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Barbara Lindsey

American Express - Hong Kong - Personal Information Collection Statement - 0 views

  • When you give us information about you we are collecting it in order to review your application for products and services this applies to both existing and potentially new customers. We will use information for operation of your account, provision of products and services and for marketing purposes. Please note that if you do not provide the information required in the mandatory fields we may be unable to process your request. Security
  • In all other cases we will not disclose customer information unless we have previously informed the customer, have been authorized by the customer, or are required to do so by law or other regulatory authority. In particular, when a court order or subpoena requires us to disclose information, we notify the customer promptly to provide an opportunity to exercise his or her legal rights. The only exceptions to this policy are when court order or law prohibits us from notifying the customer, or in cases in which fraud and/or criminal activity is suspected. Further, we will not use medical information for marketing purposes or to provide credit.
  • Please do keep in mind that if you take advantage of an offer from an American Express business partner and become their customer, they may independently wish to send offers to you. In this case, you will need to inform them separately if you do not wish to receive future offers from them.
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  • We do share information about you within the American Express Group of Companies so we can provide you with products and services and bring you information about other American Express products and services. All American Express Companies comply with The American Express Privacy Principles.  
Barbara Lindsey

The iPad and Information's Third Age | Open Culture - 1 views

  • Though the university initially fought its introduction, the printed textbook provided broad access to information that, for the first time, promised the possibility of universal education.
  • A barrier of symbolic complexity emerged between people and information for one of the first times in history. And the superabundance of information created a world that by necessity had to be divided into smaller and smaller subsections for organizational reasons. As people began to feel increasingly disconnected from information and as its relational and contextual aspects began to fade, we saw a transformation in teaching and learning. Hands-on apprenticeships and small teacher/student cohorts began to disappear, replaced by teachers delivering carefully parsed and categorized information to “standardized” students, all while trapped in classrooms isolated from the world in order to limit “distraction.”
  • It has become virtually impossible for a person to assess the quality, relevance, and usefulness of more information than she can process in a lifetime. And this is a problem that will only get worse as information continues to proliferate. But a quick look at popular technologies shows some of the ways people are working to address it. Social networking leverages selected communities to recommend books, restaurants, and movies. Context- and location-aware applications help focus search results and eliminate extraneous complexity. And customization and personalization allow people to create informational spaces that limit the intrusion of informational chaos.
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  • Any genuine solution will have to address the problems of the current informational age — and it will need to continue answering the problems of the previous informational ages. From what I’ve seen, Apple’s new iPad is the first device to promise this (even if that promise isn’t yet fully realized). That is what makes it such a compelling candidate to be the first platform that serves true digital books.
  • Books that are static, don’t allow customization, don’t connect with other information on the device, and don’t leverage social connectivity aren’t the future, no matter how sophisticated the device that serves them. They’re simply the past repackaged.
  • Given what I’ve seen of its features and approaches, the iPad shows the promise to engender such a change, though much development will have to take place for it to realize its potential. Nonetheless, the innovation it offers in three critical areas is especially compelling: accessibility, participation, and customization. Central to all three of these is the fact that the iPad is not a single-use, standalone device; it’s a powerful, converged platform with robust development tools and capabilities.
  • I would argue that the key accessibility feature of the iPad is its apparent “lack” of an interface (a feature Apple’s marketing is working hard to underscore). Unlike all of the other similar devices (including those running Apple’s standard OS), which require users to learn to negotiate complex symbolic interfaces — files, folders, hierarchies, toolbars, navigational buttons — the iPad limits or even eliminates these in favor of touch, an approach intuitive even to those too young to read.
  • The collapsing of symbolic complexity into the simplicity of touch enables participation by new groups of people — even relative technophobes — and this mirrors the increased accessibility offered by Gutenberg’s revolution while lowering the barrier characteristic of most recent technologies.
  • For those interested in culture and creativity, this is an exciting prospect.
  • In Gutenberg’s case, the increase in accessibility led to a dramatic increase in cultural participation, and this is another way the iPad differentiates itself from many of its peer devices.
  • Put in the hands of readers and students, the robust capabilities of its new version of iWork, combined with access to the complete range of apps on the App Store and an entirely new generation of native apps, the iPad could provide access to professional-quality creative tools that empower a new set of participants
  • the iPad’s blend of social and contextual technologies and its ease of customization offer useful ways for the device to help users sort, focus, and control the information around them. The iPad’s networking capabilities, linked to a new generation of digital books, could help people discover both new texts and the members of a discussion group who could help them process what they’re reading. Combined with a portable format that allows readers to carry their books into various contexts, this could be incredibly powerful. One imagines, for example, a field-guide to forests linked to live discussion partners, allowing a reader to discover the forest in a new and engaging way that offers the advantages of both the first and second informational ages. Yet this sort of capability also reveals an area where the iPad falls surprisingly short: its lack of a camera (let alone two, one forward and one backward facing) means the device has limited capabilities for interesting emerging technologies like augmented reality — a staple of recently-developed apps. In terms of future eBooks, a volume of Hemingway that could alert readers that they were only two blocks from the café Les Deux Magots, for example, and offer an augmented tour of the place or that could direct the reader of Brontë to a moor would be transformational indeed. Perhaps we’ll see such capabilities on iPad 2.0.
Barbara Lindsey

