Cloud Encryption Software Market Potential Growth, Size, Share, Demand and Analysis of Key Players Research Forecasts to 2026 – The Daily Chronicle

The Cloud Encryption Software market research added by Global Marketers offers a comprehensive analysis of growth trends prevailing in the global business domain. This report also provides ultimate data about the market, size, and revenue forecast of the industry. In addition, the study clearly highlights the competitive status of key players within the projection timeline while focusing on their portfolio and regional expansion endeavors.

The report is furnished with the latest market dynamics and cost-effective development in regards to the COVID-19 pandemic. The pandemic has brought about strong changes in the economy of the world and has affected several key segments and growth opportunities. The report provides an in detail impact analysis of the pandemic on the market to better understand the latest changes in the market and gain an innovative outlook on a post-COVID-19 scenario.

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Top Key Players:

CiphercloudBoxcryptorTrend MicroSophosPerspecsysVoltage SecuritySkycryptGoogleSafenetVaultiveHitachiPorticorViivoSymantec.HPVormetric

Regional Segmentation:

This is anticipated to drive the Global Cloud Encryption Software Market over the forecast period. This Cloud Encryption Software research report covers the market landscape and its advancement prediction in the near outlook. After study the key vendor, the report focuses on the new entrant contributing to the enlargement of the market. Most companies in the Global Cloud Encryption Software Market are now adopting new technological trends in the market.

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Market Segment By Type :

Infrastructure-as-a-ServiceSoftware-as-a-ServicePlatform-as-a-Service

Market Segment By Application:

Banking, Financial Services, and Insurance (BFSI)HealthcareGovernment and Public UtilitiesTelecom and ITRetailAerospace and DefenseOthers (manufacturing, education, and media and entertainment)

Furthermore, the breakdown also delivers an all-inclusive examination of the vital players on the Cloud Encryption Software Market along with their company profiles, SWOT analysis, latest advancement, and business plans.

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Table of Content (TOC):

Chapter 1 Introduction and Overview

Chapter 2 Industry Cost Structure and Economic Impact

Chapter 3 Increasing Trends and New Technologies with Major key players

Chapter 4 Global Cloud Encryption Software Market Analyses, Growth Factor

Chapter 5 Cloud Encryption Software Market Application and Business with Potential Analysis

Chapter 6 Global Cloud Encryption Software Market Segment, Type, Application

Chapter 7 Global Cloud Encryption Software Market Analysis (by Application, Type, End-User)

Chapter 8 Major Key Vendors Analysis of Cloud Encryption Software Market

Chapter 9 Development Trend of Analysis

Chapter 10 Conclusion

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Cloud Encryption Software Market Potential Growth, Size, Share, Demand and Analysis of Key Players Research Forecasts to 2026 - The Daily Chronicle

Global Mobile Encryption Market is slated to grow rapidly in the coming years: McAfee(Intel Corporation), Blackberry, T-Systems International, ESET,…

This report also covers the impact of COVID-19 on the global market. The pandemic caused by Coronavirus (COVID-19) has affected every aspect of life globally, including the business sector. This has brought along several changes in market conditions.

Reports Monitorhas added a new report in its large database titled Global Mobile EncryptionMarket. The report investigates important factors related to the Global Mobile EncryptionMarketthat are essential to be understood by new as well as existing players in the given market. The report highlights the important factors such as market share, profitability, sales, production, manufacturing, advertising, technological developments, key market players, regional segmentation and many other significant aspects related to the Global Mobile EncryptionMarket.

TheTop Leading players operating in the market: Covered in this Report: McAfee(Intel Corporation), Blackberry, T-Systems International, ESET, Sophos, Symantec Corp, Check Point Software Technologies, Ltd., Dell, IBM, Mobileiron, BeiJing Zhiyou Wang'an Tech. Co. Ltd, CSG,Inc., Hewlett Packard Enterprise, Proofpoint, Inc., Silent Circle, Adeya SA & More.

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The report highlights the company profiles, market share, regional outlook, product portfolio, recent developments, strategic analysis, distribution chain, sales, leading market players, new market entrants, production, manufacturing, logistics, brand value, advertising, popular products, demand and supply ratio and other crucial elements related to the market to help new market players gain a thorough understanding about the Global Mobile EncryptionMarket.

Market by Type:Disk EncryptionFile/Folder EncryptionCommunication EncryptionCloud EncryptionOthersMarket by Application:BFSIHealthcare & RetailGovernment and Public SectorTelecommunications & ITOthers

Important elements like strategic developments, government rules and regulations, market study, end users of the product, target audience, distribution network, branding, product portfolio, market share, opportunities and threats, growth drivers and barriers are also mentioned in detail.

Global Mobile EncryptionMarket: Regional SegmentationNorth America(United States, Canada, and Mexico)Europe(Germany, France, UK, Russia, and Italy)Asia-Pacific(China, Japan, Korea, India, and Southeast Asia)South America(Brazil, Argentina, Colombia, etc.)Middle East and Africa(Saudi Arabia, UAE, Egypt, Nigeria, and South Africa)

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Global Mobile Encryption Market is slated to grow rapidly in the coming years: McAfee(Intel Corporation), Blackberry, T-Systems International, ESET,...

