Global Market for Nanotechnology and Nanomaterials in Packaging – Reduce Reliance on Petroleum-based Packaging – ResearchAndMarkets.com – Business…

DUBLIN--(BUSINESS WIRE)--The "The Global Market for Nanotechnology and Nanomaterials in Packaging" report has been added to ResearchAndMarkets.com's offering.

Nanomaterials have already been commercialized at various stages of the packaging supply chain from food storage to traceability and tracking. Their enhanced properties, such as UV protection, barrier to moisture, gases and volatile components, mechanical strength, significantly improve packaging materials.

Companies Mentioned

Nanomaterials-based packaging is used to:

The use of nanomaterials in packaging will play a significant role in:

Nanomaterials utilized in packaging include:

Report contents include:

Key Topics Covered:

1 INTRODUCTION

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

3.1 Market drivers and trends in packaging

3.1.1 Antimicrobial packaging for food safety

3.1.2 Active packaging

3.1.3 Intelligent/smart packaging

3.1.4 Biobased packaging and sustainable packaging

3.1.5 Improved barrier function to increase shelf life

3.2 Market challenges and risk assessment

3.3 Global market demand and revenues for nanopackaging

4 TYPES OF PACKAGING

4.1 Barrier films and coatings

4.2 Antimicrobial active packaging

4.3 Anti-counterfeit packaging

4.4 Intelligent packaging

5 NANOMATERIALS USED IN PACKAGING

5.1 Composites

5.2 Coatings and films

5.3 Nanosensors

5.4 Cellulose nanofibers (CNFs)

5.4.1 Paper and board packaging

5.4.2 Barrier films

5.4.3 Antimicrobial packaging

5.5 Cellulose nanocrystals

5.5.1 Properties

5.5.2 Applications

5.5.2.1 Barrier films

5.5.2.2 Anti-counterfeiting films

5.5.2.3 Antimicrobial coatings

5.6 Bacterials nanocellulose (BNC)

5.6.1 Applications

5.7 Graphene

5.7.1 Properties

5.7.2 Barrier films for food packaging

5.7.3 Anti-bacterial activity

5.7.4 Anti-viral activity

5.7.4.1 Reduced graphene oxide (rGO)

5.8 Nanosilver

5.8.1 Properties

5.8.2 Antimicrobial and antiviral activity

5.8.3 Nanosilver in packaging

5.9 Nanosilica

5.9.1 Properties

5.9.2 Antimicrobial and antiviral activity

5.9.3 Easy-clean and dirt repellent

5.10 Zinc oxide nanoparticles

5.10.1 Properties

5.10.2 Antimicrobial packaging films

5.11 Carbon nanotubes

5.11.1 Properties

5.11.2 Antimicrobial activity

5.12 Chitosan nanoparticles

5.12.1 Antimicrobial coatings

5.12.2 Packaging coatings and films

5.13 Nanoclays

5.13.1 Properties

5.13.2 Barrier films

5.13.3 Nanoclay producers

5.14 Titanium dioxide nanoparticles

5.14.1 Properties

5.14.2 Antibacterial films

5.15 Copper nanoparticles

5.15.1 Properties

5.15.2 Anti-microbial coatings

5.16 Hydrophobic and hydrophilic coatings

5.16.1 Hydrophilic coatings

5.16.2 Hydrophobic coatings

5.16.2.1 Properties

5.17 Superhydrophobic coatings

5.17.1 Properties

5.17.1.1 Anti-microbial use

6 COMPANY PROFILES

7 REFERENCES

For more information about this report visit https://www.researchandmarkets.com/r/g9vux7

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Global Market for Nanotechnology and Nanomaterials in Packaging - Reduce Reliance on Petroleum-based Packaging - ResearchAndMarkets.com - Business...

Registration Opens for NNI Webinar on What We Know about NanoEHS: How It All Began – JD Supra

Registration is now open for the U.S. National Nanotechnology Initiatives (NNI) February 9, 2021, webinar, What We Know about NanoEHS: How It All Began. NNI states that its 2021 NanoEHS webinar series will focus on sharing what it now knows about the environmental, health, and safety aspects of engineered nanomaterials (nanoEHS). According to NNI, throughout the series, experts will share the big take-home EHS messages with the broader nanotechnology community and highlight the NNIs role in answering those questions. The February 9, 2021, webinar will bring[] together several of the pioneering scientists who were pivotal in the emerging field of nanoEHS to share their perspectives on how it all began and to discuss the robust community that has been developed and supports current and future activities in this important area. John Howard, M.D., M.P.H., J.D., L.L.M., M.B.A., Director, National Institute of Occupational Safety and Health (NIOSH), will moderate. Speakers will include:

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Registration Opens for NNI Webinar on What We Know about NanoEHS: How It All Began - JD Supra

Global Nanotechnology Market Trends, Forecast and Insights between 2021 and 2027: Applied Nanotech Holdings Inc., Altair Nanotechnologies Inc., Imina…

The rapid globalization has changed the traditional mediums of growth all across the globe. With innovation spurring all around the world, the Nanotechnology Market has come miles ahead. The industry is characterized by several leading factors, with each element playing a crucial role in the growth of the sector. The following report carefully analyses all the essential aspects of the Nanotechnology market and provides a detailed overview of the growth prospects of the industry. The industry is expected to grow by leaps and bounds and hence has attracted significant investors all across the globe. On the other hand, the Nanotechnology market is expected to grow at a compound annual growth rate of % during the forecasted period.

Key players in the Global Nanotechnology Market: Applied Nanotech Holdings Inc., Altair Nanotechnologies Inc., Imina Technologies Sa, Thermofisher Scientific, Bruker Axs, eSpin Technologies, Inc., Kleindiek Nanotechnik Gmbh, Biosensor International, Nanoics Imaging Ltd and Advanced Nano Products, and more

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Drivers and Risks

The global Nanotechnology market is characterized by several leading factors, with each factor playing a crucial role in the growth of the industry. The growing demand of products coupled with easy availability of the same has helped the industry flourish all across the globe. On the other hand, the presence of a dynamic supply chain has helped the industry grow exponentially. However, despite the growth opportunities, the Nanotechnology market faces severe criticism from all aspects.

The presence of harmful ingredients has forced the manufacturers to change their machinery and hence has created a buzz all across the globe. Despite the challenges, the analysts remain positive about the growth prospects of the industry and, therefore, have attracted global attention. The major investors have been investing aggressively in the growth prospects of the industry.

Regional Description

The global Nanotechnology market has a worldwide presence and hence, has been proliferating all across the globe. APAC, North America, and several others in the region serve as the most excellent markets. The growing awareness about the use of the product, coupled with the easy availability of the same, has been helping the industry grow by leaps and bounds. On the other hand Europe and Others serve as the most significant potential too. Rapid globalization, coupled with an increase in the per capita, has worked in favor of the industry. The industry is still in its nascent stages and hence has been expanding all across the globe.

Method of Research

The following report strictly adheres to all the laws and regulations and is formulated from the use of both primary and secondary sources. The team of experts come from various backgrounds and ensures the highest quality of products. On the other hand, deep expertise in statistical modeling and additional analysis of crucial frameworks provide a comprehensive overview of the growth of the industry.

Key Players

The growth potential of the Nanotechnology market has attracted some of the leading names of the industry, while on the other hand new entrants in the domain have also been successfully identified.

If you have any special requirements about Nanotechnology Market report, please let us know and we can provide custom report.

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Data Library Research is a market research company that helps to find its passion for helping brands grow, discover, and transform. We want our client to make wholehearted and long term business decisions. Data Library Research is committed to deliver their output from market research studies which are based on fact-based and relevant research across the globe. We offer premier market research services that cover all industries verticals, including agro-space defense, agriculture, and food, automotive, basic material, consumer, energy, life science, manufacturing, service, telecom, education, security, technology. We make sure that we make an honest attempt to provide clients an objective strategic insight, which will ultimately result in excellent outcomes.

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Nanobiotix Subsidiary Curadigm Secures New Collaboration Agreement With Sanofi Focused on Gene Therapy Pipeline – Yahoo Finance

Nanobiotix subsidiary, Curadigm, submitted a research project involving its Nanoprimer technology which was selected for the Sanofi iTech Awards Program, as a highly promising option to significantly improve gene therapy development

Following this selection, Curadigm will enter into a one-year agreement with the pharmaceutical company including direct funding and scientific exchanges

This selection provides an opportunity for Curadigms Nanoprimer technology, invented at Nanobiotix, to establish proof of concept as a combination product that could expand the benefits of gene therapy and improve treatment outcomes for patients

"The continued advancement of Curadigm is a promising part of the expansion of nanotechnology applications invented by Nanobiotix. We are pleased that Sanofi has recognized the potential of Curadigms Nanoprimer to improve the efficacy of product candidates in their gene therapy pipeline. As our team at Nanobiotix remains focused on the development of NBTXR3 across oncology, the stand-alone team at Curadigm will leverage this partnership, while exploring other future partnerships, to accelerate development and expand opportunities to improve treatment outcomes for patients." Laurent Levy, CEO of Nanobiotix

Regulatory News:

NANOBIOTIX (Euronext: NANO NASDAQ: NBTX the Company), a clinical-stage biotechnology company focused on developing first-in-class product candidates that use proprietary nanotechnology to transform cancer treatment, today announced a new collaboration agreement secured by its wholly-owned subsidiary, Curadigm.

Pursuant to the selection of a project involving Curadigms Nanoprimer technology as a promising option to significantly improve gene therapy development, Curadigm will enter into a one-year agreement with the pharmaceutical company inclusive of direct funding and scientific exchanges. The goal of the project is to establish proof-of-concept for the Nanoprimer as a combination product that could improve treatment outcomes for gene therapy product candidates.

Story continues

Many promising nucleic acid-based therapeutics administered intravenously are limited in their efficacy due to rapid clearance in the liver, which prevents these therapies from reaching the necessary accumulation in target tissues to generate their intended outcomes. Additionally, accumulation in the liver, rather than in the target tissues, can lead to dose-limiting hepatic toxicity.

The Nanoprimer is proprietary technology invented at Nanobiotix and licensed to Curadigm for development and commercialization. The Nanoprimer is designed to precisely and temporarily occupy therapeutic clearance pathways in the liver. Delivered intravenously, immediately prior to the recommended therapy, the technology acts to prevent rapid clearancethereby increasing bioavailability and subsequent accumulation of therapeutics in the targeted tissues.

Given that the Nanoprimer is a combination product candidate that does not alter or modify the therapies it is paired with, Nanobiotix expects that the team at Curadigm will continue to seek partnerships across drug classesparticularly with RNA-based therapies. The Company believes that the ongoing expansion of Curadigms development pipeline could create new pathways for the significant improvement of treatment outcomes for patients around the world.

About CURADIGM: http://www.curadigm.com

Curadigm, a Nanobiotix SA subsidiary, is an early-stage nanotechnology company dedicated to improving outcomes for patients by shifting the therapeutic delivery paradigm. Curadigms Nanoprimer platform is designed to increase drug bioavailability while decreasing unintended off-target effects, specifically liver toxicity. The platform can be used with most intravenous (IV) therapeutics across multiple drug classes. Curadigm is dedicated to advancing therapeutic development based on our deep understanding of how drugs interact with the body, to impact both known and novel drugs across multiple clinical indications.

