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Barbara Lindsey

Cognitive Surplus: The Great Spare-Time Revolution | Magazine - 0 views

  • Somehow, watching television became a part-time job for every citizen in the developed world. But once we stop thinking of all that time as individual minutes to be whiled away and start thinking of it as a social asset that can be harnessed, it all looks very different. The buildup of this free time among the world’s educated population—maybe a trillion hours per year—is a new resource. It’s what I refer to as the cognitive surplus.
  • Shirky:
  • Pink: A surplus that post-TV media—blogs, wikis, and Twitter—can tap for other, often more valuable, uses.
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  • he very nature of these new technologies fosters social connection—creating, contributing, sharing. When someone buys a TV, the number of consumers goes up by one, but the number of producers stays the same. When someone buys a computer or mobile phone, the number of consumers and producers both increase by one. This lets ordinary citizens, who’ve previously been locked out, pool their free time for activities they like and care about. So instead of that free time seeping away in front of the television set, the cognitive surplus is going to be poured into everything from goofy enterprises like lolcats, where people stick captions on cat photos, to serious political activities like Ushahidi.com, where people report human rights abuses.
  • All the time that people devote to Wikipedia—which that guy considered weird and wasteful—is really a tiny portion of our worldwide cognitive surplus. It’s less than one-tenth of 1 percent of the total.
  • Our third drive—our intrinsic motivation—can be even more powerful.
  • Shirky: Right—because television crowded out other forms of social engagement. Look, behavior is motivation filtered through opportunity. So if you see people behaving in new ways, like with Wikipedia and whatnot, it’s very unlikely that their motivations have changed, because human nature doesn’t change that quickly. It’s quite likely that the opportunities have changed.
  • When we lacked the ability to efficiently connect and collaborate with each other, that intrinsic motivation often didn’t surface. So we assumed that productive, public activities revolved around extrinsic motivation and external rewards. And we assumed that all rewards were substitutable for all other rewards. So I can pay you more or I can praise you or I can put a Lucite brick on your desk and it all works the same way.
  • When Deci took people who enjoyed solving complicated puzzles for fun and began paying them if they did the puzzles, they no longer wanted to play with those puzzles during their free time. And the science is overwhelming that for creative, conceptual tasks, those if-then rewards rarely work and often do harm.
  • Pink: Yes, often these outside motivators can give us less of what we want and more of what we don’t want. Think about that study of Israeli day care centers, which we both write about. When day care centers fined parents for being late to pick up their kids, the result was that more parents ended up coming late. People no longer felt a social obligation to behave well. Shirky: If you assume bad faith from the average participant, you’ll probably get it. In social media, the design principle that has worked remarkably well is to treat good faith as the normal case and to regard defections from that as essentially a special case to be solved.
  • Shirky: Well, organizations that are founded to solve problems end up committed to the preservation of the problems. So Trentway-Wagar, an Ontario-based bus company, sues PickupPal, an online ride-sharing service, because T-W isn’t committed to solving transportation problems. It’s committed to solving transportation problems with buses. In the media world, Britannica is now committed to making reference works that can’t easily be referred to, and the music industry is now distributing music that can’t easily be shared because new ways of distributing music undermine the old business model.
    • Barbara Lindsey
       
      Does the same hold true for education?
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    Pink and Shirky talk about the shift in technology-enabled human interaction.
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

ID and Other Reflections: 21st Century Workplace Challenges - 0 views

  • Given this situation, it is clear that some of the following are needed to build a workplace that innovates—in other words—a learning organization:
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    Thx 2 Thomas Sauer for posting this link. (An absolutely critical means for me to find information about topics I am passionate about and that promote my deepening understanding of issues key to my ongoing professional development is allowing those with similar passions to curate findings for me and to likewise do the same for others.) "My understanding of today's workplace: Predictable, routine tasks are being either automated or outsourced, or soon will be. Knowledge workers are increasingly taking more responsibility for their work as well as personal growth. Hierarchy is being replaced by wirearchy. Managers are being replaced by leaders, coaches, and facilitators, or will be. The kinds of work being done are those that defy being codified into step-lists or guidelines. The problems are complex-often chaotic-and resist solving using best practices or yore. Ambiguity, complexity and chaos are replacing the predictable, known, and simple. The competitive edge is the ability to problem solve quickly and innovatively. The day of individual stars are past; it is time for collaborative team work. Routine expertise, based on set skills and crystallized intelligence, is being superseded by a need for more adaptive expertise and fluid intelligence." 
Barbara Lindsey

