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Lone Guldbrandt Tønnesen

Stanford's open courses raise questions about true value of elite education | Inside Hi... - 4 views

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  • This made Stanford the latest of a handful of elite American universities to pull back the curtain on their vaunted courses, joining the Massachusetts Institute of Technology’s OpenCourseWare project, Yale University’s Open Yale Courses and the University of California at Berkeley’s Webcast.Berkeley, among others. The difference with the Stanford experiment is that students are not only able to view the course materials and tune into recorded lectures for CS221: Introduction to Artificial Intelligence; they are also invited to take in-class quizzes, submit homework assignments, and gather for virtual office hours with the course’s two rock star instructors — Peter Norvig, a research executive at Google who used to build robots for NASA, and Sebastian Thrun, a professor of computer science at Stanford who also works for Google, designing cars that drive themselves. (M.I.T., Yale and Berkeley simply make the course materials freely available, without offering the opportunity to interact with the professors or submit assignments to be graded.)
  • MOOCs question the value of teaching as an economic value point.”
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  • Based on the success of Norvig and Thrun’s experiment, the university’s computer science department is planning to broadcast eight additional courses for free in the spring, most focusing on high-level concepts that require participants already to have a pretty good command of math and science.
  • It raises the question: Whose certification matters, for what purposes?
  • For one, the professors can only evaluate non-enrolled students via assessments that can be graded automatically.
  • it can be difficult to assess skills without being able to administer project-based assignments
  • With a player like Stanford doing something like this, they’re bringing attention to the possibilities of the Web for expanding open education
tim mcnamara

http://opencontent.org/definition/ - 1 views

  • What does "open" mean? The word has different meanings in different contexts.
  • "open" is a continuous (not binary)
  • The "open" in "open content" is a similarly continuous construct. In this context, "open" refers to granting of copyright permissions above and beyond those offered by standard copyright law
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  • Put simply, the fewer copyright restrictions are placed on the user of a piece of content, the more open the content is. The primary permissions or usage rights open content is concerned with are expressed in the "4Rs Framework:" Reuse - the right to reuse the content in its unaltered / verbatim form (e.g., make a backup copy of the content) Revise - the right to adapt, adjust, modify, or alter the content itself (e.g., translate the content into another language) Remix - the right to combine the original or revised content with other content to create something new (e.g., incorporate the content into a mashup) Redistribute - the right to share copies of the original content, your revisions, or your remixes with others (e.g., give a copy of the content to a friend)
Allan Quartly

