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Key Issues in Teaching and Learning Survey

The EDUCAUSE Learning Initiative has just launched its 2018 Key Issues in Teaching and Learning Survey, so vote today: http://www.tinyurl.com/ki2018.

Each year, the ELI surveys the teaching and learning community in order to discover the key issues and themes in teaching and learning. These top issues provide the thematic foundation or basis for all of our conversations, courses, and publications for the coming year. Longitudinally they also provide the way to track the evolving discourse in the teaching and learning space. More information about this annual survey can be found at https://www.educause.edu/eli/initiatives/key-issues-in-teaching-and-learning.

ACADEMIC TRANSFORMATION (Holistic models supporting student success, leadership competencies for academic transformation, partnerships and collaborations across campus, IT transformation, academic transformation that is broad, strategic, and institutional in scope)

ACCESSIBILITY AND UNIVERSAL DESIGN FOR LEARNING (Supporting and educating the academic community in effective practice; intersections with instructional delivery modes; compliance issues)

ADAPTIVE TEACHING AND LEARNING (Digital courseware; adaptive technology; implications for course design and the instructor’s role; adaptive approaches that are not technology-based; integration with LMS; use of data to improve learner outcomes)

COMPETENCY-BASED EDUCATION AND NEW METHODS FOR THE ASSESSMENT OF STUDENT LEARNING (Developing collaborative cultures of assessment that bring together faculty, instructional designers, accreditation coordinators, and technical support personnel, real world experience credit)

DIGITAL AND INFORMATION LITERACIES (Student and faculty literacies; research skills; data discovery, management, and analysis skills; information visualization skills; partnerships for literacy programs; evaluation of student digital competencies; information evaluation)

EVALUATING TECHNOLOGY-BASED INSTRUCTIONAL INNOVATIONS (Tools and methods to gather data; data analysis techniques; qualitative vs. quantitative data; evaluation project design; using findings to change curricular practice; scholarship of teaching and learning; articulating results to stakeholders; just-in-time evaluation of innovations). here is my bibliographical overview on Big Data (scroll down to “Research literature”https://blog.stcloudstate.edu/ims/2017/11/07/irdl-proposal/ )

EVOLUTION OF THE TEACHING AND LEARNING SUPPORT PROFESSION (Professional skills for T&L support; increasing emphasis on instructional design; delineating the skills, knowledge, business acumen, and political savvy for success; role of inter-institutional communities of practices and consortia; career-oriented professional development planning)

FACULTY DEVELOPMENT (Incentivizing faculty innovation; new roles for faculty and those who support them; evidence of impact on student learning/engagement of faculty development programs; faculty development intersections with learning analytics; engagement with student success)

GAMIFICATION OF LEARNING (Gamification designs for course activities; adaptive approaches to gamification; alternate reality games; simulations; technological implementation options for faculty)

INSTRUCTIONAL DESIGN (Skills and competencies for designers; integration of technology into the profession; role of data in design; evolution of the design profession (here previous blog postings on this issue: https://blog.stcloudstate.edu/ims/2017/10/04/instructional-design-3/); effective leadership and collaboration with faculty)

INTEGRATED PLANNING AND ADVISING FOR STUDENT SUCCESS (Change management and campus leadership; collaboration across units; integration of technology systems and data; dashboard design; data visualization (here previous blog postings on this issue: https://blog.stcloudstate.edu/ims?s=data+visualization); counseling and coaching advising transformation; student success analytics)

LEARNING ANALYTICS (Leveraging open data standards; privacy and ethics; both faculty and student facing reports; implementing; learning analytics to transform other services; course design implications)

LEARNING SPACE DESIGNS (Makerspaces; funding; faculty development; learning designs across disciplines; supporting integrated campus planning; ROI; accessibility/UDL; rating of classroom designs)

MICRO-CREDENTIALING AND DIGITAL BADGING (Design of badging hierarchies; stackable credentials; certificates; role of open standards; ways to publish digital badges; approaches to meta-data; implications for the transcript; Personalized learning transcripts and blockchain technology (here previous blog postings on this issue: https://blog.stcloudstate.edu/ims?s=blockchain

