Labster: Empowering the Next Generation of Scientists to Change the World
Laboratory Simulations for Educators to Empower their STEM Students

From DSC:
I recently met Maaroof Fakhri at the Next Generation Learning Spaces Conference. It was a pleasure to meet him and hear him speak of the work they are doing at Labster (which is located in Denmark). He is very innovative, and he shines forth with a high degree of energy, creativity, and innovation.

Keep an eye on the work they are doing. Very sharp.

 

labster-march2016

 

 

Also see:

 

 

 

activelearning-labster-dec2015

 

 

learnathon

 

Learnathons, on the other hand are optimized sessions that teach participants how to apply what they learn as soon as possible. They are on the opposite end of how classroom teaching is organized, with lessons spread out over the course of a semester focusing on theory and weekly practice. They are a fairly new concept, but have created an environment for learning that is speeding up comprehension and application to levels that aren’t seen elsewhere.

 

 

 

Addendum on 3/16/16:

What are Remote Labs? <– from ilabcentral.org

Making high school science labs more real, more engaging, and more accessible
Remote Online laboratories (iLabs) are experimental facilities that can be accessed through the Internet, allowing students and educators to carry out experiments from anywhere at any time.

 

iLabCentral-march2016

 

 

Brain Based Learning and Neuroscience – What the Research Says! — from willatworklearning.com by Will Thalheimer, PhD

Excerpts (emphasis DSC):

The world of learning and development is on the cusp of change. One of the most promising—and prominent—paradigms comes from neuroscience. Go to any conference today in the workplace learning field and there are numerous sessions on neuroscience and brain-based learning. Vendors sing praises to neuroscience. Articles abound. Blog posts proliferate.

But where are we on the science? Have we gone too far? Is this us, the field of workplace learning, once again speeding headlong into a field of fad and fantasy? Or are we spot-on to see incredible promise in bringing neuroscience wisdom to bear on learning practice? In this article, I will describe where we are with neuroscience and learning—answering that question as it relates to this point in time—in January of 2016.

Taken together, these conclusions are balanced between the promise of neuroscience and the healthy skepticism of scientists. Note however, that when these researchers talk about the benefits of neuroscience for learning, they see neuroscience applications as happening in the future (perhaps the near future). They do NOT claim that neuroscience has already created a body of knowledge that is applicable to learning and education.

Conclusion
The field of workplace learning—and the wider education field—have fallen under the spell of neuroscience (aka brain-science) recommendations. Unfortunately, neuroscience has not yet created a body of proven recommendations. While offering great promise for the future, as of this writing—in January 2016—most learning professionals would be better off relying on proven learning recommendations from sources like Brown, Roediger, and McDaniel’s book Make It Stick; by Benedict Carey’s book How We Learn; and by Julie Dirksen’s book Design for How People Learn.

As learning professionals, we must be more skeptical of neuroscience claims. As research and real-world experience has shown, such claims can persuade us toward ineffective learning designs and unscrupulous vendors and consultants.

Our trade associations and industry thought leaders need to take a stand as well. Instead of promoting neuroscience claims, they ought to voice a healthy skepticism.

 

 

Also see:

 

 

 

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 50 Most Popular MOOCs of All Time — from onlinecoursereport.com, via Jordan Hall

Excerpt:

MOOCs – or Massive Open Online Courses – are picking up momentum in popularity – at least in terms of initial enrollment.

Unlike regular college/ university courses, MOOCs can attract many thousands of enrollees around the world. They can come in the form of active course sessions with participant interaction, or as archived content for self-paced study. MOOCs can be free, or there can be a charge – either on a subscription basis or a one-time charge. Free MOOCs sometimes have a paid “verified certificate” option. There are now thousands of MOOCs available worldwide from several hundred colleges, universities and other institutions of higher learning. For your convenience, we’ve compiled a list of 50 of the most popular MOOCs, based on enrollment figures for all sessions of a course. The ranking is based on filtering enrollment data for 185 free MOOCs on various elearning platforms.

 

Augmented Reality


Augmented reality app brings art history to life — from creativebloq.com

Excerpt:

Dazzle It is a cool new augmented reality app that lets you remix artwork from artists including the Sir Peter Blake, Godfather of Pop Art –  best known for designing the 1967 Beatles’ Sgt Pepper’s Lonely Hearts Club Band album cover.