Teaching in Social and Technological Networks « Connectivism - 6 views

  • How can we achieve clear outcomes through distributed means?
  • How can we achieve learning targets when the educator is no longer able to control the actions of learners?
  • A curatorial teacher acknowledges the autonomy of learners, yet understands the frustration of exploring unknown territories without a map.
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  • A curator is an expert learner. Instead of dispensing knowledge, he creates spaces in which knowledge can be created, explored, and connected.
  • Learning is an eliminative process. By determining what doesn’t belong, a learner develops and focuses his understanding of a topic. The teacher assists in the process by providing one stream of filtered information. The student is then faced with making nuanced selections based on the multiple information streams he encounters. The singular filter of the teacher has morphed into numerous information streams, each filtered according to different perspectives and world views.
  • Course content is similarly fragmented. The textbook is now augmented with YouTube videos, online articles, simulations, Second Life builds, virtual museums, Diigo content trails, StumpleUpon reflections, and so on.
  • Fragmentation of content and conversation is about to disrupt this well-ordered view of learning. Educators and universities are beginning to realize that they no longer have the control they once (thought they) did.
  • However, in order for education to work within the larger structure of integrated societal systems, clear outcomes are still needed.
  • How can we achieve clear outcomes through distributed means? How can we achieve learning targets when the educator is no longer able to control the actions of learners?
  • Thoughts, ideas, or messages that the teacher amplifies will generally have a greater probability of being seen by course participants.
  • Each RT amplifies the message much like an electronic amplifier increases the amplitude of audio or video transmitters.
  • A curatorial teacher acknowledges the autonomy of learners, yet understands the frustration of exploring unknown territories without a map. A curator is an expert learner. Instead of dispensing knowledge, he creates spaces in which knowledge can be created, explored, and connected.
  • In CCK08/09, Stephen and I produced a daily newsletter where we highlighted discussions, concepts, and resources that we felt were important. As the course progressed, many students stated they found this to be a valuable resource -a centering point of sorts.
  • Today’s social web is no different – we find our way through active exploration. Designers can aid the wayfinding process through consistency of design and functionality across various tools, but ultimately, it is the responsibility of the individual to click/fail/recoup and continue.
  • Fortunately, the experience of wayfinding is now augmented by social systems. Social structures are filters. As a learner grows (and prunes) her personal networks, she also develops an effective means to filter abundance. The network becomes a cognitive agent in this instance – helping the learner to make sense of complex subject areas by relying not only on her own reading and resource exploration, but by permitting her social network to filter resources and draw attention to important topics. In order for these networks to work effectively, learners must be conscious of the need for diversity and should include nodes that offer critical or antagonistic perspectives on all topic areas. Sensemaking in complex environments is a social process.
  • After all, why should we do the heavy cognitive work when technology is uniquely suited to analyzing and generating patterns?
  • I’d like a learning system that functions along the lines of RescueTime – actively monitoring what I’m doing – but then offers suggestions of what I should (or could) be doing additionally. Or a system that is aware of my email exchanges over the last several years and can provide relevant information based on the development of my thinking and work. With the rise of social media, and with it the attention organizations pay to how their brand is being represented, monitoring services such as Viral Heat are promising. Imagine a course where the fragmented conversations and content are analyzed (monitored) through a similar service. Instead of creating a structure of the course in advance of the students starting (the current model), course structure emerges through numerous fragmented interactions. “Intelligence” is applied after the content and interactions start, not before. This is basically what Google did for the web – instead of fully defined and meta-described resources in a database, organized according to subject areas (i.e. Yahoo at the time), intelligence was applied at the point of search. Aggregation should do the same – reveal the content and conversation structure of the course as it unfolds, rather than defining it in advance.
  • Filtering resources is an important educator role, but as noted already, effective filtering can be done through a combination of wayfinding, social sensemaking, and aggregation. But expertise still matters. Educators often have years or decades of experience in a field. As such, they are familiar with many of the concepts, pitfalls, confusions, and distractions that learners are likely to encounter. As should be evident by now, the educator is an important agent in networked learning. Instead of being the sole or dominant filter of information, he now shares this task with other methods and individuals.
  • By determining what doesn’t belong, a learner develops and focuses his understanding of a topic. The teacher assists in the process by providing one stream of filtered information. The student is then faced with making nuanced selections based on the multiple information streams he encounters. The singular filter of the teacher has morphed into numerous information streams, each filtered according to different perspectives and world views.
  • Given that coherence and lucidity are key to understanding our world, how do educators teach in networks? For educators, control is being replaced with influence. Instead of controlling a classroom, a teacher now influences or shapes a network.
  •  
    Unpacking the role of the teacher in connectivism
Lone Guldbrandt Tønnesen

Mobile Learning at Open University Malaysia ~ #change11 - 4 views

  • The survey was carried out in more than 40 OUM learning centers throughout the nation with close to 3,000 respondents
  • it was found that 82.8 percent of the respondents said they would be ready for m-learning. Based on the survey, it may be generalized that 99 percent of OUM learners have mobile phones.
  • About 2,000 students enrolled in the May semester received a total of about 30 SMSes over a period of about 14 weeks. The responses from students were positive.
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  • Generally, the m-learning project made them more engaged with the content and activities of the course
  • the SMSes helped them focus on the course, reminded them of important things
  • In addition, some of the SMSes helped them stay motivated,
  • When we "teach" students in class in order to help them learn, we don't just help them understand the content of the lesson. We also provide tips, motivate them to do activities that will help move them along in the course, get them to participate in discussions and manage their learning/the course. It was the same with the SMSes. We believe, the will get enough content from the print module provided and from the face-to-face interactions with their tutors. So yes, m-learning was used to help "teach" as well as "manage" the student.
  • http://api.ning.com/files/U50Z6pDz8PFgpOps4yunShKHnKR0sbgJx7kyRnjI*eMXpEqJSiqz0n0GuUNtY4DBx3-BFMYIGIabLRg8EqkDO9-IevKFm5Bt/questionnairemobilelearningfirstquestion.pdf
Rob Parsons

A Pedagogy of Abundance : The Digital Scholar: How Technology Is Transforming Scholarly... - 0 views

