Artificial Intelligence Task Force | Agency of Commerce …

The Artificial Intelligence Task Force shall investigate the field of artificial intelligence; and make recommendations on the responsible growth of Vermonts emerging technology markets, the use of artificial intelligence in State government, and State regulation of the artificial intelligence field.

Additional detail about H.378 / Act 137.

The Task Force is comprised of fourteen (14) members who will meet not more than 15times and shall submit a Final Report to the Senate Committee on Government Operations and the House Committee on Energy and Technology on or before January 15, 2020.

Read the Final Report here.

Past Meeting Schedule:

Friday, January 10, 20201:30-4:30 PM Agendaand Meeting Minutes

Friday, December 6, 2019 Agenda andMeeting Minutes

November 4, 2019 -Agendaand Meeting Minutes

October 17, 2019 - AgendaandMeeting Minutes

Public Meeting held at the TechJamOctober 17, 2019- Meeting Minutes

October 10, 2019 - Meeting Minutes

October 1, 2019 - Meeting Minutes

September 23, 2019 - Agendaand Meeting Minutes

August 23, 2019 - Agendaand Meeting Minutes

July 25, 2019 - Meeting minutes

July 19, 2019 -Agenda

June 14, 2019- Agendaand meeting minutes

May 20, 2019- Agenda

April26, 2019 -Agendaand meeting minutes

February22, 2019 -Agendaandmeeting minutes

January 18, 2019 - Agenda and meeting minutesORCA Media Recordings: Transportation, Technology, and Manufacturing/Construction

December 14, 2018 -Agenda and meeting minutesPresentation: Artificial Intelligence (AI) - The Hardware Perspective

November 29, 2018 -Agendaand meeting minutes

October 12-Agendaand meetingminutes

September 4 -Agendaand meetingminutes

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Artificial Intelligence Task Force | Agency of Commerce ...

"Smart Gym" That Uses Artificial Intelligence to Open in Franklin – Williamson Source

Exercise Coach, a high-tech fitness smart-gym which mainly relies on artificial intelligence vs traditional equipment, will open in Franklin at 1909 Mallory Lane, Suite 106.

The opening date is set for Feb 4th.

For owner Wil Soles, of Nolensville, this is his first Exercise Coach and he has plans to open locations in Belle Meade and/or Nolensville within the next three years.

This will be the fourth Exercise Coach to open in Tennessee. Exercise Coach has locations in Brentwood (241 Wilson Pike Circle), Collierville and Germantown.

Outfitted with high-tech computerized machines instead of traditional equipment, The Exercise Coach offers highly personalized programs optimized for efficiency, resulting in only two 20-minute workouts per week that cant be matched in effectiveness with even seven days a week of traditional activity-based exercise. The national franchise offers a unique, comprehensive approach to fitness designed to be the perfect fit for anyone, regardless of current fitness levels. The Exercise Coach combines bio-adaptive exercise technology with the guidance and encouragement of certified coaches. The studios create a dynamic exercise experience that blends personalized strength and interval cardio training in each session.

Soles, age 53, spent 31 years in various leadership roles for insurance companies. He ventured into the health and wellness arena when he took a position at Nashville-based Healthways (now part of Sharecare). Most of his career experience has been in sales, customer satisfaction and corporate training. Soles said he chose to open an Exercise Coach franchise so that he could immerse himself in an environment that provides a phenomenal service to a virtually untapped market.

I started off by looking for a company that would provide a great service to others and a great living for me. What I also found along this journey is the value I get personally from being a customer. Im EXACTLY who The Exercise Coach is looking to help. At 53, Im certainly in the demographic but, more importantly, Im the person who has struggled with weight issues for my entire life. Ive been in traditional gym environments and had success in gaining strength and losing fat. Im also that person who had short-lived success and need something like the The Exercise Coach to make a long-term change in my quality of life. What started out as a business venture has also turned into an investment into my personal health and well-being, Soles said.

More than 120 million Americans say they know they need exercise and wish they participated more. The Exercise Coach uses its technology to capture the more reluctant exercise consumer people who are either too busy to spend a great deal of time at the gym, dislike the gym scene and/or are afraid of injuring themselves. Rather than use their proprietary technology competing with other gyms to court the most athletic people, The Exercise Coach offers privacy, convenience, personalization, efficiency and guidance to change the quality of life for people who are less familiar with fitness successes.

About The Exercise CoachFounded in 2000, The Exercise Coach began franchising in 2011 and currently has approximately 70 studios operating nationwide. In addition, The Exercise Coach began its international expansion in Japan in 2017 and has 25 locations there today. Our goal is to see 250 units open in the U.S. and 100 open in Japan by the end of 2022. Learn more here.

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"Smart Gym" That Uses Artificial Intelligence to Open in Franklin - Williamson Source

Current research: Artificial Intelligence in Healthcare Application Market size, status and growth outlook 2027 – WhaTech Technology and Markets News

Artificial Intelligence in Healthcare Application Market Size, Status and Growth Outlook 2019 To 2027

Report Description

A recent market intelligence report that is published by Data Insights Partner onthe global Artificial Intelligence in Healthcare Application marketmakes an offering of in-depth analysis of segments and sub-segments in the regional and internationalArtificial Intelligence in Healthcare Application market. The research also emphasizes on the impact of restraints, drivers, and macro indicators on the regional and globalArtificial Intelligence in Healthcare Application market overthe short as well as long period of time.

A detailed presentation of forecast, trends, and dollar values of globalArtificial Intelligence in Healthcare Application market isoffered. In accordance with the report, theglobal Artificial Intelligence in Healthcare Application market isprojected to expand at a CAGR of35%over the period of forecast.

Market Insight, Drivers, Restraints& Opportunity of the Market:

One of the greatest challenges in the healthcare arena is huge healthcare data and it is impossible to handle all of these data for medical personnel. Here comes the opportunity of artificial intelligence (AI) in healthcare field.

In simple words, AI is an area where computer or computer controlled machines can work like human beings. It increases the capability of healthcare practitioners to understand the daily patterns and requirements of people they are treating, and provide better service, guidance and supports for staying healthy.

The global Artificial Intelligence in Healthcare Application market is primarily driven by the growing demand of large and complex data set, emerging preference of healthcare cost cutting, and requirements of healthcare services between healthcare providers and the patients. For instance, IBM Watson is assisting healthcare organization by applying cognitive technology to unearth huge health data and power diagnosis.