Global Hardware-based Full Disk Encryption (FDE) Market to Witness a Pronounce Growth During 2020-2026 – The Daily Chronicle

Global Hardware-based Full Disk Encryption (FDE) Market Status (2015-2019) and Forecast (2020-2025) by Region, Product Type & End-Use

The Lexis Business Insights added a new report Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market: Global Industry Analysis, Size, Share, Growth, Trends, and Forecast, 2016 2024 in its database, which provides an expert and in-depth analysis of key business trends and future market development prospects, key drivers and restraints, profiles of major market players, segmentation and forecasting.

In 2020, the global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market size was xx million US$ and it is expected to reach xx million US$ by the end of 2025, with a CAGR of xx% during 2020-2025.

The global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market report offers a complete overview of the HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market globally. It presents real data and statistics on the inclinations and improvements in global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Markets. It also highlights manufacturing, abilities & technologies, and unstable structure of the market. The global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market report elaborates the crucial data along with all important insights related to the current market status.

The report additionally provides a pest analysis of all five along with the SWOT analysis for all companies profiled in the report. The report also consists of various company profiles and their key players; it also includes the competitive scenario, opportunities, and market of geographic regions. The regional outlook on the HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market covers areas such as Europe, Asia, China, India, North America, and the rest of the globe.

Note In order to provide more accurate market forecast, all our reports will be updated before delivery by considering the impact of COVID-19.

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Top key players @ Seagate Technology PLC,Western Digital Corp,Samsung Electronics,Toshiba,Kingston,Micron Technology Inc,Intel

The main goal for the dissemination of this information is to give a descriptive analysis of how the trends could potentially affect the upcoming future of HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market during the forecast period. This markets competitive manufactures and the upcoming manufactures are studied with their detailed research. Revenue, production, price, market share of these players is mentioned with precise information.

Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market: Regional Segment Analysis

This report provides pinpoint analysis for changing competitive dynamics. It offers a forward-looking perspective on different factors driving or limiting market growth. It provides a five-year forecast assessed on the basis of how they HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market is predicted to grow. It helps in understanding the key product segments and their future and helps in making informed business decisions by having complete insights of market and by making in-depth analysis of market segments.

Key questions answered in the report include:

What will the market size and the growth rate be in 2026?

What are the key factors driving the Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market?

What are the key market trends impacting the growth of the Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market?

What are the challenges to market growth?

Who are the key vendors in the Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market?

What are the market opportunities and threats faced by the vendors in the Global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market?

Trending factors influencing the market shares of the Americas, APAC, Europe, and MEA.

The report includes six parts, dealing with:

1.) Basic information;

2.) The Asia HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market;

3.) The North American HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market;

4.) The European HARDWARE-BASED FULL DISK ENCRYPTION (FDE) Market;

5.) Market entry and investment feasibility;

6.) The report conclusion.

Market Dynamics

The report analyzes the factors impacting the growth and the current market trends influencing the global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market. Detailed pricing information with ex-factory prices of various products by key manufacturers form a crucial part of the report. Competition analysis, along with regional government policies affecting the HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market provides a detailed overview of the current status and prospects of the market. The impact of the ever-growing global population, coupled with technological advancements affecting the global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market is also covered in the report.

Drivers & Constraints

The report provides extensive information about the factors driving the global HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market. Factors influencing the growth of the HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market, along with technological advancements, are discussed extensively in the report. The current restraints of the market, limiting the growth and their future impact are also analyzed in the report. The report also discusses the impact of rising consumer demand, along with global economic growth on the HARDWARE-BASED FULL DISK ENCRYPTION (FDE) market.

Reasons for Buying this Report

This report provides pin-point analysis for changing competitive dynamics

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

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

It helps in understanding the key product segments and their future

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

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

TABLE OF CONTENT:

1 Report Overview

2 Global Growth Trends

3 Market Share by Key Players

4 Breakdown Data by Type and Application

5 United States

6 Europe

7 China

8 Japan

9 Southeast Asia

10 India

11 Central & South America

12 International Players Profiles

13 Market Forecast 2019-2025

14 Analysts Viewpoints/Conclusions

15 Appendix

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Global Hardware-based Full Disk Encryption (FDE) Market to Witness a Pronounce Growth During 2020-2026 - The Daily Chronicle

Global Email Encryption Software Market Report 2020-2027: Production Capacity and Consumption Analysis by Regions and Country Wise – Crypto Daily

Reportspedia added a new research report to its exhaustive repository. The research report presents an unbiased approach to understanding the market trends and dynamics of the Email Encryption Software Market. Analysts have studied the past data pertaining to the market and compare it to the up-to-date market trends to paint an objective picture of the trajectory of the market. The Email Encryption Software report includes SWOT analysis and Porters five forces analysis to give the readers a comprehensive estimation of the various factors likely to drive and restrain the overall market.

Key Player Mentioned:

ProofpointEnlockedZixPauboxSendincRMailTrend MicroSymantecHPE SoftwareStartMailVaporstreamVirtruPrivateSkyPKWareMicrosoft ExchangeCisco SystemsDigital Guardian

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Regional Segment Analysis:North America (U.S.; Canada; Mexico), Europe (Germany; U.K.; France; Italy; Russia; Spain etc.), Asia-Pacific (China; India; Japan; Southeast Asia etc.), South America (Brazil; Argentina etc.), Middle East & Africa (Saudi Arabia; South Africa etc.)