  • If we use this perspective to examine education we can consider how education may shift as a result of abundance. Traditionally in education expertise is analogous to talent in the music industry – it is the core element of scarcity in the model. In any one subject there are relatively few experts (compared with the level of knowledge in the general population). Learners represent the ‘demand’ in this model, so when access to the experts is via physical interaction, for example, by means of a lecture, then the model of supply and demand necessitates that the learners come to the place where the experts are located. It also makes sense to group these experts together, around other costly resources such as books and laboratories. The modern university is in this sense a solution to the economics of scarcity.
  • As a result, a ‘pedagogy of scarcity’ developed, which is based around a one-to- many model to make the best use of the scarce resource (the expert). This is embodied in the lecture, which despite its detractors is still a very efficient means of conveying certain types of learning content. An instructivist pedagogy then can be seen as a direct consequence of the demands of scarcity.
  • It may be that we do not require new pedagogies to accommodate these assumptions as Conole (2008) points out: Recent thinking in learning theory has shifted to emphasise the benefit of social and situated learning as opposed to behaviourist, outcomes-based, individual learning. What is striking is that a mapping to the technologies shows that recent trends in the use of technologies, the shift from Web 1.0 to Web 2.0 echoes this; Web 2.0 tools very much emphasise the collective and the network.
    • Rob Parsons
       
      Though i think it is true that students learn collaboratively, and always have done, they don't act as if they do (any more than teachers act as if they do, and quite often less). Perhaps our students still come from experiences that value authority and, whatever is said, do not value constructivism and collaboration.
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  • Any pedagogy of abundance would then, I suggest, be based on the following assumptions:
  • Jonassen (1991) describes it thus: Constructivism … claims that reality is constructed by the knower based upon mental activity. Humans are perceivers and interpreters who construct their own reality through engaging in those mental activities … What the mind produces are mental models that explain to the knower what he or she has perceived … We all conceive of the external reality somewhat differently, based on our unique set of experiences with the world.
  • Given that it has a loose definition, it is hard to pin down a constructivist approach exactly. Mayer (2004) suggests that such discovery-based approaches are less effective than guided ones, arguing that the ‘debate about discovery has been replayed many times in education but each time, the evidence has favoured a guided approach to learning’.
    • Rob Parsons
       
      Interesting, because my immediate reaction was that there's no contradiction between guided learning and constructivism. Just don't expect that your students will always go where you guide them.
  • When Kirschner, Sweller and Clark (2006) claim, with some justification, that ‘the epistemology of a discipline should not be confused with a pedagogy for teaching/learning it’ that only highlights that the epistemology of a discipline is now being constructed by all, so learning how to participate in this is as significant as learning the subject matter of the discipline itself.
  • However, the number of successful open source communities is relatively small compared with the number of unsuccessful ones, and thus the rather tenuous success factors for generating and sustaining an effective community may prove to be a barrier across all subject areas. Where they thrive, however, it offers a significant model which higher education can learn much from in terms of motivation and retention (Meiszner 2010).
  • Abundance does not apply to all aspects of learning; indeed the opposite may be true, for example, an individual's attention is not abundant and is time limited. The abundance of content puts increasing pressure on this scarce resource, and so finding effective ways of dealing with this may be the key element in any pedagogy. However, I would contend that the abundance of content and connections is as fundamental shift in education as any we are likely to encounter, and there has, to date, been little attempt to really place this at the centre of a model of teaching.
    • Rob Parsons
       
      Agreed. Great conclusion. At the moment, if I had to single out one key point Martin makes, it is this.
Rob Parsons

Public Engagement as Collateral Damage : The Digital Scholar: How Technology Is Transfo... - 1 views

  • ‘Public engagement’ involves specialists in higher education listening to, developing their understanding of, and interacting with non-specialists. The ‘public’ includes individuals and groups who do not currently have a formal relationship with an HEI through teaching, research or knowledge transfer.
    • Rob Parsons
       
      As exemplified by the currently difficult area of "public understanding of science", which is a very good example of where academics need to be engaging - not just science academics, but e.g. social science academics.
    • Rob Parsons
       
      While Amazon's long tail is visible, its dimensions ahve been subject to amendment: http://radar.oreilly.com/2005/08/amazons-long-tail-not-so-long.html Looks as if pareto may hold. I'm not aware of more up to date research.
  • This can be realised through specific projects, such as the OER projects many universities are initiating. However, long-tail models only work when there is sufficient content to occupy the tail. In order to achieve this scale of content in a sustainable manner, the outputs listed above need to become a frictionless by-product of the standard practice, rather than the outcomes of isolated projects.
    • Rob Parsons
       
      How does this work with ?increasing? marketisation of universities? Will the long tail contract?
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  • In this chapter I have argued that we can view higher education as a long-tail content production environment. Much of what we currently aim to achieve through specific public engagement projects can be realised by producing digital artefacts as a by-product of typical scholarly activity. My intention is not to suggest that this is the only means of performing public engagement; for example, engaging with local schools works well by providing face-to-face contact with inspiring figures. As with other scholarly functions, some will remain, but the digital alternative not only allows for new ways of realising the same goals but also opens up new possibilities.
    • Rob Parsons
       
