Searching for "online education"

Hololens in academic library

Blurred Lines—between virtual reality games, research, and education

http://library.ifla.org/2133/

p. 5 a LibGuide was created that provided a better description of the available software for both the Microsoft Hololens and the HTC Vive and also discussed potential applications for the technology.

Both the HTC Vive and the Hololens were made bookable through the library’s LibCalendar booking system, streamlining the booking process and creating a better user experience.

When the decision was made to bring virtual and augmented reality into the McGill University Library, an important aspect of this project was to develop a collection of related software to be used alongside the technology. In building this software collection a priority was placed on acquiring software that could be demonstrated as having educational value, or that could potentially be used in relation to, or in support of, university courses.

For the Microsoft Hololens, all software was acquired through Microsoft’s Online Store. The store has a number of educationally relevant HoloLens apps available for purchase. The app ARchitect, for example, gives a basic sense of how augmented reality could be used for viewing new building designs. The app Robotics BIW allows user to simulate robotic functions. A select number of apps, such as Land of the Dinosaurs and Boulevard, provide applications for natural history and art. There were a select number of apps related to science, mathematics and medicine, and others with artistic applications. All of the HoloLens applications were free but, compared to what is available for virtual reality, the experiences were much smaller in size and scope.

For the HoloLens, a generic user account was created and shared with person who booked the HoloLens at the time of their booking. After logging into this account – which could sometimes prove to be a challenge because typing is done using the headset’s gesture controls – the user could select a floating tile which would reveal a list of available software. An unresolved problem was that users would then need to refer to the HoloLens LibGuide for a detailed description of the software, or else choose software based on name alone, and the names were not always helpful.

For the Microsoft HoloLens, the three most popular software programs were Land of the Dinosaurs, Palmyra and Insight Heart. Insight Heart allow users to view and manipulate a 3D rendering of a high-resolution human heart, Land of the Dinosaurs provided an augment reality experience featuring 3D renderings of dinosaurs, and Palmyra gave an augmented reality tour of the ancient city of Palmyra.

p. 7 Though many students had ideas for research projects that could make use of the technology, there was no available software that would have allowed them to use augmented reality in the way they wanted. There were no students interested in developing their own software to be used with the technology either.

p. 8 we found that the Microsoft HoloLens received significant use from our patrons, we would recommend the purchase of one only for libraries serving researchers and developers.

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Getting Real in the Library: A Case Study at the University of Florida

Samuel R. Putnam and Sara Russell GonzalezIssue 39, 2018-02-05

Getting Real in the Library: A Case Study at the University of Florida

As an alternative, Microsoft offers a Hololens with enterprise options geared toward multiple users for $5000.

The transition from mobile app development to VR/AR technology also reflected the increased investment in VR/AR by some of the largest technology companies in the world. In the past four years, Facebook purchased the virtual reality company Oculus, Apple released the ARKit for developing augmented reality applications on iOS devices, Google developed Google Cardboard as an affordable VR option, and Sony released Playstation VR to accompany their gaming platform, just to name a few notable examples. This increase of VR/AR development was mirrored by a rise in student interest and faculty research in using and creating new VR/AR content at UF.

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Arnhem, J.-P. van, Elliott, C., & Rose, M. (2018). Augmented and Virtual Reality in Libraries. Rowman & Littlefield.
https://books.google.com/books?id=PslaDwAAQBAJ&lpg=PA205&ots=HT7qTY-16o&dq=hololens%20academic%20library&lr&pg=PA214#v=onepage&q=hololens%20academic%20library&f=false
360 degree video in library instruction
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Hammady, R., & Ma, M. (2018). Designing Spatial UI as a Solution of the Narrow FOV of Microsoft HoloLens: Prototype of Virtual Museum Guide. In Proceedings of the 4th International AR & VR Conference 2018. Springer. Retrieved from https://eprints.staffs.ac.uk/4799/
‘HoloMuse’ that engage users with archaeological artefacts through gesture-based interactions (Pollalis, Fahnbulleh, Tynes, & Shaer, 2017). Another research utilised HoloLens to provide in-situ assistant for users (Blattgerste, Strenge, Renner, Pfeiffer, & Essig, 2017). HoloLens also used to provide magnification for low vision users by complementary finger-worn camera alongside with the HMD (Stearns, DeSouza, Yin, Findlater, & Froehlich, 2017). Even in the medical applications, HoloLens contributed in 3D visualisation purposes using AR techniques (Syed, Zakaria, & Lozanoff, 2017) and provide optimised measurements in medical surgeries(Pratt et al., 2018) (Adabi et al., 2017). Application of HoloLens extended to visualise prototype designs (DeLaOsa, 2017) and showed its potential in gaming industry (Volpe, 2015) (Alvarez, 2015) and engaging cultural visitors with gaming activities (Raptis, Fidas, & Avouris, 2017).
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van Arnhem, J.-P., & Spiller, J. M. (2014). Augmented Reality for Discovery and Instruction. Journal of Web Librarianship, 8(2), 214–230. https://doi.org/10.1080/19322909.2014.904208