AOL's tech chief quits after breach of privacy - USATODAY.com - 0 views

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    The data had no names attached. But Pam Dixon, executive director of the World Privacy Forum, says she was able to easily identify two AOL customers by looking through search terms.
Barbara Lindsey

Welcome to about.me - 0 views

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    A CUSTOM PROFILE & PERSONAL ANALYTICS DASHBOARD
Barbara Lindsey

Google lets you custom-print millions of books - CNN.com - 0 views

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    Thx 2 Russel Tarr on Twitter. Another article critiqued Google's sloppy cataloging system and its impact on using and finding these books for research and education.
Barbara Lindsey

Microsoft, Google eye Arabic web growth potential | Reuters - 0 views

  • "One of our biggest missions is to enable Arabic users to find the right tools to enrich Arabic content," Ghonim said. "It would be great to see more e-commerce in the region, more publishers, more news sites. We are committed to help them."
  • Ghonim said Arabic speakers have historically engaged in poorly organized and difficult to archive forums, citing a message board used by 400,000 teachers in Saudi Arabia.Both Google and Microsoft place Arabic in their top ten languages in need of prioritized attention.
  • "The next few million Egyptian internet users will be people who don't really speak English," Ghonim said.
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  • "Think of the guy running a very small one-stop shop in (Nile delta industrial city) Mahalla," Ghonim said. "You should facilitate for him a complete experience in Arabic, from the way he registers his domain to finding a hosting company to communicating to his customers."
  • Mundie said the Arab world was well-placed to skip PC-dominated use and go straight to mobile internet.
Barbara Lindsey

Mobile Learning Environments (EDUCAUSE Quarterly) | EDUCAUSE - 0 views

  • There are now more than 4.6 billion mobile phones in the world, according to the International Telecommunication Union (ITU)'s February 2010 press release. This means that mobile has taken the place of FM radio as the most ubiquitous communications technology on the planet.1
  • Mobile Phone Network model Centralized Peer-to-peer Content customization Uniform Personalized to context Information distribution Just-in-case Just-in-time Role of audience Consumer Equal p
  • articipant Reliability qualifier Authority Social capital Governance Institutional Relational
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  • I've seen that the introduction of new technology can provide a reason to rethink a course from the ground up and reassess its core educational goals. Often the greatest educational benefits seem to come from this process, not just the technology that encouraged it.
  • It might be safe to say that each time a new medium appears, no matter how different it is from the last, the normal reaction of first adopters is to use it as a new package for existing content.
  • I've seen that the introduction of new technology can provide a reason to rethink a course from the ground up and reassess its core educational goals.
  • It can be easy to forget that we human beings are more than brains connected to an apparatus that moves us around in space. Instead, we belong to communities, we live in neighborhoods, we have local culture and events. Inquiry into these real things led to many of the fields we now call science, literature, mathematics, and history. Why then do we isolate instruction in those fields to a classroom, instead of deriving instruction from the environment from which these subjects originated?
  • place-based learning.2 One such example, Dow Day, is a mobile documentary that relives the student protests of 1967 in Madison, Wisconsin, against the Dow Chemical Company. In this activity, location-aware handheld devices add an augmented layer of history to a walk through the campus, placing the student in the role of a news reporter. By monitoring the device's GPS, Dow Day creates the illusion of additional characters standing in physical space and facilitates simulated conversations with these historical entities. In addition, when players walk to predefined media locations, they trigger video footage showing the physical scene from 40 years ago, effectively superimposing the marchers and police onto the current landscape (see Figure 2).
  • Situated theories of cognition claim that knowing and doing are inherently linked.4
  • One such example is a mobile game called Mentira, produced at the University of New Mexico. The game is designed to teach an introductory college Spanish course in ways that are contextually sound for language learning. In the first unit, students play a mystery game on handheld devices in class, taking on a role and a goal within a story told completely in Spanish. In the second part, the class moves outside to a local Spanish-speaking neighborhood where they continue the story while interacting with physical and virtual Spanish speakers in real places (see Figure 3).
  • With Mentira, students learn Spanish outside the classroom through narrative and interaction with members of a Spanish-speaking neighborhood, re-situating language in practice.
  • Identifying the disconnect, a small team from the Animal Science and the Academic Technology departments at UW–Madison are working on a prototype for hobbyist birdwatchers. WeBIRD aims to crowdsource ornithology research by providing a tool for hobbyist practitioners. A birder will record the audio of a bird heard out in the field and have the system identify the species while logging the sighting's location, current weather, time of day, and date to a central database. This data can then be used for anything from formal research of migration patterns over time to individual questions such as, "Where am I most likely to see a cardinal this time of year?" The potential for location-aware, casual gaming structures such as birder achievement badges and leader boards are also being investigated in order to provide additional social play motives for participation.
  • Learning happens anywhere someone has questions and the means to explore answers. As ubiquitous access to information continues to shift toward personal mobile devices, more and more of the learning that takes place may be happening outside of the classroom and in the context of a backyard conversation, a walk through campus, or a Taquería in New Mexico.
Barbara Lindsey

