15 best tips for young engineers — from interestingengineering.com

Excerpt:

The proverb goes hindsight is 20/20, which essentially means you can make better decisions later on when you have become more knowledgeable about the worldBut wouldn’t it be nice to be able to make good decisions from the outset when you’re still young? The following tips were compiled for young engineers and interestingly, most of these suggestions revolve around lifelong learning. Experienced engineers weighed in and added their voice to help create this top 15 list of the best tips for young engineers.

 

 

10 great initiatives that bring girls into STEM — from interestingengineering.com

Excerpt:

It is not a secret that science and engineering professions are occupied mainly by men with only about 20% taken by females. The number of women on executive boards is also extremely low. In order to succeed, both female and male minds are needed for any kind of jobs, especially in science-related industries. Let’s see what initiatives already exist in order to bring more girls and women into STEM!

 

 

MakerBot teams up with Future Engineers to support the Star Trek (TM) Replicator Challenge for K-12 students — from makerbot.com

Excerpt:

MakerBot is excited to inspire the next generation of astronauts and Starfleet cadets by supporting the Star Trek Replicator Challenge, a 3D printing challenge developed by Future Engineers for the ASME Foundation, NASA and Star Trek. Participants in the challenge must create a digital model of a non-edible, food-related item for astronauts to 3D print in the year 2050. The Star Trek Replicator Challenge is the third in a series of ‘Future Engineers’ challenges aimed to educate students K-12 about 3D printing and engineering design.

 

 

 

This massive solar-powered computer can provide water for an entire village — from digitaltrends.com by Maria Mora

Excerpt:

The Center for Disease Control estimates that 9.1 percent of global disease could potentially be prevented by cleaner water and improved sanitation. One European-based company is aiming to provide fresh, drinkable water; Internet connectivity; and free electricity to a community in need.

Watly is world’s first, and largest, solar-powered computer that uses thermal technology to provide clean water, electricity, and Internet connectivity to about 750 people. Measuring in at about 131 feet (40 meters) long, this machine can sanitize up to 1,320 gallons (5,000 liters) of water a day, while generating electricity that can be used to charge external devices. Watly is also built with a 3G/4G router that gives people access to the Internet.

 

 

 

Also see:
Microscope Uses Artificial Intelligence to Find Cancer Cells — from futurism.com
A new microscope developed by researchers from UCLA uses AI to detect cancer cells in blood samples.

Excerpt:

Artificial intelligence is one of the greatest goals of the 21st century. Major developments in AI do astound, machines learning how to turn words into images and how to beat world class players in Go.

Who would have known AI can also spot cancer?

A new microscope, developed by researchers from UCLA, uses AI in helping detect and spot blood samples with cancer cells. Faster and more accurate than its contemporary techniques, it can analyze 36 million images every second without damaging the blood samples.

 

From DSC:

Problem/question:

If you wanted to, how do you make a digital version of 20+ feet worth of writings and drawings on 2+ chalkboards or whiteboards that are put together?

 

 

The applications that I’ve run across so far — whether they are meant for PCs, Macs, tablets, or smartphones — don’t do it, as they’re too limited on screen real estate.

Some have tried using lightboards and making recordings of their equations or other work….

 

 

…but those solutions seem to fall short, at least in my mind, if you need to reference something early on in the long equation…you know, on that first “board” of information that you completed and then erased.  (I suppose if a student was watching a recording, you could tell them to go back to Marker 1 in the video…and they can go back and review that portion of the video…but that requires more time/editing/setup. Time that faculty members often don’t have.)  So, again, lightboards seem somewhat limited in their real estate.

Then, a while back, I saw this 360-degree ring of display screens at Washington State University

 

WSU-ActiveLearningClassroom-Nov2015

 

and it got me to thinking…hmmm…yes…if, as a faculty member was using an application that they could write on and the equation could appear on the screens overhead. Faculty could use something akin to a pen & touch display from Wacom in order to write the equations — but the software would need to allow them to scroll backwards and forwards throughout their long equations. They could use those tools to highlight or further annotate something that was previously covered.