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Evaluating the Microsoft HoloLens through an augmented reality assembly application
Proceedings Volume 10197, Degraded Environments: Sensing, Processing, and Display 2017; 101970V (2017) https://doi.org/10.1117/12.2262626
Event: SPIE Defense + Security, 2017, Anaheim, California, United States
To assess the HoloLens’ potential for delivering AR assembly instructions, the cross-platform Unity 3D game engine was used to build a proof of concept application. Features focused upon when building the prototype were: user interfaces, dynamic 3D assembly instructions, and spatially registered content placement. The research showed that while the HoloLens is a promising system, there are still areas that require improvement, such as tracking accuracy, before the device is ready for deployment in a factory assembly setting.
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Pollalis, C., Fahnbulleh, W., Tynes, J., & Shaer, O. (2017). HoloMuse: Enhancing Engagement with Archaeological Artifacts Through Gesture-Based Interaction with Holograms. In Proceedings of the Eleventh International Conference on Tangible, Embedded, and Embodied Interaction (pp. 565–570). New York, NY, USA: ACM. https://doi.org/10.1145/3024969.3025094
https://www.researchgate.net/publication/315472858_HoloMuse_Enhancing_Engagement_with_Archaeological_Artifacts_through_Gesture-Based_Interaction_with_Holograms
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Gračanin, D., Ciambrone, A., Tasooji, R., & Handosa, M. (2017). Mixed Library — Bridging Real and Virtual Libraries. In S. Lackey & J. Chen (Eds.), Virtual, Augmented and Mixed Reality (pp. 227–238). Springer International Publishing.
We use Microsoft HoloLens device to augment the user’s experience in the real library and to provide a rich set of affordances for embodied and social interactions.We describe a mixed reality based system, a prototype mixed library, that provides a variety of affordances to support embodied interactions and improve the user experience.

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Dourish, P. (n.d.). Where the Action Is. Retrieved November 23, 2018, from https://mitpress.mit.edu/books/where-action
embodied interactions
Computer science as an engineering discipline has been spectacularly successful. Yet it is also a philosophical enterprise in the way it represents the world and creates and manipulates models of reality, people, and action. In this book, Paul Dourish addresses the philosophical bases of human-computer interaction. He looks at how what he calls “embodied interaction”—an approach to interacting with software systems that emphasizes skilled, engaged practice rather than disembodied rationality—reflects the phenomenological approaches of Martin Heidegger, Ludwig Wittgenstein, and other twentieth-century philosophers. The phenomenological tradition emphasizes the primacy of natural practice over abstract cognition in everyday activity. Dourish shows how this perspective can shed light on the foundational underpinnings of current research on embodied interaction. He looks in particular at how tangible and social approaches to interaction are related, how they can be used to analyze and understand embodied interaction, and how they could affect the design of future interactive systems.

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Pollalis, C., Fahnbulleh, W., Tynes, J., & Shaer, O. (2017). HoloMuse: Enhancing Engagement with Archaeological Artifacts Through Gesture-Based Interaction with Holograms. In Proceedings of the Eleventh International Conference on Tangible, Embedded, and Embodied Interaction (pp. 565–570). New York, NY, USA: ACM. https://doi.org/10.1145/3024969.3025094
HoloMuse, an AR application for the HoloLens wearable device, which allows users to actively engage with archaeological artifacts from a museum collection
pick up, rotate, scale, and alter a hologram of an original archeological artifact using in-air gestures. Users can also curate their own exhibit or customize an existing one by selecting artifacts from a virtual gallery and placing them within the physical world so that they are viewable only using the device. We intend to study the impact of HoloMuse on learning and engagement with college-level art history and archeology students.
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Dugas, Z., & Kerne Andruld. (2007). Location-Aware Augmented Reality Gaming for Emergency Response Education: Concepts and Development. ResearchGate. Retrieved from https://www.researchgate.net/publication/242295040_Location-Aware_Augmented_Reality_Gaming_for_Emergency_Response_Education_Concepts_and_Development

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Library Spaces II: The IDEA Lab at the Grainger Engineering Library Information Center

https://prism.ucalgary.ca/bitstream/handle/1880/52190/DL5_mischo_IDEA_Lab2.pdf

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more on Hololens in this IMS blog
https://blog.stcloudstate.edu/ims?s=hololens

storytelling with data

Storytelling with Data: An Introduction to Data Visualization

Mar 04 – Mar 31, 2019

Delivery Mode : Asynchronous Workshop 
Levels : Beginner,Intermediate 
Eligible for Online Teaching Certificate elective : No

Data visualization is about presenting data visually so we can explore and identify patterns in the data, analyze and make sense of those patterns, and communicate our findings. In this course, you will explore those key aspects of data visualization, and then focus on the theories, concepts, and skills related to communicating data in effective, engaging, and accessible ways.

This will be a hands-on, project-based course in which you will apply key data visualization strategies to various data sets to tell specific data stories using Microsoft Excel or Google Sheets. Practice data sets will be provided, or you can utilize your own data sets.

Week 1: Introduction and Tool Setup
Week 2: Cognitive Load and Pre-Attentive Attributes
Week 3: Selecting the Appropriate Visualization Type
Week 4: Data Stories and Context


Learning Objectives:

Upon completion of this course, you will be able to create basic data visualizations that are effective, accessible, and engaging. In support of that primary objective, you will:

  • Describe the benefits of data visualization for your professional situation
  • Identify opportunities for using data visualization
  • Apply visual cues (pre-attentive attributes) appropriately
  • Select correct charts/graphs for your data story
  • Use appropriate accessibility strategies for data tables

Prerequisites

Basic knowledge of Microsoft Excel or Google Sheets is required to successfully complete this course. Resources will be included to help you with the basics should you need them, but time spent learning the tools is not included in the estimated time for completing this course.
What are the key takeaways from this course?

  • The ability to explain how data visualization is connected to data analytics
  • The ability to identify key data visualization theories
  • Creating effective and engaging data visualizations
  • Applying appropriate accessibility strategies to data visualizations

Who should take this course?