About NANOBIOTIX: http://www.nanobiotix.com

Incorporated in 2003, Nanobiotix is a leading, clinical-stage nanomedicine company pioneering new approaches to significantly change patient outcomes by bringing nanophysics to the heart of the cell.

The Nanobiotix philosophy is rooted in designing pioneering, physical-based approaches to bring highly effective and generalized solutions to address unmet medical needs and challenges.

Nanobiotixs novel, potentially first-in-class, proprietary lead technology, NBTXR3, aims to expand radiotherapy benefits for millions of cancer patients. Nanobiotixs Immuno-Oncology program has the potential to bring a new dimension to cancer immunotherapies.

Nanobiotix is listed on the regulated market of Euronext in Paris (Euronext: NANO / ISIN: FR0011341205; Bloomberg: NANO: FP) and on the Nasdaq Global Select Market (Nasdaq: NBTX). The Companys headquarters are in Paris, France, with a U.S. affiliate in Cambridge, MA, and European affiliates in France, Spain and Germany

About Sanofi: http://www.sanofi.com

Sanofi is dedicated to supporting people through their health challenges. We are a global biopharmaceutical company focused on human health. We prevent illness with vaccines, provide innovative treatments to fight pain and ease suffering. We stand by the few who suffer from rare diseases and the millions with long-term chronic conditions.

With more than 100,000 people in 100 countries, Sanofi is transforming scientific innovation into healthcare solutions around the globe. Sanofi, Empowering Life.

Disclaimer

This press release contains certain "forward-looking" statements within the meaning of applicable securities laws, including the Private Securities Litigation Reform Act of 1995. Forward-looking statements may be identified by words such as "at this time," "anticipate," "believe," "expect," "intend," "on track," "plan," "scheduled," and "will," or the negative of these and similar expressions. These forward-looking statements, which are based on our managements current expectations and assumptions and on information currently available to management, include statements about the timing and progress of Curadigms development program, the prospects of Curadigms collaboration with Sanofi, the timing of proof-of-concept data, the potential of Curadigms platform to achieve clinical and commercial success, and Curadigms relationship with, and the performance of, its collaboration partners. Such forward-looking statements are made in light of information currently available to us and based on assumptions that Nanobiotix considers to be reasonable. However, these forward-looking statements are subject to numerous risks and uncertainties, including with respect to the duration and severity of the COVID-19 pandemic and governmental and regulatory measures implemented in response to the evolving situation. Furthermore, many other important factors, including those described in our prospectus filed with the U.S. Securities and Exchange Commission on December 11, 2020 under the caption "Risk Factors" and those set forth in the universal registration document of Nanobiotix registered with the French Financial Markets Authority (Autorit des Marchs Financiers) under number R.20-010 on May 12, 2020 (a copy of which is available on http://www.nanobiotix.com), as well as other known and unknown risks and uncertainties may adversely affect such forward-looking statements and cause our actual results, performance or achievements to be materially different from those expressed or implied by the forward-looking statements. Except as required by law, we assume no obligation to update these forward-looking statements publicly, or to update the reasons why actual results could differ materially from those anticipated in the forward-looking statements, even if new information becomes available in the future.

View source version on businesswire.com: https://www.businesswire.com/news/home/20210125005758/en/

Contacts

Nanobiotix

Communications Department Brandon Owens VP, Communications +1 (617) 852-4835contact@nanobiotix.com

Investor Relations Department Ricky Bhajun Senior Manager, Investor Relations +33 (0)1 79 97 29 99investors@nanobiotix.com

Media Relations

France Ulysse Communication Pierre-Louis Germain+ 33 (0) 6 64 79 97 51plgermain@ulysse-communication.com

US Porter Novelli Stefanie Tuck+1 (917) 390-1394Stefanie.tuck@porternovelli.com

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Nanobiotix Subsidiary Curadigm Secures New Collaboration Agreement With Sanofi Focused on Gene Therapy Pipeline - Yahoo Finance

Healthcare Nanotechnology Market Report, History And Forecast 2020-2027, Breakdown Data By Manufacturers, Key Regions, Types And Application …

An analysis report published by IndustryGrowthInsights (IGI) is an in-depth study and detailed information regarding the market size, market performance and market dynamics of the Healthcare Nanotechnology. The report offers a robust assessment of the Healthcare Nanotechnology Market to understand the current trend of the market and deduces the expected market trend for the Healthcare Nanotechnology market for the forecast period. Providing a concrete assessment of the potential impact of the ongoing COVID-19 in the next coming years, the report covers key strategies and plans prepared by the major players to ensure their presence intact in the global competition. With the availability of this comprehensive report, the clients can easily make an informed decision about their business investments in the market.

Get Exclusive Free Sample Report @ https://industrygrowthinsights.com/request-sample/?reportId=131882

This detailed report also highlights key insights on the factors that drive the growth of the market as well key challenges that are expected to hamper the market growth in the forecast period. Keeping a view to provide a holistic market view, the report describes the market components such as product types and end users in details with explaining which component is expected to expand significantly and which region is emerging as the key potential destination of the Healthcare Nanotechnology market. Moreover, it provides a critical assessment of the emerging competitive landscape of the manufacturers as the demand for the Healthcare Nanotechnology is projected to increase substantially across the different regions.

The report, published by IndustryGrowthInsights (IGI), is the most reliable information because it consists of a concrete research methodology focusing on primary as well as secondary sources. The report is prepared by relying on primary source including interviews of the company executives and representatives and accessing official documents, websites, and press release of the companies. The IndustryGrowthInsights (IGI)s report is widely known for its accuracy and factual figures as it consists of a concise graphical representations, tables, and figures which displays a clear picture of the developments of the products and its market performance over the last few years.

Furthermore, the scope of the growth potential, revenue growth, product range, and pricing factors related to the Healthcare Nanotechnology market are thoroughly assessed in the report in a view to entail a broader picture of the market.

Key companies that are covered in this report:

AmgenTeva PharmaceuticalsAbbottUCBRocheCelgeneSanofiMerck & CoBiogenStrykerGilead SciencesPfizer3M CompanyJohnson & JohnsonSmith & NephewLeadiant BiosciencesKyowa Hakko KirinTakedaIpsenEndo InternationalHealthcare Nanotechnolog

*Note: Additional companies can be included on request

The report covers a detailed performance of some of the key players and analysis of major players in the industry, segments, application and regions. Moreover, the report also takes into account the governments policies in the evaluation of the market behavior to illustrate the potential opportunities and challenges of the market in each region. The report also covers the recent agreements including merger and acquisition, partnership or joint venture and latest developments of the manufacturers to sustain in the global competition of the Healthcare Nanotechnology market.

By Application:

AnticancerCNS ProductAnti-infectiveOthers

By Type:

NanomedicineNano Medical DevicesNano DiagnosisOthersHealthcare Nanotechnolog

You can also go for a yearly subscription of all the updates on Healthcare Nanotechnology market.

You can buy the complete report @ https://industrygrowthinsights.com/checkout/?reportId=131882

According to the report, the Healthcare Nanotechnology market is projected to reach a value of USDXX by the end of 2027 and grow at a CAGR of XX% through the forecast period (2020-2027). The report covers the performance of the Healthcare Nanotechnology in regions, North America, Latin America, Europe, Asia Pacific, and Middle East & Africa by focusing some key countries in the respective regions. As per the clients requirements, this report can be customized and available in a separate report for the specific region and countries.

The following is the TOC of the report:

Executive Summary

Assumptions and Acronyms Used

Research Methodology

Healthcare Nanotechnology Market Overview

Healthcare Nanotechnology Supply Chain Analysis

Healthcare Nanotechnology Pricing Analysis

Global Healthcare Nanotechnology Market Analysis and Forecast by Type

Global Healthcare Nanotechnology Market Analysis and Forecast by Application

Global Healthcare Nanotechnology Market Analysis and Forecast by Sales Channel

Global Healthcare Nanotechnology Market Analysis and Forecast by Region

North America Healthcare Nanotechnology Market Analysis and Forecast

Latin America Healthcare Nanotechnology Market Analysis and Forecast

Europe Healthcare Nanotechnology Market Analysis and Forecast

Asia Pacific Healthcare Nanotechnology Market Analysis and Forecast

Middle East & Africa Healthcare Nanotechnology Market Analysis and Forecast

Competition Landscape

Why you should buy this report?

The report also answers some of the key questions given below:

If you have any questions on this report, please reach out to us @ https://industrygrowthinsights.com/enquiry-before-buying/?reportId=131882

About IndustryGrowthInsights (IGI):

We keep our priority to fulfil the needs of our customers by offering authentic and inclusive reports for the global market-related domains. With a genuine effort from a dedicated team of business experts, IndustryGrowthInsights (IGI) has been in the service by providing innovative business ideas and strategies for the current global market for various industries and set its benchmark in the market research industry.

We have a large support of database from various leading organizations and business executives across the globe; so, we excel at customized report as per the clients requirements and updating market research report on the daily basis with quality information.

Contact Info: Name: Alex MathewsAddress: 500 East E Street, Ontario,CA 91764, United States.Phone No: USA: +1 909 545 6473Email: [emailprotected]Website: https://industrygrowthinsights.com

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Healthcare Nanotechnology Market Report, History And Forecast 2020-2027, Breakdown Data By Manufacturers, Key Regions, Types And Application ...

FluroTech Expands nanoComposix Mandate; Initiating Covid-19 Test Performance Evaluation and Validation – GlobeNewswire

CALGARY, Alberta, Jan. 25, 2021 (GLOBE NEWSWIRE) -- FluroTech Ltd. (TSXV: TEST) (OTCQB: FLURF) (FluroTech or the Company), is pleased to announce that, FluroTest Ltd. (FluroTest) has retained San Diego-based nanoComposix, a leading life sciences nanotechnology company that specializes in R&D and manufacturing of lateral flow rapid tests, to immediately begin lab performance studies for FluroTests rapid antigen testing pandemic defense platform. This move builds upon previously announced and ongoing optimization efforts, bringing FluroTest one step closer to submitting to the U.S. Food and Drug Administration for Emergency Use Authorization (EUA).

Having already recorded successful proof of concept studies at Albany Medical Colleges immunology laboratories, these performance and validation studies will be conducted in accordance with the FDA requirements for antigen testing, including but not limited to; assessments for sensitivity, specificity, limit of detection, cross-reactivity and interfering substances using inactivated viral culture samples. nanoComposix will follow the guidelines for performance studies outlined by the Antigen Template for Test Developers.

Were moving methodically but swiftly, and conducting lab evaluations is the next logical milestone to tackle as we march toward commercialization, said FluroTest CEO, Bill Phelan. We believe that these performance studies will reaffirm our efforts to introduce this novel solution to a massive, underserved market. My goal is to not only make FluroTest an icon of scientific culture, but rather an icon of our culture at large.

nanoComposix has worked with over 100 different clients to develop materials, composites and formulations with tailored optical and physical properties for a wide range of applications including medical devices, nanoparticle drug delivery, optical sensors, and consumer products. A multidisciplinary team of scientists with backgrounds in chemistry, physics, and engineering have been tapped to run the evaluations, utilizing nanoComposixs in-house BSL-2 laboratory for handling inactivated viral cultures.

