried to be well-balanced in everything I do.

Data shows that there aren't many women in this area. So how does it feel to create a niche in a male-dominated field?

Taking up aerospace engineering after Class 12 was like jumping into a dark well. I didn't know anyone in this field I could consult, I hadn't checked any statistics. All I was doing was following my instincts and believing in myself. I always focused on the work rather than the difficulties and limitations.

I have had situations where I have been the only woman in a group of male engineers doing projects or working with them. This not only inspires me in many ways but also makes me realize that we should have more women in this field.

When I look back, I don't see many precedents among women to follow from Kashmir but I think there are a lot in the coming generation who have demonstrated enormous interest in the field who look up to me as a precedent. And I try my best to pass on my experiences to whoever approaches me.

Knowing yourself is the beginning of all wisdom. What've you learned about yourself in this journey?

It's certain that we live life forwards but it's amusing that we learn and understand about life backwards.

When we look back at the phases of life we have lived, the reflections of those become the steps of the staircase of experiences we climb on, towards more meaningfulness. It has been a natural progression towards learning about sensitivities and human biases, only after being exposed by living on my own in foreign lands from the last 11 years.

The most important learning that I would like to share is being open to criticism. Thank your critics for they are the people who help you in becoming better and bigger.

Taking criticism is very hard and people usually get offended by it, but for me, I've only realized how important feedback is for personal as well as professional growth.

Also, we are unknowingly wrapped up in a number of biases and the whole struggle is to take yourself out of them one by one.

I see life in pieces. For a moment I live in those small pieces. And it's only when you look back, you're able to see what the journey was about.

You said since your childhood days you were keen about giving back to the society. How do you intend to do that now?

Well, my idea of giving back to humanity is to develop faster planes one day. It's one of my core interests.

I'm part of JK Scientists, an NGO run by Kashmiri scientists and professionals all over the world. Also, whenever I'm home, I try to be part of student outreach programs to interact with students and mentor them.

With all the work you've done, are you interested in going up in space one day?

I've always had this dream of traveling to space and wanting to be an astronaut.

But being an astronaut is like one in a million jobs which literally takes a lot of learning and experience to get selected. The work I have done so far is just the stepping stone, but to go to space one day I have a thousand miles to go. For now, it looks like a distant dream, but I will keep dreaming.

What's the biggest challenge you've faced as a woman in aerospace industry?

It's very important to have good self-esteem and to keep reminding yourself that you're not alone, and there're other women out there in diverse fields. You've to keep feeling it and be confident that you can compete with men at the same level.

That's a bit challenging when you talk in general terms but personally speaking, I haven't faced any challenges that I can count on. I've found great mentors and colleagues who I learn from every day and who've always been there to guide me through.

What's the most memorable opportunity you have had as an aerospace engineer?

Well, it was to work as a design engineer for A350 which is the latest Airbus aircraft. I have designed some parts which are flying onboard. I cherish that most memorable opportunity.

How long will it take for the aerospace industry to recover from the impacts of Covid-19?

As per the estimates by the aircraft manufacturing giants Airbus and Boeing, the aerospace industry is expected to recover by 2023.

Already, the pandemic has impacted the aerospace industry very badly. We are seeing grounding of fleets, thousands of planes that should be in the sky are lying on the tarmac. There is the cancellation of orders of new planes, slashing down of expected aircraft deliveries for this year, and retiring of old fleets like Boeing767.

Also, airlines around the globe are seeking help from the governments to avoid a potential collapse. The number of aircrafts in passenger service fell by more than 60 percent from the start of the year. It will take time to bring the production rate back to what should have been now.

Any word for people back home?

My interactions with Kashmiri students make me believe that children aren't allowed to pursue their dreams easily, especially girls.

Parents impose their opinions and career choices on their children without considering what talent and interest the child has.

Students should stay persistent with what they want to do in life. They must believe in themselves, and make the people around them believe in their talent. Don't give up easily on your dreams.

For parents out there, I would say believe in your children, empower and guide them by letting them learn on their own by experiencing and exploring.

Family is the one of the most important influences in a child's life and family support plays a significant role in our success as individuals and as members of the society.

Personally speaking, my parents especially my mother always supported me to do what I was passionate about.

For those who want to pursue a career in aerospace, I would say read and familiarize yourself with the field and understand what you are getting into. It is a very vast field and has a lot of opportunities to explore.

Be Part of Quality Journalism

Quality journalism takes a lot of time, money and hard work to produce and despite all the hardships we still do it. Our reporters and editors are working overtime in Kashmir and beyond to cover what you care about, break big stories, and expose injustices that can change lives. Today more people are reading Kashmir Observer than ever, but only a handful are paying while advertising revenues are falling fast.

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'Don't Give Up on Your Dreams': Rendezvous with Kashmir's Aerospace Girl - MENAFN.COM

UK aerospace sector to benefit from 400 million funding to go green – GOV.UK

Aerospace jobs and supply chains across the UK will benefit from cutting-edge research and development projects announced today by the government and aerospace industry leaders.

Government grants totalling 200 million, delivered through the Aerospace Technology Institute (ATI) programme, will be matched by industry to create the total investment of 400 million in new research and technology, enabling ambitious projects to lift off and support the sectors recovery from the coronavirus pandemic.

New projects set to receive funding will include developing high performance engines, new wing designs, ultra-lightweight materials, energy-efficient electric components, and other brand new concepts to enhance innovation within the sector. A project led by Williams Advanced Engineering in Oxford, for example, will develop ultra-lightweight seat structures that will reduce an aircrafts fuel consumption.

The funding will also secure highly-skilled jobs in the UKs aerospace sector and will benefit companies of all sizes from Caldicot in Wales to Bedlington in the North of England. Higher education institutions will also be a part of the projects, including the universities of Nottingham and Birmingham.

The funding was announced today by Business Secretary Alok Sharma at Farnborough Connect, the virtual version of Farnborough International Airshow.

Secretary of State for Business, Energy and Industrial Strategy Alok Sharma said:

We have an incredible aerospace industry right here in the UK that defines the way aircraft are manufactured globally.

This 400 million ATI investment will help secure our world-leading position in developing new flight technology to make air travel safer and greener into the future.