In addition, this product is able to scrutinize and stock medical information, resources, case studies, medical discussions etc which is comparatively faster than any medical practitioner. Conversely, the use of AI in healthcare system in developing countries such as Latin America and Middle East and Africa is still not prominent due to the less awareness of AI in healthcare sector.

In addition, risk of data hacking, stringent regulatory standards across several verticals may restrain the growth of the global Artificial Intelligence in Healthcare Application market in coming future. However, new product developments, and strategic collaborations among key players may provide the global Artificial Intelligence in Healthcare Application market an opportunity to propel during the forecast period.

Request for Report Sample:datainsightspartner.com/requestle?ref=131

Segment Covered:

This market intelligence report on the global Artificial Intelligence in Healthcare Application market encompasses market segments based on deployment, technology, application, end user and region. On the basis of deployment, the sub-market is segregated into on-premise and cloud services.

In terms of technology, the market is classified into machine learning, natural language processing, context-aware computing, and computer vision. By application, the global market is categorized into patient data and risk analysis, hospital management, medical imaging, drug discovery, patient monitoring, and others.

In terms of end-user, the global market is classified into healthcare service providers, healthcare payors, patients, healthcare companies and others. By Geography, the global Artificial Intelligence in Healthcare Application market has been divided into North America (the U.S., Canada), Latin America (Brazil, Mexico, Argentina and other countries), Europe (Germany, France, the U.K., Spain, Italy, Russia, and other countries), Asia Pacific (India, Japan, China, Australia and New Zealand and other countries), Middle East and Africa (GCC, South Africa, Israel and Other countries).

Profiling of Market Players:

This business intelligence report offers profiling of reputed companies that are operating in the market. Companies such as IBM, Google, Microsoft, GE, Siemens, Medtronic, Amazon.com, Inc, Nvidia and others have been profiled into detail so as to offer a glimpse of the market leaders.

Moreover, parameters such as Artificial Intelligence in Healthcare Application related investment & spending and developments by major players of the market are tracked in this global report.

Report Highlights:

In-depth analysis of the micro and macro indicators, market trends, and forecasts of demand is offered by this business intelligence report. Furthermore, the report offers a vivid picture of the factors that are steering and restraining the growth of this market across all geographical segments.

In addition to that, IGR-Growth Matrix analysis is also provided in the report so as to share insight of the investment areas that new or existing market players can take into consideration. Various analytical tools such as DRO analysis, Porters five forces analysis has been used in this report to present a clear picture of the market.

The study focuses on the present market trends and provides market forecast from the year 2017-2027. Emerging trends that would shape the market demand in the years to come have been highlighted in this report.

A competitive analysis in each of the geographical segments gives an insight into market share of the global players.

Request for Report Analysis:datainsightspartner.com/report/market/131

Salient Features:

This study offers comprehensive yet detailed analysis of theArtificial Intelligence in Healthcare Application market, size of the market (US$ Mn), and Compound Annual Growth Rate (CAGR (%)) for the period of forecast: 2019 2027, taking into account 2018 as the base year

It explains upcoming revenue opportunities across various market segments and attractive matrix of investment proposition for the said market

This market intelligence report also offers pivotal insights about various market opportunities, restraints, drivers, launch of new products, competitive market strategies of leading market players, emerging market trends, and regional outlook

Profiling of key market players in the worldArtificial Intelligence in Healthcare Application marketis done by taking into account various parameters such as company strategies, distribution strategies, product portfolio, financial performance, key developments, geographical presence, and company overview

Leading market players covered this report comprise names suchIBM, Google, Microsoft, GE, Siemens, Medtronic, Amazon.com, Inc, Nvidia, andamong others

The data of this report would allow management authorities and marketers of companies alike to take informed decision when it comes to launch of products, government initiatives, marketing tactics and expansion, and technical up gradation

The world market forArtificial Intelligence in Healthcare Application catersto the needs of various stakeholders pertaining to this industry, namely suppliers, manufacturers, investors, and distributors forArtificial Intelligence in Healthcare Application market.The research also caters to the rising needs of consulting and research firms, financial analysts, and new market entrants

Research methodologies that have been adopted for the purpose of this study have been clearly elaborated so as to facilitate better understanding of the reports

Reports have been made based on the guidelines as mandated by General Data Protection Regulation

Ample number of examples and case studies have been taken into consideration before coming to a conclusion

Reasons to access:

vIdentify opportunities and plan strategies by having a strong understanding of the investment opportunities in theArtificial Intelligence in Healthcare Application market

vIdentification of key factors driving investment opportunities in theArtificial Intelligence in Healthcare Application market

vFacilitate decision-making based on strong historic and forecast data

vPosition yourself to gain the maximum advantage of the industrys growth potential

vDevelop strategies based on the latest regulatory events

vIdentify key partners and business development avenues

vRespond to your competitors business structure, strategy and prospects

vIdentify key strengths and weaknesses of important market participants

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Current research: Artificial Intelligence in Healthcare Application Market size, status and growth outlook 2027 - WhaTech Technology and Markets News

Mphasis and QEDIT Partner to Offer Privacy-Enhancing Technology Solutions on Blockchain to Enterprises – PRNewswire

NEW YORK, Jan. 23, 2020 /PRNewswire/ -- Mphasis(BSE: 526299; NSE: MPHASIS), an Information Technology (IT) solutions provider specializing in cloud and cognitive services, today announced its partnership with Israeli-based QEDIT, an enterprise solution provider that uses Privacy-Enhancing Technology and Zero-Knowledge Proof (ZKP) cryptography to help companies transact and leverage their business data in a privacy-compliant manner. Under this partnership, the two entities will co-innovate and develop ZKP solutions to enable enterprises to fight fraud, verify identities, and uphold compliance with local data privacy regulations. All this while preserving full control over proprietary and confidential information.

Blockchain is structured in a way that anyone with access to a blockchain transaction can view data provided across all nodes. This inherent principle of transparency is an obstacle for companies that wish to gain efficiencies using a shared ledger, but simultaneously need to protect confidential transactional details. QEDIT's Private Asset Transfer solutionemploys ZKPs, a cryptographic algorithm that enables Party A to share the proof of knowledge with Party B without sharing the underlying data itself.