Toolbox or Trap? Course Management Systems and Pedagogy (EDUCAUSE Quarterly) | EDUCAUSE... - 0 views

  • Campuses have adopted these programs on a wide scale, yet few studies have looked at how the design and use of a CMS affects pedagogy, and instructors rarely discuss how a CMS affects their teaching.
    • Barbara Lindsey
       
      Discuss in class.
  • Decisions about which learning software to use on campus are often made by campus technologists and administrators rather than faculty.
    • Barbara Lindsey
       
      Not surprisingly, this also is the case at UCONN.
  • The construction of the course syllabus, a natural beginning point for most instructors, is a good example of how the software imposes limitations. When they first enter a CMS, new instructors see the default buttons of the course menu, which are based on type rather than purpose: Announcements, Course Content, Discussion, even Syllabus.
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  • The default organization of the CMS forces them to think in terms of content types instead, breaking the natural structure of the semester.
  • In addition to a counterintuitive organizational scheme, integrated commercial systems have a built-in pedagogy, evident in the easiest-to-use, most accessible features. The focus on presentation (written documents to read), complemented by basic "discussion" input from students, is based on traditional lecture, review, and test pedagogy. This orientation is very different from the development of knowledge through a constructivist, learner-centered, or inquiry-based approach, which a number of faculty use successfully in the classroom.
  • But at the novice level, the system simply does not encourage such customization. To be able to modify the CMS to employ alternative teaching methods, instructors must have a well-developed sense of what is possible in the online environment before approaching the course design process—a perspective many do not have when they first start teaching online. When presented with a list of options, most people typically choose one option rather than question the list itself.
  • Most faculty do not use the web either extensively or intensively in their own work, and those who aren't "into technology" will quickly find themselves overwhelmed by a CMS.
  • Even after several years of working with a CMS, faculty requests for help tend to focus on what the technology can do rather than how their teaching and learning goals can be achieved.
    • Barbara Lindsey
       
      Important distinction.
  • An instructor seeking an easy way to post word-processed documents, enter grades, receive papers and assignments through a digital dropbox, and run a traditional threaded discussion board will tend to show great satisfaction with using a CMS.4 Those who tax the system more, and use the most complex features, show lower levels of satisfaction. In addition, after spending months creating material and quizzes in a proprietary system, faculty rightly panic at the idea of "moving everything" to another system. The big systems simply do not allow for easy export, and no one wants to do all that work over again. It is much easier to simply declare satisfaction with things the way they are.
  • There are, of course, alternatives to these hampering systems, and you don't have to be a programmer or Internet expert to use them.
  • Web 2.0 applications that encourage social construction of knowledge (Wikispaces, BubbleShare, Ning) are freely available and may provide more creative instructors with better options than any LMS currently available. Such programs make possible the creation of one's own mini-CMS, cobbled together out of programs that fit with the instructor's methodology. In these cases, pedagogy comes first—the tools can be used to build the courses we want to teach.
  •  
    Discuss this in class
Barbara Lindsey