The successful projects that will receive a share of the governments 200 million grant funding through the ATI programme, and match it with their own investment, include:

Stu Olden, Senior Commercial Manager for Defence, Aerospace & Emerging Markets at Williams Advanced Engineering, said:

A key benefit for us of the ATI support has been to enable accelerated development of the 3 companies involved in the consortium.

Additionally, by developing UK technologies and innovation, the ATI programme is enabling UK-based product development and, hopefully, future jobs. For Williams Advanced Engineering it has allowed us to participate in the aerospace sector as a non-traditional supplier.

During his speech today, the Business Secretary also announced the FlyZero initiative to kickstart exploration into zero-carbon emission commercial aircraft.

The FlyZero study will receive government funding and bring together around 100 experts to tackle issues involved in designing and building a commercially successful zero-emission aircraft. The study will create a strong basis for further research and development into a wide of technologies necessary for future flight, with the aim of securing future manufacturing in the UK.

This follows the launch of the Jet Zero Council, which brings industry and government together to make net zero emissions possible for future flights. The FlyZero study will feed into the work of the Council in defining and delivering this ambition.

Gary Elliott, Chief Executive of the Aerospace Technology Institute, said:

FlyZero represents an acceleration of the UKs ambition to lead the world in green aviation. These are challenging but also exciting times for the aerospace sector; we need to help UK companies to recover while also creating new approaches to technology development and innovation.

FlyZero will engage a team of highly-skilled engineers and technologists from across the UK to look into how to design and build a zero emission commercial aircraft, with the solid aim of securing future manufacturing in the UK.

The UK was the first major economy to commit to achieving net zero emissions by 2050, and over the past decade, the UK has cut carbon emissions by more than any similar developed country. In 2019, UK emissions were 42% lower than in 1990, while our economy grew by 72%.

Projects approved by the ATIs rigorous assessment programme create opportunities to secure jobs in research and manufacturing across the UK as well as sharing knowledge across industry and academia.

Further background on the projects:

The Aerospace Technology Institute (ATI) is at the heart of UK aerospace R&T. Working collaboratively across the UK aerospace sector and beyond, the Institute sets the national technology strategy to reflect the sectors vision and ambition. The ATI Programme is a joint government and industry commitment to invest 3.9 billion in research to 2026. In addition to the ATI Programme and FlyZero, the Institute also supports the supply chain through NATEP and aerospace start-ups through the ATI Boeing Accelerator.

Further information:

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UK aerospace sector to benefit from 400 million funding to go green - GOV.UK

All-electric aircraft are an option for aerospace impacted by Covid-19 – Aerospace Technology

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While the commercial aerospace industry has been gravely impacted by the Covid-19 pandemic, all-electric aircraft offer companies within supply chains an option to aid recovery. For example, Toray Industries supplies carbon fibre materials for aircraft such as the Boeing 777, Boeing 787 and Airbus A380. As airlines have cut orders for these aircraft due to the economic impact of the Covid-19 pandemic, companies such as Toray Industries within the supply chain stand to lose revenue. However, on 14 July, it was announcedthat Toray Industries and Lilium, a German electric aircraft start-up, have signed an agreement for the supply of carbon fibre composites.

GlobalData associate analyst Harry Boneham comments: This agreement demonstrates the opportunity for suppliers offered by all-electric aircraft. As conventional aircraft production has stalled, all-electric aircraft could serve as a source of business for struggling suppliers. The mode of flight offered by all-electric aircraft would be attractive in the post-Covid-19 market. Trends observed after previous crises such as 9/11 indicate that demand for smaller, narrow-body aircraft recovers quicker than demand for large, wide-body aircraft. This corresponds to the gradual increase in passenger demand volume, with larger aircraft requiring a high volume of passengers to be rendered profitable. Extrapolating this trend, arguably the short, small, cheap flights offered by all-electric aircraft would meet customer demand in the near-term.

Furthermore, all-electric aircraft such as these will be available in the near term. MagniX, a pioneer in all-electric aircraft development, expects Federal Aviation Administration (FAA certification) in late 2021. The International Air Transport Association (IATA) expects that air passenger volume will recover to pre-Covid-19 levels in 2023. These coinciding timeframes lend credence to the notion that all-electric aircraft could be included within the post-Covid-19 recovery of the commercial aerospace industry. Such an inclusion would widen the commercial aerospace industry to include travel solutions on regional, national and global scales, and would add opportunities within commercial aerospace supply chains. Traditional components such as turboshafts and fuel systems would be supplemented by novel components such as electric motors and batteries.

GlobalData is this websites parent business intelligence company.

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All-electric aircraft are an option for aerospace impacted by Covid-19 - Aerospace Technology

Aerospace and Life Sciences Testing, Inspection, and CertificationMarket 2020 Research Report by Absolute Reports include Size, Growth, Trends and…

Global Aerospace and Life Sciences Testing, Inspection, and CertificationMarket 2020-2027

GlobalAerospace and Life Sciences Testing, Inspection, and CertificationMarket Global Drivers, Restraints, Opportunities, Trends, and Forecasts up to 2027. Market Over viewing the present digitized world, 80% of the data generated is unstructured. Organizations are usingAerospace and Life Sciences Testing, Inspection, and Certificationtechnology to unravel the meaning of such data to leverage business strategies and opportunities. A myriad of unstructured data is available online in the form of audio content, visual content and social footprints.

The segmental analysis focuses on revenue and forecast by Type and by Application in terms of revenue and forecast for the period 2016-2027.The Report scope furnishes with vital statistics about the current market status and manufacturers. It analyzes the in-depth business by considering different aspects, direction for companies, and strategy in the industry.

The latestAerospace and Life Sciences Testing, Inspection, and Certificationmarket report published by Reports and Markets offers a competency-based analysis and global market estimate, developed using evaluable methods, to provide a clear view of current and expected growth patterns. The report also containsInternational Group market analysis by geographic location across the globe as well as major markets.