"FluroTest has developed a Covid-19 diagnostic platform that we anticipate will be able to screen thousands of people per platform each hour an unprecedented throughput that will be necessary to re-open the economy," said Steve Oldenburg, CEO of nanoComposix. "We believe that the powerful combination of nanoComposix ultra-sensitive detection technology with state of the art robotics automation will be a revolutionary advance in Covid-19 diagnostic testing."

We believe that our FluroTest platform is unique in its sensitivity and throughput to rapidly detect the presence of SARS CoV-2 in saliva samples were excited to expand our working relationship with the nanoComposix team to bring this game changing technology to market, added FluroTech R&D Director and Senior Scientist, Dr. Mauricio Arias.

Readers are cautioned that, although FluroTest has achieved proof of concept prototype, the testing method and device is still in the early stages of research and development and accordingly FluroTest is not currently making any express or implied claims that the technology can, or will be able to, accurately detect the COVID-19 virus. The Platform is currently pending FDA approval.

About FluroTech (TSXV: TEST) (OTCQB: FLURF)

FluroTechs proprietary spectroscopy-based technology allows for the testing and identification of organic and inorganic compounds contained within biological samples for specific applications. Using technology that was first developed at the University of Calgary, FluroTech has created a two-part solution comprising its CompleTest platform technology and consumable testing kits. Its accuracy has been independently validated. FluroTech continues to develop additional applications for the CompleTestTM platform technology. To learn more, visit FluroTech.com

About FluroTest LLC

FluroTest, a first-mover in surge-scale rapid antigen testing for the detection of SARS-CoV2 and other pathogens, is developing a pandemic defense and economic recovery system purpose-built for businesses and special-needs populations requiring fast and highly efficient testing for significant numbers of people. Unlike individual or low-throughput tests, FluroTests system is designed to be well-suited for high-traffic, high-risk pandemic environments including schools and colleges, hospitals and large healthcare facilities, athletic stadiums and performance venues, airline and cruise ship terminals, corporate campuses, shopping centers, manufacturing facilities, transportation and distribution hubs, and other large business and retail locations. Created to support executive business continuity efforts, the system combines and leverages the disciplines of robotics automation, biochemistry, fluorescence detection and cloud computing -- processing thousands of tests per hour while delivering accurate, digitally verifiable results to a test takers mobile device within 5 minutes. To learn more, visit FluroTest.com

About nanoComposix

nanoComposix (www.nanocomposix.com) has been providing customers with precisely engineered and highly characterized nanoparticles for more than 15 years, offering hundreds of different variants of material, size, shape, and surface functionalization as stock products. Their multidisciplinary technical teams provide rapid prototyping, characterization, integration, and scale-up solutions to accelerate R&D and commercialization for a wide variety of applications. nanoComposix is committed to helping its customers bring nanotechnology-enabled products to market and executes contract manufacturing on scales ranging from small beakers to thousands of liters. Nanomaterials for medical devices and clinical trials are fabricated in ISO13485 and cGMP compliant cleanroom facilities.

Contact Information

FluroTech Ltd.Danny Dalla-LongaChief Executive Officer403.680.0644Danny@FluroTech.comwww.FluroTech.com

FluroTest LLC.William PhelanChief Executive Officerinfo@flurotest.comwww.flurotest.com

For all investor inquiries:

MarketSmart Communications Inc.1-877-261-4466Info@marketsmart.ca

Cautionary Statement Regarding Forward-Looking Information

This news release contains "forward-looking information" within the meaning of Canadian securities legislation. Forward-looking information generally refers to information about an issuers business, capital, technology or operations that is prospective in nature, and includes future-oriented financial information about the issuers prospective financial performance or financial position. The forward-looking information in this news release includes disclosure about the ability of the Companys testing devices to accurately and quickly detect COVID-19 and to process large numbers of samples in short time frames, the benefits of and demand for the Companys testing devices, its efforts to obtain approval of the FDA and Health Canada, and the ability of nanoComposix to assist the Company in developing and commercializing its products. The Company made certain material assumptions, including but not limited to prevailing market conditions and general business, economic, competitive, political and social uncertainties, the ability to obtain FDA and Health Canada approvals, the demand for its COVID-19 testing devices and their ability to perform as expected, and to obtain the regulatory approvals required in connection with the same, to develop the forward-looking information in this news release. There can be no assurance that such statements will prove to be accurate, as actual results and future events could differ materially from those anticipated in such statements. Accordingly, readers should not place undue reliance on forward-looking statements.

Actual results may vary from the forward-looking information in this news release due to certain material risk factors described in the Corporations Annual Information Form under the heading Risk Factors, the failure to develop and commercialize its testing devices in a timely manner or at all, the failure to recognize the anticipated benefits from the devices, the failure to obtain FDA or Health Canada approval for its products, the risk that regulatory approvals will not be received and the risk that changing circumstances will result in the decrease in demand for FluroTests products. The Company cautions that the foregoing list of material risk factors and assumptions is not exhaustive.

The Company assumes no obligation to update or revise the forward-looking information in this news release, unless it is required to do so under Canadian securities legislation.

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

This news release does not constitute an offer to sell or a solicitation of an offer to buy any of the securities. The securities described herein have not been and will not be registered under the United States Securities Act of 1933, as amended, or the securities laws of any state and may not be offered or sold within the United States or to or for the benefit or account of U.S. persons, absent such registration or an applicable exemption from such registration requirements.

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FluroTech Expands nanoComposix Mandate; Initiating Covid-19 Test Performance Evaluation and Validation - GlobeNewswire

Healthcare Nanotechnology Market: Find Out Essential Strategies to expand The Business and Also Check Working in 2021-2028 – The Courier

COVID-19 can affect the global economy in three main ways: by directly affecting production and demand, by creating supply chain and market disruption, and by its financial impact on firms and financial markets. Global Healthcare Nanotechnology Market size has covered and analysed the potential of Worldwide market Industry and provides statistics and information on market dynamics, market analysis, growth factors, key challenges, major drivers & restraints, opportunities and forecast. This report presents a comprehensive overview, market shares, and growth opportunities of market 2021 by product type, application, key manufacturers and key regions and countries.

Market Research Inc.proclaims a new addition of comprehensive data to its extensive repository titled as, Healthcare Nanotechnologymarket. This informative data has been scrutinized by using effective methodologies such as primary and secondary research techniques. This research report estimates the scale of the global Healthcare Nanotechnology market over the upcoming year. The recent trends, tools, methodologies have been examined to get a better insight into the businesses.

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Top key players::AmgenTeva PharmaceuticalsAbbottUCBRocheCelgeneSanofiMerck & CoBiogenStrykerGilead SciencesPfizer

(Market Size & Forecast, Different Demand Market by Region, Main Consumer Profile etc

Additionally, it throws light on different dynamic aspects of the businesses, which help to understand the framework of the businesses. The competitive landscape has been elaborated on the basis of profit margin, which helps to understand the competitors at domestic as well as global level.

The globalHealthcare Nanotechnologymarket has been studied by considering numerous attributes such as type, size, applications, and end-users. It includes investigations on the basis of current trends, historical records, and future prospects. This statistical data helps in making informed business decisions for the progress of the industries. For an effective and stronger business outlook, some significant case studies have been mentioned in this report.

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Key Objectives of Healthcare Nanotechnology Market Report:

Study of the annual revenues and market developments of the major players that supply Healthcare Nanotechnology Analysis of the demand for Healthcare Nanotechnology by component Assessment of future trends and growth of architecture in the Healthcare Nanotechnology market Assessment of the Healthcare Nanotechnology market with respect to the type of application Study of the market trends in various regions and countries, by component, of the Healthcare Nanotechnology market Study of contracts and developments related to the Healthcare Nanotechnology market by key players across different regions Finalization of overall market sizes by triangulating the supply-side data, which includes product developments, supply chain, and annual revenues of companies supplying Healthcare Nanotechnology across the globe.

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In this study, the years considered to estimate the size ofHealthcare Nanotechnologyare as follows:

History Year: 2016-2019

Base Year: 2020

Forecast Year 2021 to 2028.

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Healthcare Nanotechnology Market: Find Out Essential Strategies to expand The Business and Also Check Working in 2021-2028 - The Courier

Nanotechnology Drug Delivery Market Insights, Trends and Huge Business Opportunities 2020-2025 The Courier – The Courier

The report provides a detailed assessment of theGlobal Nanotechnology Drug Delivery Market Research Report 2020-2025.This includes enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmaps, value chains, ecosystem player profiles, and strategies included. The report also presents a SWOT analysis and forecast for Nanotechnology Drug Delivery investments from 2020 to 2025. The report explores the current outlook in global and key regions (North America, Europe, Asia-Pacific, and Latin America) from the perspective of players, countries (U.S., Canada, Germany, France, U.K., Italy, Russia, China, Japan, South Korea, Taiwan, Southeast Asia, Mexico, and Brazil, etc.), product types, and end industries.

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https://www.marketintelligencedata.com/reports/80459/nanotechnology-drug-delivery-market-growth-trends-and-forecasts-2020-2025/inquiry?Mode=19&MW

Key Market Trends:Application in Cardiovascular Segment is Expected to Cover a Large Market ShareCardiovascular Diseases (CVD) are the leading cause of death globally. According to estimates by the World Health Organization, an estimated 17.9 million people died from CVDs in 2016, representing 31% of all global deaths. Of these deaths, 85% were due to heart attack and stroke. Moreover, some other reports have also reported that the prevalence and number of deaths due to CVDs have increased and are expected to increase in future as well.

According to the American Heart Association, the deaths per year are estimated to grow to more than 23.6 million by 2030. The increasing number of deaths will lead to increased burden among the people, which will increase the demand for novel nanotechnology drug delivery techniques that are efficient than traditional medicine and hence this is expected to drive the overall market to grow.

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Influence of the Nanotechnology Drug Delivery Market report:Comprehensive assessment of all opportunities and risks in the Nanotechnology Drug Delivery Market.Nanotechnology Drug Delivery Market recent innovations and major events.A detailed study of business strategies for the growth of the Nanotechnology Drug Delivery Market market-leading players.Conclusive study about the growth plot of Nanotechnology Drug Delivery Market for forthcoming years.In-depth understanding of Nanotechnology Drug Delivery Market, market-particular drivers, constraints, and major micro markets.Favorable impression inside vital technological and market latest trends striking the Nanotechnology Drug Delivery Market.

The research includes historic data from 2015 to 2020 and forecasts until 2025 which makes the reports an invaluable resource for industry executives, marketing, sales and product managers, consultants, analysts, and other people looking for key industry data in readily accessible documents with clearly presented tables and graphs.

About Us:Market Intelligence Data provides syndicated market research on industry verticals including Healthcare, Information, and Communication Technology (ICT), Technology and Media, Chemicals, Materials, Energy, Heavy Industry, etc.,Market Intelligence Data provides global and regional market intelligence coverage, a 360-degree market view which includes statistical forecasts, competitive landscape, detailed segmentation, key trends, and strategic recommendations.