This technique can be leveraged by Mphasis' clients in regulated industries, especially Financial Services. QEDIT's solution can be integrated into large application projects for Mphasis' Financial Services clients. ZKP solutions are slated to demand techniques that secure information further on blockchain and Mphasis believes ZKP will become that horizontal layer of security for digital identification.

"Blockchain is a critical technology that enterprises have been leveraging strategically; Mphasis continues to bring innovative solutions to customers from both within the organization as well as from the partner and start-up ecosystem," said Dinesh Venugopal, President - Mphasis Direct and Digital. "Through our collaboration with QEDIT, we aim to offer next-generation security applications on blockchain to our clients that enables them to authenticate asset transfers on a shared ledger without revealing any underlying, confidential, transactional information."

"Teaming up with Mphasis presents a phenomenal opportunity to advance a new category of technology based on cryptographically secure, privacy-enhancing techniques," said Jonathan Rouach, CEO and Co-Founder of QEDIT. "Together with Mphasis, we can accelerate our efforts to deliver innovative solutions that facilitate blockchain adoption and provide secure ways for companies to harness the full value of their data, without requiring them to expose or share private information. QEDIT's co-development collaboration with Mphasis was established in conjunction with the Consulate General of Israel to South India," he added.

Mphasis serves marquee customers across the globe including 6 top global banks, 11 out of 15 top mortgage lenders, and 3 top global insurance companies. Mphasis' global footprint will enable QEDIT to reach a broad array of industries ranging from trade finance, supply chain, payments, and insurance. Together, QEDIT and Mphasis will identify relevant use cases and tailor-design solutions that employ QEDIT's technology to solve core business problems.

About Sparkle Innovation EcosystemThe Sparkle Innovation Ecosystem is a conduit between enterprises, both legacy as well as digitally native and disruptive start-ups. It 'Applies Next' in the latest technologies by innovating bespoke custom-built hyper-personalized solutions and prototypes for Mphasis' clients.

About Mphasis Mphasis(BSE: 526299; NSE: MPHASIS) applies next-generation technology to help enterprises transform businesses globally. Customer centricity is foundational to Mphasis and is reflected in Mphasis' Front2Back Transformation approach. Front2Back uses the exponential power of cloud and cognitive to provide hyper-personalized (C=X2C2 TM=1) digital experience to clients and their end customers. Mphasis' Service Transformation approach helps 'shrink the core' through the application of digital technologies across legacy environments within an enterprise, enabling businesses to stay ahead in a changing world. Mphasis' core reference architectures and tools, speed and innovation with domain expertise and specialization are key to building strong relationships with marquee clients. Click hereto know more.

About QEDITQEDIT helps enterprises maximize the value of their data without sharing it through the use of privacy-enhancing technologies (PET). Founded by a world-class team of accomplished entrepreneurs, researchers, and developers, QEDIT enables companies to transact and leverage data with third parties, while preserving full control over confidential information and upholding compliance with local data privacy regulations. Through the use of Zero-Knowledge Proof (ZKP) cryptography and other cutting-edge, cryptographically secure techniques, QEDIT's suite of enterprise solutions removes data-driven barriers to industry-wide privacy challenges in the fields of finance, supply chain, insurance, and human resources. For more information, visithttps://qed-it.com.

SOURCE Mphasis

http://www.mphasis.com

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Mphasis and QEDIT Partner to Offer Privacy-Enhancing Technology Solutions on Blockchain to Enterprises - PRNewswire

Quantum Cryptography in BFSI Market Growth & Demand by 2020-2027 | Anhui Qasky Science and Technology Limited Liability Company – VOICE of…

Quantum Cryptography in BFSI Market Market Research Report has been studied and presents an actionable idea to key contributors working in it. Report also analyzes noteworthy trends, emerging value of CAGR and present as well as future development. This report gives a broad understanding of market with accurate data covering all key features of the prevailing market, this report offers prevailing data of leading companies.

A detailed study of the competitive landscape of the Quantum Cryptography in BFSI Market Market has been given, presenting insights into the company profiles, financial status, recent developments, mergers and acquisitions, and the SWOT analysis. This study also provides an in-depth analysis of the market with future estimates to identify current trends and investment trends for the forecast year 2020-2027.

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Key Strategic Players:

Anhui Qasky Science and Technology Limited Liability Company, D-Wave Systems Inc., Hamamatsu Photonics, IBM, ID Quantique, MagiQ Technologies, Microsoft Research, QCWare (develops platforms for cloud-based quantum computing), QuantumCTek Co. Ltd, Qubitekk, Quintessence Labs, Qutools GmbH

Study Objective of the Report:

To study and estimate the market size of Quantum Cryptography in BFSI Market, in terms of value.

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In terms of region, the Quantum Cryptography in BFSI Market market can be segmented into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa. This market is evaluated on the basis of Value (USD Million) as well.

Finally, all the aspects of the Quantum Cryptography in BFSI Market Market are quantitatively as well qualitatively assessed to study the as well as regional market comparatively. This market study presents critical information and factual data about the market providing an overall statistical study of this market on the basis of market drivers, limitations and its future prospects.

Table of Contents:

Quantum Cryptography in BFSI Market Market Overview

Economic Impact on Industry

Market Competition by Manufacturers

Production, Revenue (Value) by Region

Production, Revenue (Value), Price Trend by Type

Market Analysis by Application

Cost Analysis

Industrial Chain, Sourcing Strategy and Downstream Buyers

Marketing Strategy Analysis, Distributors/Traders

Market Effect Factors Analysis

Quantum Cryptography in BFSI Market Market Forecast

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*If you need anything more than these then let us know and we will prepare the report according to your requirement.

About Us Qyreports:

We at, Qyreports, a leading market research report published accommodate more than 4,000 celebrated clients worldwide putting them at advantage in todays competitive world with our understanding of research. Our list of customers includes prestigious Chinese companies, multinational companies, SMEs and private equity firms whom we have helped grow and sustain with our fact-based research. Our business study covers a market size of over 30 industries offering unfailing insights into the analysis to reimagine your business. We specialize in forecasts needed for investing in a new project, to revolutionize your business, to become more customer centric and improve the quality of output.