Our new sample is updated which correspond in new report showing impact of COVID-19 on Industry

The key manufacturers covered in this report are @SGS Group, Bureau Veritas, Dekra Certification, Intertek, TUV SUD, Eurofins Scientific, DNV GL, TUV Rheinland, UL LLC, ALS Limited, TUV Nord Group, Mistras Group, SAI Global, BSI Group, Exova Group, Applus+, Avomeen Analytical Services, Envigo, Medistri, Aptar Pharma (Gateway Analytical), and Kiwa Inspecta

ForBetter Understanding, Download Sample PDF Copy of Aerospace and Life Sciences Testing, Inspection, and CertificationMarket Research Report @

The report provides a calculated assessment of theAerospace and Life Sciences Testing, Inspection, and Certificationmarket data analyzed. It explains different opportunities for different industries, suppliers, organizations, and associations that offer different products and services, for example, by giving specific guidance on how to expand in the competition for reliable consumer services. The report provides detailed information on major market competitors and emerging companies with significant market share based on high-quality demand, revenue, sales, product manufacturers, and service providers.

Based on the demand and methods currently used by major market players, the market report provides detailed and succinct evaluations as well as predictions of structured future market growth rates. For better analysis, the report divides the market into different segments of the global market based on various parameters, including product or service quality, applications, and methods. The Aerospace and Life Sciences Testing, Inspection, and Certificationmarket report provides comprehensive statistics on changes in product types, innovation, and progress that may be caused by inconsequential variations in the product profile. Trends such as mergers and acquisitions play a critical role in the business operation and expansion as every region holds its own exclusivity in terms of production conditions, potential consumers, geographic benefits for resource procurement, and others.

Market Dynamics

Different parameters are used to identify either the growth of the Aerospace and Life Sciences Testing, Inspection, and Certificationmarket globally or the decline of the market. These different factors are comprehensively analyzed and solutions, as well as ways to increase the market share, are presented in the report. The market growth rate based on the volume of units sold and the value of each product manufactured is identified and is presented in detail. The market share occupied by each of the different products is analyzed for the base period that comprises the year 2016to the year 2027and the forecast period.

The report offers in-depth assessment of the growth and other aspects of the Aerospace and Life Sciences Testing, Inspection, and Certificationmarket in important countries (regions), including:

North America

Europe

Asia Pacific Counter

Middle East & Africa

Latin America

America Country (United States, Canada)

South America

Asia Country (China, Japan, India, Korea)

Europe Country (Germany, UK, France, Italy)

Other Country (Middle East, Africa, GCC)

Research Methodology

The data that has been collected is from a multitude of different services that include both primary and secondary sources. The data also includes a list of the different factors that affect the Aerospace and Life Sciences Testing, Inspection, and Certificationmarket either positively or negatively. The data has been subjected to a SWOT analysis that can be used to accurately predict the various parameters that are used to measure a companys growth. The strengths along with various weaknesses faced by a company are included in the report along with a comprehensive analysis of the different threats and opportunities that can be exploited.

Overview

The report published on the globalAerospace and Life Sciences Testing, Inspection, and Certificationmarket is a comprehensive analysis of a variety of factors that are prevalent in the Aerospace and Life Sciences Testing, Inspection, and Certificationmarket. An industrial overview of the global market is provided along with the market growth hoped to be achieved with the products that are sold.Major companies who occupy a large market share and the different products sold by them in the global market are identified and are mentioned in the report. The current market share occupied by the globalAerospace and Life Sciences Testing, Inspection, and Certificationmarket from the year 2016 to the year 2027has been presented.

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Report Answers Following Questions:

What are the factors driving the growth of the market?

What factors are inhibiting market growth?

What are the future opportunities in the market?

Which are the most dynamic companies and what are their recent developments within the Aerospace and Life Sciences Testing, Inspection, and CertificationMarket?

What key developments can be expected in the coming years?

What are the key trends observed in the market?

TABLE OF CONTENT

1 Report Overview

2 Global Growth Trends

3 Market Share by Key Players

4 Breakdown Data by Type and Application

5 United States

6 Europe

7 China

8 Japan

9 Southeast Asia

10 India

11 Central & South America

12 International Players Profiles

13 Market Forecast 2020-2027

14 Analysts Viewpoints/Conclusions

15 Appendix

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Market research is the new buzzword in the market, which helps in understanding the market potential of any product in the market. This helps in understanding the market players and the growth forecast of the products and so the company. This is where market research companies come into the picture. Reports And Markets is not just another company in this domain but is a part of a veteran group called Algoro Research Consultants Pvt. Ltd. It offers premium progressive statistical surveying, market research reports, analysis & forecast data for a wide range of sectors both for the government and private agencies all across the world.

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Aerospace and Life Sciences Testing, Inspection, and CertificationMarket 2020 Research Report by Absolute Reports include Size, Growth, Trends and...

AEROSPACE BEARINGS MARKET 2020 FUTURE TRENDS, DYNAMIC GROWTH & FORECAST TO 2028 | EATON CORPORATION, ESTERLINE CORPORATION, TE CONNECTIVITY,…

A recent report published by QMI on aerospace bearings market is a detailed assessment of the most important market dynamics. After carrying out thorough research of aerospace bearings market historical as well as current growth parameters, business expectations for growth are obtained with utmost precision. The study identifies specific and important factors affecting the market for aerospace bearings during the forecast period. It can enable companies investing in aerospace bearings market to change their production and marketing strategies in order to envisage maximum growth.

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According to the report, the aerospace bearings market has been segmented by type (roller, ball), by material (stainless steel, fiber-reinforced composites, engineered plastics), by application (landing gear, engine, flight control system, aerostructure), by aircraft type (narrow body aircraft, wide body aircraft, regional transport aircraft, very large aircraft, business jet, fighter jet, helicopter, others).

Objectives of this report:o To estimate the market size for the aerospace bearings market on a regional and global basis.o To identify major segments in the aerospace bearings market and evaluate their market shares and demand.o To provide a competitive scenario for the aerospace bearings market with major developments observed by key companies in the historic years.o To evaluate key factors governing the dynamics of the aerospace bearings market with their potential gravity during the forecast period.

Insights about regional distribution of market:The market has been segmented in major regions to understand the global development and demand patterns of this market. For aerospace bearings market, the segments by region are North America, Asia Pacific, Western Europe, Eastern Europe, Middle East, and Rest of the World. During the forecast period, North America, Asia Pacific and Western Europe are expected to be major regions on the aerospace bearings market.

North America and Western Europe have been dominant players in this market with the presence of major companies which have a strong infrastructure to boost aerospace & defense sector.

