Showing posts with label learning analytics. Show all posts
Showing posts with label learning analytics. Show all posts

Tuesday, September 30, 2014

EDUCAUSE *** 2014 Annual Conference Update - NEW! Photos of the Event

EDUCAUSE 2014 Annual Higher Education - IT Conference
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Explores Today's Toughest IT Issues Facing Higher Education

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AEFIS - Mustafa Sualp - President / CEO
Caitlin Meehan - AEFIS Operations Mgr.













  • 300 Sessions
  • 500 Speakers
  • 60+ webcasts
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  • 18 Exclusive Online Sessions Provided Online - Virtually
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  • Convenes Some of the Brightest Minds in the Community
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    EDUCAUSE Annual Conference

    Virtual Conference

    The EDUCAUSE Annual Conference provides access to its robust program face-to-face and virtually. Gather a team in one room and learn together, or log in individually.
    (Additional logins are available at a reduced rate.)

    Virtual Conference Center Participant Guide and Tutorial: Get tips on how to best use all Virtual Conference Center spaces. This document contains information not on the website.
    To take a quick 4-minute tour, view this video
    .

    Conference Components

    Webcasts

    Webcasts of select general, featured, and concurrent sessions available live and on-demand. | Sample Webcast from EDUCAUSE 2013

    Exclusive Online Sessions

    Interactive sessions with current topic experts, available live and on-demand exclusively for the online audience. | Sample Session from EDUCAUSE 2013

    Recordings

    Virtual conference sessions will be available live, and recordings will be posted less than 3 hours after each session ends.

    Private Recordings Page

    Registrants will receive a link to all virtual conference session recordings that they can share with their nonregistered team members.

    Preconference Seminars

    Exclusive online, half-day preconference seminars on Monday, September 29 offer in-depth, highly interactive discussions. (A separate registration and fee are required.)

    Digital Poster Gallery

    Visit the Digital Poster Gallery to view onsite poster presentations.

    Public Webcasts

    The selected sessions below give you a taste of the best thinking in higher education IT that's taking place at this year's EDUCAUSE Annual Conference. You can view these sessions live, or in recorded format. Click on the embedded player under the abstract. Click on CC within the player to see closed captions. [NOTE: Closed Captions will be available about 72 hours after every session ends.]
    Webcasting sponsored by Sonic Foundry, Platinum Partner. 
    All times are listed in Eastern Time. Convert to your time zone.
    Tuesday, September 30
    11:40 a.m.–12:30 p.m. Badging to Support Professional Development and Career Building

    Speakers: Veronica Diaz, Tracy Petrillo and Sondra R. Smith
    Concurrent Session
    3:40–4:30 p.m. Flipping Out over the Flipped Classroom?
    Speakers: Veronica Diaz, Tracy Petrillo and Sondra R. Smith
    Concurrent Session
    Wednesday, October 1
    8:00–8:50 a.m. Gathering No Moss: A Tribute to Followership
    Speaker: Gordon Wishon
    Sponsored by WOWZA Media Systems
    Featured Session
    9:10–10:00 a.m. It Takes a Community: Responding to Developing Leaders
    Community Leadership Award Recipients

    Speakers: Joanne M. Kossuth and Theresa Rowe
    Concurrent Session
    1:30–2:20 p.m. Leaning, Rising, Meandering, Holding: Your IT Career at Different Life Stages
    Rising Star Award Recipient

    Speakers: Katie L. Vale

    AEFIS   877-674-3122   www.aefis.com

    Concurrent Session

Wednesday, September 3, 2014

The Future of Higher Education: Reshaping Universities Through 3D Printing

The Future of Higher Education: Reshaping Universities Through 3D Printing
How 3D Is Accelerating Learning

One of the most significant aspects of 3D printing for education is that it enables more authentic exploration of objects that may not be readily available to universities. For example, anthropology students at Miami University can handle and study replicas of fragile artifacts, like ancient Egyptian vases, that have been scanned and printed at the university’s 3D printing lab.



3D Printing or Rapid Prototyping
Known in industrial circles as rapid prototyping,
3D printing refers to technologies that construct physical objects from threedimensional (3D) digital content such as 3D modeling software, computer-aided design (CAD) tools, computer-aided tomography (CAT), and X-ray crystallography.