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Nanotechnology Drug Delivery Market Insights, Trends and Huge Business Opportunities 2020-2025 The Courier - The Courier

Nanotechnology in Medical Equipment Market Size, Business Growth Tactics, Future Strategies, Competitive Outlook and Forecast to 2027 Jumbo News -…

Fort Collins, Colorado: A new informative report on the Global Nanotechnology in Medical Equipment Market has recently been published by Reports Globe and added to its widespread database which will help to make better strategic decisions in the businesses. It makes use of different proven research methodologies such as primary and secondary research methodologies to collect data from different sources. It comes with an in-depth analysis of global market segments and sub-segments which helps to understand the current situation of the global Nanotechnology in Medical Equipment market. Additionally, it makes use of some significant graphical presentation techniques such as graphs, charts, diagrams, and pictures to get easy understanding to readers. Moreover, it offers summarized data on various business perspectives such as global market shares, drivers, restraints, recent innovative trends, and challenges in front of the global Nanotechnology in Medical Equipment market.

In addition, this research is categorized differently considering the various aspects of this global Nanotechnology in Medical Equipment market. It also evaluates the current situation and the future of the market by using the forecast horizon. The forecast is analyzed based on the volume and revenue of this market. The tools used for analyzing the global Nanotechnology in Medical Equipment Market research report include the porters five forces analysis and SWOT analysis.

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Some of the Important and Key Players of the Global Nanotechnology in Medical Equipment Market:

Geographically, the global Nanotechnology in Medical Equipment market has been scrutinized into different global regions such as North America, Latin America, Middle East, Asia-Pacific, Africa, and Europe on the basis of different attributes like manufacturing base and productivity of the companies. The expert team of researchers throws light on leading key players to get accurate and informative data of global key players. It makes use of analysis techniques such as SWOT and Porters five-technique to analyze the data of the global Nanotechnology in Medical Equipment market. Additionally, different facts and figures are also included in the report to present data of global Nanotechnology in Medical Equipment market more effectively for better and easy understanding to readers

Request a Discount on the report @ https://reportsglobe.com/ask-for-discount/?rid=131103

The Global Nanotechnology in Medical Equipment market is segmented based by type, application, and region.

Nanotechnology in Medical Equipment Market Segmentation, By Type

Nanotechnology in Medical Equipment Market Segmentation, By Application

The best thing about this global Nanotechnology in Medical Equipment market research report is that the significance and application scope of this market has been defined. Besides, various market dynamics and buying criteria have been enhanced in the report. Hence, this market research report is a great scope for identifying new investments in the global Nanotechnology in Medical Equipment market and, identifying how to deal with the market trends, etc. of the global Nanotechnology in Medical Equipment market.

To conclude, the examination of the current market chain, existing norms and policies, and the initiatives taken by the government to promote the global Nanotechnology in Medical Equipment market all over the world. Apart from this, a detailed analysis of the manufactured products, their production chain, price structures of the Nanotechnology in Medical Equipment market has also been studied in this report.

Browse the complete report @ https://reportsglobe.com/product/global-nanotechnology-in-medical-equipment-market-insight/

Following major questions have been addressed through global research report:

1. What will be the global market size and growth rate over the forecast period?2. What are the major trending technologies for increasing the performance of the global Nanotechnology in Medical Equipment market?3. What are the outcomes of industry analysis techniques such as SWOT and porters five techniques?4. What are the demanding regions for global Nanotechnology in Medical Equipment market?5. How to expand coverage of global Nanotechnology in Medical Equipment market?6. What are the effective ways to explore global growth opportunities?7. What are the driving factors for fueling the growth of the global Nanotechnology in Medical Equipment market?8. Which factors are hampering the global market growth?

Different dynamics of the global Nanotechnology in Medical Equipment market are also studied in the global research report such as drivers, restraints, opportunities and threats in front of the global market. Moreover, it includes some sales methodologies and some standard operating procedures to enhance the outcomes of the businesses.

Major Points from Table of Content:

1. Executive Summary2. Assumptions and Acronyms Used3. Research Methodology4. Nanotechnology in Medical Equipment Market Overview5. Nanotechnology in Medical Equipment Supply Chain Analysis6. Nanotechnology in Medical Equipment Pricing Analysis7. Global Nanotechnology in Medical Equipment Market Analysis and Forecast by Type8. Global Nanotechnology in Medical Equipment Market Analysis and Forecast by Application9. Global Nanotechnology in Medical Equipment Market Analysis and Forecast by Sales Channel10. Global Nanotechnology in Medical Equipment Market Analysis and Forecast by Region11. North America Nanotechnology in Medical Equipment Market Analysis and Forecast12. Latin America Nanotechnology in Medical Equipment Market Analysis and Forecast13. Europe Nanotechnology in Medical Equipment Market Analysis and Forecast14. Asia Pacific Nanotechnology in Medical Equipment Market Analysis and Forecast15. Middle East & Africa Nanotechnology in Medical Equipment Market Analysis and Forecast16. Competition Landscape

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Nanotechnology in Medical Equipment Market Size, Business Growth Tactics, Future Strategies, Competitive Outlook and Forecast to 2027 Jumbo News -...

Nanotechnology Enabled Coatings for Aircraft Market to Eyewitness Massive Growth By 2025 | FlightShield, AnCatt, Glonatech, Applied Thin Films …

Overview Of Nanotechnology Enabled Coatings for Aircraft Industry 2020-2025:

This has brought along several changes in This report also covers the impact of COVID-19 on the global market.

The Nanotechnology Enabled Coatings for Aircraft Market analysis summary by Reports Insights is a thorough study of the current trends leading to this vertical trend in various regions. Research summarizes important details related to market share, market size, applications, statistics and sales. In addition, this study emphasizes thorough competition analysis on market prospects, especially growth strategies that market experts claim.

The report offers detailed coverage of Nanotechnology Enabled Coatings for Aircraft industry and main market trends. The market research includes historical and forecast market data, demand, application details, price trends, and company shares of the leading Nanotechnology Enabled Coatings for Aircraft by geography. The report splits the market size, by volume and value, on the basis of application type and geography.

Nanostructure technology is a wide and interdisciplinary area of R&D activities that have developed over the last two decades. Nanotechnology enabled coatings for aircraft has a lot of more advantages than normal coating materials. The use of thermal spray coating is gaining traction at a significant pace with the development and use of new-generation gas turbine engines that necessitate the adoption of materials that can endure high power generation. Also, nanoscale thermal barrier coatings can be used on aircraft surfaces that are produced using metal or fiberglass.

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Nanotechnology Enabled Coatings for Aircraft Market competition by top manufacturers as follow:AnCattApplied Thin FilmsFlightShieldGlonatechTripleCHOOSE NanoTechGeneral NanoHR ToughGuardSurfactis TechnologiesTesla NanoCoatings

By The Product Type, The Market is Primarily Split Into:-Anti-corrosion, abrasion, and wear-resistant aircraft nanocoatingThermal barrier and flame retardant aircraft nanocoatingAnti-icing aircraft nanocoating

By The End Users/Application, This Report Covers The Following Segments:-Commercial aircraftMilitary aircraft

The global Nanotechnology Enabled Coatings for Aircraft market has been segmented on the basis of technology, product type, application, distribution channel, end-user, and industry vertical, along with the geography, delivering valuable insights.

Market segment by Regions/Countries, this report coversNorth AmericaEuropeChinaRest of Asia PacificCentral & South AmericaMiddle East & Africa

Major factors covered in the report:

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Market share assessments for the regional and country level segments. Market share analysis of the top industry players. Strategic recommendations for the new entrants. Market forecasts for a minimum of 9 years of all the mentioned segments, sub segments and the regional markets. Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations). Strategic recommendations in key business segments based on the market estimations. Competitive landscaping mapping the key common trends. Company profiling with detailed strategies, financials, and recent developments. Supply chain trends mapping the latest technological advancements.

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Nanotechnology in Medical Devices Market Size, Business Growth Tactics, Future Strategies, Competitive Outlook and Forecast to 2027 Jumbo News -…

Fort Collins, Colorado: A new informative report on the Global Nanotechnology in Medical Devices Market has recently been published by Reports Globe and added to its widespread database which will help to make better strategic decisions in the businesses. It makes use of different proven research methodologies such as primary and secondary research methodologies to collect data from different sources. It comes with an in-depth analysis of global market segments and sub-segments which helps to understand the current situation of the global Nanotechnology in Medical Devices market. Additionally, it makes use of some significant graphical presentation techniques such as graphs, charts, diagrams, and pictures to get easy understanding to readers. Moreover, it offers summarized data on various business perspectives such as global market shares, drivers, restraints, recent innovative trends, and challenges in front of the global Nanotechnology in Medical Devices market.

In addition, this research is categorized differently considering the various aspects of this global Nanotechnology in Medical Devices market. It also evaluates the current situation and the future of the market by using the forecast horizon. The forecast is analyzed based on the volume and revenue of this market. The tools used for analyzing the global Nanotechnology in Medical Devices Market research report include the porters five forces analysis and SWOT analysis.

Get Exclusive Sample of Report on Nanotechnology in Medical Devices Market is Available @ https://reportsglobe.com/download-sample/?rid=131098

Some of the Important and Key Players of the Global Nanotechnology in Medical Devices Market:

Geographically, the global Nanotechnology in Medical Devices market has been scrutinized into different global regions such as North America, Latin America, Middle East, Asia-Pacific, Africa, and Europe on the basis of different attributes like manufacturing base and productivity of the companies. The expert team of researchers throws light on leading key players to get accurate and informative data of global key players. It makes use of analysis techniques such as SWOT and Porters five-technique to analyze the data of the global Nanotechnology in Medical Devices market. Additionally, different facts and figures are also included in the report to present data of global Nanotechnology in Medical Devices market more effectively for better and easy understanding to readers

Request a Discount on the report @ https://reportsglobe.com/ask-for-discount/?rid=131098

The Global Nanotechnology in Medical Devices market is segmented based by type, application, and region.

Nanotechnology in Medical Devices Market Segmentation, By Type

Nanotechnology in Medical Devices Market Segmentation, By Application

The best thing about this global Nanotechnology in Medical Devices market research report is that the significance and application scope of this market has been defined. Besides, various market dynamics and buying criteria have been enhanced in the report. Hence, this market research report is a great scope for identifying new investments in the global Nanotechnology in Medical Devices market and, identifying how to deal with the market trends, etc. of the global Nanotechnology in Medical Devices market.

To conclude, the examination of the current market chain, existing norms and policies, and the initiatives taken by the government to promote the global Nanotechnology in Medical Devices market all over the world. Apart from this, a detailed analysis of the manufactured products, their production chain, price structures of the Nanotechnology in Medical Devices market has also been studied in this report.

Browse the complete report @ https://reportsglobe.com/product/global-nanotechnology-in-medical-devices-market-insight/

Following major questions have been addressed through global research report:

1. What will be the global market size and growth rate over the forecast period?2. What are the major trending technologies for increasing the performance of the global Nanotechnology in Medical Devices market?3. What are the outcomes of industry analysis techniques such as SWOT and porters five techniques?4. What are the demanding regions for global Nanotechnology in Medical Devices market?5. How to expand coverage of global Nanotechnology in Medical Devices market?6. What are the effective ways to explore global growth opportunities?7. What are the driving factors for fueling the growth of the global Nanotechnology in Medical Devices market?8. Which factors are hampering the global market growth?

Different dynamics of the global Nanotechnology in Medical Devices market are also studied in the global research report such as drivers, restraints, opportunities and threats in front of the global market. Moreover, it includes some sales methodologies and some standard operating procedures to enhance the outcomes of the businesses.