  • Instructional designers, faculty, and higher education administrators who need to present data in effective, engaging, and accessible ways will benefit from taking this course

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more on digital storytelling in this IMS blog
https://blog.stcloudstate.edu/ims?s=digital+storytelling

more on data visualization in this IMS blog
https://blog.stcloudstate.edu/ims?s=data+visualization

microcredentials concerns

As students flock to credentials other than degrees, quality-control concerns grow

Policymakers try to bring consistency to what “microcredentials” actually mean

As students flock to credentials other than degrees, quality-control concerns grow

Degro took the course and earned the badge that turned out to be a way to list his new skill in an online resume with a digital graphic that looks like an emoji.

Such non-degree credentials have been growing in popularity.

“We do have a little bit of a Wild West situation right now with alternative credentials,” said Alana Dunagan, a senior research fellow at the nonprofit Clayton Christensen Institute, which researches education innovation. The U.S. higher education system “doesn’t do a good job of separating the wheat from the chaff.”

Thousands of credentials classes aimed at improving specific skills have cropped up outside of traditional colleges. Some classes are boot camps, including those popular with computer coders. Others are even more narrowly focused, such as courses on factory automation and breastfeeding. Colleges and universities have responded by adding non-degree programs of their own.

some 4,000 colleges and other providers issue industry certifications, according to the Lumina Foundation, but fewer than one in 10 are reviewed by a regulatory body or accreditor.

That companies need trained employees is uncontested: More than three-quarters of U.S. manufacturers told the National Association of Manufacturers this year that they had trouble finding and keeping skilled workers.

Despite those hiring and retention concerns, industry appears reluctant to discuss the topic of policing new credentials. The National Association of Manufacturers declined to answer questions.

“If an organization wants to grant a badge, there’s nothing stopping them from doing that,” Richardson said. “It’s important for consumers to do their due diligence.”

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more on microcredentials in this IMS blog
https://blog.stcloudstate.edu/ims?s=microcredentialing

Teaching history with technology

Teaching history with technology

http://www.edteck.com/dbq/more/analyzing.htm

http://teachingprimarysources.illinoisstate.edu/MCTPS/PD_Guide/Section_4.pdf

https://www.archives.gov/education/lessons/worksheets

https://www.loc.gov/teachers/usingprimarysources/

Analysis worksheets, evidence, and primary documents

https://conference.iste.org/uploads/ISTE2017/HANDOUTS/KEY_108132637/29732_flyer_CP_DocAnaly.pdf

https://www.iste.org/explore/articleDetail?articleid=15&category=Set-the-standard&article=
(see rubric)

https://www.iste.org/docs/excerpts/MEDLIT-excerpt.pdf
(see rubric)

  • Using technology to help students analyze historical/ primary source documents.
  • Making artifacts interactive.
  • Hosting online history discussions
  • The importance of structure and expectations.
  • Using audio in history lessons
  • Recording history with students
  • Hearing history
  • Creating multimedia timelines with students.
  • Simple to complex options for every grade level.
  • Creating multimedia maps
  • Search Strategies for History Students
  • Saving and sharing search results.
  • Google Maps and Earth are not your only options.
  • Creating videos and teaching with video.
  • Making and using virtual tours.
  • Virtual Reality tours.
  • Augmented Reality tours.

Thinglink, Google Expeditions, Poly, 3D printing

can XR help students learn

Giving Classroom Experiences (Like VR) More … Dimension

https://www.insidehighered.com/digital-learning/article/2018/11/02/virtual-reality-other-3-d-tools-enhance-classroom-experiences

at a session on the umbrella concept of “mixed reality” (abbreviated XR) here Thursday, attendees had some questions for the panel’s VR/AR/XR evangelists: Can these tools help students learn? Can institutions with limited budgets pull off ambitious projects? Can skeptical faculty members be convinced to experiment with unfamiliar technology?

All four — one each from Florida International UniversityHamilton CollegeSyracuse University and Yale University — have just finished the first year of a joint research project commissioned by Educause and sponsored by Hewlett-Packard to investigate the potential for immersive technology to supplement and even transform classroom experiences.

Campus of the Future” report, written by Jeffrey Pomerantz

Yale has landed on a “hub model” for project development — instructors propose projects and partner with students with technological capabilities to tap into a centralized pool of equipment and funding. (My note: this is what I suggest in my Chapter 2 of Arnheim, Eliot & Rose (2012) Lib Guides)

Several panelists said they had already been getting started on mixed reality initiatives prior to the infusion of support from Educause and HP, which helped them settle on a direction

While 3-D printing might seem to lend itself more naturally to the hard sciences, Yale’s humanities departments have cottoned to the technology as a portal to answering tough philosophical questions.

institutions would be better served forgoing an early investment in hardware and instead gravitating toward free online products like UnityOrganon and You by Sharecare, all of which allow users to create 3-D experiences from their desktop computers.

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Campus of the Future” report, written by Jeffrey Pomerantz

https://library.educause.edu/~/media/files/library/2018/8/ers1805.pdf?la=en

XR technologies encompassing 3D simulations, modeling, and production.

This project sought to identify

  • current innovative uses of these 3D technologies,
  • how these uses are currently impacting teaching and learning, and
  • what this information can tell us about possible future uses for these technologies in higher education.

p. 5 Extended reality (XR) technologies, which encompass virtual reality (VR) and augmented reality (AR), are already having a dramatic impact on pedagogy in higher education. XR is a general term that covers a wide range of technologies along a continuum, with the real world at one end and fully immersive simulations at the other.

p. 6The Campus of the Future project was an exploratory evaluation of 3D technologies for instruction and research in higher education: VR, AR, 3D scanning, and 3D printing. The project sought to identify interesting and novel uses of 3D technology

p. 7 HP would provide the hardware, and EDUCAUSE would provide the methodological expertise to conduct an evaluation research project investigating the potential uses of 3D technologies in higher education learning and research.