Web 2.0: What does it constitute? | 11 Feb 2008 | ComputerWeekly.com - 0 views

  • O'Reilly identified Google as "the standard bearer for Web 2.0", and pointed out the differences between it and predecessors such as Netscape, which tried to adapt for the web the business model established by Microsoft and other PC software suppliers.
  • Google "began its life as a native web application, never sold or packaged, but delivered as a service, with customers paying, directly or indirectly.
  • perpetual beta, as O'Reilly later dubbed it
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  • Perhaps the most important breakthrough was Google's willingness to relinquish control of the user-end of the transaction, instead of trying to lock them in with proprietary technology and restrictive licensing
  • O'Reilly took a second Web 2.0 principle from Peer-to-Peer pioneer BitTorrent, which works by completely decentralising the delivery of files, with every client also functioning as a server. The more popular a file, is, the faster it can be served, since there are more users providing bandwidth and fragments of the file. Thus, "the service automatically gets better the more people use it".
  • Taking another model from open source, users are treated as "co-developers", actively encouraged to contribute, and monitored in real time to see what they are using, and how they are using it.
  • "Until Web 2.0 the learning curve to creating websites was quite high, complex, and a definite barrier to entry," says the third of our triumvirate of Tims, Tim Bray, director of Web Technologies at Sun Microsystems.
  • Web 2.0 takes some of its philosophical underpinning from James Surowiecki's book The Wisdom of Crowds, which asserts that the aggregated insights of large groups of diverse people can provide better answers and innovations than individual experts.
  • In practice, even fewer than 1% of people may be making a useful contribution - but these may be the most energetic and able members of a very large community. In 2006 1,000 people, just 0.003% of its users, contributed around two-thirds of Wikipedia's edits.
  • Ajax speeds up response times by enabling just part of a page to be updated, instead of downloading a whole new page. Nielsen's objections include that this breaks the "back" button - the ability to get back to where you've been, which Nielsen says is the second most used feature in Web navigation.
  • "Everybody who has a Web browser has got that platform," says Berners-Lee, in a podcast available on IBM's developerWorks site. "So the nice thing about it is when you do code up an Ajax implementation, other people can take it and play with it."
  • Web 2.0 is a step on the way to the Semantic Web, a long-standing W3C initiative to create a standards-based framework able to understand the links between data which is related in the real world, and follow that data wherever it resides, regardless of application and database boundaries.
  • The problem with Web 2.0, Pemberton says, is that it "partitions the web into a number of topical sub-webs, and locks you in, thereby reducing the value of the network as a whole."
  • How do you decide which social networking site to join? he asks. "Do you join several and repeat the work?" With the Semantic Web's Resource Description Framework (RDF), you won't need to sign up to separate networks, and can keep ownership of your data. "You could describe it as a CSS for meaning: it allows you to add a small layer of markup to your page that adds machine-readable semantics."
  • The problems with Web 2.0 lock-in which Pemberton describes, were illustrated when a prominent member of the active 1%, Robert Scoble, ran a routine called Plaxo to try to extract details of his 5,000 contacts from Facebook, in breach of the site's terms of use, and had his account disabled. Although he has apparently had his account reinstated, the furore has made the issue of Web 2.0 data ownership and portability fiercely topical.
  • when Google announced its OpenSocial set of APIs, which will enable developers to create portable applications and bridges between social networking websites, Facebook was not among those taking part. Four years after O'Reilly attempted to define Web 2.0, Google, it seems, remains the standard-bearer, while others are forgetting what it was supposed to be about.
Barbara Lindsey

The Cape Town Open Education Declaration - 0 views

  • hey are also planting the seeds of a new pedagogy where educators and learners create, shape and evolve knowledge together, deepening their skills and understanding as they go.
  • It is built on the belief that everyone should have the freedom to use, customize, improve and redistribute educational resources without constraint.
  • They contribute to making education more accessible, especially where money for learning materials is scarce. They also nourish the kind of participatory culture of learning, creating, sharing and cooperation that rapidly changing knowledge societies need
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  • open education is not limited to just open educational resources. It also draws upon open technologies that facilitate collaborative, flexible learning and the open sharing of teaching practices that empower educators to benefit from the best ideas of their colleagues. It may also grow to include new approaches to assessment, accreditation and collaborative learning. Understanding and embracing innovations like these is critical to the long term vision of this movement.
  • Most educators remain unaware of the growing pool of open educational resources.
  • he majority of the world does not yet have access to the computers and networks that are integral to most current open education efforts.
  • ree strategies to increase the reach and impact of open educational resources
  • we encourage educators and learners to actively participate in the emerging open education movement.
  • Creating and using open resources should be considered integral to education and should be supported and rewarded accordingly.
  • elease their resources openly.
  • Resources should be published in formats that facilitate both use and editing, and that accommodate a diversity of technical platforms. Whenever possible, they should also be available in formats that are accessible to people with disabilities and people who do not yet have access to the Internet.
  • governments, school boards, colleges and universities should make open education a high priority. Ideally, taxpayer-funded educational resources should be open educational resources.
  • These strategies represent more than just the right thing to do. They constitute a wise investment in teaching and learning for the 21st century. They will make it possible to redirect funds from expensive textbooks towards better learning. They will help teachers excel in their work and provide new opportunities for visibility and global impact. They will accelerate innovation in teaching. They will give more control over learning to the learners themselves.
  • We have a chance to nurture a new generation of learners who engage with open educational materials, are empowered by their learning and share their new knowledge and insights with others.
  • we have an opportunity to dramatically improve the lives of hundreds of millions of people around the world through freely available, high-quality, locally relevant educational and learning opportunities.
Barbara Lindsey