In addition, some of the major countries like the US, France, UK, and Canada has been global exporters of aerospace & defense technologies due to established research & development centers, and others. Also, some of the major companies operating in aerospace bearings market are headquartered in these regions.

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The Asia Pacific region is estimated to register fastest growing aerospace bearings market since some of the major economies like China, India, and South Korea are present in the region. In recent decades, these countries have witnessed strong government spending on defense infrastructure, as well as promoting air transport and space research.

During the forecast period, the Middle East region is estimated to be a potential region for aerospace bearings market in the aerospace and defense sector. It is estimated that Eastern Europe will have stable demand during the forecast period. Also, the rest of the world is expected to be an emerging market with increasing demand.

Companies Covered: TE Connectivity, Carlisle Companies Inc., Eaton Corporation, Esterline Corporation, and Bel Fuse Inc., among others

Market Segmentation:By Type:o Rollero Ball

By Material:o Stainless Steelo Fiber-Reinforced Compositeso Engineered Plastics

By Application:o Landing Gearo Engineo Flight Control Systemo Aerostructure

By Aircraft Type:o Narrow Body Aircrafto Wide Body Aircrafto Regional Transport Aircrafto Very Large Aircrafto Business Jeto Fighter Jeto Helicoptero Others

By Region:o North Americao North America, by Country? US? Canada? Mexicoo North America, by Type,o North America, by Materialo North America, by Applicationo North America, by Aircraft Type

Western Europeo Western Europe, by Country? Germany? UK? France? Italy? Spain? The Netherlands? Rest of Western Europeo Western Europe, by Type,o Western Europe, by, Materialo Western Europe, by Applicationo Western Europe, by Aircraft Type

Asia Pacifico Asia Pacific, by Country? China? India? Japan? South Korea? Australia? Indonesia? Rest of Asia Pacifico Asia Pacific, by Type,o Asia Pacific, by, Materialo Asia Pacific, by Applicationo Asia Pacific, by Aircraft Type

Eastern Europeo Eastern Europe, by Country? Russia? Turkey? Rest of Eastern Europeo Eastern Europe, by Type,o Eastern Europe, by Materialo Eastern Europe, by Applicationo Eastern Europe, by Aircraft Type

Middle Easto Middle East, by Country? UAE? Saudi Arabia? Qatar? Iran? Rest of Middle Easto Middle East, by Type,o Middle East, by Materialo Middle East, by Applicationo Middle East, by Aircraft Type

Rest of the Worldo Rest of the World, by Country? South America? Africao Rest of the World, Type,o Rest of the World, by Materialo Rest of the World, by Applicationo Rest of the World, by Aircraft Type

Reasons to Buy This Report:o It provides niche insights for a decision about every possible segment helping in the strategic decision-making process.o Market size estimation of the aerospace bearings market on a regional and global basis.o A unique research design for market size estimation and forecast.o Identification of major companies operating in the market with related developmentso Exhaustive scope to cover all the possible segments helping every stakeholder in the aerospace bearings market.

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

ABOUT US:QMI has the most comprehensive collection of market research products and services available on the web. We deliver reports from virtually all major publications and refresh our list regularly to provide you with immediate online access to the worlds most extensive and up-to-date archive of professional insights into global markets, companies, goods, and patterns.

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AEROSPACE BEARINGS MARKET 2020 FUTURE TRENDS, DYNAMIC GROWTH & FORECAST TO 2028 | EATON CORPORATION, ESTERLINE CORPORATION, TE CONNECTIVITY,...

Honeywell and SLM Solutions qualify parameters for 3D printing thicker aluminum aerospace parts – 3D Printing Industry

German metal 3D printer manufacturer SLM Solutions has worked with the aerospace division of multinational manufacturing conglomerate Honeywell, to produce a parameter set for 3D printing aluminum F357.

Developed as part of the companies ongoing partnership, the material reportedly provides 3D printed parts with considerably improved properties compared to those created through die-casting methods. In addition, the advanced additive metal could also address both partners wider goals of reducing manufacturing times and costs, and 3D printing aircraft components that meet industry standards.

The open architecture system of the SLM machine provides huge advantages like high flexibility, and parameter sets can be customized, said Dr. Sren Wiener, Senior Director of Technology and Advanced Operations at Honeywell Aerospace. With this open access strategy and the great support of SLM Solutions, we step forward to achieving our next goals.

SLM and Honeywells 3D printing partnership

Based in Luebeck, Germany, SLM Solutions is a specialist in developing and providing Selective Laser Melting (SLM) 3D printers. TheSLM 800metal additive systemwas revealed at Formnext 2017, and features a quad-laser configuration with four 400 W or 700 W lasers, and a large build envelope measuring 500 x 280 x 850 mm.

The companys additive manufacturing technology has been utilized within a range of applications, including in the production of the worlds largest 3D printed rocket engine for British aerospace firm Orbex. This was followed by collaborations with Italian service bureau BEAMIT, which saw the companies develop new printing settings for SLM printers, and cycling supplier CeramicSpeed, where it 3D printed pulley wheels for professional cyclists.

Nonetheless, neither of the companys existing partnerships yielded impressive financial results for SLM Solutions, and it announced a 38.3 percent decline in sales last year. Since then, SLM has begun working with Honeywell to qualify new additive manufacturing parameters, to enable 3D printing at increased thicknesses, and its fortunes have changed. Now, not only has the company revealed record financial results for the first quarter and will likely be hoping that its collaboration with Honeywell, could lead to new applications of its metal 3D printing technology.

The aerospace applications of aluminum F357

In the early stages of their collaborative work in December last year, Honeywell began attempting to qualify aluminum builds using its quad-laser SLM 500 3D printer. Working with the aluminum alloy F357, a new beryllium free version of AlSi7Mg0,6 (A357), the company experimented with increasing the layer thicknesses of parts to 60 and 90 m respectively.

SLM Solutions initially provided generic aluminum parameter sets for Honeywell to completematerial qualification and achieve optimal material properties, but now development has reached an important milestone. Using a new set of printing settings, the companies have 3D printed components that display significantly increased mechanical properties in comparison to those exhibited by conventional diecast parts.

Moreover, such robust, high-strength parts are now able to meet the required standard for enabling widespread aerospace adoption. As a result, F357 aluminum is highly sought after within the industry and it provides desirable mechanical properties too, such as enhanced corrosion resistance, and high-strength across a wide temperature range. The alloy also reportedly offers great weldability, and excellent suitability for post-processing, like mechanical machining or within electrochemical processes such as anodizing.