The institutions that participated in the Campus of the Future project were selected because they were already on the cutting edge of integrating 3D technology into pedagogy. These institutions were therefore not representative, nor were they intended to be representative, of the state of higher education in the United States. These institutions were selected precisely because they already had a set of use cases for 3D technology available for study

p. 9  At some institutions, the group participating in the project was an academic unit (e.g., the Newhouse School of Communications at Syracuse University; the Graduate School of Education at Harvard University). At these institutions, the 3D technology provided by HP was deployed for use more or less exclusively by students and faculty affiliated with the particular academic unit.

p. 10 definitions
there is not universal agreement on the definitions of these
terms or on the scope of these technologies. Also, all of these technologies
currently exist in an active marketplace and, as in many rapidly changing markets, there is a tendency for companies to invent neologisms around 3D technology.

A 3D scanner is not a single device but rather a combination of hardware and
software. There are generally two pieces of hardware: a laser scanner and a digital
camera. The laser scanner bounces laser beams off the surface of an object to
determine its shape and contours.

p. 11 definitions

Virtual reality means that the wearer is completely immersed in a computer
simulation. Several types of VR headsets are currently available, but all involve
a lightweight helmet with a display in front of the eyes (see figure 2). In some
cases, this display may simply be a smartphone (e.g., Google Cardboard); in other
cases, two displays—one for each eye—are integrated into the headset (e.g., HTC
Vive). Most commercially available VR rigs also include handheld controllers
that enable the user to interact with the simulation by moving the controllers
in space and clicking on finger triggers or buttons.

p. 12 definitions

Augmented reality provides an “overlay” of some type over the real world through
the use of a headset or even a smartphone.

In an active technology marketplace, there is a tendency for new terms to be
invented rapidly and for existing terms to be used loosely. This is currently
happening in the VR and AR market space. The HP VR rig and the HTC Vive
unit are marketed as being immersive, meaning that the user is fully immersed in
a simulation—virtual reality. Many currently available AR headsets, however, are
marketed not as AR but rather as MR (mixed reality). These MR headsets have a
display in front of the eyes as well as a pair of front-mounted cameras; they are
therefore capable of supporting both VR and AR functionality.

p. 13 Implementation

Technical difficulties.
Technical issues can generally be divided into two broad categories: hardware
problems and software problems. There is, of course, a common third category:
human error.

p. 15 the technology learning curve

The well-known diffusion of innovations theoretical framework articulates five
adopter categories: innovators, early adopters, early majority, late majority, and
laggards. Everett M. Rogers, Diffusion of Innovations, 5th ed. (New York: Simon and Schuster, 2003).

It is also likely that staff in the campus IT unit or center for teaching and learning already know who (at least some of) these individuals are, since such faculty members are likely to already have had contact with these campus units.
Students may of course also be innovators and early adopters, and in fact
several participating institutions found that some of the most creative uses of 3D technology arose from student projects

p. 30  Zeynep Tufekci, in her book Twitter and Tear Gas

definition: There is no necessary distinction between AR and VR; indeed, much research
on the subject is based on a conception of a “virtuality continuum” from entirely
real to entirely virtual, where AR lies somewhere between those ends of the
spectrum.  Paul Milgram and Fumio Kishino, “A Taxonomy of Mixed Reality Visual Displays,” IEICE Transactions on Information Systems, vol. E77-D, no. 12 (1994); Steve Mann, “Through the Glass, Lightly,” IEEE Technology and Society Magazine 31, no. 3 (2012): 10–14.

For the future of 3D technology in higher education to be realized, that
technology must become as much a part of higher education as any technology:
the learning management system (LMS), the projector, the classroom. New
technologies and practices generally enter institutions of higher education as
initiatives. Several active learning classroom initiatives are currently under
way,36 for example, as well as a multi-institution open educational resources
(OER) degree initiative.37

p. 32 Storytelling

Some scholars have argued that all human communication
is based on storytelling;41 certainly advertisers have long recognized that
storytelling makes for effective persuasion,42 and a growing body of research
shows that narrative is effective for teaching even topics that are not generally
thought of as having a natural story, for example, in the sciences.43

p. 33 accessibility

The experience of Gallaudet University highlights one of the most important
areas for development in 3D technology: accessibility for users with disabilities.

p. 34 instructional design

For that to be the case, 3D technologies must be incorporated into the
instructional design process for building and redesigning courses. And for that
to be the case, it is necessary for faculty and instructional designers to be familiar
with the capabilities of 3D technologies. And for that to be the case, it may
not be necessary but would certainly be helpful for instructional designers to
collaborate closely with the staff in campus IT units who support and maintain
this hardware.

Every institution of higher
education has a slightly different organizational structure, of course, but these
two campus units are often siloed. This siloing may lead to considerable friction
in conducting the most basic organizational tasks, such as setting up meetings
and apportioning responsibilities for shared tasks. Nevertheless, IT units and
centers for teaching and learning are almost compelled to collaborate in order
to support faculty who want to integrate 3D technology into their teaching. It
is necessary to bring the instructional design expertise of a center for teaching
and learning to bear on integrating 3D technology into an instructor’s teaching (My note: and where does this place SCSU?) Therefore,
one of the most critical areas in which IT units and centers for teaching and
learning can collaborate is in assisting instructors to develop this integration
and to develop learning objects that use 3D technology. p. 35 For 3D technology to really gain traction in higher education, it will need to be easier for instructors to deploy without such a large support team.

p. 35 Sites such as Thingiverse, Sketchfab, and Google Poly are libraries of freely
available, user-created 3D models.