Developed by digital design agency, Corporation Pop, it combines the latest augmented reality techniques with design to bring history to life. And notably, unlike most augmented reality apps, you don’t need a pre-supplied marker to view what you create in a real-world scene.

 

7 Great Augmented Reality Apps for Your Classroom — from teachercast.net

Apps Discussed on the Show:

  • Aurasma
  • Anatomy 4D
  • ColAR
  • Spacecraft 3D
  • AR Flash Cards
  • Elements 3D
  • Google Translate

 

Angus park to host augmented reality performance — from scotsman.com with thanks to Woontack Woo for his posting on this

Excerpt:

A FOREST park in Angus is to host the UK’s first live ­theatrical performance featuring augmented reality (AR) technology.

By downloading an app, ­audiences will be able to spot magical creatures through their smartphones and capture them on camera, before sharing the images with friends and family on social media.

DragonQuest, which will be performed in Monikie Country Park, allows visitors to wander around a forest using their smartphone to create images of fantastical creatures in addition to real-life characters and events on the set.

 

Here are the signs that point to Apple’s next big innovation in computing, according to one analyst — from businessinsider.com

 

 

Check Out How These Teachers and Students are Using Augmented Reality — from emergingedtech.com

 

 

Using Augmented Reality for Learning and Teaching — from edtechreview.in by Prasanna Bharti

Excerpt:

Various Application of Augmented Reality in Learning Different Subjects

Astronomy: AR can be used to make student understand about the relationship between the Sun and the Earth. Here AR technology can be used with 3D rendered sun and earth shapes.

Chemistry: Teachers can demonstrate what a molecule and atoms consist of using AR technology.

Biology: Teachers can use Augmented Reality to showcase their student’s body structure or anatomy. Teachers can show their students different types of organ and how they look in a 3D atmosphere. Students can even study human body structure on their own by using devices with AR embedded technology in it.

Physics: Physics is one of the subjects where AR technology can be used perfectly. Various kinematics properties can be easily understood by using AR technology.

 

 


Virtual Reality


Virtual reality can take us to the world’s greatest museums — from venturebeat.com by Mike Minotti

London's The Courtauld Gallery.

 

How Virtual Reality Can Close Learning Gaps in Your Classroom — from edsurge.com

Excerpt:

Virtual Reality (VR) may be the type of educational breakthrough that comes along once in a generation, heralding a tectonic shift toward immersive content for teaching and instruction.

By presenting a complete view of the world in which it is situated, VR offers a new opportunity to close some of the pedagogical gaps that have appeared in 21st century classroom learning. These gaps stem from the fact that curriculum and content in education have not caught up with rapid technology advancements.

Below I introduce three of these gaps and how they might be addressed by virtual reality content soon to be produced and distributed commercially.

 

Google Cardboard offers virtual trip for Lawrence students — from www2.ljworld.com

Excerpt:

The Lawrence school district recently purchased 20 Google Cardboards, which beginning this school year are available for teachers to check out for use in their classrooms, said Joe Smysor, the district’s technology integration specialist. Cardboard works in conjunction with a smartphone app to deliver a 3-D, 360-degree navigable image. Students can use apps with Cardboard to virtually visit museums, landmarks or cities around the world.

“It’s going to allow teachers to take their class on field trips where school buses couldn’t otherwise go,” Smysor said. “That could be back 100 years in the past, or underwater.”

 

Virtual college tours with cardboard, a smartphone and YouVisit — from mystatesman.com by Omar L. Gallaga

Excerpt:

While college students are settling into their dorms, it’s already time for next year’s class of high school students to narrow down their potential school choices and schedule campus visits. Or maybe they can just stay home and start the journey virtually.

A site called YouVisit has a surprisingly large set of virtual-reality college tours available. All the major Texas colleges are represented, and one of them, Trinity University, has been making a big push to get cheap sets of cardboard VR goggles out to families at recruiting events such as college fairs. Trinity sent me a pair of the cardboard glasses. The virtual visit to the campus certainly wasn’t the same as being there, but to get at least a visual sense of what the campus looks like and to be generally wowed by the 3-D/360-degree effect, it was worth the trip.