These characteristics lend themselves to creating thin, complex structures for applications in both the aerospace and automotive industries. As a result, the newly-developed printing parameters represent a landmark achievement in the companies ongoing partnership.

It is a privilege to work together with one of the leading companies in the aerospace world, concluded Benjamin Haas, Product Manager for Materials & Parameters at SLM Solutions. This way, we can learn a lot from each other leading to perfectly suited, industry proven solutions from which all of our customers can benefit.

Aluminum materials in the 3D printing industry

Aluminum alloys are commonly used for manufacturing automotive and aerospace components, but they have been used to produce a range of end-use parts, ranging from sports equipment to dashboard panels. More recently, 3D printing companies have sought to develop metals with enhanced mechanical performance, in order to expand on these applications and create parts with improved qualities.

Metal additive manufacturing specialist Amaerohas entered the final phase of gaining international patent approval for its Amaero HOT Al aluminum alloy. The newly-developed metal has high scandium content and can be heat treated and age hardened after 3D printing, giving it a boost to strength and durability.

Materials manufacturer QuesTek Innovations LLC meanwhile, is developing a new 3D printer feedstock in collaboration with the German Aerospace Center (DLR). An aluminum alloy, the new material from the two companies, will exhibit high strength at elevated temperatures between 200 and 300C.

California-based HRL Laboratorieshas developed a powder format aluminum 3D printing material, which it claims is the strongest additive manufacturing aluminum to date. The alloy has already been utilized within a variety of industries, including on the Marshall Space Flight Center, which has begun using the material to produce large-scale aerospace components.

You can now nominate for the 2020 3D Printing Industry Awards. Cast your vote to help decide this years winners.

To stay up to date with the latest 3D printing news, dont forget to subscribe to the 3D Printing Industry newsletter or follow us on Twitter or liking our page on Facebook.

Looking for a job in the additive manufacturing industry? Visit 3D Printing Jobs for a selection of roles in the industry.

Featured image shows SLM Solutions SLM 3D printing technology in action. Image via SLM Solutions.

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Honeywell and SLM Solutions qualify parameters for 3D printing thicker aluminum aerospace parts - 3D Printing Industry

Md. on the Hook for $27K in Legal Fees to Conservative Group – Josh Kurtz

The State of Maryland is on the hook for $27,000 in legal fees to a national conservative organization that sued the state three years ago over voter registration rolls.

Its part of a settlement the state reached with the group Judicial Watch after a federal court earlier this year ordered the state to make all voter registration data available to the conservative organization.

Judicial Watch sued Maryland to obtain voter list data in 2017 after alleging that there were more registered voters in Montgomery County than citizens over the age of 18 who were eligible to register. It was part of the conservative groups nationwide campaign to clean up voter rolls.

In August 2019, U.S. District Court Judge Ellen L. Hollander ordered the State Board of Elections to produce the Montgomery County voter data, concluding that Maryland election law is an obstacle to the intent of the National Voter Registration Act of 1993.

Following the court ruling, state elections officials initially provided Judicial Watch with a list of registered voters but one that did not include their dates of birth. On April 17, the court ordered the state to produce the registration list with every voters date of birth.

Maryland politicians fought us tooth and nail to keep Judicial Watch from uncovering the full truth about their dirty election rolls, Judicial Watch President Tom Fitton said in April following the federal court ruling. This latest court victory will allow Judicial Watch to ensure Maryland and Montgomery County are removing voters who have moved or died long ago.

The Maryland Board of Public Works is set to vote Wednesday to confirm the $27,000 settlement payment to Judicial Watch.

At the same meeting, the BPW is scheduled to vote on a proposed $35,600 payment to reimburse attorneys for the Maryland Green Party and the Libertarian Party of Maryland for ballot access litigation against the state.

The third parties sued the state in May to reduce the signature requirement to appear on the November ballot. They argued that the states stay-at-home order and social distancing guidelines since the outbreak of COVID-19 made it impossible for them to exercise their First Amendment rights.

The Greens and Libertarians reached a settlement with the state a month ago cutting in half the petition signature requirement for gaining ballot access for the November general election.

As part of the settlement, the Green Party and its law firm are in line for a $25,000 payment from the state, while the Libertarians and the Center for Competitive Democracy, a national ballot access organizational, will split $10,600.

In a related development, Amber Ivey, an unaffiliated candidate for Congress in the 7th District, announced Monday that she had reached an agreement with state elections officials that would cut her signature requirement for ballot access in half. Initially, the State Board of Elections had said the state ballot access settlement with the Green and Libertarian parties would not apply to independent candidates, but Ivey sued.

I believe that every person has the right to ballot access, she said in a statement. COVID-19 restrictions have made it especially hard for candidates to collect signatures, which interferes with their constitutional right to seek to be on the ballot.

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Md. on the Hook for $27K in Legal Fees to Conservative Group - Josh Kurtz

Litecoin, Stellars Lumen, and Trons TRX Daily Analysis July 23rd, 2020 – Yahoo Finance

Litecoin

Litecoin rose by 2.83% on Wednesday. Following a 4.53% rally on Tuesday, Litecoin ended the day at $45.02.

It was a mixed start to the day. Litecoin rose to an early morning high $44.00 before hitting reverse.

Falling short of the first major resistance level at $44.66, Litecoin fell to a late morning intraday low $43.22.

Steering clear of the first major support level at $42.45, Litecoin recovered to a late intraday high $45.17.

Litecoin fell broke through the first major resistance level at $44.66 to wrap up the day at $45 levels.

At the time of writing, Litecoin was up by 1.00% to $45.47. A bullish start to the day saw Litecoin rise from an early morning low $44.96 to a high $45.75.

Litecoin came up against the first major resistance level at $45.72 earl in the day.

Litecoin would need to avoid a fall through the $44.50 pivot to support another run at the first major resistance level at $45.72.

Support from the broader market would be needed, however, for Litecoin to break back through to $45.70 levels.

Barring another crypto rally, the first major resistance level and the morning high $45.75 would likely cap any upside.

Failure to avoid a fall through the $44.50 pivot would bring the first major support level at $43.77 into play.