ClassVR is a tool that enables the simultaneous delivery of a simulation to
multiple headsets, though the simulation itself may still be single-user.

p. 37 data management:

An institutional repository is a collection of an institution’s intellectual output, often consisting of preprint journal articles and conference papers and the data sets behind them.49 An
institutional repository is often maintained by either the library or a partnership
between the library and the campus IT unit. An institutional repository therefore has the advantage of the long-term curatorial approach of librarianship combined with the systematic backup management of the IT unit. (My note: leaves me wonder where does this put SCSU)

Sharing data sets is critical for collaboration and increasingly the default for
scholarship. Data is as much a product of scholarship as publications, and there
is a growing sentiment among scholars that it should therefore be made public.50

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more on VR in this IMS blog
https://blog.stcloudstate.edu/ims?s=virtual+reality+definition

Students Data Privacy

What Happens to Student Data Privacy When Chinese Firms Acquire U.S. Edtech Companies?

By Jenny Abamu     Apr 24, 2018

https://www.edsurge.com/news/2018-04-24-what-happens-to-student-data-privacy-when-chinese-firms-acquire-u-s-edtech-companies

Between the creation of a social rating system and street cameras with facial recognition capabilities, technology reports coming out of China have raised serious concerns for privacy advocates. These concerns are only heightened as Chinese investors turn their attention to the United States education technology space acquiring companies with millions of public school users.

A particularly notable deal this year centers on Edmodo, a cross between a social networking platform and a learning management system for schools that boasts having upwards of 90 million users. Net Dragon, a Chinese gaming company that is building a significant education division, bought Edmodo for a combination of cash and equity valued at $137.5 million earlier this month.

Edmodo began shifting to an advertising model last year, after years of struggling to generate revenue. This has left critics wondering why the Chinese firm chose to acquire Edmodo at such a price, some have gone as far as to call the move a data grab.

as data becomes a tool that governments such as Russia and China could use to influence voting systems or induce citizens into espionage, more legislators are turning their attention to the acquisitions of early-stage technology startups.

NetDragon officials, however, say they have no interest in these types of activities. Their main goal in acquiring United States edtech companies lies in building profitability, says Pep So, NetDragon’s Director of Corporate Development.

In 2015, the firm acquired the education technology platform, Promethean, a company that creates interactive displays for schools. NetDragon executives say that the Edmodo acquisition rounds out their education product portfolio—meaning the company will have tools for supporting multiple aspects of learning including; preparation, instructional delivery, homework, assignment grading, communication with parents students and teachers and a content marketplace.

NetDragon’s monetization plan for Edmodo focuses on building out content that gets sold via its platform. Similar to tools like TeachersPayTeachers, So hopes to see users putting up content on the platform’s marketplace, some free and others for a fee (including some virtual reality content), so that the community can buy, sell and review available educational tools.

As far as data privacy is concerned, So notes that NetDragon is still learning what it can and cannot do. He noted that the company will comply with Children’s Online Privacy Protection Act (COPPA), a federal regulation created in order to protect the privacy of children online, but says that the rules and regulations surrounding the law are confusing for all actors involved.

Historically, Chinese companies have faced trust and branding issues when moving into the United States market, and the reverse is also true for U.S. companies seeking to expand overseas. Companies have also struggled to learn the rules, regulations and operational procedures in place in other countries.

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Iran and Huawei top agenda as Pompeo meets Merkel for 45 minutes in Berlin

https://uk.finance.yahoo.com/news/pompeo-merkel-iran-huawei-agenda-110409835.html

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Merkel to Ratchet up Huawei Restrictions in Concession to Hawks

https://www.bloomberg.com/news/articles/2019-11-13/merkel-to-ratchet-up-huawei-restrictions-in-concession-to-hawks

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more on data privacy in this IMS blog:
https://blog.stcloudstate.edu/ims?s=data+privacy

accessible presentations

Creating Accessible Presentations

https://zoom.us/recording/play/bKfNFjMFeIUbTqEBnm48c-WK9zHMq07ba1bK3ZFlNcZvHxOmt2Ni6s-fHzziJkyD?continueMode=true

https://docs.google.com/presentation/d/1ffmjKvRp_f3V4n2tyW31CqzyUpK6i5qPDvWWSSy_e9Y/edit

This webinar for all 2018 LITA Forum presenters was a conversation about creating accessible presentations! Our speaker, Carli Spina, presented and offered guidance on accessibility and design. She explained how to design presentation materials that are accessible, including providing demonstrations of the accessibility features of popular presentation softwares, and how to ensure that your presentation is accessible for all of your audience members.
Carli Spina is an Associate Professor and the Head of Research & Instructional Services at the Fashion Institute of Technology. She holds a J.D. from the University of Chicago Law School, an MLIS from Simmons GSLIS, and an M.Ed. from the Harvard Graduate School of Education. She has extensive experience working, writing, and presenting on topics related to accessibility and Universal Design and has served as a coordinator for services to patrons with disabilities. She was the inaugural chair of LITA’s Diversity and Inclusion Committee and has also served as the leader of the ASCLA Library Services to People with Visual or Physical Disabilities that Prevent Them from Reading Standard Print Interest Group. She regularly teaches courses, workshops, and webinars on topics related to accessibility, Universal Design and technology. You can contact her on Twitter where she is @CarliSpina.
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ID2ID
Kelly Hermann, VP, Accessibility Strategy, U of Phoenix

Accessibility: Fact or Fiction

https://zoom.us/recording/play/b9UwVmiVPiADj3X1pTQGn7P5_tZ7_-VFPCiea351YpQUbk4sJKXWdotVDC4-nHwd?startTime=1540393266000

PowerPoint available in the Canvas course:

  • The vendor told me the product was ADA compliant so I don’t need to worry about this one.