      I'm in two minds. I like what Martin says about public engagement as a by product as well as PE as a deliberate activity. But I don't think the long tail metaphor fits it.
Rob Parsons

The Medals of Our Defeats : The Digital Scholar: How Technology Is Transforming Scholar... - 1 views

  • Nicholas Carr's (2008) article ‘Is Google Making Us Stupid?’ struck a chord with many people. Carr's (2010) argument, which he fleshes out in his book The Shallows, is that our continual use of the net induces a superficiality to our behaviour. He says this is felt particularly when trying to read a complex piece:
  • The issue of quality is perhaps more keenly felt when we consider teaching. I raised the idea of pedagogy of abundance in Chapter 8, and in such a pedagogy the content will vary greatly in terms of quality.
  • the question is not whether some people produce poor quality content, obviously they do and the majority in fact, but whether as a whole this system can produce high-quality content.
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  • As neuroscientist Joshua Greene puts it, ‘the Internet hasn't changed the way we think anymore than the microwave oven has changed the way we digest food. The Internet has provided us with unprecedented access to information, but it hasn't changed what we do with it once it's made it into our heads’ (Gerschenfeld 2010).
  • Whether there are social and behavioural impacts of operating online is a serious question, however. Just as the television had serious social impacts, we must accept that computers and Internet will also have consequences. These will undoubtedly be a mixture of positive and negative, but I would argue that using pseudo-scientific explanations to back up prejudices will not help us address these issues.
  • For educators there are two main issues; the first is the extent to which they help students manage their online identity, and the second is how they manage their own boundary between personal and professional life.
  • The over-adoption of tools can lead to what has been termed ‘creepy tree house’ syndrome (Stein 2008) when authority is seen to try and invade a young person's social space.
  • There is strong resistance from students to universities and lecturers making formal use of social networks as this is seen as an invasion of their social space (e.g. Madge 2009).
  • For the teaching function of scholarship then the question is ‘How can educators utilise the potential of these tools without destroying what makes them valuable to students?’
  • I would suggest the following as the most challenging for digital scholarship: Moving beyond the superficial – many successful Web 2.0 services essentially allow a very simple function, for example, sharing a photograph. Can we use the same techniques for deeper, more difficult tasks?
  • Understanding quality – this is not just about maintaining current quality, as this may not be appropriate in many forms, but appreciating when different levels of quality can be used.
  • Managing online identity – there is a tension for scholars and their students in gaining the benefits of a social network, which thrives on personal interactions, while not compromising professional identity.
  • Ownership of scholarly functions – there is also a dilemma regarding how much of scholarly discourse and activity we give over to cloud computing services and whether the benefits in terms of widespread use and (often) superior tools outweigh the potential risks.
Tai Arnold

How Online Innovators Are Disrupting Education - Jason Orgill and Douglas Hervey - Harv... - 4 views

  • In fact, Gates, Khan, and teachers at the academy argue that online education can liberate teachers, allowing them to engage in more creative and influential one-on-one mentoring.
  • teachers can serve as professional coaches and content architects to help students progress in ways that they never could under most current models
  • Targeting non-consumers creates less backlash from teachers' unions and administrators, and could even generate student referrals from incumbents themselves.
  •  
    "teachers can serve as professional coaches and content architects to help students progress in ways that they never could under most current model"
anonymous

This Is Not Your Parents' Software Training - 1 views

  • learning by doing is really key
  • Millenials, as good as they are at social technology, still do need training. The training they will need is different from what late adopters need. They don’t need to be sold on importance of conversation or possibilities of viral content and serendipitous discovery. What they do need is to understand is how Yammer is different from Facebook — from differences in content and audience, to the techniques, such as using groups to get work done.
  • “You need to help your users create a what / when / where decision chart,” she advised. Oftentimes people don’t know what message should be posted to what medium and they end up getting nervous and not posting, or wreaking havoc on the natural “flow” of the community
Lone Guldbrandt Tønnesen