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Quantum Cryptography in BFSI Market Growth & Demand by 2020-2027 | Anhui Qasky Science and Technology Limited Liability Company - VOICE of...

Best open source software of 2020: free software for home …

Open source software has long been the powerhouse behind the development of the internet, not least LAMP configuration servers that run on Linux, Apache, MySQL, and PHP.

While there is a variety of free software programs out there, many are proprietary, meaning that the development company owns the code. With open source software, anyone can add to, edit, and adapt the source code as they see fit.

This is one of the key strengths of open source software, because not only does it invite close scrutiny from a wide range of parties with different interests and skill sets, it also invites wide ranging collaboration.

Because of this, many open source projects have dedicated communities behind them, with developers adding to and evolving features along new coding lines, directions, and standards.

Of course, where open source projects become particularly big their communities can end up splitting into different groups working in different directions, a process known as forking. Perhaps the most famous example of this is the Linux operating system, which now comes in many flavors or distros.

Either way, despite the power of proprietary software programs, platforms, and operating systems, open source software remain key in the modern world. Even better, open source can offer users free alternatives to paid-for programs without necessarily sacrificing on features, and you can even customize the software to suit you.

Here then is the best in open source software by type, to show some of the range of open source software opportunities.

There's no need to pay for Office with this open source alternative

Full feature range

Fully compatible with MS files

Lots of templates

Not cloud-based

LibreOffice is an office software suite that is available for Windows, Mac, or Linux, offering documents, spreadsheets, presentations, and databases.

While Microsoft Office remains the most popular application for office use, it's pricing model hasn't always been the most accessible. Worse still is that alternative office suites such as Open Office can struggle to preserve formatting from Microsoft files, and others such as Google's G Suite just isn't so feature-rich.

LibreOffice manages to counter both frustrations by being not only fully compatible with Microsoft file formats, but also offers a feature-packed full service office suite that can do most anything that existing ones can offer.

The one drawback is that it's software to download rather than run in the cloud, but there are hundreds of templates available to use and edit.

LibreOffices huge community of contributors have compiled a brilliant collection of support materials, including a forum and even live chat if you need a hand.

Our favorite open source photo editor, packed with powerful tools

Supports layers

Advanced editing

Many plugins

Powerful and flexible, open source image editor GIMP is as close to Adobe Photoshop as you can get without opening your wallet. It supports layers, and is packed with advanced tools for enhancing your pictures or creating new ones from scratch.

You can adjust every aspect of your pictures appearance manually, or use the dozens of customizable filters and effects to achieve amazing results with just a few clicks. GIMP comes with a huge array of user-created plugins pre-installed, and adding more is a piece of cake.

If you dont need the power of GIMP and prefer a simpler interface, check out Paint.NET another superb open source photo editor thats a little lighter on features, but easier to master.

An open source media player than can handle virtually any file format

Works with almost all audio formats

Optimize playback

Streams internet radio

VR audio

VLC Media Player is one of the worlds most popular free media players, and for good reason it can handle just about any audio file, video file, or media stream you can throw at it, without the need to mess around installing additional codecs. VLC Media Player gives you an amazing degree of control over playback, letting you optimize video and audio for your specific hardware configuration.

VLC Media Player is ideal for streaming podcasts, as well as internet radio stations like Last.fm and TuneIn Radio. Theres also a superb archive of extensions and skins, and the WYSIWYG Skin Editor lets you create your own custom designs.

The latest addition to VLC is 360-degree playback, which lets you enjoy immersive videos with a VR headset, and more exciting developments are on the horizon to keep pace with new video technology.

Great for new users, and an excellent substitute for Windows Movie Maker

Power features

Layered filters

Drag and drop

Basic interface

If youre looking for a great open source video editor, give Shotcut a whirl. It might look a little stark at first, but add some of the optional toolbars and youll soon have its most powerful and useful features your your fingertips.

Some of its best tools include quick filters for audio and video (which are non-destructive and can be layered to achieve different effects), advanced white balancing, wipes and other transitions, color grading, click-and-drag import, and straightforward trimming and compositing of clips.

The perfect tool for recording and editing podcasts and music

Wide range of features

Lots of extensions

Noise filtering

Even if you have the ready cash for an audio editor, you might choose to stick with open source alternative Audacity. It has almost all the tools you need for recording and refining sound files, and any features it lacks can be plugged with its extensive catalog of extensions.

Audacity is the tool of choice for many podcasters, musicians and audiobook narrators thanks to its professional quality results. You can use it to combine clips, copy and paste sections of audio, remove noise and other unwanted noises, strip vocals from songs, alter frequencies, and apply effects like echo and reverb.

An powerful, fully customizable browser with a plugin for every purpose

Lots of plugins

Private browsing

Memory hog

The browser wars show no sign of ending, but Firefox's open source heritage makes it incredibly flexible. Its main appeal is its collection of extensions. With thousands of plug-ins available at the click of a mouse, its easy to transform Firefox into your perfect browser.

Firefox is updated every five to eight weeks, and you can get an early taste of the latest features by installing the beta or taking part in Firefox Test Pilot a way to sample experimental tools that might be incorporated into future releases.

Firefoxs source code forms the basis of many specialist projects, including the security-focused Tor Browser and speed-centric Waterfox, which is designed with power users in mind.

However, despite Firefox's rise in popularity, the browser has traditionally struggled to handle Flash, resulting in Firefox becoming unstable and consuming processor resources or simply shutting down unexpectedly.

A free and open source alternative to Microsoft Outlook

Lots of features

Additional plugins

Not cloud-based

If you have multiple email accounts even if theyre with the same provider open source email client Mozilla Thunderbird will save you time and hassle flicking between browser tabs and logins. Like Firefox, Thunderbird is an open source project published by the Mozilla Foundation, and is almost infinitely adaptable.

Thunderbird's standard features include an RSS reader and the ability to link to files too large to send as attachments, and its optional extras include weather forecasts and Google app tabs. Other plugins include privacy protection and enhanced security.

However, the one negative is that there is no cloud version so emails have to be stored on your PC, so take care to keep these backed up.