There is not such think as ADA compliant when it comes up to educational technology or online environment

  • Every piece of content I want to share with students has to be accessible or I can’t use it.
  • I should develop my content first and then worry about accessibility.
  • My institution just bought (insert whatever accessibility tool’s name
    here). We’re all set and I don’t have to worry about accessibility anymore.
  • Access is an institutional responsibility and everyone has a role to play in removing  barriers.
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Chat messages from the presentation:
Amara
Office 2016 and O365 have accessibility checkers for Word, PPT, Excel
Vendors for automatic video transcription: Panopo

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Accessing Higher Ground, Accessible Media, Web and Technology Conference

November 12-16, 2018, Westin Westminster, Colorado and Virtual Conference 2018

Virtual Conference 2018

WeChat and blog combining social media

Parallel running of two social media from different countries: WeChat and blog for international students

Our work with Chinese students from the Confucius Institute (CI) at St. Cloud State University (SCSU) shed light on an interesting development: in the last several years, the popular Chinese social media platform WeChat dominates the social life of Chinese people, Chinese students in particular.

WeChat, like WhatsApp in Europe, Vkontakte in Russia, Weibo in China, or before its 2014 Orkut in Brazil (https://blog.stcloudstate.edu/ims/2014/07/05/social-media-orkut-the-and-of-an-era/ seeks to create its own users’ momentum, and no differently from Facebook, expand that membership momentum from the host country to a global dominance (https://blog.stcloudstate.edu/ims/2017/08/06/psychology-of-social-networks/;  more citation comes here).

Based on the WeChat affinity of the Chinese students at the SCSU CI program, the program organizers faced difficulty applying other social media platforms, as part of the curricula of the host country. Namely, blog, as one of the widely used SM platform for creative writing (citation comes here), was contemplated as a SM platform for the Chinese students to journal their experience at the SCSU CI program. Since WeChat behaves rather like Facebook and Snapchat, the lack of opportunity to utilize widely available platform for rather lengthy narration (versus SMS/texting abilitis of Twitter and WeChat) convince the SCSU CI program organizers to seek the buy in by Chinese students into the blog initiative.

Pang (2018) builds a theory based on Ellison (2007) theory of “maintained social capital,” namely the ability of individuals to maintain values of social ties when geographically disconnected. Ping (2018) further narrows her research on Chinese students in Germany using Li and Chen (2014) findings about Ellison’s theory on students in a foreign environment and the necessity for these students to build a new circle of friends in the host country. According to Basilisco an Cha (2015), such environment was provided for Filipino students by using Facebook and Twitter.

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Agur, C., Belair-Gagnon, V., & Frish, N. (2018). Mobile sourcing: A case study of journalistic norms and usage of chat apps. Mobile Meida and Communication, 6(1), 53–70. https://doi.org/DOI: 10.1177/2050157917725549
Borgerson, J. L. (2016). Scalable Sociality and 'How the World Changed Social Media': conversation with Daniel Miller. Consumption, Markets & Culture. http://dx.doi.org/10.1080/10253866.2015.1120980
Chen, Y. (2017). WeChat use among Chinese college students: Exploring gratifications and political engagement in China. Journal of International and Intercultural Communication, 10(1), 25–43. https://doi.org/10.1080/17513057.2016.1235222
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Gu, B., & Wang, X. B. (2015). The Communication Design of WeChat: Ideological as Well as Technical Aspects of Social Media. Communication Design Quarterly, 4(1). Retrieved from https://www.academia.edu/28318543/The_Communication_Design_of_WeChat_Ideological_as_Well_as_Technical_Aspects_of_Social_Media
Guo, L. (2017). WeChat as a Semipublic Alternative Sphere: Exploring the Use of WeChat Among Chinese Older Adults. International Journal of Communication, 21(11). Retrieved from https://www.academia.edu/33858373/WeChat_as_a_Semipublic_Alternative_Sphere_Exploring_the_Use_of_WeChat_Among_Chinese_Older_Adults
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Pang, H. (2018). Understanding the effects of WeChat on perceived social capital and psychological well-being among Chinese international college students in Germany. Aslib Journal of Information Management, 70(3), 288–304. https://doi.org/DOI 10.1108/AJIM-01-2018-0003
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productive difficult dialogs

Seven Bricks to Lay the Foundation for Productive Difficult Dialogues

OCTOBER 16TH, 2018 By: 

https://www.facultyfocus.com/articles/effective-classroom-management/seven-bricks-to-lay-the-foundation-for-productive-difficult-dialogues/

There are three basic ways that I hear faculty talk about difficult dialogues-

in-class dialogues that were planned but did not go particularly well;

in-class hot moments that were not anticipated and that the faculty member did not feel equipped to handle; and difficult dialogues that happen

during office hours or outside of class.