Global Email Encryption Software Industry Market provides a 360-degree outlook of the market for advanced technologies, key drivers, regulatory and future trends for brief to medium-term and long-term predict period. This Email Encryption Software Market report study market size, industry conditions, and forecasts, competitive landscape, and growth opportunities.

The Global Email Encryption Software Market Report has been Segments into:

Global Email Encryption Software Market Size & Share, By Product Types,

BusinessEnterprisePersonal

Global Email Encryption Software Market Size & Share, By Applications,

BFSIHealthcareGovernmentRetailIT and TelecomEducationManufacturingOthers

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Global Email Encryption Software Market competitive landscape supplies details by vendors, including company overview, total business revenue (financials), market potential, international existence, Keyword sales, and earnings generated, market share, cost, production sites and centers, SWOT analysis, product launch. During the period of 2020-2027, this analysis provides the sales, market share for each player enclosed in this report.

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The Report Provides:

Key features of this report are:

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Global Email Encryption Software Market Report 2020-2027: Production Capacity and Consumption Analysis by Regions and Country Wise - Crypto Daily

Quantum Software Market to Eyewitness Massive Growth by 2028: Origin Quantum Computing Technology, D Wave, IBM – The Daily Chronicle

GlobalQuantum SoftwareMarket Report is an objective and in-depth study of the current state aimed at the major drivers, market strategies, and key players growth. The study also involves the important Achievements of the market, Research & Development, new product launch, product responses and regional growth of the leading competitors operating in the market on a universal and local scale. The structured analysis contains graphical as well as a diagrammatic representation of worldwideQuantum SoftwareMarket with its specific geographical regions.

[Due to the pandemic, we have included a special section on the Impact of COVID 19 on the @ Market which would mention How the Covid-19 is Affecting the Global Quantum Software Market

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** The Values marked with XX is confidential data. To know more about CAGR figures fill in your information so that our business development executive can get in touch with you.

Global Quantum Software(Thousands Units) and Revenue (Million USD) Market Split by Product Type such as System Software, Application Software,

The research study is segmented by Application such as Laboratory, Industrial Use, Public Services & Others with historical and projected market share and compounded annual growth rate.GlobalQuantum Softwareby Region (2019-2028)

Geographically,this report is segmented into several key Regions, with production, consumption, revenue (million USD), and market share and growth rate ofQuantum Softwarein these regions, from 2013to 2029(forecast), covering

Additionally, the export and import policies that can make an immediate impact on theGlobal Quantum Software Market. This study contains a EXIM* related chapter on theQuantum Softwaremarket and all its associated companies with their profiles, which gives valuable data pertaining to their outlook in terms of finances, product portfolios, investment plans, and marketing and business strategies. The report on theGlobal Quantum Software Marketan important document for every market enthusiast, policymaker, investor, and player.

Key questions answered in this report Data Survey Report 2029

What will the market size be in 2029and what will the growth rate be?What are the key market trends?What is driving Global Quantum Software Market?What are the challenges to market growth?Who are the key vendors inspace?What are the key market trends impacting the growth of theGlobal Quantum Software Market?What are the key outcomes of the five forces analysis of theGlobal Quantum Software Market?

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There are 15 Chapters to display theGlobal Quantum Software Market.

Chapter 1, to describe Definition, Specifications and Classification ofQuantum Software, Applications ofQuantum Software, Market Segment by Regions;

Chapter 2, to analyze the Manufacturing Cost Structure, Raw Material and Suppliers, Manufacturing Process, Industry Chain Structure;

Chapter 3, to display the Technical Data and Manufacturing Plants Analysis ofQuantum Software, Capacity and Commercial Production Date, Manufacturing Plants Distribution, R&D Status and Technology Source, Raw Materials Sources Analysis;

Chapter 4, to show the Overall Market Analysis, Capacity Analysis (Company Segment), Sales Analysis (Company Segment), Sales Price Analysis (Company Segment);

Chapter 5 and 6, to show the Regional Market Analysis that includes North America, Europe, Asia-Pacific etc.,Quantum SoftwareSegment Market Analysis by System Software, Application Software,;

Chapter 7 and 8, to analyze theQuantum SoftwareSegment Market Analysis (by Application) Major Manufacturers Analysis ofQuantum Software;

Chapter 9, Market Trend Analysis, Regional Market Trend, Market Trend by Product Type System Software, Application Software,, Market Trend by Application Big Data Analysis, Biochemical Manufacturing, Machine Learning,;

Chapter 10, Regional Marketing Type Analysis, International Trade Type Analysis, Supply Chain Analysis;

Chapter 11, to analyze the Consumers Analysis ofQuantum Software;

Chapter 12, to describeQuantum SoftwareResearch Findings and Conclusion, Appendix, methodology and data source;

Chapter 13, 14 and 15, to describeQuantum Softwaresales channel, distributors, traders, dealers, Research Findings and Conclusion, appendix and data source.