Dr. Mashup; or, Why Educators Should Learn to Stop Worrying and Love the Remix | EDUCAU... - 0 views

  • A classroom portal that presents automatically updated syndicated resources from the campus library, news sources, student events, weblogs, and podcasts and that was built quickly using free tools.
  • Increasingly, it's not just works of art that are appropriated and remixed but the functionalities of online applications as well.
  • mashups involve the reuse, or remixing, of works of art, of content, and/or of data for purposes that usually were not intended or even imagined by the original creators.
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  • hat, exactly, constitutes a valid, original work? What are the implications for how we assess and reward creativity? Can a college or university tap the same sources of innovative talent and energy as Google or Flickr? What are the risks of permitting or opening up to this activity?
    • Barbara Lindsey
       
      Good discussion point
  • Remix is the reworking or adaptation of an existing work. The remix may be subtle, or it may completely redefine how the work comes across. It may add elements from other works, but generally efforts are focused on creating an alternate version of the original. A mashup, on the other hand, involves the combination of two or more works that may be very different from one another. In this article, I will apply these terms both to content remixes and mashups, which originated as a music form but now could describe the mixing of any number of digital media sources, and to data mashups, which combine the data and functionalities of two or more Web applications.
  • Harper's article "The Ecstasy of Influence," the novelist Jonathan Lethem imaginatively reviews the history of appropriation and recasts it as essential to the act of creation.3
  • Lethem's article is a must-read for anyone with an interest in the history of ideas, creativity, and intellectual property. It brilliantly synthesizes multiple disciplines and perspectives into a wonderfully readable and compelling argument. It is also, as the subtitle of his article acknowledges, "a plagiarism." Virtually every passage is a direct lift from another source, as the author explains in his "Key," which gives the source for every line he "stole, warped, and cobbled together." (He also revised "nearly every sentence" at least slightly.) Lethem's ideas noted in the paragraph above were appropriated from Siva Vaidhyanathan, Craig Baldwin, Richard Posner, and George L. Dillon.
  • Reading Walter Benjamin's highly influential 1936 essay "The Work of Art in the Age of Mechanical Reproduction,"4 it's clear that the profound effects of reproductive technology were obvious at that time. As Gould argued in 1964 (influenced by theorists such as Marshall McLuhan5), changes in how art is produced, distributed, and consumed in the electronic age have deep effects on the character of the art itself.
  • Yet the technology developments of the past century have clearly corresponded with a new attitude toward the "aura" associated with a work of invention and with more aggressive attitudes toward appropriation. It's no mere coincidence that the rise of modernist genres using collage techniques and more fragmented structures accompanied the emergence of photography and audio recording.
  • Educational technologists may wonder if "remix" or "content mashup" are just hipper-sounding versions of the learning objects vision that has absorbed so much energy from so many talented people—with mostly disappointing results.
  • The question is, why should a culture of remix take hold when the learning object economy never did?
  • when most learning object repositories were floundering, resource-sharing services such as del.icio.us and Flickr were enjoying phenomenal growth, with their user communities eagerly contributing heaps of useful metadata via simple folksonomy-oriented tagging systems.
  • the standards/practices relationship implicit in the learning objects model has been reversed. With only the noblest of intentions, proponents of learning objects (and I was one of them) went at the problem of promoting reuse by establishing an arduous and complex set of interoperability standards and then working to persuade others to adopt those standards. Educators were asked to take on complex and ill-defined tasks in exchange for an uncertain payoff. Not surprisingly, almost all of them passed.
  • Discoverable Resources
  • Educators might justifiably argue that their materials are more authoritative, reliable, and instructionally sound than those found on the wider Web, but those materials are effectively rendered invisible and inaccessible if they are locked inside course management systems.
  • It's a dirty but open secret that many courses in private environments use copyrighted third-party materials in a way that pushes the limits of fair use—third-party IP is a big reason why many courses cannot easily be made open.
  • The potential payoff for using open and discoverable resources, open and transparent licensing, and open and remixable formats is huge: more reuse means that more dynamic content is being produced more economically, even if the reuse happens only within an organization. And when remixing happens in a social context on the open web, people learn from each other's process.
  • Part of making a resource reusable involves making the right choices for file formats.
  • To facilitate the remixing of materials, educators may want to consider making the source files that were used to create a piece of multimedia available along with the finished result.
  • In addition to choosing the right file format and perhaps offering the original sources, another issue to consider when publishing content online is the critical question: "Is there an RSS feed available?" If so, conversion tools such as Feed2JS (http://www.feed2JS.org) allow for the republication of RSS-ified content in any HTML Web environment, including a course management system, simply by copying and pasting a few lines of JavaScript code. When an original source syndicated with RSS is updated, that update is automatically rendered anywhere it has been republished.
  • Jack Schofield
  • Guardian Unlimited
  • "An API provides an interface and a set of rules that make it much easier to extract data from a website. It's a bit like a record company releasing the vocals, guitars and drums as separate tracks, so you would not have to use digital processing to extract the parts you wanted."1
  • What's new about mashed-up application development? In a sense, the factors that have promoted this approach are the same ones that have changed so much else about Web culture in recent years. Essential hardware and software has gotten more powerful and for the most part cheaper, while access to high-speed connectivity and the enhanced quality of online applications like Google Docs have improved to the point that Tim O'Reilly and others can talk of "the emergent Internet operating system."15 The growth of user-centered technologies such as blogs have fostered a DIY ("do it yourself") culture that increasingly sees online interaction as something that can be personalized and adapted on the individual level. As described earlier, light syndication and service models such as RSS have made it easier and faster than ever to create simple integrations of diverse media types. David Berlind, executive editor of ZDNet, explains: "With mashups, fewer technical skills are needed to become a developer than ever. Not only that, the simplest ones can be done in 10 or 15 minutes. Before, you had to be a pretty decent code jockey with languages like C++ or Visual Basic to turn your creativity into innovation. With mashups, much the same way blogging systems put Web publishing into the hands of millions of ordinary non-technical people, the barrier to developing applications and turning creativity into innovation is so low that there's a vacuum into which an entire new class of developers will be sucked."16
  • The ability to "clone" other users' mashups is especially exciting: a newcomer does not need to spend time learning how to structure the data flows but can simply copy an existing framework that looks useful and then make minor modifications to customize the result.19
    • Barbara Lindsey
       