Generate strong passwords for accounts and store them in a secure vault

Easy to use

Strong encryption

Portable program

Theres no shortage of free password managers, but KeePass Password Safe is our favorite open source option. Its not flashy, but its packed with all the tools and features you could want, including AES encryption of your entire database of login details (not just the passwords themselves), two-factor authentication via both a master password and key file, and secure random password generation.

KeePass is tiny, and because its a portable program you can carry it on a USB stick, and thanks to an extensive library of plug-ins, its easy to integrate with your preferred browser and cloud storage provider.

The open source FTP software client

Easy to use

Drag and drop

Fully featured

If you run your own website, the chances are you'll need FTP software to upload files directly to your server. While there are some good existing FTP clients out there, FileZillais probably the best free version you can use.

It does all that you need to with a file upload client, which remains relatively simple anyway. On the left pane, FileZilla presents you with a view of your folder selection (from Windows Explorer, if using Windows) where you can ensure you select your folder of files to upload - on the right, the pane shows your location on the server, which will be a similar-looking file tree.

You just need to ensure you click through the folders on the right pane to the place where you want to upload your files, such as within thePublic_HTML folder on many Linux servers. Then it's simply a matter of using drag and drop to move your files to upload from the left pane and into the right pane.

Simple, easy, and usually very painless. The main stumbling block for most first-time users is not selecting the correct files to upload, or especially the correct locations.

If you need to CHMOD permissions for files, that's as easy as a right-click on any files or folders you need to apply them to, and that's about it.

The open source operating system

Increasingly accessible

Good features

Strong security

Overwhelming choice of distros

It used to be the case that Linuxwas solely the preserve of geeks and code junkies - it made little attempt to appeal to a wide user base. Those days are long since over, and varieties of Linux have made a big effort to be a lot more user-friendly for people with little if anything coding knowledge, and present a serious rival to Windows and Apple Mac iOS as alternatives for running your desktop.

These efforts have helped to edge Linux toward the mainstream, as underlined by computer giant Dell moving to sell Linux desktops and laptops directly to the public. Better still, Windows remains the target of choice for hackers, so Linux presents itself as a more secure alternative, so long as you keep updates fresh.

Excerpt from:
Best open source software of 2020: free software for home ...

The Architecture of Artificial Intelligence | Features …

Behnaz Farahi Breathing Wall II

Let us consider an augmented architect at work. He sits at a working station that has a visual display screen some three feet on a side, this is his working surface, controlled by a computer with which he can communicate by means of small keyboards and various other devices. Douglas Engelbart

This vision of the future architect was imagined by engineer and inventor Douglas Engelbart during his research into emerging computer systems atStanfordin 1962. At the dawn of personal computing he imagined the creative mind overlapping symbiotically with the intelligent machine to co-create designs. This dual mode of production, he envisaged, would hold the potential to generate new realities which could not be realized by either entity operating alone. Today, self-learning systems, otherwise known asartificial intelligence or AI, are changing the way architecture is practiced, as they do our daily lives, whether or not we realize it. If you are reading this on a laptop or tablet, then you are directly engaging with a number of integrated AI systems, now so embedded in our the way we use technology, they often go unnoticed.

As an industry, AI is growing at an exponential rate, now understood to be on track to be worth $70bn globally by 2020.This is in part due to constant innovation in the speed of microprocessors, which in turn increases the volume of data that can be gathered and stored. But dont panicthe artificial architect with enhanced Revit proficiency is not coming to steal your job. The human vs. robot debate, while compelling, is not so much the focus here but instead how AI is augmenting design and how architects are responding to and working with these technological developments. What kind of innovation is artificial intelligence generating in the construction industry?

Assuming you read this as a non-expert, it is likely that much of the AI you have encountered to this point has been weak AI, otherwise known as ANI (Artificial Narrow Intelligence). ANI follows pre-programmed rules so that it appears intelligent but is in effect a simulation of a human-like thought process. With recent innovations such as that of Nvidias microchip in April 2016, a shift is now being seen towards what we might understand as deep learning, where a system can, in effect, train and adapt itself. The interest for designers is that AI is, therefore, starting to apply itself to more creative tasks, such aswriting books, making art, web design, or self-generating design solutions, due to its increased proficiency in recognizing speech and images. Significant AI winters', or periods where funding has been hard to source for the industry, have occurred over the last twenty years, but commentators such as philosopher Nick Bostrom now suggest we are on the cusp of an explosion in AI, and this will not only shape but drive the design industry in the next century. AI, therefore, has the potential to influence the architectural design process at a series of different construction stages, from site research to the realization and operation of the building.

1. Site and social research

By already knowing everything about us, our hobbies, likes, dislikes, activities, friends, our yearly income, etc., AI software can calculate population growth, prioritize projects, categorize streets according to usage and so on, and thus predict a virtual future and automatically draft urban plans that best represent and suit everyone.-Rron Beqiri on Future Architecture Platform.

Gathering information about a project and its constraints is often the first stage of an architectural design process, traditionally involving traveling to a site, perhaps measuring, sketching and taking photographs. In the online and connected world, there is already a swarm-like abundance of data for the architect to tap into, already linked and referenced against other sources allowing the designer to, in effect, simulate the surrounding site without ever having to engage with it physically. This information fabric has been referred to as the internet of things. BIM tools currently on the market already tap into these data constellations, allowing an architect to evaluate site conditions with minute precision. Software such as EcoDesigner Star or open-source plugins for Google SketchUp allows architects to immediately calculate necessary building and environmental analyses without ever having to leave their office. This phenomenon is already enabling many practices to take on large projects abroad that might have been logistically unachievable just a decade ago.The information gathered by our devices and stored in the Cloud amounts to much more than the material conditions of the world around us

The information gathered by our devices and stored in the Cloud amounts to much more than the material conditions of the world around us. Globally, we are amassing ever-expanding records of human behavior and interactions in real-time. Personal, soft data might, in the most optimistic sense, work towards the socially focused design that has been widely publicized in recent years by its ability to integrate the needs of users. This approach, if only in the first stages of the design process, would impact the twentieth-century ideals of mass production and standardization in design. Could the internet of things create a socially adaptable and responsive architecture? One could speculate that, for example, when the population of children in a city crosses a maximum threshold in relation to the number of schools, a notification might be sent to the district council that it is time to commission a new school. AI could, therefore, in effect, write the brief for and commission architects by generating new projects where they are most needed.