About « CrisisCommons - 0 views

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    CrisisCamp is a global network of hybrid barcamp/hackathon events which bring together people and communities who innovate crisis response and global development through technology tools, expertise and problem solving. Since 2009, CrisisCamp volunteers have created crisis response and learning events in over 10 countries with volunteers of all backgrounds who collaborate in an open environment to aggregate crisis data, develop prototype tools and train people on how to use technology tools and problem solving to aid in crisis response and global development.
Barbara Lindsey

The Tempered Radical: New Opportunities to Connect and Create. . . - 1 views

  • Our students will buy and sell from countries across the world and work for international companies. They will manage employees from other cultures, work with people from different continents in joint ventures and solve global problems such as AIDS and avian flu together.
    • Barbara Lindsey
       
      As language educators, if we don't make use of thes networked environments we are guilty of malfeasance.
  • But what I've grown to realize is that very few people have really embraced the changing nature of a tomorrow that remains poorly defined. We know that the Internet today is far more powerful than ever before---and have heard about companies that are capitalizing on these changes---but we haven't figured out what that means for us. We're jazzed to have access to information and geeked by interactive content providers, but our digital experiences remain somewhat self-centered.
  • the new National Educational Technology Standards for Students being developed by the International Society for Technology in Education. These standards reflect an increased need to teach children how to use the Internet in new and different ways. Perhaps the most challenging---and important standard---for educators to embrace will this one:Communication and Collaboration: Students use digital media and environments to communicate and work collaboratively, including at a distance, to support individual learning and contribute to the learning of others. Students: A. Interact, collaborate and publish with peers, experts or others employing a variety of digital environments and media. B. Communicate information and ideas effectively to multiple audiences using a variety of media and formats. C. Develop cultural understanding and global awareness by engaging with learners of other cultures. D. Contribute to project teams to produce original works or solve problems.Does that sound like the digital work being done in your classroom, school, district or state?!
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  • Together with the Center for International Understanding, North Carolina in the World is developing partnerships based on digital collaboration between schools in North Carolina and nations ranging from China to Mexico. Teachers and students in partnering schools are learning to use Web 2.0 tools like web-conferencing and wikis to connect kids across continents. Not only do these efforts help to build a general knowledge of other countries in our children, they are providing concrete opportunities to use technology in new ways.
Barbara Lindsey

Planning for Neomillennial Learning Styles: Implications for Investments in Technology ... - 0 views

  • Research indicates that each of these media, when designed for education, fosters particular types of interactions that enable—and undercut—various learning styles.
    • Barbara Lindsey
       
      How much do we know about our students' learning styles? How do we know this?
  • Over the next decade, three complementary interfaces will shape how people learn
  • The familiar "world to the desktop." Provides access to distant experts and archives and enables collaborations, mentoring relationships, and virtual communities of practice. This interface is evolving through initiatives such as Internet2. "Alice in Wonderland" multiuser virtual environments (MUVEs). Participants' avatars (self-created digital characters) interact with computer-based agents and digital artifacts in virtual contexts. The initial stages of studies on shared virtual environments are characterized by advances in Internet games and work in virtual reality. Ubiquitous computing. Mobile wireless devices infuse virtual resources as we move through the real world. The early stages of "augmented reality" interfaces are characterized by research on the role of "smart objects" and "intelligent contexts" in learning and doing.
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  • This immersion in virtual environments and augmented realities shapes participants' learning styles beyond what using sophisticated computers and telecommunications has fostered thus far, with multiple implications for higher education.
  • Beyond actional and symbolic immersion, advances in interface technology are now creating virtual environments and augmented realities that induce a psychological sense of sensory and physical immersion.
  • The research on virtual reality Salzman and I conducted on frames of reference found that the exocentric and the egocentric FORs have different strengths for learning. Our studies established that learning ideally involves a "bicentric" perspective alternating between egocentric and exocentric FORs.
    • Barbara Lindsey
       