 

WacomTablet-Large-March2016

 

In this type of physical/AV-related solution, it would seem that the students would be best situated on the inside of the circle, looking upwards to watch the equation build on itself.  Having a huge amount of digital space to work with could mean that they could turn their Node Chairs around to see any portion of the equation.  Faculty members could also, I suppose, use laser pointers to point to something up on the displays.

Again though, they would need to be able to scroll left to right, top to bottom, say on something like the 160 acres (vs 20+ feet of chalkboard/whiteboard) you get on a workspace in Bluescape

 

BlueScape-2015

…then you would have a lot of digital real estate to work with. So that was one approach I was wondering about.

But then, I saw some interesting items regarding Virtual Reality, and POW! There it is! An enormous amount of digital screen real estate where the users could go where they wanted to on it.  That is, the vision here would be that each student could control where they want to go within the digital canvas.

Some related items to this:

PCDesktopToVR-Futurism-March2016

See:
Virtual Desktop 1.0 Trailer

 

 

BigScreen-VR-March2016

Obviously, I need to further think this through and investigate what’s possible as time goes by. But I wanted to get this out there in case some vendor can help us get there sooner rather than later.

 

A relevant link:

Playing games on a 19-foot TV, climbing mountains and shooting bows — from polygon.com by Brian Crecente
Excerpt:

But the one I found most compelling was the most mundane creation for Vive: The SteamVR Desktop Theater Mode. Slip on the black plastic headset and instead of dropping into a fantastical world of mouthy orbs, atop a mountain with a robot dog or inside a game, I found myself sitting in a chair in a fairly non-descript room facing a big television screen. To be specific, in this case big means about 19 feet.

 

Addendum of something that’s relevant here and that I just ran across today:

  • The Future of AV Displays — from thejournal.com by Dennis Pierce
    Today, students are interacting with content on large touchscreen flat panels. Soon, they could be using immersive head-mounted displays.

 

 

Winner revealed for Microsoft’s HoloLens App Competition — from vrfocus.com by Peter Graham

Excerpt:

Out of the thousands of ideas entered, Airquarium, Grab the Idol and Galaxy Explorer were the three that made it through. Out of those the eventual winner was Galaxy Explorer with a total of 58 per cent of the votes. The app aims to give users the ability to wander the Milky Way and learn about our galaxy. Navigating through the stars and landing on the myriad of planets that are out there.

 

 

 

Also see:

Virtual Reality in 2016: What to expect from Google, Facebook, HTC and others in 2016 — from tech.firstpost.com by Naina Khedekar

Excerpt:

Many companies have made their intentions for virtual reality clear. Let’s see what they are up to in 2016.

 

 

Also see:

 

Somewhat related, but in the AR space:

Except:
Augmented reality(AR) has continued to gain momentum in the educational landscape over the past couple of years. These educators featured below have dove in head first using AR in their classrooms and schools. They continue to share excellent resources to help educators see how augmented reality can engage students and deepen understanding.

 

 

 

Intel launches x-ray-like glasses that allow wearers to ‘see inside’ objects — from theguardian.com by
Smart augmented reality helmet allows wearers to overlay maps, schematics and thermal images to effectively see through walls, pipes and other solid objects

Excerpt:

Unlike devices such as HoloLens or Google Glass, which have been marketed as consumer devices, the Daqri Smart Helmet is designed with industrial use in mind. It will allow the wearer to effectively peer into the workings of objects using real-time overlay of information, such as wiring diagrams, schematics and problem areas that need fixing.

 

 

CollabClassrmsMarkFutureHigherEd-EdDive-1-22-16

 

Collaborative classrooms mark wave of the future in higher ed — from educationdive.com by Tara García Mathewson
Student-centered models turn instructors into guides as students investigate for themselves

Excerpts:

The designs put students at the center of instruction, shifting the faculty role to one of tutor or guide.

“This changes the whole way we teach,” Benavides said.

Some colleges and universities are designing these spaces in new, modern buildings, while others are remodeling existing classrooms and making them work for this next generation of teaching and learning.

 

From DSC:
This sort of change may be uncomfortable to students and to faculty members alike. However, to shift the ownership of the learning to the student is a positive move. Why? Because we all need to be lifelong learners now.  The learning rests with each one of us now, or we could be broadsided and have a very difficult time getting back up. So to come out of college knowing how to learn…that’s a huge plus in my mind.