MOBILE LEARNING (Curricular use of mobile devices (here previous blog postings on this issue:

https://blog.stcloudstate.edu/ims/2015/09/25/mc218-remodel/; innovative curricular apps; approaches to use in the classroom; technology integration into learning spaces; BYOD issues and opportunities)

MULTI-DIMENSIONAL TECHNOLOGIES (Virtual, augmented, mixed, and immersive reality; video walls; integration with learning spaces; scalability, affordability, and accessibility; use of mobile devices; multi-dimensional printing and artifact creation)

NEXT-GENERATION DIGITAL LEARNING ENVIRONMENTS AND LMS SERVICES (Open standards; learning environments architectures (here previous blog postings on this issue: https://blog.stcloudstate.edu/ims/2017/03/28/digital-learning/; social learning environments; customization and personalization; OER integration; intersections with learning modalities such as adaptive, online, etc.; LMS evaluation, integration and support)

ONLINE AND BLENDED TEACHING AND LEARNING (Flipped course models; leveraging MOOCs in online learning; course development models; intersections with analytics; humanization of online courses; student engagement)

OPEN EDUCATION (Resources, textbooks, content; quality and editorial issues; faculty development; intersections with student success/access; analytics; licensing; affordability; business models; accessibility and sustainability)

PRIVACY AND SECURITY (Formulation of policies on privacy and data protection; increased sharing of data via open standards for internal and external purposes; increased use of cloud-based and third party options; education of faculty, students, and administrators)

WORKING WITH EMERGING LEARNING TECHNOLOGY (Scalability and diffusion; effective piloting practices; investments; faculty development; funding; evaluation methods and rubrics; interoperability; data-driven decision-making)

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learning and teaching in this IMS blog
https://blog.stcloudstate.edu/ims?s=teaching+and+learning

digital assessment

Unlocking the Promise of Digital Assessment

By Stacey Newbern Dammann, EdD, and Josh DeSantis October 30, 2017

https://www.facultyfocus.com/articles/teaching-with-technology-articles/unlocking-promise-digital-assessment/

The proliferation of mobile devices and the adoption of learning applications in higher education simplifies formative assessment. Professors can, for example, quickly create a multi-modal performance that requires students to write, draw, read, and watch video within the same assessment. Other tools allow for automatic grade responses, question-embedded documents, and video-based discussion.

  • Multi-Modal Assessments – create multiple-choice and open-ended items that are distributed digitally and assessed automatically. Student responses can be viewed instantaneously and downloaded to a spreadsheet for later use.
    • (socrative.com) and
    • Poll Everywhere (http://www.pollev.com).
    • Formative (http://www.goformative.com) allows professors to upload charts or graphic organizers that students can draw on with a stylus. Formative also allows professors to upload document “worksheets” which can then be augmented with multiple-choice and open-ended questions.
    • Nearpod (http://www.nearpod.com) allows professors to upload their digital presentations and create digital quizzes to accompany them. Nearpod also allows professors to share three-dimensional field trips and models to help communicate ideas.
  • Video-Based Assessments – Question-embedded videos are an outstanding way to improve student engagement in blended or flipped instructional contexts. Using these tools allows professors to identify if the videos they use or create are being viewed by students.
    • EdPuzzle (edpuzzle.com) and
    • Playposit (http://www.playposit.com) are two leaders in this application category. A second type of video-based assessment allows professors to sustain discussion-board like conversation with brief videos.
    • Flipgrid (http://www.flipgrid.com), for example, allows professors to posit a video question to which students may respond with their own video responses.
  • Quizzing Assessments – ools that utilize close-ended questions that provide a quick check of student understanding are also available.
    • Quizizz (quizizz.com) and
    • Kahoot (http://www.kahoot.com) are relatively quick and convenient to use as a wrap up to instruction or a review of concepts taught.