Major Points from Table of Content:

1. Executive Summary2. Assumptions and Acronyms Used3. Research Methodology4. Nanotechnology in Medical Devices Market Overview5. Nanotechnology in Medical Devices Supply Chain Analysis6. Nanotechnology in Medical Devices Pricing Analysis7. Global Nanotechnology in Medical Devices Market Analysis and Forecast by Type8. Global Nanotechnology in Medical Devices Market Analysis and Forecast by Application9. Global Nanotechnology in Medical Devices Market Analysis and Forecast by Sales Channel10. Global Nanotechnology in Medical Devices Market Analysis and Forecast by Region11. North America Nanotechnology in Medical Devices Market Analysis and Forecast12. Latin America Nanotechnology in Medical Devices Market Analysis and Forecast13. Europe Nanotechnology in Medical Devices Market Analysis and Forecast14. Asia Pacific Nanotechnology in Medical Devices Market Analysis and Forecast15. Middle East & Africa Nanotechnology in Medical Devices Market Analysis and Forecast16. Competition Landscape

Do You Have Any Query Or Specific Requirement? Ask to Our Industry Expert @ https://reportsglobe.com/need-customization/?rid=131098

How Reports Globe is different than other Market Research Providers:

The inception of Reports Globe has been backed by providing clients with a holistic view of market conditions and future possibilities/opportunities to reap maximum profits out of their businesses and assist in decision making. Our team of in-house analysts and consultants works tirelessly to understand your needs and suggest the best possible solutions to fulfill your research requirements.

Our team at Reports Globe follows a rigorous process of data validation, which allows us to publish reports from publishers with minimum or no deviations. Reports Globe collects, segregates, and publishes more than 500 reports annually that cater to products and services across numerous domains.

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Nanotechnology in Medical Devices Market Size, Business Growth Tactics, Future Strategies, Competitive Outlook and Forecast to 2027 Jumbo News -...

A fridge thats colder than outer space could take quantum computing to new heights – TechRadar

For most of us, the refrigerator is where we keep our dairy, meat and vegetables. For Ilana Wisby, CEO at Oxford Quantum Circuits (OQC), refrigeration means something else entirely.

Her company, operator of the UKs only commercially available quantum computer, has recently announced a new partnership with Oxford Instruments Nanoscience, a manufacturer of ultra-low temperature refrigerators.

As per the agreement, OQC will be the first to deploy the new Proteox cryo-refrigerator, which reaches temperatures as low as 5-8 millikelvin (circa -273 C/-460 F), significantly colder than outer space.

According to Wisby, the arrival of powerful new refrigerators will allow organizations like hers to take quantum computing to new heights, by improving the "quality" of superconducting quantum bits (qubits).

Quantum effects only happen in really low-energy environments, and energy is temperature. Ultimately, we need to be at incredibly low temperatures, because were working at single-digit electron levels, she explained

A qubit is an electronic circuit made from aluminum, built with a piece of silicon, which we cool down until it becomes superconducting and then further until single electron effects are happening.

The colder the system the less noise and mess there is, she told TechRadar Pro, because all the other junk is frozen out. With the Proteox, then, OQC hopes to be able to scale up the architecture of its quantum machine in a significant way.

The meaning of quantum computing, let alone its significance, can be difficult to grasp without a background in physics. At the end of our conversation, Wisby herself told us she had found it difficult to balance scientific integrity with the need to communicate the concepts.

But, in short, quantum computers approach problem solving in an entirely different way to classical machines, making use of certain symmetries to speed up processing and allow for far greater scale.

Quantum computers exploit a number of principles that define how the world works at an atomic level. Superposition, for example, is a principle whereby something can be in two positions at once, like a coin thats both a head and a tail, said Wisby.

Ultimately, that can happen with information as well. We are therefore no longer limited to just ones and zeros, but can have many versions of numbers in between, superimposed.

Instead of running calculation after calculation in a linear fashion, quantum machines can run them in parallel, optimizing for many more variables - and doing so extremely quickly.

Advances in the field, which is really still only in its nascent stages, are expected to have a major impact on areas such as drug discovery, logistics, finance, cybersecurity and almost any other market that needs to process massive volumes of information.

Quantum computers in operation today, however, can not yet consistently outperform classical supercomputers. There are also very few quantum computing resources available for businesses to utilize; OQC has only a small pool of rivals worldwide in this regard.

The most famous milestone held aloft as a marker of progress is that of quantum supremacy, the point at which quantum computers are able to solve problems that would take classical machines an infeasible amount of time.

In October 2019, Google announced it was the first company to reach this landmark, performing a task with its Sycamore prototype in 200 seconds that would take another machine 10,000 years.

But the claim was very publicly contested by IBM, which dialled up its Summit supercomputer (previously the worlds fastest) to prove it was capable of processing the same workload in roughly two and a half days.

Although the quantum supremacy landmark remains disputed, and quantum computers have not yet been responsible for any major scientific discoveries, Wisby is bullish about the industrys near-term prospects.

Were not there yet, but we will be very soon. Were at a tipping point after which we should start to see discoveries and applications that were fundamentally impossible before, realistically in the next three years.

In pharma, that might mean understanding specific molecules, even better understanding water. We hope to see customers working on new drugs that have been enabled by a quantum computer, at least partially, in the not too distant future.

The challenge facing organizations working to push quantum computing to the next level is balancing quality, scale and control. Currently, as quantum systems are scaled and an appropriate level of control asserted, the quality decreases and information is lost.

Achieving all these things in parallel is whats going to unlock a quantum-enabled future, says Wisby.

There is work to be done, in other words, before quantum fulfils its potential. But steps forward in the ability to fabricate superconducting devices at scale and developments in areas such as refrigeration are setting the stage.

Excerpt from:

A fridge thats colder than outer space could take quantum computing to new heights - TechRadar

Tech 24 – Welcome to the quantum era – FRANCE 24

Issued on: 25/01/2021 - 13:19Modified: 25/01/2021 - 14:18

The first quantum revolution gave way to lasers and transistors while the secondushered in MRIs and GPS. But the technology still holds much more promisefor the future. We tell you why quantum computing is becomingsuch a strategic sector.

Quantum physics constitutes a huge change in how one understands the world and conceives reality. There is a shift from the intuitive, straightforward classical paradigmto the quantum world that describesmuch more complex, counterintuitive and amazing phenomena. In this edition, we attempt to explain the fundamental mechanism of quantum physics, a demonstration of how little we actually know about our world.

We dig deeper into the prospect of quantum computers with Eleni Diamanti, a senior researcher at LIP6 Sorbonne. She tells us how much this technology is set to revolutionise certain sectors like communications, medtech and theInternet of Things, plus how nations and companies are now engaged in an arms race for quantum supremacy.

And in Test 24, wetake a look at the French startup Vaonis' latest deviceVespera, a perfect hybrid between a smart telescope and a camera that picked up the best innovation award at this year's CES trade show.

Go here to read the rest:

Tech 24 - Welcome to the quantum era - FRANCE 24

University of Glasgow partners with Oxford Instruments NanoScience on quantum computing – SelectScience

The University of Glasgow, one of thepioneering institutions at the leading edge of quantum technology development and home of the Quantum Circuits Group, has announced its using Oxford Instruments next-generation Cryofree refrigerator, Proteox, as part of its research to accelerate the commercialization of quantum computing in the UK.

Were excited to be using Proteox, the latest in cryogen-free refrigeration technology, and to have the system up and running in our lab, comments Professor Martin Weides, Head of the Quantum Circuits Group. Oxford Instruments is a long-term strategic partner and todays announcement highlights the importance of our close collaboration to the future of quantum computing development. Proteox is designed with quantum scale-up in mind, and through the use of its Secondary Insert technology, were able to easily characterize and develop integrated chips and components for quantum computing applications.

The University of Glasgow, its subsidiary and commercialization partner, Kelvin Nanotechnology, and Oxford Instruments NanoScience are part of a larger consortium supported by funding from Innovate UK, the UKs innovation agency, granted in April 2020. The consortium partners will boost quantum technology development by the design, manufacture, and test of superconducting quantum devices.

Today'sannouncement demonstrates the major contribution Oxford Instruments is making towards pioneering quantum technology work in the UK, states Stuart Woods, Managing Director of Oxford Instruments NanoScience. With our 60 years of experience of in-house component production and global service support, we are accelerating the commercialization of quantum to discover whats next supporting our customers across the world.

Proteox is a next-generation Cryofree system that provides a step change in modularity and adaptability for ultra-low temperature experiments in condensed-matter physics and quantum computing industrialization. The Proteox platform has been developed to provide a single, interchangeable modular solution that can support multiple users and a variety of set-ups or experiments. It also includes remote management software which is integral to the system design, enabling, for example, the system to be managed from anywhere in the world.

Want the latest science news straight to your inbox? Become a SelectScience member for free today>>

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University of Glasgow partners with Oxford Instruments NanoScience on quantum computing - SelectScience

Analysis: Opportunities and Restraint of the Quantum Computing Market KSU | The Sentinel Newspaper – KSU | The Sentinel Newspaper

The globalquantum computing marketis valued at $667.3 million by 2027, surging from $88.2 million in 2019 at a noteworthy CAGR of 30.0%.

Impact Analysis of COVID-19 on the Quantum Computing Market

The global market for quantum computing services is projected to experience considerable impact due to the emergence of the Coronavirus disease (COVID-19). In the fight against COVID-19, quantum computing platform has joined the force of disruptive technologies at the service to better control the global outbreak. The current coronavirus crisis provides a valuable stage for zooming in the real potential applications of quantum computing in highly-impacted and complex situations. The esteemed companies operating in global quantum computing market are trying their best to provide integrated platform amidst the shutdown. For instance, in September 2020, IBM, an American multinational technology and consulting company, announced to conduct IBM Quantum Summit 2020 to discover chemical compounds that could contribute to the fight against COVID-19 pandemic.

On the other hand, quantum computing is very helpful in the discovery of lot of drugs which is a computationally-intensive task. Quantum computing can analyze the the interaction between biomolecules, and this can be helpful in tackling infectious agents such as coronavirus and others. There can be no other better way than to model the problem on a computer and conduct extensive research on the same. For instance in March, D-Wave announced that they are offering quantum computers free to anyone working on the coronavirus crisis for research and other work related to covid19. Therefore, there are many companies expirenced upsurge in growth, throughout the pandemic period. These type of factors may lead lucrative opportunities for the investors in the forecast period.

Quantum Computing Market Analysis:

The enormous growth of the global quantum computing market is mainly attributed to the increasing integration of quantum computing platforms in healthcare. Companies such as 1QB Information Technologies Inc., QxBranch, LLC, D-Wave Systems Inc. are working in the field of material simulation to enhance the accessibility, availability, and usability of quantum computers in material simulation applications. In addition, these players are following strategic collaborations, business expansion and technological innovations to acquire the largest share in the global industry. For instance, in October 2020, Cambridge Quantum Computing announced that they are opening Ph.D. internships with multinational pharmaceutical companies for drug designing through quantum algorithms. These key factors may lead to a surge in the demand for quantum computing services in the global market.

Lack of knowledge and skills may create a negative impact on global quantum computing services throughout the analysis timeframe. This type of factors may hamper the quantum computing market growth during the analysis period.