Prints Tangible Object From a 3D Design
A 3D printer builds a tangible model or prototype from the electronic file, one layer at a time, through an extrusion-like process using plastics and other flexible materials, or an inkjet-like process to spray a bonding agent onto a very thin layer of fixable powder.

Any Desired Object - Created Layer by Layer
The deposits created by the machine can be applied very accurately to build an object from the bottom up, layer by layer, with resolutions that, even in the least expensive machines, are more than sufficient to express a large amount of detail.

Moving Parts - No Problem
The process even accommodates moving parts within the object.  Using different materials and bonding agents, color can be applied, and parts can be rendered in plastic, resin, metal, tissue, and even food. This technology is commonly used in manufacturing to build prototypes of almost any object (scaled to fit the printer, of course) that can be conveyed in three dimensions.

Relevance for Teaching, Learning, or Creative Inquiry
One of the most significant aspects of 3D printing for education is that it enables more authentic exploration of objects that may not be readily available to universities. For example, anthropology students at Miami University can handle and study replicas of fragile artifacts, like ancient Egyptian vases, that have been scanned and printed at the university’s 3D printing lab.

Examine Rare Fossils Without Damaging
Similarly, at the GeoFabLab at Iowa State University, geology students and amateur enthusiasts can examine 3D printed specimens of rare fossils, crystals, and minerals without risk of damaging these precious objects.

Harvard Leverages 3D Printing for Microbatteries
Some of the most compelling progress of 3D printing in higher education comes from institutions that are inventing new objects. A team at Harvard University and University of Illinois at Urbana-Champaign recently printed lithium-ion microbatteries that are the size of a grain of sand and can supply power to very small devices such as medical implants and miniature cameras.

3D Printing - Medical Research Applications
In the field of medical research, innovation at the microscopic level is seeing increasing growth. Researchers at the University of Texas at Austin are caging bacteria in 3D-printed enclosures in order to closely approximate actual biological environments for the study of bacterial infections. Scientists at the University of Liverpool are developing 3D-printable synthetic skin that will closely resemble an individual’s age, gender, and ethnicity.

3D Gaining Traction in Higher Education
As 3D printing gains traction in higher education, universities are beginning to create dedicated spaces to nurture creativity and stimulate intellectual inquiry around this emerging technology.

Universities Already Implementing 3D Learning
Examples include North Carolina State University’s Hunt Library Makerspace, the 3DLab at the University of Michigan’s Art, Architecture, and Engineering Library, and the Maker Lab in the Humanities at the University of Victoria in British Columbia, Canada. These spaces, equipped with the latest 3D scanners, 3D printers, 3D motion sensors, and laser cutters, not only enable access to tools, but they also encourage collaboration within a community of makers and hackers.
Johnson, L., Adams Becker, S., Estrada, V., Freeman, A. (2014). NMC Horizon Report: 2014 Higher Education Edition. Austin, Texas: The New Media Consortium. 

Learning Analytics - Leveraging Web-Tracking Tools to Improve Student Engagement

Learning Analytics

Applying web-tracking tools to improve student engagement and provide a high-quality, personalized experience for learners.

Using Big Data to Predict Student Behavior
Learning analytics is an educational application of “big data,” a branch of statistical analysis that was originally developed as a way for businesses to analyze commercial activities, identify spending trends, and predict consumer behavior.

Web-Tracking Tools to Tailor Learning Experience
As web-tracking tools became more sophisticated, many companies built vast reserves of information to individualize the consumer experience.  Education is embarking on a similar pursuit into new ways of applying to improve student engagement and provide a high-quality, personalized experience for learners.

Learning Analytics - Informed Decisions
Learning analytics research uses data analysis to inform decisions made on every tier of the education system, leveraging student data to deliver personalized learning, enable adaptive pedagogies and practices, and identify learning issues in time for them to be solved.

Improving Educational Assessment With "Big Data"
Other hopes are that the analysis of education-related data on a much larger scale than ever before can provide policymakers and administrators with indicators of local, regional, and national education progress that can allow programs and ideas to be measured and improved.

Tracking and Ranking - Online Content Accessed
Adaptive learning data is already providing insights about student interactions with online texts and courseware. One pathway to creating the level of data needed for effective learning analytics is seen in creating student devices that will capture data on how, when, and in what context they are used, and thus begin to build school-level, national, and even international datasets that can be used to deeply analyze student learning, ideally as it happens.