Integration of technology is aligned to sound formative assessment design. Formative assessment is most valuable when it addresses student understanding, progress toward competencies or standards, and indicates concepts that need further attention for mastery. Additionally, formative assessment provides the instructor with valuable information on gaps in their students’ learning which can imply instructional changes or additional coverage of key concepts. The use of tech tools can make the creation, administration, and grading of formative assessment more efficient and can enhance reliability of assessments when used consistently in the classroom. Selecting one that effectively addresses your assessment needs and enhances your teaching style is critical.

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more on digital assessment in this IMS blog
https://blog.stcloudstate.edu/ims/2017/03/15/fake-news-bib/

Maslow hierarchy for edtech

5 ways to apply Maslow’s Hierarchy of Needs to edtech for better outcomes

By Dave Saltmarsh September 26th, 2017
My Note: when stripped from the commercialized plug in for Apple, this article makes a good memorization exercise for pedagogues.

According to American psychologist Abraham Maslow, all humans have the same fundamental needs (food, clothing and shelter), and these needs must be met before an individual is motivated to look beyond these basic needs. This motivational theory is commonly referred to as Maslow’s hierarchy of needs.

  • Physiological (basic) needs: food, water, warmth, rest
  • Safety needs: security, safety
  • Love needs: intimate relationships, friends
  • Esteem needs: feeling of accomplishment
  • Self-actualization: achieving one’s full potential

Maslow’s hierarchy of needs can serve as an analogy for what is possible with instructionally-designed technology

1. Device Deployment = Basic Needs

Device deployment is the first basic need of any school looking to leverage education technology. If schools are unable to procure devices and if IT is unable to get these devices into the hands of students and educators, there is no moving forward.

2. Communication = Safety Needs

Beyond basic communications functions, apps must be made available and installed for an additional layer of connectivity. For example, learning management systems (LMS) enable communication beyond classroom walls and empower students with the learning resources they need while at home or in the community. However, how do we ensure access off-campus for those without ubiquitous internet connections

3. Productivity = Love Needs

Communication that encourages higher-level thinking and problem solving is where dramatic learning happens.

4. Transformation = Esteem and Self-Actualization Needs

IT and educators are pairing innovative teaching methods such as blended learning (a mix of technology and traditional learning) or flipped classrooms (teaching is done at home and exercises during class time) with education apps (productivity layer).

5. Let Mobile Device Management (MDM) Be Your Stepladder

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

2017 teaching w technology conference

2017 Teaching with Technology Conference

October 6-8 in Baltimore

Forward-thinking educators are finding that technology can enhance their teaching methods, infuse new energy into their courses, and improve student learning.

But the latest cool technology is only cool if you know where, when, why, and how to use it. Join us in Baltimore for the 2017 Teaching with Technology Conference to learn best practices for effectively integrating technology into your courses.

Topics include:

  • Blended and flipped learning
  • Assignments for online discussion
  • Digital tools for formative assessment
  • Online course design and development
  • Active learning
  • Media literacy
  • Copyright issues

Smartphones in the classroom

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more on teaching with technology in this IMS blog
https://blog.stcloudstate.edu/ims?s=educational+technology

definition of blended learning

The Definition Of Blended Learning

January 18, 2013 http://www.teachthought.com/learning/blended-flipped-learning/the-definition-of-blended-learning/

the Sloan Consortium defined hybrid courses as those that “integrate online with traditional face-to-face class activities in a planned, pedagogically valuable manner.” Educators probably disagree on what qualifies as “pedagogically valuable,” but the essence is clear: Hybrid education uses online technology to not just supplement, but transform and improve the learning process.