 

Regis University Creates Remote Campus Tours with Primacy’s Virtual Reality Experience — from businesswire.com
Jesuit university builds on rich tradition of innovation by enabling immersive virtual tours using Oculus Rift technology and virtual reality headsets

Excerpt:

FARMINGTON, Conn. & DENVER–(BUSINESS WIRE)–Regis University today unveiled a unique new way for prospective students to tour and experience the school’s scenic 100-acre campus. Through an interactive, immersive experience created by independent agency Primacy, students are able to put on an Oculus Rift virtual reality (VR) headset and immediately be transformed to the campus where they can get a full, 360-degree tour as if they were on site – including viewing daybreak runs at Red Rocks, being immersed in Regis’ experiential nursing skills lab and visiting the campus pub to watch a live Jenga game.

 

 

GoPro is now selling its crazy 16-camera virtual reality rig — from theverge.com by Sean O’Kane
‘Odyssey’ is only available to pros

Excerpt:

Odyssey is the first camera rig built specifically for Google’s Jump platform, which was also announced at this year’s I/O conference. Jump is an entire virtual reality ecosystem that, in theory, will make it easier to both create and consume VR content. With Jump, Google created open plans that companies can use to build their own 16-camera rig (GoPro just happened to be the first), as well as assemble software that can recreate the scene being captured in much higher quality than most existing image stitching software can. Eventually, Jump videos will be hosted in YouTube; think of it as the next logical step following YouTube’s inclusion of 360-degree videos earlier this year.

 

Behind the Scenes of a Virtual Reality Beethoven Concert — from recode.net by Eric Johnson

Excerpt:

Are you a classical music fan? It’s a question most people would probably say no to, and the Los Angeles Philharmonic knows that.

“People are intimidated by classical music,” said Amy Seidenwurm, the Philharmonic’s director of digital initiatives. “They don’t come to concerts because they feel it might not be for them.”

But to change those minds, the LA Phil is turning to virtual reality. For the next month, it will be driving around the Los Angeles area to parks, festivals and museums, in a van outfitted with real carpeting and seats from the Walt Disney Concert Hall — and six Samsung Gear VR headsets, which have been loaded with a special video performance of Beethoven’s Fifth Symphony. (You know the one: Dun-dun-dun DUNNNN.)

The interior of the Van Beethoven van.

 

Inside Industrial Light & Magic’s secret Star Wars VR lab — from theverge.com by Bryan Bishop
ILMxLab isn’t just exploring the future of entertainment… they’re already making it

 

IndustrialLightMagic-2015

 

 


Addendums on 9/10/15:

 

Sony morpheus

 

 

5 augmented reality apps to alter your world — from cbronline.com with thanks to Woontack Woo for his posting on this
Learn more about Dazzle It, Streetmuseum, Skyview, Blippar and Colorblind Fix.

Excerpt:

Ever wanted to see the world around you in a different way? These apps will transform your phone into a portal to a world of altered perceptions.

 


 

6 important things you should know about how your brain learns — from blog.pickcrew.com by Belle Beth Cooper

  1. We take in information better when it’s visual
  2. We remember the big picture better than the details
  3. Sleep largely affects learning and memory
  4. Sleep deprivation significantly reduces your ability to learn new information
  5. We learn best by teaching others
  6. We learn new information better when it’s interleaved

 

 

 

FutureDigitalLearningDede-Adobe-April2015

 

From DSC:
Chris uses ecoMOBILE and ecoMUVE to highlight the powerful partnerships that can exist between tools and teachers — to the benefits of the students, who can enjoy personalized learning that they can interact with.  Pedagogical approaches such as active learning are discussed and methods of implementing active learning are touched upon.

Chris pointed out the National Research Council’s book from 2012 entitled, “Education for Life and Work: Developing Transferable Knowledge & Skills in the 21st Century” as he spoke about the need for all of us to be engaged in lifelong learning (Chris uses the term “life-wide” learning).

Also, as Chris mentioned, we often teach as we were taught…so we need communities that are able to UNlearn as well as to learn.

 

 

ecomobile-april2015

 

Also see:

 

AdobeCreate-YouTubeChannel

 

 

MITTechReview-10Breakthroughs-2015

 

 

Excerpt:

Not all breakthroughs are created equal. Some arrive more or less as usable things; others mainly set the stage for innovations that emerge later, and we have to estimate when that will be. But we’d bet that every one of the milestones on this list will be worth following in the coming years.