Autodesk. Bicycle design generated by Dreamcatcher AI software.

2. Design decision-making

Now that we have located live-updating intelligence for our site, it is time to harness AI to develop a design proposal. Rather than a program, this technology is better understood as an interconnected, self-designing system that can upgrade itself. It is possible to harness a huge amount of computing power and experience by working with these tools, even as an individual as Pete Baxter, Vice President of Digital Manufacturingat Autodesk,told the Guardian: now a one-man designer, a graduate designer, can get access to the same amount of computing power as these big multinational companies. The architect must input project parameters, in effect an edited design brief, and the computer system will then suggest a range of solutions which fulfill these criteria. This innovation has the potential to revolutionize how architecture is not only imagined but how it is fundamentally expressed for designers who choose to adopt these new methods.

I spoke with Michael Bergin, a Principal Research Scientist at Autodesk, to get a better understanding of how AI systems are influencing the development of design software for architects. While their work was initially aimed at the automotive and industrial design industries, Dreamcatcher now is beginning to filter into architecture projects. It was used recently to develop The Livings generative design for Autodesk's new office in Toronto and MX3Ds steel bridge in Amsterdam. The basic concept is that CAD models of the surrounding site and other data, such as client databases and environmental information, are fed into the processor. Moments later, the system outputs a series of optimized 3D design solutions ready to render. These processes effectively rely on cloud computing to create a multitude of options based on self-learning algorithmic parameters. Lattice-like and fluid forms are often the aesthetic result, perhaps unsurprisingly, as the software imitates structural rules found in nature.future architects would be less in the business of drawing and more into specifying requirements of the problem

The Dreamcatcher software has been designed to optimize parametric design and link into and extend existing software designed by Autodesk, such as Revit and Dynamo. Interestingly, Dreamcatcher can make use of a wide and increasing spectrum of design input datasuch as formulas, engineering requirements, CAD geometry, and sensor informationand the research team is now experimenting with Dreamcatchers ability to recognize sketches and text as input data. Bergin suggests he imagines the future of design tools as systems that accept any type of input that a designer can produce [to enable] a collaboration with the computer to iteratively target a high-performing design that meets all the varied needs of the design team. This would mean future architects would be less in the business of drawing and more into specifying requirements of the problem, making them more in sync with their machine counterparts in a project. Bergin suggests architects who adopt AI tools would have the ability to synthesize a broad set of high-level requirements from the design stakeholders, including clients and engineers, and produce design documentation as output, in line with Engelbarts vision of AI augmenting the skills of designers.

AI is also being used directly in software such as Space Syntaxs depthmapX, designed at The Bartlett in London, to analyze the spatial network of a city with an aim to understand and utilize social interactions and in the design process. Another tool, Unity 3D, is built from software developed for game engines to enable designers to analyze their plans, such as the shortest distances to fire exits. This information would then allow the architect to re-arrange or generate spaces in plan, or even to organize entire future buildings. Examples of architects who are adopting these methods include Zaha Hadid with the Beijing Tower project (designed antemortem) and MAD Architects in China, among others.

Computational Architecture Digital Grotesque Project

3. Client and user engagement

As so much of the technology built into AI has been developed from the gaming industry, its ability to produce forms of augmented reality have interesting potential to change the perception and engagement with architecture designs for both the architects and non-architects involved in a project. Through the use of additional hardware, augmented reality has the ability to capture and enhance real-world experience. It would enable people to engage with a design prior to construction, for example, to select the most appealing proposal from their experiences within its simulation. It is possible that many architecture projects will also remain in this unbuilt zone, in a parallel digital reality, which the majority of future world citizens will simultaneously inhabit.

Augmented reality would, therefore, allow a client to move through and sense different design proposals before they are built. Lights, sounds, even the smells of a building can be simulated, which could reorder the emphasis architects currently give to specific elements of their design. Such a change in representational method has the potential to shift what is possible within the field of architecture, as CAD drafting did at the beginning of this century. Additionally, the feedback generated by augmented reality can feed directly back into the design, allowing models to directly interact and adapt to future users. Smart design tools such as Materiable by Tangible Media are beginning to experiment with how AI can begin to engage with and learn from human behavior.

Computational Architecture Digital Grotesque Project

4. Realizing designs and rise of robot craftsmen

AI systems are already being integrated into the construction industryinnovative practices such asComputational Architectureare working with robotic craftsmen to explore AI in construction technology and fabrication. Michael Hansmeyer and Benjamin Dillenburger, founders of Computational Architecture, are investigating the new aesthetic language these developments are starting to generate. Architecture stands at an inflection point, he suggests on their website, the confluence of advances in both computation and fabrication technologies lets us create an architecture of hitherto unimaginable forms, with an unseen level of detail, producing entirely new spatial sensations.

3D printing technology developed from AI software has the potential to offer twenty-first-century architects a significantly different aesthetic language, perhaps catalyzing a resurgence of detail and ornamentation, now rare due to the decline in traditional crafts. Hansmeyer and Dillenburgers Grotto Prototype for the Super Material exhibition, London, was a complex architectural grotto 3D-printed from sandstone. The form of the sand grains was arranged by a series of algorithms custom designed by the practice. The technique allowed forms to be developed which were significantly different to that of traditional stonemasonry. The aim of the project was to show that it is now possible to print building-scale rooms from sandstone and that 3D printing can also be used for heritage applications, such as repairs to statues.The confluence of advances in both computation and fabrication technologies lets us create an architecture of hitherto unimaginable forms

Robotics are also becoming more common on construction job sites, mostly dealing with human resources and logistics. According to AEM, their applications will soon expand to bricklaying, concrete dispensing, welding, and demolition. Another example of their future use could include working with BIM to identify missing elements in the snagging process and update the AI in real-time. Large scale projects, for example, government-lead infrastructure initiatives, might be the first to apply this technology, followed by mid-scale projects in the private sector, such as cultural buildings. The challenges of the construction site will bring AI robotics out of the indoor, sanitized environment of the lab into a less scripted reality. Robert Saunders, a researcher into AI and fabrication at the University of Sydney, told New Atlas that "robots are great at repetitive tasks and working with materials that react reliablywhat we're interested in doing is trying to develop robots that are capable of learning how to work with materials that work in non-linear ways like working with hot wax or expanding foam or, more practically, with low-grade building materials like low-grade timber. Saunders foresees robot stonemasons and other craftsbots working in yet unforeseen ways, such as developing the architect's skeleton plans, in effect, spontaneously generating a building on-site from a sketch.