 

 

DanielChristian-No-longer-running-sprints--but-marathons

 

 

Also see:

 

Learning-Spaces-Guide-pkallscDotOrg

 

  • What do we want our learners to become?
  • What kind of learning experiences enable that becoming? 
  • What kind of learning spaces enable such experiences? 
  • How do we know? 

 

 

Meta-Analysis-Active-LearningSTEMApr2014

 

 

 

Report from Davos: 5 million jobs to be lost by 2020 because of tech advances — from siliconbeat.com by Levi Sumagaysay

Excerpt (emphasis DSC):

A new report predicts a loss of 5 million jobs in the next five years because of technological advances, but don’t blame it all on the robots.

The other culprits: artificial intelligence, 3-D printers and advances in genetics, biotech and more.

The World Economic Forum, which is holding its annual meeting in Davos this week, in its report details the effects of modern technology on the labor market, for better or for worse.  It says “the fourth industrial revolution” will be “more comprehensive and all-encompassing than anything we have ever seen.”

The report actually estimates a loss of 7 million jobs in 15 economies that today have 1.86 billion workers, or about 65 percent of the world’s workforce, but it also expects 2 million new jobs to be created.

 

From DSC:
If this turns out to be true, how should this affect our curricula?  What should we be emphasizing and seeking to build within our students?

 

 
Paging Dr. Robot: The coming AI health care boom — from fastcompany.com by Sean Captain
Use of artificial intelligence in health care to grow tenfold in 5 years, say analysts—for everything from cancer diagnosis to diet tips.

Excerpt:

More than six billion dollars: That’s how much health care providers and consumers will be spending every year on artificial intelligence tools by 2021—a tenfold increase from today—according to a new report from research firm Frost & Sullivan. (Specifically, it will be a growth from $633.8 million in 2014 to $6,662.2 million in 2021.)

Computer-aided diagnosis can weigh more factors than a doctor could on their own, such as reviewing all of a patient’s history in an instant and weighing risk factors such as age, previous diseases, and residence (if it’s in a heavily polluted area) to come up with a short list of possible diagnoses, even a percent confidence rating that it’s disease X or syndrome Y. Much of this involves processing what’s called “unstructured data,” such as notes from previous exams, scan images, or photos. Taking a first pass on x-rays and other radiology scans is one of the big applications for AI that Frost & Sullivan expects.

 

Babylon, the U.K. digital doctor app, scores $25M to develop AI-driven health advice — from techcrunch.com by Steve O’Hear

Excerpt:

Hot on the heels of PushDoctor’s $8.2 million Series A, another U.K. startup playing in the digital health app space has picked up funding. Babylon Health, which like PushDoctor, lets you have video consultations with a doctor (and a lot more), has raised a $25 million Series A round led by Investment AB Kinnevik, the Swedish listed investment fund.

 

 

Under Armour and IBM to transform personal health and fitness, powered by IBM Watson — from ibm.com
New Cognitive Coaching System Will Apply Machine Learning to the World’s Largest Digital Health and Fitness Community

 

 

IBM Watson bets $1 billion on healthcare with Merge acquisition — from techrepublic.com by Conner Forrest
[Back in August 2015] IBM ponied up $1 billion for medical imaging company Merge Healthcare. Here’s what it means for the future of IBM’s cognitive computing system.

 

The emergence of precision algorithms in healthcare — from Gartner

Summary:

Recent announcements that several medical institutions intend to publish extensive portfolios of advanced algorithms via an open marketplace serve as an early indicator that interest in sharing clinical algorithms is increasing. We explore the impact of this trend and offer recommendations to HDOs.

 

 

Somewhat related postings:

 

From DSC:
Below are 2 articles that I ran across, almost back to back.  Check them out and see if you, too, don’t see a major gap here. Though not really news, it doesn’t seem that we’re making much progress either.


 

The 25 Skills You Must Master to Land a New Job in 2016 (Infographic) — from inc.com by Jacquelyn Smith
If you know how to code or are fluent in another language, you’ll have a leg up on other candidates.

Excerpt:

To find out what it takes to successfully land a job, LinkedIn analyzed all of the hiring and recruiting activity that occurred on its site in 2015, and uncovered the 25 hottest skills in 14 different countries.