  1. Think ahead about what topics you are teaching and whether hot moments might be triggered. Plan for structuring those moments intentionally. Are there readings that honor multiple perspectives on the issue? Are there opportunities to have students adopt perspectives that may not be their own? What skills do students need to be able to successfully engage in the discussion?
  2. Know and communicate the learning goals and the connection to the course overall for each potentially hot topic. What kinds of questions could you pose that would most effectively help students meet the learning goals? What conversational structure would best help you meet those goals? You will find many concrete suggestions for a variety of ways to conduct conversations in Brookfield and Preskill (2005).
  3. Build community, trust, and a supportive climate. Often overlooked is the understanding that the relationships students have in the classroom with each other and with you need to be created intentionally and nurtured. On the first day, introductions can be shaped to be a little more personal than just names and majors while not being intrusive. Depending on the size of the class, you may choose to have students talk in small groups, or as a whole group. Scaffold activities to foster relationships among students each week. Model the kinds of behaviors you would like to see.
  4. Have a statement on your syllabus about the environment you hope to create together. Describe your expectations and how you would like students to approach the class. For example: “I want to take a moment to clarify how I want you to approach the readings. The first rule is: Don’t take the readings as gospel. Just because something is printed doesn’t make it absolute truth. Be critical of what you are reading. I have chosen many readings precisely because they are provocative. If you find yourself strongly disagreeing with a reading, that’s fine. I encourage strong disagreement. However, if you disagree, you must clarify in your mind the reasons and evidence upon which you are basing your disagreement. At the same time, keep an open mind. Listen to what the readings have to say. Think about what other experiences you have had and readings you have done that might corroborate the course readings. Give yourself time to reflect on the information, insights, and perspectives offered in the readings” (Sulk and Keys, 2014).
  5. Create shared goals and guidelines for dialogue and post them. You may have a few of your own to add at the end, but let students generate their own list first. This gives them ownership, and the collective generation lets them discover shared values. One of my favorites to add is “look for the truth in what you oppose and the error in what you espouse” (Nash, 2008).
  6. Help students develop skills for productive conversation as part of the learning. Use active listening and perspective-taking exercises. In Western society, argument is often the mode of conversation. We frequently expect that students will be able to address challenging issues devoid of passion (and if you go to faculty meetings, you know that even we are not always good at this). Skills like paraphrasing, summarizing, and building on each other’s thoughts need to be consciously taught, modeled, and practiced in the classroom in order to support successful difficult dialogues.
  7. Start early in the course with lower-stakes conversations, and build to more difficult ones. This gives students the opportunity to build trust, and gives you time to help them develop their skills. Vary the types of questions—perhaps use some hypothetical questions like, “What would happen if…” “In a perfect world…” Or experience-based questions such as, “In your experience…?” Or opinion-based questions like, “What do you think about…?

References:
Online book: Start Talking: A Handbook for Engaging Difficult Dialogues in Higher Education http://www.uaa.alaska.edu/cafe/difficultdialogues/upload/Start-Talking-Handbookcomplete-version.pdf.

Brookfield, S.D., & Preskill, S. (2005). Discussion as a way of teaching: Tools and techniques for democratic classrooms. San Francisco, CA: Jossey-Bass.

Nash, R.J. (2008). How to Talk About Hot Topics on Campus. San Francisco, CA: Jossey-Bass.

Sulk, G. and Keys, J. (2014). “Many students really don’t know how to behave!”: The syllabus as a tool for socialization. Teaching Sociology, 42 (2), 151-160.

Annie Soisson is associate director of the Center for the Enhancement of Learning & Teaching (CELT) at Tufts University.

ELI 2018 Key Issues Teaching Learning

Key Issues in Teaching and Learning

https://www.educause.edu/eli/initiatives/key-issues-in-teaching-and-learning

A roster of results since 2011 is here.

ELI 2018 key issues

1. Academic Transformation

2. Accessibility and UDL

3. Faculty Development

4. Privacy and Security

5. Digital and Information Literacies

https://cdn.nmc.org/media/2017-nmc-strategic-brief-digital-literacy-in-higher-education-II.pdf
Three Models of Digital Literacy: Universal, Creative, Literacy Across Disciplines

United States digital literacy frameworks tend to focus on educational policy details and personal empowerment, the latter encouraging learners to become more effective students, better creators, smarter information consumers, and more influential members of their community.

National policies are vitally important in European digital literacy work, unsurprising for a continent well populated with nation-states and struggling to redefine itself, while still trying to grow economies in the wake of the 2008 financial crisis and subsequent financial pressures

African digital literacy is more business-oriented.

Middle Eastern nations offer yet another variation, with a strong focus on media literacy. As with other regions, this can be a response to countries with strong state influence or control over local media. It can also represent a drive to produce more locally-sourced content, as opposed to consuming material from abroad, which may elicit criticism of neocolonialism or religious challenges.

p. 14 Digital literacy for Humanities: What does it mean to be digitally literate in history, literature, or philosophy? Creativity in these disciplines often involves textuality, given the large role writing plays in them, as, for example, in the Folger Shakespeare Library’s instructor’s guide. In the digital realm, this can include web-based writing through social media, along with the creation of multimedia projects through posters, presentations, and video. Information literacy remains a key part of digital literacy in the humanities. The digital humanities movement has not seen much connection with digital literacy, unfortunately, but their alignment seems likely, given the turn toward using digital technologies to explore humanities questions. That development could then foster a spread of other technologies and approaches to the rest of the humanities, including mapping, data visualization, text mining, web-based digital archives, and “distant reading” (working with very large bodies of texts). The digital humanities’ emphasis on making projects may also increase

Digital Literacy for Business: Digital literacy in this world is focused on manipulation of data, from spreadsheets to more advanced modeling software, leading up to degrees in management information systems. Management classes unsurprisingly focus on how to organize people working on and with digital tools.

Digital Literacy for Computer Science: Naturally, coding appears as a central competency within this discipline. Other aspects of the digital world feature prominently, including hardware and network architecture. Some courses housed within the computer science discipline offer a deeper examination of the impact of computing on society and politics, along with how to use digital tools. Media production plays a minor role here, beyond publications (posters, videos), as many institutions assign multimedia to other departments. Looking forward to a future when automation has become both more widespread and powerful, developing artificial intelligence projects will potentially play a role in computer science literacy.

6. Integrated Planning and Advising Systems for Student Success (iPASS)

7. Instructional Design

8. Online and Blended Learning

In traditional instruction, students’ first contact with new ideas happens in class, usually through direct instruction from the professor; after exposure to the basics, students are turned out of the classroom to tackle the most difficult tasks in learning — those that involve application, analysis, synthesis, and creativity — in their individual spaces. Flipped learning reverses this, by moving first contact with new concepts to the individual space and using the newly-expanded time in class for students to pursue difficult, higher-level tasks together, with the instructor as a guide.