      This is the idea behind the MIT repository--remixing content to suit local needs.
  • As with content remixing, open access to materials is not just a matter of some charitable impulse to share knowledge with the world; it is a core requirement for participating in some of the most exciting and innovative activity on the Web.
  • "My Maps" functionality
  • For those still wondering what the value proposition is for offering an open API, Google's development process offers a compelling example of the potential rewards.
    • Barbara Lindsey
       
      Wikinomics
  • Elsewhere, it is difficult to point to significant activity suggesting that the mashup ethos is taking hold in academia the way it is on the wider Web.
  • Yet for the most part, the notion of the data mashup and the required openness is not even a consideration in discussions of technology strategy in higher educational institutions. "Data integration" across campus systems is something that is handled by highly skilled professionals at highly skilled prices.
  • Revealing how a more adventurous and inclusive online development strategy might look on campus, Raymond Yee recently posted a comprehensive proposal for his university (UC Berkeley), in which he outlined a "technology platform" not unlike the one employed by Amazon.com (http://aws.amazon.com/)—resources and access that would be invaluable for the institution's programmers as well as for outside interests to build complementary services.
  • All too often, college and university administrators react to this type of innovation with suspicion and outright hostility rather than cooperation.
  • those of us in higher education who observe the successful practices in the wider Web world have an obligation to consider and discuss how we might apply these lessons in our own contexts. We might ask if the content we presently lock down could be made public with a license specifying reasonable terms for reuse. When choosing a content management system, we might consider how well it supports RSS syndication. In an excellent article in the March/April 2007 issue of EDUCAUSE Review, Joanne Berg, Lori Berquam, and Kathy Christoph listed a number of campus activities that could benefit from engaging social networking technologies.26
  • What might happen if we allow our campus innovators to integrate their practices in these areas in the same way that social networking application developers are already integrating theirs? What is the mission-critical data we cannot expose, and what can we expose with minimal risk? And if the notion of making data public seems too radical a step, can APIs be exposed to selected audiences, such as on-campus developers or consortia partners?
Barbara Lindsey

Convenience, Communications, and Control: How Students Use Technology | Resources | EDU... - 0 views

  • They are characterized as preferring teamwork, experiential activities, and the use of technology
  • Doing is more important than knowing, and learning is accomplished through trial and error as opposed to a logical and rule-based approach.2 Similarly, Paul Hagner found that these students not only possess the skills necessary to use these new communication forms, but there is an ever increasing expectation on their part that these new communication paths be used
  • Much of the work to date, while interesting and compelling, is intuitive and largely based on qualitative data and observation.
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  • There is an inexorable trend among college students to universal ownership, mobility, and access to technology.
  • Students were asked about the applications they used on their electronic devices. They reported that they use technology first for educational purposes, followed by communication.
    • Barbara Lindsey
       