 

 

 

Now, check this next one out!

 

When it comes to jobs, Generation Z may not be the ‘tech’ generation after all — from by Conner Forrest
A new study by CompTIA found that many young people are simply uninterested in IT jobs. Here’s how that could impact the workforce.

According to a new study by IT trade association CompTIA, a mere 13% of 13-17 year-olds surveyed said they want to pursue a career in IT. This is despite the fact that 70% of Generation Z respondents reporting that they love technology.

According to the CompTIA report, much of Generation Z’s disinterest in technological professions is mainly due to their lack of understanding about the field. This is especially true in school, with 38% of junior high and high school students saying their schools provide no information on IT jobs. According to Code.org, only 10% of high schools in the US offer computer science classes.

Also, the gender gap prevailed among Generation Z respondents with only 10% of girls saying they were interested in IT, compared to 23% of boys.

 

 

Houston, we have a problem!*
The demand isn’t being met — nor does it look like it will be met — with the appropriate supply.

*  Though this is not a new problem,
it doesn’t seem that we’re making
much progress here.

 

 

 

Automation potential and wages for US jobs — from McKinsey Global Institute
McKinsey analyzed the detailed work activities for 750+ occupations in the US to estimate the percentage of time that could be automated by adapting currently demonstrated technology.

 

AutomationPotential-McKinsey-Jan2016

 

 

Also see:

  • Four fundamentals of workplace automation — from mckinsey.com by Michael Chui, James Manyika, and Mehdi Miremadi
    As the automation of physical and knowledge work advances, many jobs will be redefined rather than eliminated—at least in the short term.


 

 

Introduction to Design Thinking — from experience.sap.com by Gerd Waloszek

Excerpt (emphasis DSC):

A Design Methodology
Basically, Design Thinking is a design methodology. It differs from traditional design approaches in specific ways described below. For example, some authors characterize Design Thinking as more creative and user-centered than traditional design approaches.

A Problem-Solving Approach or Process
Design Thinking can be regarded as a problem solving method or, by some definitions, a process for the resolution of problems (but see below for the differences between methods and process).

As a solution-based approach to solving problems, Design Thinking is particularly useful for addressing so-called “wicked” problems. Wicked means that they are ill-defined or tricky. For ill-defined problems, both the problem and the solution are unknown at the outset of the problem-solving process (as opposed to “tame” or “well-defined” problems, where the problem is evident and the solution is possible with some technical knowledge.) Even when the general direction of the problem may be clear, considerable time and effort is spent on clarifying the requirements. Thus, in Design Thinking, a large part of the problem-solving activity is comprised of defining and shaping the problem.

The resulting problem resolution is regarded as creative, fluid, and open, and also as the search for an improved future result (this is in line with Herbert A. Simon’s (1969) definition of design as the “transformation of existing conditions into preferred ones.”)

 

designthinking-sap-2012

 

 

Design Thinking Comes of Age — from the September 2015 Issue of the Harvard Business Review by Jon Kolko

Excerpts (emphasis DSC):

There’s a shift under way in large organizations, one that puts design much closer to the center of the enterprise. But the shift isn’t about aesthetics. It’s about applying the principles of design to the way people work.

This new approach is in large part a response to the increasing complexity of modern technology and modern business. That complexity takes many forms. Sometimes software is at the center of a product and needs to be integrated with hardware (itself a complex task) and made intuitive and simple from the user’s point of view (another difficult challenge). Sometimes the problem being tackled is itself multi-faceted: Think about how much tougher it is to reinvent a health care delivery system than to design a shoe. And sometimes the business environment is so volatile that a company must experiment with multiple paths in order to survive.

I could list a dozen other types of complexity that businesses grapple with every day. But here’s what they all have in common: People need help making sense of them. Specifically, people need their interactions with technologies and other complex systems to be simple, intuitive, and pleasurable.

A set of principles collectively known as design thinking—empathy with users, a discipline of prototyping, and tolerance for failure chief among them—is the best tool we have for creating those kinds of interactions and developing a responsive, flexible organizational culture.

Focus on users’ experiences, especially their emotional ones.