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more on blended / hybrid learning in this IMS blog
https://blog.stcloudstate.edu/ims?s=blended

change in learning

Bonk, C. J. (2016). What is the state of e-learning?: Reflections on 30 ways learning is changing. Journal of Open, Flexible and Distance Learning, 20(2), 6-20. Journal of Open, Flexible and Distance Learning. Retrieved from https://www.academia.edu/30032706/Bonk_C._J._2016_._What_is_the_state_of_e-learning_Reflections_on_30_ways_learning_is_changing._Journal_of_Open_Flexible_and_Distance_Learning_20_2_6-20
Mega trend 1 Learner engagement
new opportunities for fostering greater learner involvement and concerted effort in the learning process
Change #1: Learning is more mobile
Change #2: Learning is more visual
Change #3: Learning is more touch-sensored
Change #4: Learning is more game-based
Change #5: Learning is more immersive
Change #6: Learning is more collaborative
Change #7: Learning is more social
Change #8: Learning is more digital and resource-rich
Change #9: Learning is more adventurous
Change #10: Learning is more hands-on
Mega Trend 2 Pervasive access
our ability to increasingly access learning anyway and anytime.

Change #11: Learning is more online
Change #12: Learning is more video-based
Change #13: Learning is more global
Change #14: Learning is more immediate
Change #15: Learning is more direct from experts
Change #16: Learning is more synchronous
Change #17: Learning is more open
Change #18: Learning is more free
Change #19: Learning is more informal
Change #20: Learning is ubiquitous
Mega Trend #3: Customisation
Change #21: Learning is more blended
Change #22: Learning is more self-directed
Change #23: Learning is more competency-based
Change #24: Learning is more on demand
Change #25: Learning is more massive
Change #26: Learning is more modular
Change #27: Learning is more communal
Change #28: Learning is more modifiable
Change #29: Learning is more flipped
Change #30: Learning is more personal

elearning infographics

elearning (scroll down for hybrid/blended learning)

seven steps to start

immersive learning environment

gamified elearning course

motivate elearners

essentials of elearning course

http://blog.commlabindia.com/elearning-design/elearning-development-aspects-to-consider-infographic

create engaging elearning course

elearning storyboard

instructional design elearning course

engagement elearning course

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blended learning

blended learning

6 Types of Blended Learning

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online learning

http://blog.teachable.com/the-ultimate-guide-to-launching-your-online-course

http://www.proprofs.com/blog/2013/04/awesome-infographic-best-practices-for-creating-an-online-course/

creating online course
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more on elearning in this IMS blog:
https://blog.stcloudstate.edu/ims?s=elearning

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Mobile Language Learning Technologies in Japan

Book Announcement: Implementing Mobile Language Learning Technologies in Japan

New book: Implementing Mobile Language Learning Technologies in Japan

by Steve McCarty, Hiroyuki Obari, and Takeshi Sato

Publisher: Springer Singapore / SpringerBriefs in Education (107 pages)

Table of Contents

Chapter 1 Introduction: Contextualizing Mobile Language Learning in Japan

Chapter 2 Mobile Language Learning Pedagogy: A Sociocultural Perspective

Chapter 3 Tokyo University of Agriculture and Technology Case Study:

Smartphone App LINE for EFL Peer Learning

Chapter 4 Osaka Jogakuin University Case Study:

Mobilizing the EFL Curriculum and Campus Infrastructure with iPods and iPads

Chapter 5 Aoyama Gakuin University Case Study:

Blended Learning and Flipped Classrooms utilizing Mobile Devices

Chapter 6 Conclusion: Implementing Language Learning in a Mobile-Oriented Society

Abstract

This book explores theoretical and practical aspects of implementing mobile language learning in university classrooms for English as a Foreign Language in Japan. The technologies utilized, such as smartphones, iPads, and wi-fi, integrate students’ hand-held devices into the campus network infrastructure. The pedagogical aims of ubiquitous mobile learning further incorporate social media, blended learning, and flipped classroom approaches into the curriculum. Chapter 1 defines mobile language learning within dimensions of e-learning and technology-assisted language learning, prior to tracing the development of mobile learning in Japan. Chapter 2 documents the sociocultural theory underpinning the authors’ humanistic approach to implementation of mobile technologies. The sociocultural pedagogy represents a global consensus of leading educators that also recognizes the agency of Asian learners and brings out their capability for autonomous learning. Case studies of universities, large and small, public and private, are organized similarly in Chapters 3 to 5. Institutional/pedagogical and technological context sections are followed by detailed content on the implementation of initiatives, assessment of effectiveness, and recommendations for other institutions. Distinct from a collection of papers, this monograph tells a story in brief book length about theorizing and realizing mobile language learning, describing pioneering and original initiatives of importance to practitioners in other educational contexts.