      All self-reported. Would have been powerful if could have actually tracked a representative sample and compared actual use with reported use.
  • presentation software was driven primarily by the requirements of the students' major and the curriculum.
  • Communications and entertainment are very much related to gender and age.
  • From student interviews, a picture emerged of student technology use driven by the demands of the major and the classes that students take. Seniors reported spending more time overall on a computer than do freshmen, and they reported greater use of a computer at a place of employment. Seniors spent more hours on the computer each week in support of their educational activities and also more time on more advanced applications—spreadsheets, presentations, and graphics.
  • Confirming what parents suspect, students with the lowest grade point averages (GPAs) spend significantly more time playing computer games; students with the highest GPAs spend more hours weekly using the computer in support of classroom activities. At the University of Minnesota, Crookston, students spent the most hours on the computer in support of classroom activities. This likely reflects the deliberate design of the curriculum to use a laptop extensively. In summary, the curriculum's technology requirements are major motivators for students to learn to use specialized software.
  • The interviews indicated that students are skilled with basic office suite applications but tend to know just enough technology functionality to accomplish their work; they have less in-depth application knowledge or problem solving skills.
  • According to McEuen, student technology skills can be likened to writing skills: Students come to college knowing how to write, but they are not developed writers. The analogy holds true for information technology, and McEuen suggested that colleges and universities approach information technology in the same way they approach writing.6
  • he major requires the development of higher-level skill sets with particular applications.
    • Barbara Lindsey
       
      Not really quantitative--self-reported data back by selected qualitative interviews
  • The comparative literature on student IT skill self-assessment suggests that students overrate their skills; freshmen overrate their skills more than seniors, and men overrate their skills more than women.7 Our data supports these conclusions. Judy Doherty, director of the Student Technologies Resource Group at Colgate University, remarked on student skill assessment, "Students state in their job applications that they are good if not very good, but when tested their skills are average to poor, and they need a lot of training."8
  • Mary Jane Smetanka of the Minneapolis–St. Paul Star Tribune reported that some students are so conditioned by punch-a-button problem solving on computers that they approach problems with a scattershot impulsiveness instead of methodically working them through. In turn, this leads to problem-solving difficulties.
  • We expected to find that the Net Generation student prefers classes that use technology. What we found instead is a bell curve with a preference for a moderate use of technology in the classroom (see Figure 1).
    • Barbara Lindsey
       
      More information needs to be given to find out why--may be tool and method not engaging.
  • It is not surprising that if technology is used well by the instructor, students will come to appreciate its benefits.
  • A student's major was also an important predictor of preferences for technology in the classroom (see Table 3), with engineering students having the highest preference for technology in the classroom (67.8 percent), followed by business students (64.3 percent).
  • Humanities 7.7% 47.9% 40.2
  • he highest scores were given to improved communications, followed by factors related to the management of classroom activities. Lower impact activities had to do with comprehension of classroom materials (complex concepts).
  • I spend more time engaged in course activities in those courses that require me to use technology.
  • The instructors' use of technology in my classes has increased my interest in the subject matter. 3.25 Classes that use information technology are more likely to focus on real-world tasks and examples.
  • Interestingly, students do not feel that use of information technology in classes greatly increases the amount of time engaged with course activities (3.22 mean).12 This is in direct contrast to faculty perceptions reported in an earlier study, where 65 percent of faculty reported they perceived that students spend more time engaged with course materials
  • Only 12.7 percent said the most valuable benefit was improved learning; 3.7 percent perceived no benefit whatsoever. Note that students could only select one response, so more than 12.7 percent may have felt learning was improved, but it was not ranked highest. These findings compare favorably with a study done by Douglas Havelka at the University of Miami in Oxford, Ohio, who identified the top six benefits of the current implementation of IT as improving work efficiency, affecting the way people behave, improving communications, making life more convenient, saving time, and improving learning ability.14
    • Barbara Lindsey
       