Learnlets » Learning Experience Design thru the Macroscope - 0 views

  •  But with mobile technologies, we have the capability to truly start to deliver what I call ‘slow learning’: delivering small bits of learning over time to really develop an individual.
  •  Most of our learning comes from outside the learning experience.  But can we do better?
  • to develop individuals in micro bits over a macro period of time rather than macro bits over a micro bit of time (which really doesn’t work)
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  •  We have pieces of the puzzle ( smaller chunks, content models) and we have the tools (individualized delivery, semantics), but putting them together really hasn’t been done yet.
  •  We still have to figure out what our design process would look like,
  •  It’s really trying to build a system that is more mentor like than instructor like.
  • You have more small chunks of content, and more distributed performance model.
  • The point is to take the fact that technology is no longer the limit, our imaginations are.
  • : "Are you trying to teach information or skills? Okay – a skill. Well, that will require practice.
  • that calling it “slow learning” gives the opposite impression of what it actually is
  • and one could argue that what you are describing could actually be FAST learning
  • “spaced learning”
markuos morley

Digital, Networked and Open : The Digital Scholar: How Technology Is Transforming Schol... - 4 views

    • markuos morley
       
      What is Martin's definition of a social network here?
    • markuos morley
       
      Surely scholars could use email distribution lists and Usenet Newsgroups for such activities commonly back in the early 1990's?
    • Rob Parsons
       
      They could but it wasn't that common.
  • Are they central or peripheral to practice?
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  • Blogs are also the epitome of the type of technology that can lead to rapid innovation. They can be free to set up, are easy to use and because they are at the user's control, they represent a liberated form for expression. There is no word limit or publication schedule for a blog
  • ‘Scholarship’ is itself a rather old-fashioned term.
  • How do we recognise quality?
  • Prior to the Internet, but particularly prior to social networks, this kind of network was limited to those with whom you interacted regularly.
  • the advent of social networks that is having an influence on scholarly practice.
  • Should bloggers use institutional systems or separate out their blogging and formal identities?
  • Dunbar's (1992) research on friends and group size suggests that it has a capacity of around 150. It necessitates keeping in touch with a lot of people, often reinforcing that contact with physical interaction.
  • for those who have taken the step to establishing an online identity, these networks are undoubtedly of significant value in their everyday practice.
  • openness
  • Tim O'Reilly (2004) calls ‘an architecture of participation’, an infrastructure and set of tools that allow anyone to contribute.
  • It is this democratisation and removal of previous filters that has characterised the tools which have formed the second wave of web popularity, such as YouTube, Wikipedia, Flickr, blogs, Facebook and Twitter.
  • Openness then refers not only to the technology but also to the practice of sharing content as a default.
    • markuos morley
       
      Significant point for me.
    • markuos morley
       
      The Philosophy is the important thing.
  • Fast – technology that is easy to learn and quick to set up. The academic does not need to attend a training course to use it or submit a request to their central IT services to set it up. This means they can experiment quickly.
  • Cheap – tools that are usually free or at least have a freemium model so the individual can fund any extension themselves. This means that it is not necessary to gain authorisation to use them from a budget holder. It also means the user doesn't need to be concerned about the size of audience or return on investment, which is liberating.
  • Out of control – these technologies are outside of formal institutional control structures, so they have a more personal element and are more flexible. They are also democratised tools, so the control of them is as much in the hands of students as it is that of the educator.
  • Overall, this tends to encourage experimentation and innovation in terms of both what people produce for content services and the uses they put technology to in education.
  • ‘the good enough revolution’
  • This reflects a move away from expensive, sophisticated software and hardware to using tools which are easy to use, lightweight and which tie in with the digital, networked, open culture.
  • there seems to be such an anxiety about being labelled a ‘technological determinist’ that many people in education seek to deny the significance of technology in any discussion. ‘Technology isn't important’, ‘pedagogy comes first’, ‘we should be talking about learning, not the technology’ are all common refrains in conferences and workshops.
  • While there is undoubtedly some truth in these, the suggestion that technology isn't playing a significant role in how people are communicating, working, constructing knowledge and socialising is to ignore a major influencing factor in a complex equation.
  • entirely unpredicted, what is often termed ‘emergent use’, which arises from a community taking a system and using it for purposes the creators never envisaged.
  •  
    I've made some annotations and floating comments here. Possibly Martin would like to respond in situ?
Tai Arnold

Systemic Changes in Higher Education | in education - 9 views

  • When control over information shifts from organizations to individuals, considerations of new models in universities is required, as evidenced by historical transitions of information-based institutions. As an industry fundamentally concerned with “creating and communicating information” (Carey, 2009,
    • Tai Arnold
       
      This is probably the most important element; control=power and the other changes are expanding individual control of content
  • Recognition of only formal learning is a needlessly limiting mindset currently held by higher education.
    • Tai Arnold
       