Barring an extended crypto sell-off, however, Litecoin should steer clear of sub-$43 levels. The second major support level sits at $42.52.

First Major Support Level: $43.77

First Major Resistance Level: $45.72

23.6% FIB Retracement Level: $62

38.2% FIB Retracement Level: $78

62% FIB Retracement Level: $104

Stellars Lumen gained 1.10% on Wednesday. Following on from a 2.59% rally on Tuesday, Stellars Lumen ended the day at $0.097241.

It was a mixed start to the day. Stellars Lumen rose to an early morning high $0.096339 before hitting reverse.

Falling short of the first major resistance level at $0.09887, Stellars Lumen slid to a late morning intraday low $0.094291.

Finding support the first major support level at $0.09439, Stellars Lumen rallied to a late intraday high $0.098196.

Coming up short of the first major resistance level at $0.09887, Stellars Lumen eased back to sub-$0.09750 levels.

At the time of writing, Stellars Lumen was up by 2.12% to $0.099306. A bullish start to the day saw Stellars Lumen rise from an early morning low $0.09737 to a high $0.099396.

Stellars Lumen broke through the first major resistance level at $0.09886.

Story continues

Stellars Lumen would need to avoid a fall through the first major resistance level to support a run at the second major resistance level at $0.10048.

Support from the broader market would be needed, however, for Stellars Lumen to break out from the morning high $0.099306.

Barring another broad-based crypto rally, the second major resistance level would likely limit any upside.

Failure to avoid a fall through the first major resistance level at $0.9886 would bring sub-$0.097 levels into play.

Barring an extended crypto sell-off, however, Stellars Lumen should avoid the pivot level at $0.09658. The first major support level sits at $0.09496.

First Major Support Level: $0.09496

First Major Resistance Level: $0.09886

23.6% FIB Retracement Level: $0.1051

38% FIB Retracement Level: $0.14336518

62% FIB Retracement Level: $0.2050

Trons TRX rose by 2.25% on Wednesday. Following a 2.42% rally on Tuesday, Trons TRX ended the day at $0.017984.

It was a mixed start to the day. Trons TRX rose to an early morning high $0.017630 before hitting reverse.

Falling short of the first major resistance level at $0.01786, Trons TRX fell to a mid-morning intraday low $0.017425.

Steering clear of the first major support level at $0.01732, Trons TRX rallied to a late intraday high $0.018001 before easing back.

Trons TRX broke through the first major resistance level at $0.01786 before easing back to sub-$0.018 levels.

The second major resistance level at $0.01807 capped the upside on the day.

At the time of writing, Trons TRX was up by 0.42% to $0.018059. A bullish start to the day saw Trons TRX rise from an early morning low $0.017968 to a high $0.018100.

Trons TRX left the major support and resistance levels untested early on.

Trons TRX would need to avoid a fall through the $0.01780 pivot level to support another run at the first major resistance level at $0.018180.

Support from the broader market would be needed, however, for Trons TRX to break out from the morning high $0.01810.

Barring an extended crypto rally, the first major resistance level and morning high would likely cap any upside.

Failure to avoid a fall through the $0.01780 pivot level would bring the first major support level at $0.01761 into play.

Barring another extended crypto sell-off, Trons TRX should steer clear of sub-$0.01720 levels. The second major support level at $0.01723 should limit any downside.

First Major Support Level: $0.01761

First Major Resistance Level: $0.01818

23.6% FIB Retracement Level: $0.0322

38.2% FIB Retracement Level: $0.0452

62% FIB Retracement Level: $0.0663

Please let us know what you think in the comments below

Thanks, Bob

This article was originally posted on FX Empire

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Litecoin, Stellars Lumen, and Trons TRX Daily Analysis July 23rd, 2020 - Yahoo Finance

The Vital Role Genetic Testing Plays in Bladder Cancer Treatments – Cancer Therapy Advisor

Sponsored Content by the Janssen Pharmaceutical Companies of Johnson & Johnson

Recent research suggests cancer patients who have undergone genetic testing for inherited or acquired mutations were more likely to have prolonged overall survival than patients who did not, as genetic tests can direct healthcare providers to targeted treatment paradigms featuring therapies specific to an individuals genetic makeup.1,2

Various genetic alterations impact how specific tumors can arise or develop, including BRCA1/2, p53, HER2 and the RAS family of genes, among others.3 As researchers continue to study how genetic changes impact cancer development, findings have led to improvements in cancer care including the increased use of targeted therapies and early detection strategies.3

Treating with an inhibitor or a targeted therapy may slow or halt uncontrolled cell growth that may be driven, in part, by a genetically-altered cancer and can provide clinical benefits to patients, said Tracy McGowan, MD, Strategic Area Lead for Medical Affairs at Janssen Biotech, Inc. Analyzing a patients DNA or RNA for actionable genetic alterations can help direct a cancer patients treatment plan, and is intended to provide patients and providers with treatment options that are specific to the unique characteristics of an individuals specific tumor type.

An example of the above is the fibroblast growth factor receptor (FGFR) genetic alteration, which occurs in approximately one in five patients with metastatic urothelial carcinoma (mUC).4,5 FGFR genes, a family of receptor tyrosine kinases, impact tumor cell proliferation, migration and survival in both non-muscle-invasive bladder cancer (NMIBC) and muscle-invasive bladder cancer (MIBC) including mUC.6 This is also true in a variety of other tumor types as well.4

Dr. McGowan is hopeful that, over time, more healthcare providers will recommend genetic testing earlier in the course of bladder cancer to ensure that appropriate treatment options are available for consideration. In the evolving era of precision medicine, it is important to inform patients and their families about the role of genetic testing to help them navigate treatment opportunities. For healthcare providers, talking to patients about the role of genetic testing in their care plan is the beginning of important conversations especially when specific targeted therapies are now available.

References

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The Vital Role Genetic Testing Plays in Bladder Cancer Treatments - Cancer Therapy Advisor

CRADLE GENOMICS: Expands Executive Team, Accelerating Efforts to Transform Non-Invasive Prenatal Testing and Patient Care – Patient Daily

Cradle Genomics issued the following announcement on July 24.

Cradle Genomics today announced the expansion of its executive team with the additions ofTanya Moreno, PhD, as Vice President of Development andSue Gross, MD, as Chief Medical Officer.