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Quantum Software Market to Eyewitness Massive Growth by 2028: Origin Quantum Computing Technology, D Wave, IBM - The Daily Chronicle

China and Hong Kong Data Center Market Outlook and Forecast 2020-2025: Market Likely to be Driven by Investment Increases in Artificial Intelligence,…

DUBLIN, Oct. 2, 2020 /PRNewswire/ -- The "Data Center Market in China and Hong Kong - Industry Outlook and Forecast 2020-2025" report has been added to ResearchAndMarkets.com's offering.

China and Hong Kong data center market size is expected to reach revenue of close to $27 billion by 2025, growing at a CAGR close to 2% during the forecast period.

The following factors are likely to contribute to the growth of the China and Hong Kong data center market during the forecast period:

The data center market in China & Hong Kong is likely to be driven by the increase in the investment in artificial intelligence, blockchain, and quantum computing. The market for artificial intelligence (AI) is projected to over $10 billion in 2025. In 2018, AI investments in China were around $8 billion, which is likely to increase strongly after the recovery of the economy from the COVID-19 pandemic. China is among the leader in blockchain technology.

The government announced the creation of Blockchain Network (BCN) across 100 cities, which will add developers to build an application without investing in the blockchain framework. Also, the promotion of blockchain to make a predominant technology for online payments is driving the market. Several organizations and government agencies in China currently use blockchain technology, which is expected to grow significantly over the next few years.

INSIGHTS BY VENDORS

The data center construction market in China and Hong Kong is continuing to grow in terms of greenfield and brownfield facility construction. The market is still witnessing increased growth in the number of data centers, with high adoption of efficient and modular infrastructure solutions. The market has a strong presence of vendors across all three categories, such as electrical infrastructure, mechanical infrastructure, and general construction.

Prominent IT Infrastructure Vendors

Prominent Construction Contractors

Prominent Support Infrastructure Providers

Prominent Data Center Investors

KEY QUESTIONS ANSWERED

1. What is the China and Hong Kong data center market size and growth rate during the forecast period?2. What are the factors impacting the growth of China and Hong Kong data center market share?3. What are the drivers, trends, and restraints in the China and Hong Kong data center market?4. Who are the leading infrastructure vendors, construction contractors and data center investors in the China and Hong Kong data center market?5. What is the impact of the COVID-19 pandemic on the China and Hong Kong data center market?

Key Topics Covered:

1 Research Methodology

2 Research Objectives

3 Research Process

4 Scope & Coverage4.1 Market Definition4.2 Base Year4.3 Scope of The Study4.4 Market Segments4.4.1 Market Segmentation by Infrastructure4.4.2 Market Segmentation by IT Infrastructure4.4.3 Market Segmentation by Electrical Infrastructure4.4.4 Market Segmentation by Mechanical Infrastructure4.4.5 Market Segmentation by Cooling Systems4.4.6 Market Segmentation by General Construction4.4.7 Market Segmentation by Tier Standards4.4.8 Market Segmentation by Geography

5 Report Assumptions & Caveats5.1 Key Caveats5.2 Currency Conversion5.3 Market Derivation

6 Market at a Glance

7 Introduction7.1 Internet Penetration7.1.1 Impact Of Internet Penetration In China & Hong Kong7.2 Submarine Cables7.2.1 Impact Of Submarine Cables On China & Hong Kong Data Center Market

8 COVID-19 Impact8.1 Impact Of COVID-19 On Data Center Market8.1.1 Construction Perspective8.1.2 Infrastructure Production & Procurement8.1.3 Data Center Operations8.2 Impact Of COVID-19 On China & Hong Kong Data Center Market

9 Market Growth Enablers9.1 Digitalization Drives Data Center Investments9.2 Growing Demand For Colocation & Hyperscale Data Centers9.3 Increased Adoption Of Cloud Services9.4 Big Data & Iot Spending To Drive Data Center Investment

10 Market Restraints10.1 Ease Of Doing Business10.2 Scarcity Of Land In Hong Kong Impacts Data Center Growth10.3 Air Pollution Restricts Free Cooling

11 Market Opportunities & Trends11.1 Increase In Renewable Energy Procurement11.2 Rising Investment in AI, Blockchain Technology & Quantum Computing11.3 Implementation Of 5G & Smart City Initiatives To Drive Edge Data Centers

12 Market Landscape12.1 Market Overview12.2 Market Size & Forecast12.3 Five Forces Analysis

13 Infrastructure13.1 Market Snapshot & Growth Engine13.2 Market Overview13.3 IT Infrastructure13.4 Electrical Infrastructure13.5 Mechanical Infrastructure13.6 General Construction

14 IT Infrastructure14.1 Market Snapshot & Growth Engine14.3 Server14.4 Storage14.5 Network

15 Electrical Infrastructure15.1 Market Snapshot & Growth Engine15.2 Ups Systems15.3 Generators15.4 Transfer Switches & Switchgear15.5 PDU15.6 Other Electrical Infrastructure

16 Mechanical Infrastructure16.1 Market Snapshot & Growth Engine16.2 Cooling Systems16.3 Racks16.4 Other Mechanical Infrastructure

17 Cooling Systems17.1 Market Snapshot & Growth Engine17.2 CRAC & CRAH Units17.3 Chiller Units17.4 Cooling Towers, Dry Coolers, & Condensers17.5 Economizers & Evaporative Coolers17.6 Other Cooling Units