 

 

MITTechReview-2015-magic-leap

 

 

 

Does Studying Fine Art = Unemployment? Introducing LinkedIn’s Field of Study Explorer — from LinkedIn.com by Kathy Hwang

Excerpt:

[On July 28, 2014], we are pleased to announce a new product – Field of Study Explorer – designed to help students like Candice explore the wide range of careers LinkedIn members have pursued based on what they studied in school.

So let’s explore the validity of this assumption: studying fine art = unemployment by looking at the careers of members who studied Fine & Studio Arts at Universities around the world. Are they all starving artists who live in their parents’ basements?

 

 

LinkedInDotCom-July2014-FieldofStudyExplorer

 

 

Also see:

The New Rankings? — from insidehighered.com by Charlie Tyson

Excerpt:

Who majored in Slovak language and literature? At least 14 IBM employees, according to LinkedIn.

Late last month LinkedIn unveiled a “field of study explorer.” Enter a field of study – even one as obscure in the U.S. as Slovak – and you’ll see which companies Slovak majors on LinkedIn work for, which fields they work in and where they went to college. You can also search by college, by industry and by location. You can winnow down, if you desire, to find the employee who majored in Slovak at the Open University and worked in Britain after graduation.

 

 
 

App Ed Review

 

APPEdReview-April2014

 

From the About Us page (emphasis DSC):

App Ed Review is a free searchable database of educational app reviews designed to support classroom teachers finding and using apps effectively in their teaching practice. In its database, each app review includes:

  • A brief, original description of the app;
  • A classification of the app based on its purpose;
  • Three or more ideas for how the app could be used in the classroom;
  • A comprehensive app evaluation;
  • The app’s target audience;
  • Subject areas where the app can be used; and,
  • The cost of the app.

 

 

Also see the Global Education Database:

 

GlobalEducationDatabase-Feb2014

 

From the About Us page:

It’s our belief that digital technologies will utterly change the way education is delivered and consumed over the next decade. We also reckon that this large-scale disruption doesn’t come with an instruction manual. And we’d like GEDB to be part of the answer to that.

It’s the pulling together of a number of different ways in which all those involved in education (teachers, parents, administrators, students) can make some sense of the huge changes going on around them. So there’s consumer reviews of technologies, a forum for advice, an aggregation of the most important EdTech news and online courses for users to equip themselves with digital skills. Backed by a growing community on social media (here, here and here for starters).

It’s a fast-track to digital literacy in the education industry.

GEDB has been pulled together by California residents Jeff Dunn, co-founder of Edudemic, and Katie Dunn, the other Edudemic co-founder, and, across the Atlantic in London, Jimmy Leach, a former habitue of digital government and media circles.

 

 

Addendum:

Favorite educational iPad apps that are also on Android — from the Learning in Hand blog by Tony Vincent

 

Research Application for the 21st Century: A Video for Every Scientific Article — from jove.com on January 20, 2014

Excerpt:

Last week, JoVE, the Journal of Visualized Experiments, introduced a web application allowing scientists to view their text-based scientific articles in a 21st century format.

Named the Ask JoVE button, this new web application, or bookmarklet, generates a collection of peer-reviewed videos demonstrating the techniques used in a given scientific paper. It offers researchers the opportunity to watch the crucial components of a procedure, thereby reducing experimental error and the time it takes to learn the experiment.

“We created this new feature because we want to visualize all the science literature in the world,” said JoVE’s CEO, Dr. Moshe Pritsker, “For every science article you read, click on the Ask JoVE button and immediately see videos of experiments related to this article, filmed at the best university labs.”

 

JOVE

 

 

JOVESections

 

Neuroeducation: 25 findings over 25 years — from by Saga Briggs

Excerpt:

It’s been 25 years since the field of neuroeducation first reared its head in academia. Spearheaded in 1988 by the Psychophysiology and Education Special Interest Group, educational neuroscience is now the focus of many research organizations around the world, including the Centre for Educational Neuroscience; the International Mind, Brain, and Education Society; and the Neuroeducational Research Network.