 


 

 


 

 


 

DesignThinkingMindShift-Dec2015

 


 

designthinking-twitter-dec2015

 

 

 

——————

Addendum on 1/6/16  (item #7)

 

figure 1

 

Figure 1. Design thinking’s five principles

Addendum:

Design thinking infiltrates K-12 education — from nextgenlearning.org by Michael Niehoff

Excerpts:

As education continues to evolve, many are looking outside the traditional classroom for new pedagogies to inform their instructional practice. One of these more recent schools of thought is design thinking: coming up with practical, creative solutions to current problems, with the intent of an improved future result.

Design thinking has been made famous by IDEO, a design firm that has taken the design thinking approach to create and innovate new products, services, spaces and interactive experiences. They have worked with education products and communities on a number of projects including redesigning online learning experiences, creating learning labs and even designing entirely new school programs.

Higher Education’s Torch Bearer:
The d. School at Stanford University including their efforts with the K12 Lab

K–12 Early Adopters:
Nueva Design Thinking Institute 
Design Tech High School

 

Special Report: 2016 Top Tech to Watch
Spectrum’s annual special report for the technologies to watch this year

 

IEEESpectrum-TechsToWatch2016

 

 

From DSC:
Below are some further items that discuss the need for some frameworks, policies, institutes, research, etc. that deal with a variety of game-changing technologies that are quickly coming down the pike (if they aren’t already upon on).  We need such things to help us create a positive future.

Also see Part I of this thread of thinking entitled, “The need for ethics, morals, policies, & serious reflection about what kind of future we want has never been greater!  There have been so many other items that came out since that posting, I felt like I needed to add another one here.

What kind of future do we want? How are we going to insure that we get there?

As the saying goes…”Just because we can do something, doesn’t mean we should.” Or another saying comes to my mind…”What could possibly go wrong with this? It’s a done deal.”

While some of the items below should have very positive impacts on society, I do wonder how long it will take the hackers — the ones who are bent on wreaking havoc — to mess up some of these types of applications…with potentially deadly consequences? Security-related concerns must be dealt with here.


 

5 amazing and alarming things that may be done with your DNA — from washingtonpost.com by Matt McFarland

Excerpt (emphasis DSC):

Venter is leading efforts to use digital technology to analyze humans in ways we never have before, and the results will have huge implications for society. The latest findings he described are currently being written up for scientific publications. Venter didn’t want to usurp the publications, so he wouldn’t dive into extensive detail of how his team has made these breakthroughs. But what he did share offers an exciting and concerning overview of what lies ahead for humanity. There are social, legal and ethical implications to start considering. Here are five examples of how digitizing DNA will change the human experience:

 

 

These are the decisions the Pentagon wants to leave to robots — from defenseone.com by Patrick Tucker
The U.S. military believes its battlefield edge will increasingly depend on automation and artificial intelligence.

Excerpt:

Conducting cyber defensive operations, electronic warfare, and over-the-horizon targeting. “You cannot have a human operator operating at human speed fighting back at determined cyber tech,” Work said. “You are going to need have a learning machine that does that.” He did not say  whether the Pentagon is pursuing the autonomous or automatic deployment of offensive cyber capabilities, a controversial idea to be sure. He also highlighted a number of ways that artificial intelligence could help identify new waveforms to improve electronic warfare.

 

 

Britain should lead way on genetically engineered babies, says Chief Scientific Adviser — from.telegraph.co.uk by Sarah Knapton
Sir Mark Walport, who advises the government on scientific matters, said it could be acceptable to genetically edit human embryos

Excerpt:

Last week more than 150 scientists and campaigners called for a worldwide ban on the practice, claiming it could ‘irrevocably alter the human species’ and lead to a world where inequality and discrimination were ‘inscribed onto the human genome.’

But at a conference in London [on 12/8/15], Sir Mark Walport, who advises the government on scientific matters, said he believed there were ‘circumstances’ in which the genetic editing of human embyros could be ‘acceptable’.

 

 

Cyborg Future: Engineers Build a Chip That Is Part Biological and Part Synthetic — from futurism.com

Excerpt:

Engineers have succeeded in combining an integrated chip with an artificial lipid bilayer membrane containing ATP-powered ion pumps, paving the way for more such artificial systems that combine the biological with the mechanical down the road.