18 Cooling Techniques18.1 Market Snapshot & Growth Engine18.2 Air-Based Cooling Techniques18.3 Liquid-Based Cooling Techniques

19 General Construction19.1 Market Snapshot & Growth Engine19.2 Building Development19.3 Installation & Commissioning Services19.4 Building Design19.5 Physical Security19.6 DCIM/BMS

20 Tier Standards20.1 Market Snapshot & Growth Engine20.2 Overview Of Tier Standards20.3 Tier I & Tier II20.4 Tier III20.5 Tier IV

For more information about this report visit https://www.researchandmarkets.com/r/2co94s

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China and Hong Kong Data Center Market Outlook and Forecast 2020-2025: Market Likely to be Driven by Investment Increases in Artificial Intelligence,...

Quantum Computing Market Potential Growth, Size, Share, Demand and Analysis of Key Players Research Forecasts to 2027 – The Daily Chronicle

Fort Collins, Colorado The Quantum Computing Market is growing at a rapid pace and contributes significantly to the global economy in terms of turnover, growth rate, sales, market share and size. The Quantum Computing Market Report is a comprehensive research paper that provides readers with valuable information to understand the basics of the Quantum Computing Report. The report describes business strategies, market needs, dominant market players and a futuristic view of the market.

The report has been updated to reflect the most recent economic scenario and market size regarding the ongoing COVID-19 pandemic. The report looks at the growth outlook as well as current and futuristic earnings expectations in a post-COVID scenario. The report also covers changing market trends and dynamics as a result of the pandemic and provides an accurate analysis of the impact of the crisis on the market as a whole.

Global Quantum Computing Market was valued at 193.68 million in 2019 and is projected to reach USD1379.67 million by 2027, growing at a CAGR of 30.02% from 2020 to 2027.

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Industry Quantum Computing Study provides an in-depth analysis of key market drivers, opportunities, challenges and their impact on market performance. The report also highlights technological advancements and product developments that drive market needs.

The report contains a detailed analysis of the major players in the market, as well as their business overview, expansion plans and strategies. Key players explored in the report include:

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Quantum Computing Market, By Offering

Consulting solutions Systems

Quantum Computing Market, By Application

Machine Learning Optimization Material Simulation

Quantum Computing Market, By End-User

Automotive Healthcare Space and Defense Banking and Finance Others

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The market is geographically spread across several key geographic regions and the report includes regional analysis as well as production, consumption, revenue and market share in these regions for the 2020-2027 forecast period. Regions include North America, Latin America, Europe, Asia Pacific, the Middle East, and Africa.

Radical Coverage of the Quantum Computing Market:

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Quantum Computing Market Potential Growth, Size, Share, Demand and Analysis of Key Players Research Forecasts to 2027 - The Daily Chronicle

Cambridge Quantum Computing Launches First Cloud-Based Quantum Random Number Generator Service with Verification in Partnership with IBM – Quantaneo,…

Cambridge Quantum Computing (CQC) has launched the worlds first cloud-based Quantum Random Number Generation (QRNG) Service with integrated verification for the user.

Randomness is an essential and ubiquitous raw material in almost all digital interactions and is also used in cybersecurity to encrypt data and communications and perform simulation analysis across many sectors, including the petrochemical, pharmaceutical, chemical engineering, finance and gaming industries.

The application developed by CQC generates true maximal randomness, or entropy, implemented on an IBM Quantum Computer that can be verified and thus certified as truly quantum and therefore truly and maximally random for the first time. This cannot be accomplished on a classical computer.

As part of a joint effort with IBM, the beta certifiable Quantum Random Number Generation (cQRNG) Service, which is the first quantum computing application, will initially be available to members of the IBM Q Network, a community of more than 100 Fortune 500 companies, academic institutions, startups and national research labs working with IBM to advance quantum computing.

Quantum Computing Milestones

CQCs IBM partner lead, Anthony Annunziata, Director of the IBM Q Network, provided the following perspective on the new cQRNG Service: This is an exciting step toward making quantum computers practical and useful, and we are looking forward to seeing what scientists and developers can create using this service.

Working with IBM, CQC has attained two quantum computing milestones: one in computational terms and the other in the commercialization of quantum computing where, for the first time, with the cloud delivery of an application for quantum computers, we provide a service that has real-world application today.

From classical and post-quantum cryptography to complex Monte Carlo simulations where vast amounts of entropy are required to eliminate hidden patterns, certifiable quantum randomness will provide a new opportunity for advantage in relevant enterprise and government applications.

Extracting verified random numbers from a quantum processor has been an industry aspiration for many years. Many current methods only generate pseudo-random numbers or rely on physical phenomena that appear random but are not demonstrably so.

The certified QRNG service launched in partnership with IBM, integrates a Bell test based on Mermin inequalities, offered through the Qiskit module qiskit_rng, which validates the true quantum nature of the underlying processes with statistical analysis. A scientific paper detailing CQCs research titled Practical Randomness and Privacy Amplification has been published here.