      Could we make the argument that this is one of the main goals of language programs?
  • But what is so special about the egocentric perspectives and situated learning now enabled by emerging media? After all, each of us lives with an egocentric perspective in the real world and has many opportunities for situated learning without using technology. One attribute that makes mediated immersion different and powerful is the ability to access information resources and psychosocial community distributed across distance and time, broadening and deepening experience. A second important attribute is the ability to create interactions and activities in mediated experience not possible in the real world, such as teleporting within a virtual environment, enabling a distant person to see a real-time image of your local environment, or interacting with a (simulated) chemical spill in a busy public setting. Both of these attributes are actualized in the Alice-in-Wonderland interface.
  • Notion of place is layered/blended/multiple; mobility and nomadicity prevalent among dispersed, fragmented, fluctuating habitats (for example, coffeehouses near campus)
  • Guided social constructivism and situated learning as major forms of pedagogy
  • he defining quality of a learning community is that there is a culture of learning, in which everyone is involved in a collective effort of understanding. There are four characteristics that such a culture must have: (1) diversity of expertise among its members, who are valued for their contributions and given support to develop, (2) a shared objective of continually advancing the collective knowledge and skills, (3) an emphasis on learning how to learn, and (4) mechanisms for sharing what is learned. If a learning community is presented with a problem, then the learning community can bring its collective knowledge to bear on the problem. It is not necessary that each member assimilate everything that the community knows, but each should know who within the community has relevant expertise to address any problem. This is a radical departure from the traditional view of schooling, with its emphasis on individual knowledge and performance, and the expectation that students will acquire the same body of knowledge at the same time.26
  • Peer-developed and peer-rated forms of assessment complement faculty grading, which is often based on individual accomplishment in a team performance context  Assessments provide formative feedback on instructional effectiveness
  • Multipurpose habitats—creating layered/blended/personalizable places rather than specialized locations (such as computer labs)
  • o the extent that some of these ideas about neomillennial learning styles are accurate, campuses that make strategic investments in physical plant, technical infrastructure, and professional development along the dimensions suggested will gain a considerable competitive advantage in both recruiting top students and teaching them effectively.
  • Net Generation learning styles stem primarily from the world-to-the-desktop interface; however, the growing prevalence of interfaces to virtual environments and augmented realities is beginning to foster so-called neomillennial learning styles in users of all ages.
    • Barbara Lindsey
       
      What is the timeline?
  • Immersion is the subjective impression that one is participating in a comprehensive, realistic experience.
  • Inducing a participant's symbolic immersion involves triggering powerful semantic associations via the content of an experience.
    • Barbara Lindsey
       
      Felice's Utopian City
  • The capability of computer interfaces to foster psychological immersion enables technology-intensive educational experiences that draw on a powerful pedagogy: situated learning.
  • The major schools of thought cited are behaviorist theories of learning (presentational instruction), cognitivist theories of learning (tutoring and guided learning by doing), and situated theories of learning (mentoring and apprenticeships in communities of practice).
    • Barbara Lindsey
       
      What kinds of learning environments do you prefer and what kinds do you create for your students?
  • Situated learning requires authentic contexts, activities, and assessment coupled with guidance from expert modeling, mentoring, and "legitimate peripheral participation."8 As an example of legitimate peripheral participation, graduate students work within the laboratories of expert researchers, who model the practice of scholarship. These students interact with experts in research as well as with other members of the research team who understand the complex processes of scholarship to varying degrees. While in these laboratories, students gradually move from novice researchers to more advanced roles, with the skills and expectations for them evolving.
  • Potentially quite powerful, situated learning is much less used for instruction than behaviorist or cognitivist approaches. This is largely because creating tacit, relatively unstructured learning in complex real-world settings is difficult.
    • Barbara Lindsey
       
      Not too far in the future!
  • However, virtual environments and ubiquitous computing can draw on the power of situated learning by creating immersive, extended experiences with problems and contexts similar to the real world.9 In particular, MUVEs and real-world settings augmented with virtual information provide the capability to create problem-solving communities in which participants can gain knowledge and skills through interacting with other participants who have varied levels of skills, enabling legitimate peripheral participation driven by intrinsic sociocultural forces.
  • Situated learning is important in part because of the crucial issue of transfer. Transfer is defined as the application of knowledge learned in one situation to another situation and is demonstrated if instruction on a learning task leads to improved performance on a transfer task, typically a skilled performance in a real-world setting
    • Barbara Lindsey
       