      Would have been good to know exactly what kinds of technologies were meant here.
  • Our data suggest that we are at best at the cusp of technologies being employed to improve learning.
  • The interactive features least used by faculty were the features that students indicated contributed the most to their learning.
  • he students in this study called our attention to performance by noting an uneven diffusion of innovation using this technology. This may be due, in part, to faculty or student skill. It may also be due to a lack of institutional recognition of innovation, especially as the successful use of course management systems affects or does not affect faculty tenure, promotion, and merit decisions
  • we found that many of the students most skilled in the use of technology had mixed feelings about technology in the classroom.
  • What we found was that many necessary skills had to be learned at the college or university and that the motivation for doing so was very much tied to the requirements of the curriculum. Similarly, the students in our survey had not gained the necessary skills to use technology in support of academic work outside the classroom. We found a significant need for further training in the use of information technology in support of learning and problem-solving skills.
  • Course management systems were used most by both faculty and students for communication of information and administrative activities and much less in support of learning.
  • In 1997, Michael Hooker proclaimed, "higher education is on the brink of a revolution." Hooker went on to note that two of the greatest challenges our institutions face are those of "harnessing the power of digital technology and responding to the information revolution."18 Hooker and many others, however, did not anticipate the likelihood that higher education's learning revolution would be a journey of a thousand miles rather than a discrete event. Indeed, a study of learning's last great revolution—the invention of moveable type—reveals, too, a revolution conducted over centuries leading to the emergence of a publishing industry, intellectual property rights law, the augmentation of customized lectures with textbooks, and so forth.
  • Both the ECAR study on faculty use of course management systems and this study of student experiences with information technology concluded that, while information technology is indeed making important inroads into classroom and learning activities, to date the effects are largely in the convenience of postsecondary teaching and learning and do not yet constitute a "learning revolution." This should not surprise us. The invention of moveable type enhanced, nearly immediately, access to published information and reduced the time needed to produce new publications. This invention did not itself change literacy levels, teaching styles, learning styles, or other key markers of a learning revolution. These changes, while catalyzed by the new technology, depended on slower social changes to institutions. I believe that is what we are witnessing in higher education today.
  • The institutions chosen represent a nonrepresentative mix of the different types of higher education institution in the United States, in terms of Carnegie class as well as location, source of funding, and levels of technology emphasis. Note, however, that we consider our findings to be instructive rather than conclusive of student experiences at different types of Carnegie institutions.
  • Qualitative data were collected by means of focus groups and individual interviews. We interviewed undergraduate students, administrators, and individuals identified as experts in the field of student technology use in the classroom. Student focus groups and interviews of administrators were conducted at six of the thirteen schools participating in the study.
Barbara Lindsey

Blaise Aguera y Arcas demos augmented-reality maps | Video on TED.com - 0 views

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    Microsoft's work with online mapping. Includes widgets like real-time mapping to hyperlocal blogs associated with places mentioned in blogs. Also demos live video integration on 4G network.
Barbara Lindsey

Can Higher Education Be Fixed? The Innovative University - Forbes - 0 views

  • Harvard has invested heavily in a system of residential housing and high-quality tutoring.  This means that even students who pay the tuition sticker price aren’t covering the full cost of their education.  Thus, growing the size of its “customer” base, which is how businesses achieve scale economies and greater profitability, is financially problematic for Harvard and for other universities with similar operating models. 
  • What is the purpose of a university as depicted in this book? Is it: A. A university is an institution that provides a degree, which is a credential or screening device for the economy and for society? Or B.  A university is an institution in which people acquire the knowledge they need for a particular job? Or C.  A university is an institution in which people acquire the knowledge they need to be a citizen? Or D.  A university is an experience where you acquire a capacity to be a lifelong learner (because most of the knowledge you acquire will be obsolete within a few years and the jobs of tomorrow will not be the jobs of today)? Or E. Something else?
  • One of the best ways to learn to learn is to be an active learner and a teacher of one’s fellow students in college. This instructional philosophy isn’t yet widespread, but its effectiveness has been proven, and it doesn’t require additional financial investment, only a change in the attitudes of faculty members and students.  Broader adoption seems likely, with time.
    • Barbara Lindsey
       
      Would you agree that this is true for learning to occur? Is this all that is necessary?
  • ...5 more annotations...
  • All three require talented faculty members with scholarly training.  These things are (1) discovering and disseminating new knowledge, (2) preserving the discoveries of the past, and (3) personally mentoring students in ways that allow them to participate in (1) and (2).  Doing these things well takes special training.  It is inherently expensive, because the processes involved are hard to automate or even systematize very much. 
  • Harvard and BYU-Idaho involve their students in teaching one another.  They also have general education courses, created in the last five years, that cut across academic disciplines and engage students in applying principles and theories to real-world problems.  These instructional approaches challenge students to frame inquiries, rather than merely respond to questions posed by their professors.
  • Harvard and other elite institutions are in a paradoxical position.  Their students and alumni are satisfied with their current offerings; in fact, they have a huge surplus of qualified applicants.
  • We’re likely to significant change in the next decade, the net effect of which will be more students served at a lower average cost.  However, the nature of the evolution will differ among institutions.  The elite schools will hybridize their courses not primarily to reduce cost or grow enrollments, but to better serve the rising generation of “digital natives” and to make the most of learning-enhancing computer-adaptive technology.  By contrast, schools without the benefit of high prestige and large endowments will hybridize and offer fully online courses mainly so that they can keep tuition affordable, admit more students, and use the incremental revenues to plug the hole left by rising operating costs and declining state support.  In all cases, students will benefit.
    • Barbara Lindsey
       
      Do you agree that all students will benefit?
  • Most professors will need to spend the majority of their time teaching.  A school that generates the bulk of its revenues via tuition will be able to afford some time for faculty research.  However, that research will need to have relevance to the student learning experience, and it won’t be the driving factor in tenure decisions; teaching quality will be.  Tenure based primarily on publications isn’t a sustainable model for most institutions.
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    Q&A w/authors of Innovative University
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