Lawrence Gasman, president of Inside Quantum Technology, a leading industry research and analysis firm, provided us with this perspective regarding the service: Certified QRNG is a potentially massive market because there are so many applications of the technology that are possible today, including telecommunications, finance, science and more. Cybersecurity in particular is a field that will see many customers in the near term interested in verifiable quantum-generated random numbers.

As background, CQC was part of the founding group of startups in the IBM Q Network's startup program, announced in 2018. IBM invested in CQC in January of 2020. CQC recently became the first startup-based Hub in the IBM Q Network, working with other members on chemistry, optimization, finance, and quantum machine learning and natural language processing to advance the industry's quantum computing ecosystem.

We are extremely proud and enormously excited by this achievement and are gratified by our continuing partnership with IBM.

-- Ilyas Khan, CEO of Cambridge Quantum Computing

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Post-Quantum Cryptography (PQC) Revenue Assessment 2020: Quantum Supremacy – Progress and Controversy in the Past Year and Likely Timetable – Yahoo…

Dublin, Oct. 02, 2020 (GLOBE NEWSWIRE) -- The "Post-Quantum Cryptography (PQC): A Revenue Assessment" report has been added to ResearchAndMarkets.com's offering.

This report is a guide to the business opportunities that can be provided by Post-quantum cryptography (PQC) in the coming decade

Last year Google announced its breaking news of achieving quantum supremacy and in the coming months, NIST will be finalizing Round 2 of its algorithm standardization process. As awareness of the growing Quantum Computing threat increases and the standards for PQC algorithms solidify, the author expects a boom in revenue for this technology in the next few years.

For now, PQC finds its markets in critical long-lived data such as plans for aircraft and medical databases that need to survive well into the era of powerful quantum computers. However, encryption is hidden everywhere in both hardware and software - from IoT devices to web browsers - so the addressable market for PQC can be measured in billions of units.

Coverage of this report includes:

Key Topics Covered:

Chapter One: Introduction1.1 Background to this Report1.2 Goals and Scope of this Report1.3 Methodology of this Report1.4 Plan of this Report

Chapter Two: Post-Quantum Encryption Technology, Standards and Products2.1 The Threat to Classical Cryptography from Quantum Computers2.2 Quantum Supremacy: Progress and Controversy in the Past Year and Likely Timetable2.3 Post-Quantum Cryptography versus Quantum Key Distribution (QKD)2.4 Timeline for PQC Adoption2.5 How Concerned are End Users with Y2Q?2.6 Current and Future Innovation in PQC Software2.7 The Role of PQC Chips and Embedded System2.8 Opportunities for PQC Services2.9 Ten-year Forecast of PQC Revenue by Product and Service Type2.10 Key Points from this Chapter

Chapter Three: Markets for Post-Quantum Cryptography Products and Services: Ten-year Forecasts3.1 IT Industry3.1.1 Magnetic Tape Drives as Potential Candidates for early PQC integration3.1.2 PQC-enabled Browsers3.1.3 Disaster Recovery3.1.3 Ten-year Forecasts of PQC in IT Products3.2 Cybersecurity Industry3.2.1 Implementation, Integration and Consulting Services3.2.2 Advice on PQC Product Choice3.2.3 Is PQC-as-Service a Possibility3.2.4 Ten-year Forecasts of PQC in the Cybersecurity Industry3.3 Telecommunications Industry3.3.1 PQC and 5G3.3.2 Telecommunications Providers: Ten-year PQC Forecasts3.4 Financial Services Industry3.4.1 Financial records management3.4.2 Cryptocurrencies3.4.3 Ten-year Forecasts of PQC in the Financial Services Industry3.5 Healthcare Records and Privacy with PQC3.5.1 Healthcare and Medical Records: Ten-year PQC Forecast3.5.2 HIPAA and Encryption3.5.3 Ten-year Forecasts of PQC in the Healthcare Sector3.6 Manufacturing Industries3.6.1 Ten-year Forecasts of PQC in Manufacturing3.7 A Role for PQC in IoT?3.7.1 Ten-year Forecasts of PQC in IoT3.8 Public Sector Applications for PQC3.8.1 Police and Military3.8.2 Intelligence Services3.8.3 Embassies3.9 Summary of Ten-year Forecasts of PQC by Application3.10 Key Points from this Chapter

Chapter Four: Post-Quantum Encryption Companies: Products, Strategy and Competitive Analysis4.1 Avaya4.2 Envieta Systems (United States)4.3 Google (United States)4.4 IBM Research (United States)4.5 Infineon (Germany)4.6 Isara (Canada)4.7 Microsoft Research (United States)4.8 Post-Quantum (United Kingdom)4.9 Qualcomm/OnBoard Security (United States)4.10 Rambus Security Division (United States)4.11 Thales Communications and Security/Gemalto (France)4.12 Ultimaco (Germany)4.13 An increasing number of Quantum-Safe Startups: Opportunities They Claim to Have Spotted

Chapter Five: Other Organizations Shaping the PQC Market5.1 National Institute of Standards and Technology (NIST)5.1.1 Post-quantum Cryptography Selection at NIST5.1.2 Classes of Algorithm5.1.3 SafeCrypto5.1.4 What to expect after Round 2 of NIST Standardization5.2 Internet Engineering Task Force (IETF)5.3 National Security Agency (NSA)5.4 Cloud Security Alliance (CSA)5.4.1 Quantum-Safe Security Working Group5.5 ISO5.5.1 SC27 WG25.6 European Telecommunications Standards Institute (ETSI)5.7 PQCRYPTO5.8 Institute of Electrical and Electronics Engineers (IEEE)5.9 International Telecommunications Union (ITU)5.10 ANSI Accredited Standards Committee X95.11 Open Quantum-Safe

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

Research and Markets also offers Custom Research services providing focused, comprehensive and tailored research.