 

 

Robots expected to run half of Japan by 2035 — from engadget.com by Andrew Tarantola
Something-something ‘robot overlords’.

Excerpt:

Data analysts Nomura Research Institute (NRI), led by researcher Yumi Wakao, figure that within the next 20 years, nearly half of all jobs in Japan could be accomplished by robots. Working with Professor Michael Osborne from Oxford University, who had previously investigated the same matter in both the US and UK, the NRI team examined more than 600 jobs and found that “up to 49 percent of jobs could be replaced by computer systems,” according to Wakao.

 

 

 

Cambridge University is opening a £10 million centre to study the impact of AI on humanity — from businessinsider.com by Sam Shead

Excerpt:

Cambridge University announced on [12/3/15] that it is opening a new £10 million research centre to study the impact of artificial intelligence on humanity.

The 806-year-old university said the centre, being funded with a grant from non-profit foundation The Leverhulme Trust, will explore the opportunities and challenges facing humanity as a result of further developments in artificial intelligence.

 

Cambridge-Center-Dec2015

 

 

Tech leaders launch nonprofit to save the world from killer robots — from csmonitor.com by Jessica Mendoza
Elon Musk, Sam Altman, and other tech titans have invested $1 billion in a nonprofit that would help direct artificial intelligence technology toward positive human impact. 

 

 

 

 

2016 will be a pivotal year for social robots — from therobotreport.com by Frank Tobe
1,000 Peppers are selling each month from a big-dollar venture between SoftBank, Alibaba and Foxconn; Jibo just raised another $16 million as it prepares to deliver 7,500+ units in Mar/Apr of 2016; and Buddy, Rokid, Sota and many others are poised to deliver similar forms of social robots.

Excerpt:

These new robots, and the proliferation of mobile robot butlers, guides and kiosks, promise to recognize your voice and face and help you plan your calendar, provide reminders, take pictures of special moments, text, call and videoconference, order fast food, keep watch on your house or office, read recipes, play games, read emotions and interact accordingly, and the list goes on. They are attempting to be analogous to a sharp administrative assistant that knows your schedule, contacts and interests and engages with you about them, helping you stay informed, connected and active.

 

 

IBM opens its artificial mind to the world — from fastcompany.com by Sean Captain
IBM is letting companies plug into its Watson artificial intelligence engine to make sense of speech, text, photos, videos, and sensor data.

Excerpt:

Artificial intelligence is the big, oft-misconstrued catchphrase of the day, making headlines recently with the launch of the new OpenAI organization, backed by Elon Musk, Peter Thiel, and other tech luminaries. AI is neither a synonym for killer robots nor a technology of the future, but one that is already finding new signals in the vast noise of collected data, ranging from weather reports to social media chatter to temperature sensor readings. Today IBM has opened up new access to its AI system, called Watson, with a set of application programming interfaces (APIs) that allow other companies and organizations to feed their data into IBM’s big brain for analysis.

 

 

GE wants to give industrial machines their own social network with Predix Cloud — from fastcompany.com by Sean Captain
GE is selling a new service that promises to predict when a machine will break down…so technicians can preemptively fix it.

 

 

Foresight 2020: The future is filled with 50 billion connected devices — from ibmbigdatahub.com by Erin Monday

Excerpt:

By 2020, there will be over 50 billion connected devices generating continuous data.

This figure is staggering, but is it really a surprise? The world has come a long way from 1992, when the number of computers was roughly equivalent to the population of San Jose. Today, in 2015, there are more connected devices out there than there are human beings. Ubiquitous connectivity is very nearly a reality. Every day, we get a little closer to a time where businesses, governments and consumers are connected by a fluid stream of data and analytics. But what’s driving all this growth?

 

 

Designing robots that learn as effortlessly as babies — from singularityhub.com by Shelly Fan

Excerpt:

A wide-eyed, rosy-cheeked, babbling human baby hardly looks like the ultimate learning machine.

But under the hood, an 18-month-old can outlearn any state-of-the-art artificial intelligence algorithm.

Their secret sauce?

They watch; they imitate; and they extrapolate.