Ori System by Ori

5. Integrating AI systems

This innovation involves either integrating developing artificial technologies with existing infrastructure or designing architecture around AI systems. There is a lot of excitement in this field, influenced in part by Mark Zuckerbergs personal project to develop networked AI systems within his home, which he announced in hisNew years Facebook postin 2016. His wish is to develop simple AI systems to run his home and help with his day-to-day work. This technology would have the ability to recognize the voices of members of the household and respond to their requests. Designers are taking on the challenge of designing home-integrated systems, such as theOri Systemof responsive furniture, or gadgets such asEliqfor energy monitoring. Other innovations, such as driverless cars that run on an integrated system of self-learning AI, have the potential to shape how our cities are laid out and plannedin the most basic sense, limiting our need for more roads and parking areas.

Behnaz Farahi is a young architect who is employing her research into AI and adaptive surfaces to develop interactive designs, such as in her Aurora and Breathing Wall projects. She creates immersive and engaging indoor environments which adapt to and learn from their occupants. Her approach is one of manydifferent practices with different goals will adapt AI at different stages of their process, creating a multitude of architectural languages.

Researchers and designers working in the field of AI are attempting to understand the potential of computational intelligence to improve or even upgrade parts of the design process with an aim to create a more functional and user-optimized built environment. It has always been the architects task to make decisions based on complex, interwoven and sometimes contradictory sets of information. As AI gradually improves in making useful judgments in real-world situations, it is not hard to imagine these processes overlapping and engaging with each other. While these developments have the potential to raise questions in terms of ownership, agency and, of course, privacy in data gathering and use, the upsurge in self-learning technologies is already altering the power and scope of architects in design and construction. As architect and design theorist Christopher Alexander said back in 1964, We must face the fact that we are on the brink of times when man may be able to magnify his intellectual and inventive capacity, just as in the nineteenth century he used machines to magnify his physical capacity.To think architecturally is to imagine and construct new worlds, integrate systems and organize information

In our interview, Bergin gave some insights into how he sees this technology impacting designers in the next twenty years. The architectural language of projects in the future may be more expressive of the design teams intent, he stated. Generative design tools will allow teams to evaluate every possible alternative strategy to preserve design intent, instead of compromising on a sub-optimal solution because of limitations in time and/or resources. Bergin believes AI and machine learning will be able to support a dynamic and expanding community of practice for design knowledge. He can also foresee implications of this in the democratization of design work, suggesting the expertise embodied by a professional of 30 years may be more readily utilized by a more junior architect. Overall, he believes architectural practice over the next 20 years will likely become far more inclusive with respect to client and occupant needs and orders of magnitude more efficient when considering environmental impact, energy use, material selection and client satisfaction.

On the other hand, Pete Baxter suggestsarchitects have little to fear from artificial intelligence: "Yes, you can automate. But what does a design look like that's fully automated and fully rationalized by a computer program? Probably not the most exciting piece of architecture you've ever seen. At the time of writing, many AI algorithms are still relatively uniform and relatively ignorant of context, and it is proving difficult to automate decision-making that would at first glance seem simple for a human. A number of research labs, such theMIT Media Lab, are working to solve this. However, architectural language and diagramming have been part of programming complex systems and software from the start, and they have had a significant influence on one another. To think architecturally is to imagine and construct new worlds, integrate systems and organize information, which lends itself to the front line of technical development. As far back as the 1960s, architects were experimenting with computer interfaces to aid their design work, and their thinking has inspired much of the technology we now engage with each day.

Behnaz Farahi Aurora

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The Architecture of Artificial Intelligence | Features ...

The Future Computed: Artificial Intelligence and its role …

Today Microsoft is releasing a new book, The Future Computed: Artificial Intelligence and its role in society. The two of us have written the foreword for the book, and our teams collaborated to write its contents. As the title suggests, the book provides our perspective on where AI technology is going and the new societal issues it has raised.

On a personal level, our work on the foreword provided an opportunity to step back and think about how much technology has changed our lives over the past two decades and to consider the changes that are likely to come over the next 20 years. In 1998, we both worked at Microsoft, but on opposite sides of the globe. While we lived on separate continents and in quite different cultures, we shared similar experiences and daily routines which were managed by manual planning and movement. Twenty years later, we take for granted the digital world that was once the stuff of science fiction.

Technology including mobile devices and cloud computing has fundamentally changed the way we consume news, plan our day, communicate, shop and interact with our family, friends and colleagues. Two decades from now, what will our world look like? At Microsoft, we imagine that artificial intelligence will help us do more with one of our most precious commodities: time. By 2038, personal digital assistants will be trained to anticipate our needs, help manage our schedule, prepare us for meetings, assist as we plan our social lives, reply to and route communications, and drive cars.

Beyond our personal lives, AI will enable breakthrough advances in areas like healthcare, agriculture, education and transportation. Its already happening in impressive ways.

But as weve witnessed over the past 20 years, new technology also inevitably raises complex questions and broad societal concerns. As we look to a future powered by a partnership between computers and humans, its important that we address these challenges head on.

How do we ensure that AI is designed and used responsibly? How do we establish ethical principles to protect people? How should we govern its use? And how will AI impact employment and jobs?

To answer these tough questions, technologists will need to work closely with government, academia, business, civil society and other stakeholders. At Microsoft, weve identified six ethical principles fairness, reliability and safety, privacy and security, inclusivity, transparency, and accountability to guide the cross-disciplinary development and use of artificial intelligence. The better we understand these or similar issues and the more technology developers and users can share best practices to address them the better served the world will be as we contemplate societal rules to govern AI.

We must also pay attention to AIs impact on workers. What jobs will AI eliminate? What jobs will it create? If there has been one constant over 250 years of technological change, it has been the ongoing impact of technology on jobs the creation of new jobs, the elimination of existing jobs and the evolution of job tasks and content. This too is certain to continue.

Some key conclusions are emerging.

First, the companies and countries that will fare best in the AI era will be those that embrace these changes rapidly and effectively. This is because new jobs and economic growth will come to those that embrace the technology, not those that resist or delay adopting it.