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Post-Quantum Cryptography (PQC) Revenue Assessment 2020: Quantum Supremacy - Progress and Controversy in the Past Year and Likely Timetable - Yahoo...

Berkeley Lab Technologies Honored With 7 R&D 100 Awards – Lawrence Berkeley National Laboratory

Innovative technologies from Lawrence Berkeley National Laboratory (Berkeley Lab) to achieve higher energy efficiency in buildings, make lithium batteries safer and higher performing, and secure quantum communications were some of the inventions honored with R&D 100 Awards by R&D World magazine.

For more than 50 years, the annual R&D 100 Awards have recognized 100 technologies of the past year deemed most innovative and disruptive by an independent panel of judges. The full list of winners, announced by parent company WTWH Media LLC is available at the R&D World website.

Berkeley Labs award-winning technologies are described below.

A Tool to Accelerate Electrochemical and Solid-State Innovation

(from left) Adam Weber, New Danilovic, Douglas Kushner, and John Petrovick (Credit: Berkeley Lab)

Berkeley Lab scientists invented a microelectrode cell to analyze and test electrochemical systems with solid electrolytes. Thanks to significant cost and performance advantages, this tool can accelerate development of critical applications such as energy storage and conversion (fuel cells, batteries, electrolyzers), carbon capture, desalination, and industrial decarbonization.

Solid electrolytes have been displacing liquid electrolytes as the focus of electrochemical innovation because of their performance, safety, and cost advantages. However, the lack of effective methods and equipment for studying solid electrolytes has hindered advancement of the technologies that employ them. This microelectrode cell meets the testing needs, and is already being used by Berkeley Lab scientists.

The development team includes Berkeley Lab researchers Adam Weber, Nemanja Danilovic, Douglas Kushner, and John Petrovick.

Matter-Wave Modulating Secure Quantum Communicator (MMQ-Com)

Information transmitted by MMQ-Com is impervious to security breaches. (Credit: Alexander Stibor/Berkeley Lab)

Quantum communication, cybersecurity, and quantum computing are growing global markets. But the safety of our data is in peril given the rise of quantum computers that can decode classical encryption schemes.

The Matter-Wave Modulating Secure Quantum Communicator (MMQ-Com) technology is a fundamentally new kind of secure quantum information transmitter. It transmits messages by modulating electron matter-waves without changing the pathways of the electrons. This secure communication method is inherently impervious to any interception attempt.

A novel quantum key distribution scheme also ensures that the signal is protected from spying by other quantum devices.

The development team includes Alexander Stibor of Berkeley Labs Molecular Foundry along with Robin Rpke and Nicole Kerker of the University of Tbingen in Germany.

Solid Lithium Battery Using Hard and Soft Solid Electrolytes

(from left) Marca Doeff, Guoying Chen, and Eongyu Yi (Credit: Berkeley Lab)

The lithium battery market is expected to grow from more than $37 billion in 2019 to more than $94 billion by 2025. However, the liquid electrolytes used in most commercial lithium-ion batteries are flammable and limit the ability to achieve higher energy densities. Safety issues continue to plague the electronics markets, as often-reported lithium battery fires and explosions result in casualties and financial losses.

In Berkeley Labs solid lithium battery, the organic electrolytic solution is replaced by two solid electrolytes, one soft and one hard, and lithium metal is used in place of the graphite anode. In addition to eliminating battery fires, incorporation of a lithium metal anode with a capacity 10 times higher than graphite (the conventional anode material in lithium-ion batteries) provides much higher energy densities.

The technology was developed by Berkeley Lab scientists Marca Doeff, Guoying Chen, and Eongyu Yi, along with collaborators at Montana State University.

Porous Graphitic Frameworks for Sustainable High-Performance Li-Ion Batteries

High-resolution transmission electron microscopy images of the Berkeley Lab PGF cathode reveal (at left) a highly ordered honeycomb structure within the 2D plane, and (at right) layered columnar arrays stacked perpendicular to the 2D plane. (Credit: Yi Liu/Berkeley Lab)

The Porous Graphitic Frameworks (PGF) technology is a lithium-ion battery cathode that could outperform todays cathodes in sustainability and performance.

In contrast to commercial cathodes, organic PGFs pose fewer risks to the environment because they are metal-free and composed of earth-abundant, lightweight organic elements such as carbon, hydrogen, and nitrogen. The PGF production process is also more energy-efficient and eco-friendly than other cathode technologies because they are prepared in water at mild temperatures, rather than in toxic solvents at high temperatures.

PGF cathodes also display stable charge-discharge cycles with ultrahigh capacity and record-high energy density, both of which are much higher than all commercial inorganic cathodes and organic cathodes known to exist.