      Yes!!!
  • Many of the assumptions that inform higher education today – such as classrooms, textbooks, physical space, co-location of educators and learners, pairing of research and teaching, bounded curriculum – are called into question by emerging learning theories and technologies.
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  • However as education in the developed world moves in new directions, we must be cognizant of how this move impacts the learners in the developing world. How will learners in these areas access, explore and contribute to the creation of knowledge? Will social networking technologies, and the emergence of next generation technologies further exclude the greatest number of undergraduate learners. Will this new reality result in too few voices connecting and validating knowledge? How can non-Eurocentric voices be heard? One must ensure that there is some democracy in this new model.
  • Educators and leaders in academia are confronted with important questions. How should institutions of learning be designed to serve the needs participative, social, and global information cycle? What assumptions about the system of higher education need to be abandoned due to technological advancements? How can the vital roles of research and teaching and learning be addressed through distributed means? How can accreditation be broadened to include the full spectrum of formal and informal learning activities?
  • Failure to recognize the pivotal role of digital technologies will result in institutions at odds with the world in which they operate.
  • The American Faculty: The Restructuring of Academic Work and Careers (Schuster & Finkelstein, 2006) propose that universities are experiencing a revolution—with tremendous consequences. They write, Everything is in play, as nearly every aspect of academic life is being driven by a host of inter-related developments: dazzling technological advances, globalization that permeates academic boundaries, rapid increase of tertiary students worldwide, expansion of proprietary higher education, a blurring of (the) public/private distinction, and entrepreneurial initiatives on and off campus. (p. xvii)
  • Technological innovations in bandwidth, storage, processing speed, and software directly impact education (Downes, 2009), creating new opportunities for learner-learner/educator and learner-information interactions.
  • ome researchers have turned to complexity theory to advance education, suggesting that emphasis be placed on the whole system rather than reductionist views often found in "mainstream science" (Mason, 2008). Increased collaboration in a model of "interlocking partnerships among researchers, among universities, and across international borders” (McFadden Allen, 2007, p. 3) promises a new model of not only what it means to be an academic, but also what it means to be an academic institution.
  •  
    a very important article - as someone commented (either about this article of another of George's), those who most need to read it probably won't. I'm going to see what I can do about changing that
  •  
    Education, as knowledge presentation, assessment and learning is not the only concern about the modern university system. We must also concern our selves with helping student acheive their goals, or as mentors, helping them to discover what they want to contribute to society. While part of this is job placement, a great deal of it is helping the learning see the possibilities out there and providing them with the tools to acheive those possibilities (such as knowing what types of credentials, certificates, degrees, etc.. they may need). It is also about helping them develop their abilities to filter material, think of material in new or different ways. One problem is the rigid, ego centric hold provided by discipline specific education.
tim mcnamara