"Our mission at Cradle is to deliver genetic knowledge for life, with a vision of better outcomes for every pregnancy," saidTristan Orpin, CEO of Cradle Genomics. "The outstanding additions of Dr. Moreno to lead clinical development and Dr. Gross as CMO will enable Cradle to achieve our vision of transforming prenatal testing and patient care."

Dr. Moreno has over 13 years of experience in diagnostics development and the commercialization of genomic tests. As the head of clinical sciences, in multiple clinical laboratories, she has led development programs across a broad range of advanced genomic tools to empower patients and physicians with precision medicine. Dr. Moreno earned her Ph.D. in molecular genetics and developmental biology at the California Institute of Technology and received her postdoctoral training at the Salk Institute for Biological Studies. She is widely published in peer-reviewed journals and has both led and participated in a number of research studies in consumer and clinical genomics. She is an inventor of several novel genomic applications with multiple patents pending and issued.

Dr. Gross has had a distinguished clinical career with roles at Montefiore Einstein where she was Professor of Obstetrics and Gynecology, Pediatrics and Genetics; Natera where she was Chief Medical Officer; and most recently at Mount Sinai Hospital and Sema4 where she was the Medical Director for the Reproductive Lab and Clinical Analysis Division. She is double board certified in Obstetrics and Gynecology as well as Medical Genetics.Dr. Gross has served on national and international guideline committees and has lectured and published extensively on prenatal screening and genetic testing, with a focus on new technologies and public health policy.

About Cradle GenomicsCradle Genomics is headquartered inSan Diego, California.Cradle is developing novel fetal genetic analysis and pregnancy health solutions at the earliest stages of pregnancy.For more information, visit http://www.cradlegenomics.com

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CRADLE GENOMICS: Expands Executive Team, Accelerating Efforts to Transform Non-Invasive Prenatal Testing and Patient Care - Patient Daily

Elevation Oncology Emerges from Stealth with $32.5M Series A to Develop Precision Medicines for Tumors Harboring Rare Genetic Driver Alterations -…

NEW YORK, July 21, 2020 /PRNewswire/ --Elevation Oncology, a clinical stage biopharmaceutical company focused on the development of precision medicines for patients with genomically defined cancers, announced today the launch of the Company with a $32.5M Series A financing, initiation of the Phase 2 CRESTONE study, and new partnerships with Next Generation Sequencing diagnostic providers including Ashion Analytics, Strata Oncology, and Tempus to explore innovative models for real-time identification, patient referral, and enrollment of patients with tumors driven by rare genomic alterations. The Series A financing was led by Aisling Capital and a syndicate of investors including Vertex Ventures HC, Qiming Venture Partners USA, Driehaus Capital Management, and BVF Partners.

"At Elevation Oncology, we envision a future in which each unique genomic testing result can be matched with a purpose-built precision medicine and bring clarity to the patient treatment journey. Focused drug development paired with open collaboration will be instrumental for our industry to fully realize the potential of precision medicine for all patients with cancer," said Shawn Leland, PharmD, RPh, Founder and Chief Business Officer of Elevation Oncology. "With our lead development program, seribantumab, and the partnerships announced today, we are taking our first steps toward this future."

Seribantumab and the Tumor-agnostic CRESTONE Study

Seribantumab is a fully human IgG2 monoclonal antibody that binds to human epidermal growth factor receptor 3 (ERBB3 or HER3). HER3 is traditionally activated through binding of its primary ligand, neuregulin-1 (NRG1). The NRG1 gene fusion is a rare genomic alteration that combines NRG1 with another partner gene to create chimeric NRG1 "fusion proteins."

Seribantumab was acquired in 2019 by Elevation Oncology, and the development program builds on prior clinical experience from over 800 patients demonstrating consistent safety and tolerability. Previous clinical trials with seribantumab did not select for tumors with an NRG1 fusion. The CRESTONE study leverages seribantumab's rational design with recent discoveries on the significance of the NRG1 gene fusion and improvements in diagnostic sensitivity. Novel preclinical data generated by Elevation Oncology demonstrating the ability of seribantumab to prevent the activation of HER3 signaling in NRG1 fusion models are supportive of CRESTONE and are expected to be released in publications and at scientific conferences later this year.

Although rare, NRG1 gene fusions are oncogenic drivers that can be found in a variety of solid tumors, including lung, pancreatic, gallbladder, breast, ovarian, colorectal, and neuroendocrine cancers, and sarcomas. Importantly, NRG1 gene fusions are mutually exclusive with other known driver mutations and are considered a unique oncogenic driver event essential for tumor cell survival. Following recent regulatory approvals of tumor-agnostic treatments associated with oncogenic drivers, CRESTONE is designed as a registration-enabling Phase 2 "basket trial" to evaluate the efficacy and safety of seribantumab in patients with any solid tumor that harbor an NRG1 fusion.

"Genomic testing and matched precision therapeutics are creating a revolution in oncology development and regulatory approval paths," said Lori Kunkel, MD, Chair of the Elevation Oncology Scientific Advisory Board and former Chief Medical Officer LOXO Oncology. "The FDA has recently approved several oncology therapeutics for tumor-agnostic indications. I am encouraged to see the evolution in our understanding of how to achieve better clinical outcomes to address the unmet clinical need among patients with a genomically defined cancer, regardless of its tissue of origin. The CRESTONE study potentially expands the actionability of genomic tests to tumors with an NRG1 fusion and is a promising approach for furthering this genomically-driven tumor-agnostic development pathway."

Innovative Models for Patient Enrollment

Sarah Cannon Research Institute(Sarah Cannon) has been selected as the first strategic site for CRESTONE and is open and enrolling patients today. Sarah Cannon's world class clinical research leadership and insights as well as additional prospectively selected clinical sites are foundational to ensuring rigorous study conduct.

"Identifying potential driver alterations, such as NRG1 gene fusions, enables us to approach cancer treatment in a more targeted way," said David Spigel, MD, Chief Scientific Officer, Sarah Cannon Research Institute at Tennessee Oncology and one of the investigators of the CRESTONE study. "Today, all cancer patients facing a treatment decision without clear standard of care should consider comprehensive genomic testing for their tumor. Collaborations across the healthcare ecosystem help to ensure that the value of each genomic test is maximized and to expand access to critical treatment opportunities for patients."