The development team includes Yi Liu and Xinie Li of Berkeley Labs Molecular Foundry, as well as Hongxia Wang and Hao Chen of Stanford University.

Building Efficiency Targeting Tool for Energy Retrofits (BETTER)

The buildings sector is the largest source of primary energy consumption (40%) and ranks second after the industrial sector as a global source of direct and indirect carbon dioxide emissions from fuel combustion. According to the World Economic Forum, nearly one-half of all energy consumed by buildings could be avoided with new energy-efficient systems and equipment.

(from left) Carolyn Szum (Lead Researcher), Han Li, Chao Ding, Nan Zhou, Xu Liu (Credit: Berkeley Lab)

The Building Efficiency Targeting Tool for Energy Retrofits (BETTER) allows municipalities, building and portfolio owners and managers, and energy service providers to quickly and easily identify the most effective cost-saving and energy-efficiency measures in their buildings. With an open-source, data-driven analytical engine, BETTER uses readily available building and monthly energy data to quantify energy, cost, and greenhouse gas reduction potential, and to recommend efficiency interventions at the building and portfolio levels to capture that potential.

It is estimated that BETTER will help reduce about 165.8 megatons of carbon dioxide equivalent (MtCO2e) globally by 2030. This is equivalent to the CO2 sequestered by growing 2.7 billion tree seedlings for 10 years.

The development team includes Berkeley Lab scientists Nan Zhou, Carolyn Szum, Han Li, Chao Ding, Xu Liu, and William Huang, along with collaborators from Johnson Controls and ICF.

AmanziATS: Modeling Environmental Systems Across Scales

Simulated surface and subsurface water from Amanzi-ATS hydrological modeling of the Copper Creek sub-catchment in the East River, Colorado watershed. (Credit: Zexuan Xu/Berkeley Lab, David Moulton/Los Alamos National Laboratory)

Scientists use computer simulations to predict the impact of wildfires on water quality, or to monitor cleanup at nuclear waste remediation sites by portraying fluid flow across Earth compartments. The Amanzi-Advanced Terrestrial Simulator (ATS) enables them to replicate or couple multiple complex and integrated physical processes controlling these flowpaths, making it possible to capture the essential physics of the problem at hand.

Specific problems require taking an individual approach to simulations, said Sergi Molins, principal investigator at Berkeley Lab, which contributed expertise in geochemical modeling to the softwares development. Physical processes controlling how mountainous watersheds respond to disturbances such as climate- and land-use change, extreme weather, and wildfire are far different than the physical processes at play when an unexpected storm suddenly impacts groundwater contaminant levels in and around a nuclear remediation site. Amanzi-ATS allows scientists to make sense of these interactions in each individual scenario.

The code is open-source and capable of being run on systems ranging from a laptop to a supercomputer. Led by Los Alamos National Laboratory, Amanzi-ATS is jointly developed by researchers from Los Alamos National Laboratory, Oak Ridge National Laboratory, Pacific Northwest National Laboratory, and Berkeley Lab researchers including Sergi Molins, Marcus Day, Carl Steefel, and Zexuan Xu.

Institute for the Design of Advanced Energy Systems (IDAES)

The U.S. Department of Energys (DOEs) Institute for the Design of Advanced Energy Systems (IDAES) project develops next-generation computational tools for process systems engineering (PSE) of advanced energy systems, enabling their rapid design and optimization.

IDAES Project Team (Credit: Berkeley Lab)

By providing rigorous modeling capabilities, the IDAES Modeling & Optimization Platform helps energy and process companies, technology developers, academic researchers, and DOE to design, develop, scale-up, and analyze new and potential PSE technologies and processes to accelerate advances and apply them to address the nations energy needs. The IDAES platform is also a key component in the National Alliance for Water Innovation, a $100 million, five-year DOE innovation hub led by Berkeley Lab, which will examine the critical technical barriers and research needed to radically lower the cost and energy of desalination.

Led by National Energy Technology Laboratory, IDAES is a collaboration with Sandia National Laboratories, Berkeley Lab, West Virginia University, Carnegie Mellon University, and the University of Notre Dame. The development team at Berkeley Lab includes Deb Agarwal, Oluwamayowa (Mayo) Amusat, Keith Beattie, Ludovico Bianchi, Josh Boverhof, Hamdy Elgammal, Dan Gunter, Julianne Mueller, Jangho Park, Makayla Shepherd, Karen Whitenack, and Perren Yang.

# # #

Founded in 1931 on the belief that the biggest scientific challenges are best addressed by teams, Lawrence Berkeley National Laboratory and its scientists have been recognized with 13 Nobel Prizes. Today, Berkeley Lab researchers develop sustainable energy and environmental solutions, create useful new materials, advance the frontiers of computing, and probe the mysteries of life, matter, and the universe. Scientists from around the world rely on the Labs facilities for their own discovery science. Berkeley Lab is a multiprogram national laboratory, managed by the University of California for the U.S. Department of Energys Office of Science.

DOEs Office of Science is the single largest supporter of basic research in the physical sciences in the United States, and is working to address some of the most pressing challenges of our time. For more information, please visit energy.gov/science.

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Berkeley Lab Technologies Honored With 7 R&D 100 Awards - Lawrence Berkeley National Laboratory