1.1. Connecting learning objects to instructional design theory: A definition, a metaph... - 9 views

  • The purpose of this chapter is to introduce an instructional technology concept known commonly as the “learning object.” First a review of the literature is presented as groundwork for a working definition of the term “learning object.” A brief discussion of instructional design theory is followed by an attempt to connect the learning objects approach to existing instructional design theory, and the general lack of such connective efforts is contrasted with the financial and technical activity generated by the learning objects notion.
  • What is a learning object?
  • An instructional technology called “learning objects” (LTSC, 2000a) currently leads other candidates for the position of technology of choice in the next generation of instructional design, development, and delivery, due to its potential for reusability, generativity, adaptability, and scalability (Hodgins, 2000; Urdan & Weggen, 2000; Gibbons, Nelson, & Richards, 2000).
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  • grounded in the object-oriented paradigm of computer science.
  • build small (relative to the size of an entire course) instructional components that can be reused a number of times in different learning contexts
  • Moreover, those who incorporate learning objects can collaborate on and benefit immediately from new versions. These are significant differences between learning objects and other instructional media that have existed previously.
  • Supporting the notion of small, reusable chunks of instructional media, Reigeluth and Nelson (1997) suggest that when teachers first gain access to instructional materials, they often break the materials down into their constituent parts.
  • if instructors received instructional resources as individual components, this initial step of decomposition could be bypassed
  • The Learning Technology Standards Committee chose the term “learning objects” (possibly from Wayne Hodgins’ 1994 use of the term in the title of the CedMA working group called “Learning Architectures, API’s, and Learning Objects”)
  • provided a working definition
  • Learning Objects are defined here as any entity, digital or non-digital, which can be used, re-used or referenced during technology supported learning. Examples of technology-supported learning include computer-based training systems, interactive learning environments, intelligent computer-aided instruction systems, distance learning systems, and collaborative learning environments. Examples of Learning Objects include multimedia content, instructional content, learning objectives, instructional software and software tools, and persons, organizations, or events referenced during technology supported learning (LOM, 2000).
  • The proliferation of definitions for the term “learning object” makes communication confusing and difficult.
  • It would seem that there are almost as many definitions of the term as there are people employing it.
  • In addition to the various definitions of the term “learning object,” other terms that imply the general intention to take an object-oriented approach to computer-assisted instruction confuse the issue further.
  • Depressingly, while each of these is something different, they all conform to the Learning Technology Standards Committee’s  “learning object” definition. An in depth discussion of the precise meanings of each of these terms would not add to the main point of this discussion: the field is still struggling to come to grips with the question, “What is a learning object?”
  • At the same time, the creation of yet another term only seems to add to the confusion. While the creation of a satisfactory definition of the term learning object will probably consume the better part of the author’s career, a working definition must be presented before the discussion can proceed.
  • Therefore, this chapter will define a learning object as “any digital resource that can be reused to support learning.”
  • This definition includes anything that can be delivered across the network on demand, be it large or small.
  • This definition of learning object, “any digital resource that can be reused to support learning,” is proposed for two reasons.
  • The definition adopted for this chapter emphasizes the purposeful use (by either an instructional designer, an instructor, or a student) of these objects to support learning
  • Second, the proposed definition is based on the LTSC definition (and defines a proper subset of learning objects as defined by the LTSC), making issues of compatibility of learning object as defined within this chapter and learning object as defined by the LTSC explicit
  • With that compatibility made explicit, the proposed definition differs from the LTSC definition in two important ways.
  • First, the definition explicitly rejects non-digital
  • The definition also drops the phrase "technology supported" which is now implicit, because all learning objects are digital.
  • Second, the phrase "to support" has been substituted in place of "during" in the LTSC definition. Use of an object "during" learning doesn't connect its use to learning
  • First, the definition is sufficiently narrow to define a reasonably homogeneous set of things: reusable digital resources. At the same time, the definition is broad enough to include the estimated 15 terabytes of information available on the publicly accessible Internet (Internet Newsroom, 1999).
  • Armed with a working definition of the term learning object, the discussion of the instructional use of learning objects can proceed.
  • Instructional design theory and learning objects
  • Reigeluth
  • [I]nstructional design theories are design oriented, they describe methods of instruction and the situations in which those methods should be used, the methods can be broken into simpler component methods, and the methods are probabilistic. (p. 7).s11 {margin-left:0; line-height:2.400000; text-indent:36;}
  • Because the very definition of “theory” in some fields is “descriptive,” design theories are commonly confused with other types of theories that they are not, including learning theory and curriculum theory (Reigeluth, 1999a).
  • The following discussion takes a step in this direction, by recasting two of the largest issues in the learning objects area – combination and granularity – in instructional design terms
  • Combination
  • there is astonishingly little conversation around the instructional design implications of learning objects.
  • item (d) in the Learning Objects Metadata Working Group’s PAR (LOM, 2000) reads as follows:
  • To enable computer agents to automatically and dynamically compose personalized lessons for an individual learner
  • at this point a brief discussion of metadata, the focus of the Learning Object Metadata Working Group’s efforts, is necessary.
  • Metadata, literally “data about data,” is descriptive information about a resource
  • he Learning Objects Metadata Working Group is working to create metadata for learning objects (such as Title, Author, Version, Format, etc.) so that people and computers will be able to find objects by searching
  • ​The problem with 7(d) arose when people began to actually consider what it meant for a computer to “automatically and dynamically compose personalized lessons.”
  • his meant taking individual learning objects and combining them in a way that made instructional sense, or in instructional design terminology, “sequencing” the learning objects.
  • The problem was that no instructional design information was included in the metadata specified by the current version of the Learning Objects Metadata Working Group standard.
  • ​The lack of instructional design discussion at this standards-setting level of conversation about learning objects is disturbing, because it might indicate a trend.
  • Once technology or software that does not support an instructionally-grounded approach to learning object sequencing is completed and shipped to the average teacher, why would he or she respond any differently
  • Wiley (1999) called this “the new CAI – ‘Clip Art Instruction’” (p. 6).
  • Discussion of the problem of combining learning objects in terms of “sequencing” leads to another connection between learning objects and instructional design theory.
  • Granularity
  • The most difficult problem facing the designers of learning objects is that of “granularity” (Wiley, et al., 1999).
  • How big should a learning object be?
  • Reuse is the core of the learning object notion, as generativity, adaptivity, and other –ivities are all facilitated by the property of reuse.
  • designating every individual graphic and paragraph of text within a curriculum a “learning object” can be prohibitively expensive
  •  
    Chapter 1
Lone Guldbrandt Tønnesen