Artificial intelligence researchers have begun to take notice. This week, two separate teams dipped their toes into cognitive psychology and developed new algorithms that teach machines to learn like babies. One instructs computers to imitate; the other, to extrapolate.

 

 

Researchers have found a new way to get machines to learn faster — from fortune.com by  Hilary Brueck

Excerpt:

An international team of data scientists is proud to announce the very latest in machine learning: they’ve built a program that learns… programs. That may not sound impressive at first blush, but making a machine that can learn based on a single example is something that’s been extremely hard to do in the world of artificial intelligence. Machines don’t learn like humans—not as fast, and not as well. And even with this research, they still can’t.

 

 

Team showcase how good Watson is at learning — from adigaskell.org

Excerpt:

Artificial intelligence has undoubtedly come a long way in the last few years, but there is still much to be done to make it intuitive to use.  IBM’s Watson has been one of the most well known exponents during this time, but despite it’s initial success, there are issues to overcome with it.

A team led by Georgia Tech are attempting to do just that.  They’re looking to train Watson to get better at returning answers to specific queries.

 

 

Why The Internet of Things will drive a Knowledge Revolution. — from linkedin.com by David Evans

Excerpt:

As these machines inevitably connect to the Internet, they will ultimately connect to each other so they can share, and collaborate on their own findings. In fact, in 2014 machines got their own ”World Wide Web” called RoboEarth, in which to share knowledge with one another. …
The implications of all of this are at minimum twofold:

  • The way we generate knowledge is going to change dramatically in the coming years.
  • Knowledge is about to increase at an exponential rate.

What we choose to do with this newfound knowledge is of course up to us. We are about to face some significant challenges at scales we have yet to experience.

 

 

Drone squad to be launched by Tokyo police — from bbc.com

Excerpt:

A drone squad, designed to locate and – if necessary – capture nuisance drones flown by members of the public, is to be launched by police in Tokyo.

 

 

An advance in artificial intelligence rivals human abilities — from todayonline.com by John Markoff

Excerpt:

NEW YORK — Computer researchers reported artificial-intelligence advances [on Dec 10] that surpassed human capabilities for a narrow set of vision-related tasks.

The improvements are noteworthy because so-called machine-vision systems are becoming commonplace in many aspects of life, including car-safety systems that detect pedestrians and bicyclists, as well as in video game controls, Internet search and factory robots.

 

 

Somewhat related:

Novo Nordisk, IBM Watson Health to create ‘virtual doctor’ — from wsj.com by Denise Roland
Software could dispense treatment advice for diabetes patients

Excerpt:

Novo Nordisk A/S is teaming up with IBM Watson Health, a division of International Business Machines Corp., to create a “virtual doctor” for diabetes patients that could dispense treatment advice such as insulin dosage.

The Danish diabetes specialist hopes to use IBM’s supercomputer platform, Watson, to analyze health data from diabetes patients to help them manage their disease.

 

 

Why Google’s new quantum computer could launch an artificial intelligence arms race — from washingtonpost.com

 

 

 

8 industries robots will completely transform by 2025 — from techinsider.io

 

 

 

Addendums on 12/17/15:

Russia and China are building highly autonomous killer robots — from businessinsider.com.au by Danielle Muoi

Excerpt:

Russia and China are creating highly autonomous weapons, more commonly referred to as killer robots, and it’s putting pressure on the Pentagon to keep up, according to US Deputy Secretary of Defense Robert Work. During a national-security forum on Monday, Work said that China and Russia are heavily investing in a roboticized army, according to a report from Defense One.

Your Algorithmic Self Meets Super-Intelligent AI — from techcrunch.com by Jarno M. Koponen

Excerpt:

At the same time, your data and personalized experiences are used to develop and train the machine learning systems that are powering the Siris, Watsons, Ms and Cortanas. Be it a speech recognition solution or a recommendation algorithm, your actions and personal data affect how these sophisticated systems learn more about you and the world around you.

The less explicit fact is that your diverse interactions — your likes, photos, locations, tags, videos, comments, route selections, recommendations and ratings — feed learning systems that could someday transform into superintelligent AIs with unpredictable consequences.