The global quantum computing industry is growing extensively across various fields, but fastest growing adoption of quantum computing is in agriculture. Quantum computing offers software solutions for agriculture in large businesses and startups all over the world to develop innovative solutions in agriculture. For instance Quantum, a software and data science company launched a software named AgriTech, ths software helps farmers to monitor crops, agricultural fields and it will respond quickly to all the issues related to agriculture. These factors may provide lucrative opportunities for the global quantum computing market, in the coming years.

The consulting solutions sub-segment of the quantum computing market will have the fastest growth and it is projected to surpass $354.0 million by 2027, with an increase from $37.1 million in 2019. This is mainly attributed to its application in blind quantum computing and quantum cryptography playing a major role to secure cloud computing services. Moreover, the consulting solutions segment for quantum computing technologies covers broad range of end-user industries including automotive, space & defense, chemicals, healthcare, and energy & power, and others.

Moreover systems offering sub-segment type will have a significant market share and is projected to grow at a CAGR of 26.7% by registering a revenue of $313.3 million by 2027. This growth is mainly attributed to many government authorities across the developed as well as developing economies that are heavily investing into quantum computing technologies. For instance, in February 2020, the Indian government announces that they are going to invest $1120 million in quantum computing research. This type of government support and scheme is expected to flourish the research for technology under the National Mission of Quantum Technology and Application project. Such government support may bolster the segmental growth, in the analysis period.

Machine learning sub-segment for the quantum computing industry shall have rapid growth and it is anticipated to generate a revenue of $236.9 million by 2027, during the forecast period. This growth is mainly attributed to higher applications of quantum computing in the broad range of areas such as drug discovery, multi-omics data integration, and many among others. These factors may offer lucrative opportunities for the segment, during the forecast timeframe.

The banking and finance sub-segment will be the fastest-growing segment and it is expected to register a revenue of $159.2 million by 2027, throughout the analysis timeframe. The enormously growing quantum computing in the finance sector across the globe has advanced with developments in smartphone technology and computer processing. In addition, the quantum computing platform helps speed up the transactional activities in cost-effective ways. Hence, the quantum computing platform is extensively attracting the interest of BFSI firms that are seeking to boost their data speed, trade, and transactions. Such factors are projected to upsurge the growth of the segment, during the projected timeframe.

The quantum computing market for the Asia-Pacific region will be a rapidly-growing market and it has generated a revenue of $18.1 million in 2019 and is further projected to reach up to $150.3 million by 2027. The demand for quantum computing services is surging in the Asia pacific region, specifically because of the strategic collaboration and development. For instance, in December 2019, D-Wave Systems came in a partnership with Japans NEC for building of quantum apps and hybrid HPC for exploring the capabilities NECs high-performance computers and D-Waves quantum systems. Such partnerships may further surge the growth of market, during the analysis timeframe.

The Europe quantum computing market shall have a dominating market share and is anticipated to reach up to $ 221.2 million by the end of 2027 due to its higher application in fields such as development and discovery of new drugs, cryptography, cyber security, defense sector, among others. In addition, the use of quantum computing will also have positive consequences in development of AI as well as in machine learning. For instance, in July 2019, Utimaco GmbH, software & hardware provider came in partnership with ISARA to utilize post quantum cryptography; this partnership will help their users to have secured and encrypted communication that cannot be decrypted by other computers. These initiatives may create a positive impact on the Asia-pacific quantum computing market, during the forecast period.

Key Market Players

Porters Five Forces Analysis for Quantum Computing Market:

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Analysis: Opportunities and Restraint of the Quantum Computing Market KSU | The Sentinel Newspaper - KSU | The Sentinel Newspaper

The Worldwide Quantum Computing Industry will Exceed $7.1 Billion by 2026 – GlobeNewswire

Dublin, Jan. 19, 2021 (GLOBE NEWSWIRE) -- The "Quantum Computing Market by Technology, Infrastructure, Services, and Industry Verticals 2021 - 2026" report has been added to ResearchAndMarkets.com's offering.

This report assesses the technology, companies/organizations, R&D efforts, and potential solutions facilitated by quantum computing. The report provides global and regional forecasts as well as the outlook for quantum computing impact on infrastructure including hardware, software, applications, and services from 2021 to 2026. This includes the quantum computing market across major industry verticals.

While classical (non-quantum) computers make the modern digital world possible, there are many tasks that cannot be solved using conventional computational methods. This is because of limitations in processing power. For example, fourth-generation computers cannot perform multiple computations at one time with one processor. Physical phenomena at the nanoscale indicate that a quantum computer is capable of computational feats that are orders of magnitude greater than conventional methods.

This is due to the use of something referred to as a quantum bit (qubit), which may exist as a zero or one (as in classical computing) or may exist in two-states simultaneously (0 and 1 at the same time) due to the superposition principle of quantum physics. This enables greater processing power than the normal binary (zero only or one only) representation of data.

Whereas parallel computing is achieved in classical computers via linking processors together, quantum computers may conduct multiple computations with a single processor. This is referred to as quantum parallelism and is a major difference between hyper-fast quantum computers and speed-limited classical computers.

Quantum computing is anticipated to support many new and enhanced capabilities including:

Target Audience:

Select Report Findings:

Report Benefits:

Key Topics Covered:

1.0 Executive Summary

2.0 Introduction

3.0 Technology and Market Analysis3.1 Quantum Computing State of the Industry3.2 Quantum Computing Technology Stack3.3 Quantum Computing and Artificial Intelligence3.4 Quantum Neurons3.5 Quantum Computing and Big Data3.6 Linear Optical Quantum Computing3.7 Quantum Computing Business Model3.8 Quantum Software Platform3.9 Application Areas3.10 Emerging Revenue Sectors3.11 Quantum Computing Investment Analysis3.12 Quantum Computing Initiatives by Country3.12.1 USA3.12.2 Canada3.12.3 Mexico3.12.4 Brazil3.12.5 UK3.12.6 France3.12.7 Russia3.12.8 Germany3.12.9 Netherlands3.12.10 Denmark3.12.11 Sweden3.12.12 Saudi Arabia3.12.13 UAE3.12.14 Qatar3.12.15 Kuwait3.12.16 Israel3.12.17 Australia3.12.18 China3.12.19 Japan3.12.20 India3.12.21 Singapore

4.0 Quantum Computing Drivers and Challenges4.1 Quantum Computing Market Dynamics4.2 Quantum Computing Market Drivers4.2.1 Growing Adoption in Aerospace and Defense Sectors4.2.2 Growing investment of Governments4.2.3 Emergence of Advance Applications4.3 Quantum Computing Market Challenges

5.0 Quantum Computing Use Cases5.1 Quantum Computing in Pharmaceuticals5.2 Applying Quantum Technology to Financial Problems5.3 Accelerate Autonomous Vehicles with Quantum AI5.4 Car Manufacturers using Quantum Computing5.5 Accelerating Advanced Computing for NASA Missions

6.0 Quantum Computing Value Chain Analysis6.1 Quantum Computing Value Chain Structure6.2 Quantum Computing Competitive Analysis6.2.1 Leading Vendor Efforts6.2.2 Start-up Companies6.2.3 Government Initiatives6.2.4 University Initiatives6.2.5 Venture Capital Investments6.3 Large Scale Computing Systems

7.0 Company Analysis7.1 D-Wave Systems Inc.7.1.1 Company Overview:7.1.2 Product Portfolio7.1.3 Recent Development7.2 Google Inc.7.2.1 Company Overview:7.2.2 Product Portfolio7.2.3 Recent Development7.3 Microsoft Corporation7.3.1 Company Overview:7.3.2 Product Portfolio7.3.3 Recent Development7.4 IBM Corporation7.4.1 Company Overview:7.4.2 Product Portfolio7.4.3 Recent Development7.5 Intel Corporation7.5.1 Company Overview7.5.2 Product Portfolio7.5.3 Recent Development7.6 Nokia Corporation7.6.1 Company Overview7.6.2 Product Portfolio7.6.3 Recent Developments7.7 Toshiba Corporation7.7.1 Company Overview7.7.2 Product Portfolio7.7.3 Recent Development7.8 Raytheon Company7.8.1 Company Overview7.8.2 Product Portfolio7.8.3 Recent Development7.9 Other Companies7.9.1 1QB Information Technologies Inc.7.9.1.1 Company Overview7.9.1.2 Recent Development7.9.2 Cambridge Quantum Computing Ltd.7.9.2.1 Company Overview7.9.2.2 Recent Development7.9.3 QC Ware Corp.7.9.3.1 Company Overview7.9.3.2 Recent Development7.9.4 MagiQ Technologies Inc.7.9.4.1 Company Overview7.9.5 Rigetti Computing7.9.5.1 Company Overview7.9.5.2 Recent Development7.9.6 Anyon Systems Inc.7.9.6.1 Company Overview7.9.7 Quantum Circuits Inc.7.9.7.1 Company Overview7.9.7.2 Recent Development7.9.8 Hewlett Packard Enterprise (HPE)7.9.8.1 Company Overview7.9.8.2 Recent Development7.9.9 Fujitsu Ltd.7.9.9.1 Company Overview7.9.9.2 Recent Development7.9.10 NEC Corporation7.9.10.1 Company Overview7.9.10.2 Recent Development7.9.11 SK Telecom7.9.11.1 Company Overview7.9.11.2 Recent Development7.9.12 Lockheed Martin Corporation7.9.12.1 Company Overview7.9.13 NTT Docomo Inc.7.9.13.1 Company Overview7.9.13.2 Recent Development7.9.14 Alibaba Group Holding Limited7.9.14.1 Company Overview7.9.14.2 Recent Development7.9.15 Booz Allen Hamilton Inc.7.9.15.1 Company Overview7.9.16 Airbus Group7.9.16.1 Company Overview7.9.16.2 Recent Development7.9.17 Amgen Inc.7.9.17.1 Company Overview7.9.17.2 Recent Development7.9.18 Biogen Inc.7.9.18.1 Company Overview7.9.18.2 Recent Development7.9.19 BT Group7.9.19.1 Company Overview7.9.19.2 Recent Development7.9.20 Mitsubishi Electric Corp.7.9.20.1 Company Overview7.9.21 Volkswagen AG7.9.21.1 Company Overview7.9.21.2 Recent Development7.9.22 KPN7.9.22.1 Recent Development7.10 Ecosystem Contributors7.10.1 Agilent Technologies7.10.2 Artiste-qb.net7.10.3 Avago Technologies7.10.4 Ciena Corporation7.10.5 Eagle Power Technologies Inc7.10.6 Emcore Corporation7.10.7 Enablence Technologies7.10.8 Entanglement Partners7.10.9 Fathom Computing7.10.10 Alpine Quantum Technologies GmbH7.10.11 Atom Computing7.10.12 Black Brane Systems7.10.13 Delft Circuits7.10.14 EeroQ7.10.15 Everettian Technologies7.10.16 EvolutionQ7.10.17 H-Bar Consultants7.10.18 Horizon Quantum Computing7.10.19 ID Quantique (IDQ)7.10.20 InfiniQuant7.10.21 IonQ7.10.22 ISARA7.10.23 KETS Quantum Security7.10.24 Magiq7.10.25 MDR Corporation7.10.26 Nordic Quantum Computing Group (NQCG)7.10.27 Oxford Quantum Circuits7.10.28 Post-Quantum (PQ Solutions)7.10.29 ProteinQure7.10.30 PsiQuantum7.10.31 Q&I7.10.32 Qasky7.10.33 QbitLogic7.10.34 Q-Ctrl7.10.35 Qilimanjaro Quantum Hub7.10.36 Qindom7.10.37 Qnami7.10.38 QSpice Labs7.10.39 Qu & Co7.10.40 Quandela7.10.41 Quantika7.10.42 Quantum Benchmark Inc.7.10.43 Quantum Circuits Inc. (QCI)7.10.44 Quantum Factory GmbH7.10.45 QuantumCTek7.10.46 Quantum Motion Technologies7.10.47 QuantumX7.10.48 Qubitekk7.10.49 Qubitera LLC7.10.50 Quintessence Labs7.10.51 Qulab7.10.52 Qunnect7.10.53 QuNu Labs7.10.54 River Lane Research (RLR)7.10.55 SeeQC7.10.56 Silicon Quantum Computing7.10.57 Sparrow Quantum7.10.58 Strangeworks7.10.59 Tokyo Quantum Computing (TQC)7.10.60 TundraSystems Global Ltd.7.10.61 Turing7.10.62 Xanadu7.10.63 Zapata Computing7.10.64 Accenture7.10.65 Atos Quantum7.10.66 Baidu7.10.67 Northrop Grumman7.10.68 Quantum Computing Inc.7.10.69 Keysight Technologies7.10.70 Nano-Meta Technologies7.10.71 Optalysys Ltd.