Let’s take a look at some of the myths about flipped learning and try to find the facts.

Myth: Flipped learning is predicated on recording videos for students to watch before class.

Fact: Flipped learning does not require video. Although many real-life implementations of flipped learning use video, there’s nothing that says video must be used. In fact, one of the earliest instances of flipped learning — Eric Mazur’s peer instruction concept, used in Harvard physics classes — uses no video but rather an online text outfitted with social annotation software. And one of the most successful public instances of flipped learning, an edX course on numerical methods designed by Lorena Barba of George Washington University, uses precisely one video. Video is simply not necessary for flipped learning, and many alternatives to video can lead to effective flipped learning environments [http://rtalbert.org/flipped-learning-without-video/].

Myth: Flipped learning replaces face-to-face teaching.

Fact: Flipped learning optimizes face-to-face teaching. Flipped learning may (but does not always) replace lectures in class, but this is not to say that it replaces teaching. Teaching and “telling” are not the same thing.

Myth: Flipped learning has no evidence to back up its effectiveness.

Fact: Flipped learning research is growing at an exponential pace and has been since at least 2014. That research — 131 peer-reviewed articles in the first half of 2017 alone — includes results from primary, secondary, and postsecondary education in nearly every discipline, most showing significant improvements in student learning, motivation, and critical thinking skills.

Myth: Flipped learning is a fad.

Fact: Flipped learning has been with us in the form defined here for nearly 20 years.

Myth: People have been doing flipped learning for centuries.

Fact: Flipped learning is not just a rebranding of old techniques. The basic concept of students doing individually active work to encounter new ideas that are then built upon in class is almost as old as the university itself. So flipped learning is, in a real sense, a modern means of returning higher education to its roots. Even so, flipped learning is different from these time-honored techniques.

Myth: Students and professors prefer lecture over flipped learning.

Fact: Students and professors embrace flipped learning once they understand the benefits. It’s true that professors often enjoy their lectures, and students often enjoy being lectured to. But the question is not who “enjoys” what, but rather what helps students learn the best.They know what the research says about the effectiveness of active learning

Assertion: Flipped learning provides a platform for implementing active learning in a way that works powerfully for students.

9. Evaluating Technology-based Instructional Innovations

Transitioning to an ROI lens requires three fundamental shifts
What is the total cost of my innovation, including both new spending and the use of existing resources?

What’s the unit I should measure that connects cost with a change in performance?

How might the expected change in student performance also support a more sustainable financial model?

The Exposure Approach: we don’t provide a way for participants to determine if they learned anything new or now have the confidence or competence to apply what they learned.

The Exemplar Approach: from ‘show and tell’ for adults to show, tell, do and learn.

The Tutorial Approach: Getting a group that can meet at the same time and place can be challenging. That is why many faculty report a preference for self-paced professional development.build in simple self-assessment checks. We can add prompts that invite people to engage in some sort of follow up activity with a colleague. We can also add an elective option for faculty in a tutorial to actually create or do something with what they learned and then submit it for direct or narrative feedback.

The Course Approach: a non-credit format, these have the benefits of a more structured and lengthy learning experience, even if they are just three to five-week short courses that meet online or in-person once every week or two.involve badges, portfolios, peer assessment, self-assessment, or one-on-one feedback from a facilitator

The Academy Approach: like the course approach, is one that tends to be a deeper and more extended experience. People might gather in a cohort over a year or longer.Assessment through coaching and mentoring, the use of portfolios, peer feedback and much more can be easily incorporated to add a rich assessment element to such longer-term professional development programs.

The Mentoring Approach: The mentors often don’t set specific learning goals with the mentee. Instead, it is often a set of structured meetings, but also someone to whom mentees can turn with questions and tips along the way.

The Coaching Approach: A mentor tends to be a broader type of relationship with a person.A coaching relationship tends to be more focused upon specific goals, tasks or outcomes.

The Peer Approach:This can be done on a 1:1 basis or in small groups, where those who are teaching the same courses are able to compare notes on curricula and teaching models. They might give each other feedback on how to teach certain concepts, how to write syllabi, how to handle certain teaching and learning challenges, and much more. Faculty might sit in on each other’s courses, observe, and give feedback afterward.

The Self-Directed Approach:a self-assessment strategy such as setting goals and creating simple checklists and rubrics to monitor our progress. Or, we invite feedback from colleagues, often in a narrative and/or informal format. We might also create a portfolio of our work, or engage in some sort of learning journal that documents our thoughts, experiments, experiences, and learning along the way.

The Buffet Approach:

10. Open Education

Figure 1. A Model for Networked Education (Credit: Image by Catherine Cronin, building on
Interpretations of
Balancing Privacy and Openness (Credit: Image by Catherine Cronin. CC BY-SA)

11. Learning Analytics

12. Adaptive Teaching and Learning

13. Working with Emerging Technology

In 2014, administrators at Central Piedmont Community College (CPCC) in Charlotte, North Carolina, began talks with members of the North Carolina State Board of Community Colleges and North Carolina Community College System (NCCCS) leadership about starting a CBE program.

Building on an existing project at CPCC for identifying the elements of a digital learning environment (DLE), which was itself influenced by the EDUCAUSE publication The Next Generation Digital Learning Environment: A Report on Research,1 the committee reached consensus on a DLE concept and a shared lexicon: the “Digital Learning Environment Operational Definitions,

Figure 1. NC-CBE Digital Learning Environment

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