Diagnostic partnerships will enhance traditional patient enrollment in the CRESTONE study through real-time, nationwide identification of NRG1 fusion positive patients withintheAshion, Strata Oncology, Tempus, and other partner networks. Through various partnership models, patients may also be enrolled in CRESTONE through active referral to current strategic sites or "just-in-time" site initiation.

These innovative models address specific challenges encountered by genomically-driven, tumor-agnostic trials such as the rarity of genomic driver alterations and the impracticality of comprehensive clinical site coverage by both geography and organ-system of study. In addition, these models may reduce the burden on patients by minimizing the number of diagnostic tests they may need and maximizing the treatment opportunities available to them, regardless of where they may live. Bringing clinical trials to patients using the "just-in-time" site initiation model can further help to minimize travel and keep patients safe in the face of ongoing travel restrictions due to COVID-19.

"With the strong backing of a dynamic and experienced investor syndicate, Elevation Oncology is well positioned to execute on our mission of delivering precision medicines to physicians and their patients with cancer," said Steve Elms, Chairman and Interim Chief Executive Officer of Elevation Oncology and Managing Partner of Aisling Capital. "Our development approach to seribantumab sets the stage for our broader vision: the elevation of precision medicine to the forefront of every patient journey through building a collaborative industry-wide ecosystem. Together with diagnostic developers, clinical researchers, patient advocates, and the Elevation Oncology team, we are looking to build a pipeline of precision oncology medicines that can amplify each other's efforts towards our shared goal of improving patient outcomes."

About Elevation Oncology

Elevation Oncology is founded on the belief that every patient with cancer deserves to know what is driving the growth of their disease and have access to therapeutics that can stop it. We make genomic tests actionable by selectively developing drugs to inhibit the specific alterations that have been identified as drivers of disease. Together with our peers we work towards a future in which each unique test result can be matched with a purpose-built precision medicine to enable an individualized treatment plan for each patient. Our lead candidate, seribantumab, inhibits tumor growth driven by NRG1 fusions and is currently being clinically tested in the Phase 2 CRESTONE study for patients with tumors of any origin that have an NRG1 fusion. Details on CRESTONE are available at http://www.NRG1fusion.com. For more information visit http://www.ElevationOncology.com.

About Ashion Analytics

Ashion Analytics, LLC, is a CLIA-certified and CAP-accredited clinical laboratory that uses advanced genomic technologies to offer a wide range of testing capabilities to assist physicians, health systems, research and commercial partners to provide precision cancer treatments. Ashion was developed and launched by the Translational Genomics Research Institute (TGen), an affiliate of City of Hope. TGen is a pioneer in the use of genomics to identify treatment options for cancer patients.

About Strata Oncology

Strata Oncology, Inc. is a precision medicine company dedicated to transforming cancer care by building a platform to systematize precision oncology across a network of health systems and biopharma companies. Strata Oncology empowers health systems to deliver a comprehensive, system-wide precision oncology program that integrates cutting-edge tumor molecular profiling and a portfolio of biomarker-guided with routine care, so that all patients with advanced cancer have the opportunity to benefit. This large network of trial-ready health systems provides a mechanism to rapidly and predictably enroll precision therapy trials. For more information visitwww.strataoncology.com.

About Tempus

Tempus is a technology company advancing precision medicine through the practical application of artificial intelligence in healthcare. With one of the world's largest libraries of clinical and molecular data, and an operating system to make that data accessible and useful, Tempus enables physicians to make real-time, data-driven decisions to deliver personalized patient care and in parallel facilitates discovery, development and delivery of optimal therapeutics. Additionally, the TIME TrialNetwork leverages a unique and comprehensive infrastructure to bring the right clinical trials to the right patients in under two weeks.The goal is for each patient to benefit from the treatment of others who came before by providing physicians with tools that learn as the company gathers more data. For more information, visit tempus.com.

Media Contact:Elevation OncologyDavid Rosen, Argot PartnersPhone: +1 (716) 371-1125Email: [emailprotected]

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Cradle Genomics Expands Executive Team, Accelerating Efforts to Transform Non-Invasive Prenatal Testing and Patient Care – PRNewswire

SAN DIEGO, July 24, 2020 /PRNewswire/ --Cradle Genomics today announced the expansion of its executive team with the additions of Tanya Moreno, PhD, as Vice President of Development and Sue Gross, MD, as Chief Medical Officer.

"Our mission at Cradle is to deliver genetic knowledge for life, with a vision of better outcomes for every pregnancy," saidTristan Orpin, CEO of Cradle Genomics. "The outstanding additions of Dr. Moreno to lead clinical development and Dr. Gross as CMO will enable Cradle to achieve our vision of transforming prenatal testing and patient care."

Dr. Moreno has over 13 years of experience in diagnostics development and the commercialization of genomic tests. As the head of clinical sciences, in multiple clinical laboratories, she has led development programs across a broad range of advanced genomic tools to empower patients and physicians with precision medicine. Dr. Moreno earned her Ph.D. in molecular genetics and developmental biology at the California Institute of Technology and received her postdoctoral training at the Salk Institute for Biological Studies. She is widely published in peer-reviewed journals and has both led and participated in a number of research studies in consumer and clinical genomics. She is an inventor of several novel genomic applications with multiple patents pending and issued.

Dr. Gross has had a distinguished clinical career with roles at Montefiore Einstein where she was Professor of Obstetrics and Gynecology, Pediatrics and Genetics; Natera where she was Chief Medical Officer; and most recently at Mount Sinai Hospital and Sema4 where she was the Medical Director for the Reproductive Lab and Clinical Analysis Division. She is double board certified in Obstetrics and Gynecology as well as Medical Genetics.Dr. Gross has served on national and international guideline committees and has lectured and published extensively on prenatal screening and genetic testing, with a focus on new technologies and public health policy.

About Cradle Genomics Cradle Genomics is headquartered inSan Diego, California.Cradle is developing novel fetal genetic analysis and pregnancy health solutions at the earliest stages of pregnancy.For more information, visitwww.cradlegenomics.com

SOURCE Cradle Genomics

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Cradle Genomics Expands Executive Team, Accelerating Efforts to Transform Non-Invasive Prenatal Testing and Patient Care - PRNewswire