Second, while we believe that AI will help solve big societal problems, we must look to this future with a critical eye. There will be challenges as well as opportunities. We must address the need for strong ethical principles, the evolution of laws, training for new skills and even labor market reforms. This must all come together if were going to make the most of AI.

Third, we need to act with a sense of shared responsibility because AI wont be created by the tech sector alone. At Microsoft were working to democratize AI in a manner thats similar to how we made the PC available to everyone. This means were creating tools to make it easy for every developer, business and government to build AI-based solutions and accelerate the benefit to society.

All of this leads us to what may be one of the most important conclusions of all. Skilling-up for an AI-powered world involves more than science, technology, engineering and math. As computers behave more like humans, the social sciences and humanities will become even more important. Languages, art, history, economics, ethics, philosophy, psychology and human development courses can teach critical, philosophical and ethics-based skills that will be instrumental in the development and management of AI solutions. If AI is to reach its potential in serving humans, then every engineer will need to learn more about the liberal arts and every liberal arts major will need to learn more about engineering.

While we dont have a crystal ball that shows us the future, we do know that were all going to need to spend more time listening to and learning from each other. We hope that The Future Computed can contribute to this conversation.

The Future Computed is available here and additional content related to the book can be found here.

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The Future Computed: Artificial Intelligence and its role ...

University to Help Society Wrap Their Minds Around Artificial Intelligence – Governing

(TNS) Researchers at the University of Michigan have been exploring the need to set ethics standards and policies when it comes to the use of artificial intelligence, and they now have their own place to do so.

The university has created a new Center of Ethics, Society and Computing (ESC) that will focus on AI, data usage, augmented and virtual reality, privacy, open data and identity.

According to thecenters website, the name and abbreviation alludes to the ESC key on a computer keyboard, which was added to interrupt a program when it produced unwanted results.

In the same way, the Center for Ethics, Society and Computing (ESC pronounced escape) is dedicated to intervening when digital media and computing technologies reproduce inequality, exclusion, corruption, deception, racism or sexism, the centers mission statement reads.

The center will bring together scholars who are committed to feminist, justice-focused, inclusive and interdisciplinary approaches to computing, the university said in a news release.

Associate Director Silvia Lindtner said the center has been in a soft launch phase since March 2019. The idea for ESC was born out of making a critical engagement with the politics and ethics of computing a central aspect of technology research and design, she said.

We established ESC to build on and give legitimacy to the long-term scholarship and activism in technology, engineering and design, and to create an interdisciplinary space to explore and apply critical, justice-oriented and feminist approaches to computing and technology research, Lindtner said.

Director Christian Sandvig said the center is hosting a visiting artist working on robotics this term, and that the center includes faculty from computer science, architecture, music and business schools.

We are fairly unique because we are aggressively pursuing research approaches and topics beyond what people normally think about as computing, Sandvig said.

Lindtner said the universitys public nature allows the center to engage deeply with the broader public, policy experts and actors in the social justice movement.

This is a topic that used to be on the fringes, but more recently has gotten broader attention as we have experienced many unintended consequences of technology, Lindtner said.

Some of the concerns the center will be tackling include gender and racial stereotyping in AI and data-based algorithms, as well as an overall lack of accountability and digital justice.

Sandvig said a lot of companies are now rushing to nominal ethics conversations as a solution to the negative perceptions of their products, but ESC is not interested in ethics-washing.

Were looking ahead to difficult debates about the future path we are steering with technology in society, Sandvig said. We need to make it normal that there is an extensive program of research about this topic ethics, justice, technology, people and the future and it must be central to the enterprise of developing technology and training students.

The center is sponsored by the School of Information; the Center for Political Studies at the Institute for Social Research, and the Department of Communication Studies in the College of Literature, Sciences and the Arts at UM.

2020 MLive.com, Walker, Mich..Distributed byTribune Content Agency, LLC.

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University to Help Society Wrap Their Minds Around Artificial Intelligence - Governing

How the Pentagon’s JAIC Picks Its Artificial Intelligence-Driven Projects – Nextgov

The Pentagon launched its Joint Artificial Intelligence Center in 2018 to strategically unify and accelerate AI applications across the nations defense and military enterprise. Insiders at the center have now spent about nine months executing that defense driven AI-support.

At an ACT-IAC forum in Washington Wednesday, Rachael Martin, the JAICs mission chief of Intelligent Business Automation Augmentation and Analytics, highlighted insiders early approach to automation and innovation.

Our mission is to transform the [Defense] business process through AI technologies, to improve efficiency and accuracybut really to do all those things so that we can improve our overall warfighter support, Martin said.

Within her specific mission area, Martin and the team explore and develop automated applications that support a range of efforts across the Pentagon, such as business administration, human capital management, acquisitions, finance and budget training, and beyond. Because the enterprise is vast, the center is selective in determining the projects and programs best fit to be taken under its wing.

For the JAIC, there are a couple of key principles that we want to go by, or that we're going to adhere to when we're looking at a project and whether we support it, Martin explained.

The first principle to be evaluated is mission impact. In this review, insiders pose questions like who cares? she said. They assess the user-base that would most benefit from the project and what the ultimate outcome would be across Defense if the JAIC opted to support it. Next, according to Martin, officials review data-readiness. In this light, insiders address factors like where the data to be used is storedand whether its actually prepped for AI, or more advanced analysis and modeling to run on top of it.

The third factor thats assessed is technology maturity. Martin said that contrary to what many seem to think, the JAIC is not a research organization but instead seeks to apply and accelerate their adoption of already-existing solutions across the department and where those improvements are needed most. Insiders are therefore not at all interested in spending heaps of time researching new, emerging AI and automation applications. Instead, they aim to identify what already exists and is ready to be deployed at this moment.

So that's a big one for us that we like to emphasize, Martin said.

The final assessment is whether the JAIC can identify Defense insiders who will actually use whatever they are set to build. When developing something new, Martin said insiders want to those itll eventually touch to weigh in on the development every step of the way.

We're not in the business of coming up with good ideas and then creating something and trying to hoist it on somebody else, Martin said. We really believe in a very user-centric approach.

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How the Pentagon's JAIC Picks Its Artificial Intelligence-Driven Projects - Nextgov