Avoiding the Trap of Clicky-Clicky Bling-Bling - 1 views

  • "All that is clicky-clicky bling-bling does not make for an effective learning experience."
  • s a load of elearning junk
  • It's just shiny wrapping paper covering up a pair of crummy socks with holes in them.
  • ...17 more annotations...
  • " Ruth Clark and Richard Mayer in the industry classic e-Learning and the Science of Instruction, explain that seductive details are "interesting but irrelevant material added to a multimedia presentation in an effort to spice it up
  • Seductive details are those elements in a program that draw you in, attract the eye and engage the brain. They seduce your interest, but distract from the main point.
  • It's interactive! It's intriguing! But it's exhausting, and let's face it"—there's no point. Fatigue sets in and you move on
  • This is the premise underlying the arousal theory, the idea that entertaining and interesting embedded effects cause learners to become more emotionally aroused and therefore they work harder to learn the material.
  • . Designers who don't understand the basics of effective instructional design are committing what Clark Quinn of Quinnovation calls "instructional design malpractice.
  • CCBB design shines and sparkles wildly in the sun
  • When we force learners to practice without context, they've memorized facts but may not be able to apply them correctly in context.
  • Too much clicking can lead to learner fatigue, is distracting to the learner, and doesn't promote deeper understanding
  • We need to provide more contextual opportunities for drill exercises that will help the learner both retain and apply the knowledge they are practicing.
  • "Well-written, multiple-choice questions teach and assess knowledge within the context of a game. Poor questions simply allow the gamer to play the game without learning.
  • that the addition of interesting yet unimportant augmentations can divert learners from learning the main points that are being made
  • . You're best served to spend your time designing the right type of course and spending less time looking for ways to 'jazz it up'"
  • . Now, take a look at the screen and see where your eye lands first. Is it the flashing Next button in the bottom right corner? Or is it the important content bit at the center of the screen? Ask an objective outsider to take a look, too
  • Pilot your program with some test learners
  • heck in with them immediately afterwards, one week, three weeks. See what they remembe
  • , don't take this to mean that elearning shouldn't look good.
  • What about your LMS? At Kineo, where I work, we love using Moodle and Totara as an LMS solution for our clients, not only because of the great features and the fact that it's open source, but always because we can make it look like almost anythin
Lone Guldbrandt Tønnesen

Ideas from the thirteen weeks of MOOC « Not Worth Printing - 4 views

  • Search: Not Worth Printing open source, elearning trends, ethics in technology and education About
  • In terms of formal learning, Tony Bates believes that changes can occur within the existing education institutes
  • Martin Weller points to the importance of academic institutes recognizing digital scholarship, moving away from the inefficient and costly publishing model and moving towards online publications that better promotes interdisciplinary endeavours
  • ...8 more annotations...
  • David Wiley and Rory McGreal urge universities to open their content; Wiley further envisions the future of education consisting of learner-generated materials;
  • Building rhizome-like learning networks can foster an environment more conducive to continuous knowledge acquisition and constructio
  • This does not match the way our brain process information, as we are better at learning incremental chunks of knowledge in a meaningful and authentic context.
  • Dave Cormie
  • Clark Quinn’s idea of slow learning
  • Here Jon Dron reminds us that tools themselves are not technology
  • Dron’s definitions of hard vs soft technologies relevant to both formal and informal learning, further help us to undertand that soft technologies are perhaps more useful in building learning and support communities and equipping learners with the ability to  navigate information in networks, thereby promoting lifelong learning.
  • The learners will end up leading the way, as they should.
Lone Guldbrandt Tønnesen

mooc - rheingold - 3 views

  • It isn’t possible or practical to try to control the quality of content and conversation that people publish online -- if it had been possible, there would be no web, no YouTube, no Wikipedia today -- but I contend that it is possible to increase the proportion of the population who know something about what they are doing when they consume or create digital culture.
  • Although the word “literacy” traditionally refers to the skill of encoding and decoding messages or programs in some medium, the kind of literacy required in a world of mass collaboration necessarily involves a social element as well as a personal skill
  • Social media literacies combine the skills of coding and decoding digital media with the social skills necessarily to use online tools in concert with others
  • ...1 more annotation...
  • We will look at facets of each of these five literacies and engage in learning activities that can both increase our own competencies and provide public useful public goods
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