8.0 Quantum Computing Market Analysis and Forecasts 2021 - 20268.1.1 Quantum Computing Market by Infrastructure8.1.1.1 Quantum Computing Market by Hardware Type8.1.1.2 Quantum Computing Market by Application Software Type8.1.1.3 Quantum Computing Market by Service Type8.1.1.3.1 Quantum Computing Market by Professional Service Type8.1.2 Quantum Computing Market by Technology Segment8.1.3 Quantum Computing Market by Industry Vertical8.1.4 Quantum Computing Market by Region8.1.4.1 North America Quantum Computing Market by Infrastructure, Technology, Industry Vertical, and Country8.1.4.2 European Quantum Computing Market by Infrastructure, Technology, and Industry Vertical8.1.4.3 Asia-Pacific Quantum Computing Market by Infrastructure, Technology, and Industry Vertical8.1.4.4 Middle East & Africa Quantum Computing Market by Infrastructure, Technology, and Industry Vertical8.1.4.5 Latin America Quantum Computing Market by Infrastructure, Technology, and Industry Vertical

9.0 Conclusions and Recommendations

10.0 Appendix: Quantum Computing and Classical HPC10.1 Next Generation Computing10.2 Quantum Computing vs. Classical High-Performance Computing10.3 Artificial Intelligence in High Performance Computing10.4 Quantum Technology Market in Exascale Computing

For more information about this report visit https://www.researchandmarkets.com/r/omefq7

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The Worldwide Quantum Computing Industry will Exceed $7.1 Billion by 2026 - GlobeNewswire

Quantum Computing Acceleration of AI in Pharma on the Rise – RTInsights

More than four out of five (82 percent) surveyed pharma companies believe quantum computing will impact the industry within the next decade.

Quantum computing is being eyed to accelerate computations in a variety of applications. While many routine computational workloads are well-served by traditional high-performance computing (HPC) systems, quantum computing offers advantages for certain classes of applications. One category that it appears can greatly benefit is pharmaceutical research. Specifically, leading organizations in the field hope to use the technology to accelerate drug discovery and the development of new therapies.

One sign of the growing adoption in the life sciences was anannouncement last week of a collaborative agreement between BoehringerIngelheim and Google Quantum AI (Google). The two will focus on researching andimplementing cutting-edge use cases for quantum computing in pharmaceuticalresearch and development (R&D), specifically molecular dynamicssimulations.

See also: Quantum Computing: Coming to a Platform Near You

The new partnership combines Boehringer Ingelheimsexpertise in the field of computer-aided drug design and in silico modelingwith Googles efforts in quantum computers and algorithms. Boehringer Ingelheimis the first pharmaceutical company worldwide to join forces with Google inquantum computing. The partnership is designed for three years and is co-led bythe newly established Quantum Lab of Boehringer Ingelheim.

In making the announcement, the teams noted that while thetechnology is still new, there are opportunities to make significant advances.Quantum computing is still very much an emerging technology, saidMichaelSchmelmer, Member of the Board of Managing Directors of Boehringer Ingelheimwith responsibility for Finance and Group Functions. However, we are convincedthat this technology could help us to provide even more humans and animals withinnovative and groundbreaking medicines in the future.

The work here is yet another part of wide-ranging Boehringer Ingelheim technology investments in a broad range of digital technologies. Those investments encompass key areas such as Artificial Intelligence (AI), machine learning, and data science to better understand diseases, their drivers and biomarkers, and digital therapeutics.

With respect to potential advances using quantum computing,the technology has the potential to accurately simulate and compare much largermolecules than currently possible with traditional (HPC) systems. Extremelyaccurate modeling of molecular systems is widely anticipated as among the mostnatural and potentially transformative applications of quantum computing, saidRyan Babbush, Head of Quantum Algorithms at Google, when the news was announced.

Using the technology in pharmaceutical research will require new compute systems, software, and expertise. As such, adoption is still in its early stages. A survey conducted last year by the Pistoia Alliance, theQuantum Economic Development Consortium(QED-C), andQuPharm found almost one third (31 percent) of life science organizations were set to begin quantum computing evaluation in 2020. A further 39 percent are planning to evaluate this year or have the technology on their radar, while 30 percent have no current plans to evaluate.

The three organizations have established a cross-industry Community of Interest (CoI). The aim is to explore opportunities for the technology to enhance the efficiency and effectiveness of biopharma R&D. The CoI aims to support companies that need help navigating the pathway to quantum computing.

While we are still in the early stages of this newtechnology becoming available, there are great expectations of its importance.That same survey found that more than four out of five respondents (82 percent)believe quantum computing will impact the industry within the next decade.

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Quantum Computing Acceleration of AI in Pharma on the Rise - RTInsights

Closing the quantum computing skills gap could make all the difference in tackling climate change – The Globe and Mail

Two years ago, the UNs Intergovernmental Panel on Climate Change reported that global emissions must be slashed to net zero by 2050 if we are to avoid the full devastation of climate change. Nearly 120 countries (including Canada) representing 65 per cent of global emissions and more than 70 per cent of the world economy have committed to working on net-zero targets. However, while the goal of these countries is the same, the approach by which to achieve it varies.

Advanced technologies are poised to be game-changers in the battle to overcome climate change. Quantum computing is just one example, as researchers learn more about its potential, including discovering new ways to capture and transform CO2s harmful emissions into usable energy and remove carbon from the atmosphere. Scientists are also working on it to create molecules that replace the chemical catalysts needed for fertilizer production a process which now accounts for up to 3 per cent of the energy used on the planet.

While all computing systems depend on an ability to store and manage information, some of the solutions to challenges we face now such as CO2 reduction may not be achievable using todays computational power. Quantum computers, which leverage quantum mechanical phenomena to perform computations, could solve in mere seconds problems that once might have taken a million years to crack.

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The potential of quantum computing is not lost on government and industry leaders. Research firm Gartner projects that, by 2023, 20 per cent of organizations will have earmarked quantum computing in their budgets, compared with less than one per cent in 2018. This is good news for Canada, a country considered to be a pioneer in quantum science. According to a recent study by McKinsey and Company, our country has been ranked first in the world in quantum computing science, first in the G7 in per-capita spending on research in on the subject, and fifth in the world in total expenditure on quantum science in general. This translates into a $142.4-billion opportunity that could employ 229,000 Canadians by 2040, according to the National Research Council of Canada. This potential demand for a brand-new pool of talent to fill potentially more than a quarter of million jobs means that we need to prepare our workforce now.

While science and math are the foundation of a career in quantum computing, there is no single set of skills that will take you there. Physics, computer science and engineering are all solid competencies, but as quantum is so interdisciplinary, exploring other options is important too. For example, cybersecurity expertise will be in higher demand as the potential for cybercrime grows at the same rate as the technology.

As with many opportunities, a diverse background of knowledge is often helpful, especially as the pervasiveness of quantum technology grows across more industries, including finance, health care, telecommunications, chemical and pharmaceutical manufacturing. Education that prepares for careers as technical writers, project managers, analysts and other similar roles is beneficial. The ability to communicate, think critically, collaborate and be curious is also important. And, as we move to a greener economy both in Canada and worldwide, knowledge of climate issues is valuable.

To fill the skills gap that the growth of quantum computing will create, academic institutions, companies and governments across Canada should be developing and executing strategies now. Businesses can start identifying what current job roles could evolve into quantum-based ones with some reskilling. Cross-industry and cross-business collaboration would also serve to develop key employee skills for a capable workforce nationwide. Finally, governments should ensure that their training programs recognize the growth potential of quantum, especially as it develops to meet the needs of stronger environmental measures.

In the case of academics, quantum education ought to be integrated into curriculum starting in high school and be offered widely at the post-secondary level. On this front, is progress being made here in Canada as programs launch at universities across the country, including the Universit de Sherbrooke, where last June IBM announced the new IBM Quantum Hub the first in Canada. Producing a skilled quantum workforce is not a small endeavour, so creating the opportunities for skills growth should be a priority.

The theme of 2021 is most certainly recovery and progress. As the country moves forward, we must look for new occasions to innovate and opportunities for growth we may not have had before. It is important now more than ever to do everything we can to ensure our workforce is prepared for the jobs to come, as well as for a more advanced and sustainable future.

Claude Guay, president of IBM Canada.

Shan Qiao Photo, Shan Qiao/Handout

Claude Guay is the president of IBM Canada. He is the leadership lab columnist for January 2021.

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This column is part of Globe Careers Leadership Lab series, where executives and experts share their views and advice about the world of work. Find all Leadership Lab stories at tgam.ca/leadershiplab and guidelines for how to contribute to the column here.

Stay ahead in your career. We have a weekly Careers newsletter to give you guidance and tips on career management, leadership, business education and more. Sign up today or follow us at @Globe_Careers.

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Closing the quantum computing skills gap could make all the difference in tackling climate change - The Globe and Mail

Light-Induced Twisting of Weyl Nodes Switches on Giant Electron Current Useful for Spintronics and Quantum Computing – SciTechDaily

Schematic of light-induced formation of Weyl points in a Dirac material of ZrTe5. Jigang Wang and collaborators report how coherently twisted lattice motion by laser pulses, i.e., a phononic switch, can control the crystal inversion symmetry and photogenerate giant low dissipation current with an exceptional ballistic transport protected by induced Weyl band topology. Credit: U.S. Department of Energy, Ames Laboratory

Scientists at the U.S. Department of Energys Ames Laboratory and collaborators at Brookhaven National Laboratory and the University of Alabama at Birmingham have discovered a new light-induced switch that twists the crystal lattice of the material, switching on a giant electron current that appears to be nearly dissipationless. The discovery was made in a category of topological materials that holds great promise for spintronics, topological effect transistors, and quantum computing.