Interest of Education Policymakers, Leaders and Practitioners
Since the topic first appeared three years ago in the far-term horizon of the NMC Horizon Report: 2011 Higher Education Edition, learning analytics has steadily captured the interest of education policymakers, leaders, and practitioners.

Same Tailored Consumer Experience as Amazon, Netflix and Google
Big data are now being used to personalize every experience users have on commercial websites, and education systems, companies, and publishers see tremendous potential in the use of similar data mining techniques to improve learning outcomes. The idea is to use data to adapt instruction to individual learner needs in real-time in the same way that Amazon, Netflix, and Google use metrics to tailor recommendations to consumers.

Transforming Education from "One Size Fits All"
Analytics can potentially help transform education from a standard one-size-fits-all delivery system into a responsive and flexible framework, crafted to meet the students’ academic needs and interests. For many years, these ideas have been a central component of adaptive software, programs that make carefully calculated adjustments to keep learners motivated as they master concepts or encounter stumbling blocks.

Visual and Analytic Reports
New kinds of visualizations and analytical reports are being developed to guide administrative and governing bodies with empirical evidence as they target areas for improvement, allocate resources, and assess the effectiveness of programs, schools, and entire school systems. As online learning environments increasingly accommodate thousands of students, researchers and companies are looking at very granular data around student interactions, building on the tools of web analytics.

Stanford Pioneering Education "Big Data" Analysis
Pearson Learning Studio, for example, provides an LMS infrastructure that is aggregating data from the millions of learners using their systems, with the aim of enabling school leaders and national policy makers to more effectively design personalized learning paths.  Similarly, a group at Stanford University is examining vast datasets generated by online learning environments.

Stanford Lytic Lab - Analytics Dashboard
These efforts are taking place through the Stanford Lytic Lab, where researchers, educators, and visiting experts are currently building an analytics dashboard that will help online instructors track student engagement in addition to conducting a study of peer assessment in a MOOC on human-computer interaction, based on 63,000 peer-graded assignments.

Bill & Melinda Gates - $200,000 Funding
In April 2013, the Bill & Melinda Gates Foundation awarded Stanford more than $200,000 in funding to support the Learning Analytics Summer Institute, which provided professional training to researchers in the field.

Sophisticated Web-Tracking at Leading Institutions
Sophisticated web-tracking tools are already being used by leading institutions to capture precise student behaviors in online courses, recording not only simple variables such as time spent on a topic, but also much more nuanced information that can provide evidence of critical thinking, synthesis, and the depth of retention of concepts over time.

New Analytic Tools to Manage Growing Complexity
As behavior specific data is added to an ever-growing repository of student-related information, the analysis of educational data is increasingly complex, and many statisticians and researchers are working to develop new kinds of analytical tools to manage that complexity.

Predictive Analytics Reporting Framework
The most visible current example of a wide-scale analytics project in higher education is the Predictive Analytics Reporting Framework, which is overseen by the Western Interstate Commission for Higher Education (WICHE), and largely funded by the Bill & Melinda Gates Foundation.

16 Institutions = 1.7M Student Records + 8.1M Course Records
The 16 participating institutions represent the public, private, traditional, and progressive spheres of education. According to the WICHE website, they have compiled over 1,700,000 student records and 8,100,000 course level records in efforts to better understand student loss and student momentum.

Social Media - Researching Online Discussions
Companies such as X-Ray Research are conducting research in online discussion groups to determine which behavioral variables are the best predictors of student performance. The tools reflect the potential of analytics to develop early warning systems based on metrics that make predictions using linguistic, social, and behavioral data. Similarly, studies at universities are proving that pedagogies informed by analytics can prove the quality of interaction taking place online.

Solution: Visualization - Improving Student Engagement and Discussion
At Simon Fraser University in British Columbia researchers applied analytics to solve an issue that past experiments revealed — discussion forums used for online courses were not supporting productive engagement or discussion. They developed a Visual Discussion Forum in which students could visualize the structure and depth of the discussion, based on the number of threads extending from their posts. Learners in this study were also able to easily detect which topics needed more of their attention.

Johnson, L., Adams Becker, S., Estrada, V., Freeman, A. (2014). NMC Horizon Report: 2014 Higher Education Edition. Austin, Texas: The New Media Consortium.