Authors

Steve McCarty lectures for Kansai University, Osaka Jogakuin University, KIC Graduate School of IT, and the government agency JICA.

Hiroyuki Obari, PhD in Computer Science, is a Professor at the Aoyama Gakuin University College of Economics in Tokyo.

Takeshi Sato is an Associate Professor at the Division of Language and Culture Studies, Tokyo University of Agriculture and Technology.

Ordering information from Springer

Paperback (ISBN: 978-981-10-2449-8):

http://www.springer.com/us/book/9789811024498

eBook (ISBN: 978-981-10-2451-1) or individual chapters:

http://link.springer.com/book/10.1007/978-981-10-2451-1

 

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more on mobile technologies in this IMS blog
https://blog.stcloudstate.edu/ims?s=mobile+devices

VR in education

5 ways virtual reality is being used in education right now

By Meris Stansbury
1. For new research: using a state-of-the-art “haptic” floor of aeronautic metal that vibrates and moves to stimulate the physical world for research on how VR has the potential to change the way users feel and behave. There may also be implications for confronting racism, sexism, and aiding in empathy and humanitarian efforts, says Bailenson.
2. For coding and 3D design: According to Bob Nilsson, director of Vertical Solutions Marketing for Extreme Networking, the University of Maryland, College Park, now offers a class on virtual reality that gives students the opportunity to design their own interactive world, work with 3D audio and experiment with immersive technology through a combination of hands-on learning and case studies. Also, the University of Georgia is offering similar classes where students design and explore applications for VR. Conrad Tucker, an assistant professor of engineering at Pennsylvania State University, has received funding to build a virtual engineering lab where students hold, rotate, and fit together virtual parts as they would with their real hands.

3. For anatomy and dissection: Said one Extreme Networks survey respondent, “Our students have been developing a VR model of a cow’s anatomy for dissection and study. You have the ability to drill down to the circulatory system, brain, muscle, skeleton, etc. Our applied tech program is using VR in conjunction with Autocad for models of projects they design.”

4. For engagement: A whopping 68 percent of survey respondents said the major benefit of using VR in education is to excite students about the subject matter. 39 percent said it’s great for encouraging creativity.

5. For field trips: Google has eliminated restrictions on Expeditions, their VR field trips program. Google Expeditions was cited in the survey as one of the most popular sources of VR content, but with the complaint that it was a restricted program.

use of VR in education

comment:
Thomas S. McDonald ·

Virtual reality may have its place, but until traditional education moves away from their 20th century teaching methodology and replaces it with educationally innovative, 21st century learning methodology, within a blended and flipped learning environment, virtual reality is currently, much ado about nothing.
Unless any new application is educationally innovative and directly and measurably contributes to effective, efficient, consistent, affordable, relevant advanced student success outcomes for ALL students, future innovations must wait for current innovations to be implemented.
This process of appriate choice and appropriate implemention must start at the top and be beta tested for measured student success before its rolled out system wide.

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

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Key Issues in Teaching and Learning 2016

This year we’d like to involve a wider segment of the teaching and learning community to help us design the survey.  Please join us online for one of two 30-minute discussion sessions:

Sept 14 at 12pm ET OR Sept 15 at 2pm ET
To join, just go to https://educause.acms.com/eliweb on the date and time of the session and join as a guest. No registration or login needed.

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Key Issues in Teaching and Learning 2016

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

Key Issues in Teaching and Learning 2016

1. Academic Transformation

3. Assessment of Learning

4. Online and Blended Learning

5. Learning Analytics

6. Learning Space Design

8. Open Educational Resources & Content

9. Working with Emerging Technology

10. Next Gen Digital Learning Environments (NGDLE) & Services

11. Digital & Informational Literacies

12. Adaptive Learning

13. Mobile Learning

14. Evaluating Tech-Based Instructional Innovations

15. Evolution of the Profession

1 2 3 4 5 6

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