Weyl and Dirac semimetals can host exotic, nearly dissipationless, electron conduction properties that take advantage of the unique state in the crystal lattice and electronic structure of the material that protects the electrons from doing so. These anomalous electron transport channels, protected by symmetry and topology, dont normally occur in conventional metals such as copper. After decades of being described only in the context of theoretical physics, there is growing interest in fabricating, exploring, refining, and controlling their topologically protected electronic properties for device applications. For example, wide-scale adoption of quantum computing requires building devices in which fragile quantum states are protected from impurities and noisy environments. One approach to achieve this is through the development of topological quantum computation, in which qubits are based on symmetry-protected dissipationless electric currents that are immune to noise.

Light-induced lattice twisting, or a phononic switch, can control the crystal inversion symmetry and photogenerate giant electric current with very small resistance, said Jigang Wang, senior scientist at Ames Laboratory and professor of physics at Iowa State University. This new control principle does not require static electric or magnetic fields, and has much faster speeds and lower energy cost.

This finding could be extended to a newquantum computing principle based on the chiral physics and dissipationlessenergy transport, which may run much faster speeds, lower energy cost and high operation temperature. said Liang Luo, a scientist at Ames Laboratory and first author of the paper.

Wang, Luo, and their colleagues accomplished just that, using terahertz (one trillion cycles per second) laser light spectroscopy to examine and nudge these materials into revealing the symmetry switching mechanisms of their properties.

In this experiment, the team altered the symmetry of the electronic structure of the material, using laser pulses to twist the lattice arrangement of the crystal. This light switch enables Weyl points in the material, causing electrons to behave as massless particles that can carry the protected, low dissipation current that is sought after.

We achieved this giant dissipationless current by driving periodic motions of atoms around their equilibrium position in order to break crystal inversion symmetry, says Ilias Perakis, professor of physics and chair at the University of Alabama at Birmingham. This light-induced Weyl semimetal transport and topology control principle appears to be universal and will be very useful in the development of future quantum computing and electronics with high speed and low energy consumption.

What weve lacked until now is a low energy and fast switch to induce and control symmetry of these materials, said Qiang Li, Group leader of the Brookhaven National Laboratorys Advanced Energy Materials Group. Our discovery of a light symmetry switch opens a fascinating opportunity to carry dissipationless electron current, a topologically protected state that doesnt weaken or slow down when it bumps into imperfections and impurities in the material.

Reference: A light-induced phononic symmetry switch and giant dissipationless topological photocurrent in ZrTe5 by Liang Luo, Di Cheng, Boqun Song, Lin-Lin Wang, Chirag Vaswani, P. M. Lozano, G. Gu, Chuankun Huang, Richard H. J. Kim, Zhaoyu Liu, Joong-Mok Park, Yongxin Yao, Kaiming Ho, Ilias E. Perakis, Qiang Li and Jigang Wang, 18 January 2021, Nature Materials.DOI: 10.1038/s41563-020-00882-4

Terahertz photocurrent and laser spectroscopy experiments and model building were performed at Ames Laboratory. Sample development and magneto-transport measurements were conducted by Brookhaven National Laboratory. Data analysis was conducted by the University of Alabama at Birmingham. First-principles calculations and topological analysis were conducted by the Center for the Advancement of Topological Semimetals, an Energy Frontier Research Center funded by the DOE Office of Science.

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Light-Induced Twisting of Weyl Nodes Switches on Giant Electron Current Useful for Spintronics and Quantum Computing - SciTechDaily

Worldwide High Performance Computing Industry to 2026 – The Market is Driven Largely by Simulations, Engineering and Design Solutions – PRNewswire

DUBLIN, Jan. 25, 2021 /PRNewswire/ -- The "High Performance Computing Market by Component, Infrastructure, Services, Price Band, HPC Applications, Deployment Types, Industry Verticals, and Regions 2021 - 2026" report has been added to ResearchAndMarkets.com's offering.

The High Performance Computing market includes computation solutions provided either by supercomputers or via parallel processing techniques such as leveraging clusters of computers to aggregate computing power. HPC is well-suited for applications that require high performance data computation and analysis such as high frequency trading, autonomous vehicles, genomics-based personalized medicine, computer-aided design, deep learning, and more. Specific examples include computational fluid dynamics, simulation, modeling, and seismic tomography.

This report evaluates the HPC market including companies, solutions, use cases, and applications. Analysis includes HPC by organizational size, software and system type, server type, and price band, and industry verticals. The report also assesses the market for integration of various artificial intelligence technologies in HPC. It also evaluates the exascale-level HPC market including analysis by component, hardware type, service type, and industry vertical.

Select Report Findings:

The market is currently dominated on the demand side by large corporations, universities, and government institutions by way of capabilities that are often used to solve very specific problems for large institutions. Examples include financial services organizations, government R&D facilities, universities research, etc.

However, the cloud-computing based "as a Service" model allows HPC market offerings to be extended via HPC-as-a-Service (HPCaaS) to a much wider range of industry verticals and companies, thereby providing computational services to solve a much broader array of problems. Industry use cases are increasingly emerging that benefit from HPC-level computing, many of which benefit from split processing between localized devices/platforms and HPCaaS.

In fact, HPCaaS is poised to become much more commonly available, partially due to new on-demand supercomputer service offerings, and in part as a result of emerging AI-based tools for engineers. Accordingly, up to 52% of revenue will be directly attributable to the cloud-based business model via HPCaaS, which makes High-Performance Computing solutions available to a much wider range of industry verticals and companies, thereby providing computational services to solve a much broader array of problems.

In a 2020 study, we conducted interviews with major players in the market as well as smaller, lesser known companies that are believed to be influential in terms of innovative solutions that are likely to drive adoption and usage of both cluster-based HPC and supercomputing. In an effort to identify growth opportunities for the HPC market, we investigated market gaps including unserved and underserved markets and submarkets. The research and advisory firm uncovered a market situation in which HPC currently suffers from an accessibility problem as well as inefficiencies and supercomputer skill gaps.

Stated differently, the market for HPC as a Service (e.g. access to high-performance computing services) currently suffers from problems related to the utilization, scheduling, and set-up time to run jobs on a supercomputer. We identified start-ups and small companies working to solve these problems.

One of the challenge areas identified is low utilization but (ironically) also high wait times for most supercomputers. Scheduling can be a challenge in terms of workload time estimation. About 23% of jobs are computationally heavy and 37% of jobs cannot be defined very well in terms of how long jobs will take (within a 3-minute window at best). In many instances, users request substantive resources and don't actually use computing time.

In addition to the scheduling challenge, we also identified a company focused on solving additional problems such as computational planning and engineering. We spoke with the principal of a little-known company called Microsurgeonbot, Inc. (doing business as MSB.ai), which is developing a tool for setting up computing jobs for supercomputers.

The company is working to solve major obstacles in accessibility and usability for HPC resources. The company focuses on solving a very important problem in HPC: Supercomputer job set-up and skills gap. Their solution known as "Guru" is poised to make supercomputing much more accessible, especially to engineers in small to medium-sized businesses that do not have the same resources or expertise as large corporate entities.

Target Audience:

Key Topics Covered:

1 Executive Summary

2 Introduction2.1 Next Generation Computing2.2 High Performance Computing2.2.1 HPC Technology2.2.2 Exascale Computation2.2.3 High Performance Technical Computing2.2.4 Market Segmentation Considerations2.2.5 Regulatory Framework2.2.6 Value Chain Analysis2.2.7 AI to Drive HPC Performance and Adoption

3 High Performance Computing Market Dynamics3.1 HPC Market Drivers3.2 HPC Market Challenges

4 High Performance Computing Market Analysis and Forecasts4.1 Global High Performance Computing Market 2021 - 20264.1.1 Total High Performance Computing Market4.1.2 High Performance Computing Market by Component4.1.3 High Performance Computing Market by Deployment Type4.1.4 High Performance Computing Market by Organization Size4.1.5 High Performance Computing Market by Server Price Band4.1.6 High Performance Computing Market by Application Type4.1.7 High Performance Computing Deployment Options: Supercomputer vs. Clustering4.1.8 High Performance Computing as a Service (HPCaaS)4.1.9 AI Powered High Performance Computing Market4.2 Regional High Performance Computing Market 2021 - 20264.2.1 High Performance Computing Market by Region4.2.2 North America High Performance Computing Market by Component, Deployment, Organization, Server Price Band, Application, Industry Vertical, and Country4.2.3 Europe High Performance Computing Market by Component, Deployment, Organization, Server Price Band, Application, Industry Vertical, and Country4.2.4 APAC High Performance Computing Market by Component, Deployment, Organization, Server Price Band, Application, Industry Vertical, and Country4.2.5 MEA High Performance Computing Market by Component, Deployment, Organization, Server Price Band, Application, Industry Vertical, and Country4.2.6 Latin America High Performance Computing Market by Component, Deployment, Organization, Server Price Band, Application, Industry Vertical, and Country4.2.7 High Performance Computing Market by Top Ten Country4.3 Exascale Computing Market 2021 - 20264.3.1 Exascale Computing Driven HPC Market by Component4.3.2 Exascale Computing Driven HPC Market by Hardware Type4.3.3 Exascale Computing Driven HPC Market by Service Type4.3.4 Exascale Computing Driven HPC Market by Industry Vertical4.3.1 Exascale Computing as a Service

5 High Performance Computing Company Analysis5.1 HPC Vendor Ecosystem5.2 Leading HPC Companies5.2.1 Amazon Web Services Inc.5.2.2 Atos SE5.2.3 Advanced Micro Devices Inc.5.2.4 Cisco Systems5.2.5 DELL Technologies Inc.5.2.6 Fujitsu Ltd5.2.7 Hewlett Packard Enterprise5.2.8 IBM Corporation5.2.9 Intel Corporation5.2.10 Microsoft Corporation5.2.11 NEC Corporation5.2.12 Nvidia5.2.13 Rackspace Inc.

6 High Performance Computing Market Use Cases6.1 Fraud Detection in the Financial Industry6.2 Healthcare and Clinical Research6.3 Manufacturing6.4 Energy Exploration and Extraction6.5 Scientific Research6.6 Electronic Design Automation6.7 Government6.8 Computer Aided Engineering6.9 Education and Research6.10 Earth Science

7 Conclusions and Recommendations

8 Appendix: Future of Computing8.1 Quantum Computing8.1.1 Quantum Computing Technology8.1.2 Quantum Computing Considerations8.1.3 Market Challenges and Opportunities8.1.4 Recent Developments8.1.5 Quantum Computing Value Chain8.1.6 Quantum Computing Applications8.1.7 Competitive Landscape8.1.8 Government Investment in Quantum Computing8.1.9 Quantum Computing Stakeholders by Country8.1.10 Other Future Computing Technologies8.1.11 Market Drivers for Future Computing Technologies8.2 Future Computing Market Challenges8.2.1 Data Security Concerns in Virtualized and Distributed Cloud8.2.2 Funding Constrains R&D Activities8.2.3 Lack of Skilled Professionals across the Sector8.2.4 Absence of Uniformity among NGC Branches including Data Format

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Worldwide High Performance Computing Industry to 2026 - The Market is Driven Largely by Simulations, Engineering and Design Solutions - PRNewswire