To celebrate the progress of this monumental discipline, we have compiled a list of the 25 most significant findings in neuroscience education over the past 25 years.

1) Brain plasticity.
Perhaps the most encouraging finding in all of neuroscience is that the brain changes constantly as a result of learning, and remains ‘plastic’ throughout life. Studies have shown that learning a skill changes the brain and that these changes revert when practice of the skill ceases. Hence, ‘use it or lose it’ is an important principle for lifelong learning. Maybe more importantly, these developments suggest that students can improve skills in countless areas, regardless of initial ability. Furthermore, research has found an inverse relationship between educational attainment and risk of dementia, which means that keeping the mind active slows cognitive decline and improves cognitive abilities in older adults.

 

Also see:

YourBrainMap-Fall2013

 

From DSC:
I don’t know enough about the brain to say that all of this is accurate. So I defer to the authors and to you all. Please comment on the strengths/weaknesses of these resources below.

 

Addendum:

  • Seven trends shaping e-Learning for the future — from astd.org by Carol Leaman
    Excerpt:
    Developments in brain science and technology are dramatically changing how training is offered.We are on the cusp of a massive shift in the world of e-learning. New scientific research in how we learn combined with technology advances and engagement tools are set to radically transform the corporate learning landscape.
 

augmented-reality-picture-11-7-13

 

From DSC:
When I woke up last night, an idea surfaced to the forefront of my thinking. It had to do with augmented reality. I wondered (and tried to picture)…

What if augmented reality could help bring something that’s harder to picture/understand/grasp to life? 

What if, for example, you could point your mobile device at an object/piece of paper/”button” on a main screen and have an animation pop up that would explain what’s being discussed…?  I realize this is being done in some areas (even in elementary apps such as ColAR App), but I think we are largely leaving this area untapped and we’re missing out on a powerful, potential way of engaging students and inviting interactivity.

For example, I had a very difficult time grasping organic chemistry — and the “weeding out” method worked on me big time!  That course had a lot to due with me questioning my future as a pre-med student and I ended up dropping out of pre-med (a good decision, but heh, why blow the story now?).   Being a student who prefers visuals, I think that it would have helped me greatly if I could have seen — and ideally manipulated — models and animations in real time.

For example:

  • If I tried to move an atom to an inappropriate ring/connection, the holographic design would show a holographic pop up — with accompany audio — letting me know why that won’t work.  Wow.
  • Then I ran into the article below and the idea came back to me…and again, I wondered…where might augmented reality help us out here? Or holographic displays that can be manipulated?

 

SeeTheBeautyofMath-Nov2013

Which points to:

BEAUTY OF MATHEMATICS — a video on Vimeo from PARACHUTES.TV by Yann Pineill & Nicolas Lefaucheux

“Mathematics, rightly viewed, possesses not only truth, but supreme beauty — a beauty cold and austere, without the gorgeous trappings of painting or music.”

—Bertrand Russell

 

A first look at how educators are really using Google Glass — from by Stephen Noonoo

Excerpts (emphasis DSC):

Per Andrew Vanden Heuvel:

What Glass does offer, Vanden Heuvel said, is a shift in perspective, particularly because teachers can use it as a tool to engage students faster and more easily than before. After returning from Geneva, Vanden Heuvel launched a YouTube channel devoted to his experiments with science–and Glass–called STEMBite. To date, in more than two dozen videos, he’s guided viewers through the physics of ball spin on the tennis court to the polarization of light through (appropriately enough) a pair of glasses.

“What I’m excited by making these videos is not only that they’re filmed with Google Glass, but they’re high engagement videos, so they’re meant to be really short and to get kids to think about how math and science is all around,” he said. “I suppose I could have done that before, but it’s just so easy now.”

Per Hanna Brown:

“I’ve had videos in my classroom before–that’s not a novel thing–but I’ve never been able to take a video from my eye perspective,” said Hannah Brown, another early Glass adopter who works as a high school art teacher at Electronic Classroom of Tomorrow, an all-online statewide charter school in Ohio.

 

HannahBrown-9-11-13-Art-and-Google-Glass-thejournal

 

From DSC:
Virtual field trips, mobile learning, videoconferencing, web-based collaboration, Human Computer Interaction (HCI), and other topics come to my mind when I see this.

 

 
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