As of today, you can’t directly affect how your personal data is used in these systems

 

Addendum on 12/20/15:

 

Addendum on 12/21/15:

  • Facewatch ‘thief recognition’ CCTV on trial in UK stores — from bbc.com
    Excerpts (emphasis DSC):
    Face-recognition camera systems should be used by police, he tells me. “The technology’s here, and we need to think about what is a proportionate response that respects people’s privacy,” he says.

    “The public need to ask themselves: do they want six million cameras painted red at head height looking at them?

 

Addendum on 1/13/16:

 

The North Face uses IBM’s Watson to make online shopping smarter — from thestreet.com by Rebecca Borison

Excerpt:

Aiming to solve one of e-commerce’s challenges of not offering personalized service, VF Corp’s “The North Face” on Monday launched a new online shopping tool using IBM’s Watson artificial intelligence system.

The tool, which is powered by Fluid and called XPS, guides a consumer through the online store to better find what he or she is looking for.

E-commerce today doesn’t generally give the personal attention a consumer might get when he walks into a store and is greeted by a human being. This new tool seeks to address that challenge.

 

NorthFace-Watson-Dec2015

 

 

Watch this robot solve a Rubik’s Cube in a world record 2.39 seconds — from singularityhub.com by Jason Dorrier

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Novo Nordisk, IBM Watson Health to create ‘virtual doctor’ — from wsj.com by Denise Roland
Software could dispense treatment advice for diabetes patients

Excerpt:

Novo Nordisk A/S is teaming up with IBM Watson Health, a division of International Business Machines Corp., to create a “virtual doctor” for diabetes patients that could dispense treatment advice such as insulin dosage.

The Danish diabetes specialist hopes to use IBM’s supercomputer platform, Watson, to analyze health data from diabetes patients to help them manage their disease.

 

 

 

CES 2016: driverless cars and virtual reality to dominate at world’s biggest technology show — from mirror.co.uk
The world’s biggest technology showcase kicks off in Las Vegas on 6 January 2016. Here’s what we know about what will be happening at the Consumer Electronics Show

 

 

 

Build an automatic cookie decorating machine with LEGO Mindstorms — from lifehacker.com by Patrick Allan

Excerpt:

Decorating cookies by hand can be a pleasant activity, but with a LEGO Mindstorms set, you can crank out a bunch of perfectly iced cookies in no time at all.

 

 

World’s First Holographic Navigation System — from machinetomachinemagazine.com

Excerpt:

PARIS – The United States is the first commercial market to receive two innovative telematics devices that apply aerospace technology to land navigation. WayRay Navion is an augmented reality navigation system that projects holographic GPS imagery and driver notifications onto the windshield of a car, a first-of-its-kind for the automobile aftermarket. WayRay Element is a smart tracker that can be plugged into the diagnostics port of any automobile for monitoring driver performance, safety and fuel efficiency. The solutions arrive courtesy of WayRay, a Swiss startup dedicated to the advancement of connected car telematics, and Orange Business Services, a B2B global telecom operator and IT solutions integrator.

 

 

 

How Microsoft’s HoloLens may change everything for industrial & mechanical designers — from fastcompany.com by Daniel Terdiman
By integrating Microsoft’s “mixed reality” system and Autodesk’s Fusion 360 design software, designers can see 3-D holograms of their work.

Excerpt:

Soon, product designers will be able to get up close and personal with their creations while they’re still planning them. Rather than just look at digital models on their computer screens, they could walk around a 3-D hologram of the design.

 

 

 

 

Discover Explain3D — from interestingengineering.com by Eben Atwater

Excerpt:

Long ago, someone coined the adage, ‘a picture is worth a thousand words.’ Illustrators and teachers have grasped that simple truism throughout thousands of years of human history – It’s a fact that many, if not most of us, are visual learners. That’s especially true when it comes to things mechanical. That said, it’s 2015, and certainly time for a twenty first century iteration of this venerable learning principle to manifest. And in fact, it has – Consider Explain 3D – An interactive encyclopedia of 3D simulations and visualizations that helps kids, teachers or parents to explain and understand how things work. Explain 3D is a great tool to help youngsters develop the skills of logical thinking and imagination, while poking around in some very cool modern technologies and technical stuff.

 

 

 

 
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