      One of the most difficult skills to master.
  • Moreover, the evolution of an individual's or group's identity is an important type of learning for which simulated experiences situated in virtual environments or augmented realities are well suited. Reflecting on and refining an individual identity is often a significant issue for higher education students of all ages, and learning to evolve group and organizational identity is a crucial skill in enabling innovation and in adapting to shifting contexts.
  • Immersion is important in this process of identity exploration because virtual identity is unfettered by physical attributes such as gender, race, and disabilities.
    • Barbara Lindsey
       
      Don't agree with this. We come to any environment with our own baggage and we do not interact in a neutral social context.
  • Thanks to out-of-game trading of in-game items, Norrath, the virtual setting of the MMOG EverQuest, is the seventy-seventh largest economy in the real world, with a GNP per capita between that of Russia and Bulgaria. One platinum piece, the unit of currency in Norrath, trades on real world exchange markets higher than both the Yen and the Lira (Castronova, 2001).14
  • Multiple teams of students can access the MUVE simultaneously, each individual manipulating an avatar which is "sent back in time" to this virtual environment. Students must collaborate to share the data each team collects. Beyond textual conversation, students can project to each other "snapshots" of their current individual point of view (when someone has discovered an item of general interest) and also can "teleport" to join anyone on their team for joint investigation. Each time a team reenters the world, several months of time have passed in River City, so learners can track the dynamic evolution of local problems.
  • In our research on this educational MUVE based on situated learning, we are studying usability, student motivation, student learning, and classroom implementation issues. The results thus far are promising: All learners are highly motivated, including students typically unengaged in classroom settings. All students build fluency in distributed modes of communication and expression and value using multiple media because each empowers different types of communication, activities, experiences, and expressions. Even typically low-performing students can master complex inquiry skills and sophisticated content. Shifts in the pedagogy within the MUVE alter the pattern of student performance.
    • Barbara Lindsey
       
      Would like to see research on this.
  • Research shows that many participants value this functionality and choose to access the Web page after leaving the museum.
    • Barbara Lindsey
       
      More could be done with this.
  • Participants in these distributed simulations use location-aware handheld computers (with GPS technology), allowing users to physically move throughout a real-world location while collecting place-dependent simulated field data, interviewing virtual characters, and collaboratively investigating simulated scenarios.
    • Barbara Lindsey
       
      Much better
  • Initial research on Environmental Detectives and other AR-based educational simulations demonstrates that this type of immersive, situated learning can effectively engage students in critical thinking about authentic scenarios.
  • Students were most effective in learning and problem-solving when they collectively sought, sieved, and synthesized experiences rather than individually locating and absorbing information from some single best source.
    • Barbara Lindsey
       
      How does this 'fit' learning goals and teaching styles in our program?
  • Rheingold's forecasts draw on lifestyles seen at present among young people who are high-end users of new media
  • Rather than having core identities defined through a primarily local set of roles and relationships, people would express varied aspects of their multifaceted identities through alternate extended experiences in distributed virtual environments and augmented realities.
    • Barbara Lindsey
       
      How is this different from current experiences for individuals working within/across different social groups and boundaries?
  • one-third of U.S. households now have broadband access to the Internet. In the past three years, 14 million U.S. families have linked their computers with wireless home networks. Some 55 percent of Americans now carry cell phones
  • Mitchell's forecasts25 are similar to Rheingold's in many respects. He too envisions largely tribal lifestyles distributed across dispersed, fragmented, fluctuating habitats: electronic nomads wandering among virtual campfires. People's senses and physical agency are extended outward and into the intangible, at considerable cost to individual privacy. Individual identity is continuously reformed via an ever-shifting series of networking with others and with tools. People express themselves through nonlinear, associational webs of representations rather than linear "stories" and co-design services rather than selecting a precustomized variant from a menu of possibilities.
  • More and more, though, people of all ages will have lifestyles involving frequent immersion in both virtual and augmented reality. How might distributed, immersive media be designed specifically for education, and what neomillennial learning styles might they induce?
  • Mediated immersion creates distributed learning communities, which have different strengths and limits than location-bound learning communities confined to classroom settings and centered on the teacher and archival materials.27
  • Neomillenial Versus Millennial Learning Styles
  • Emphasis is placed on implications for strategic investments in physical plant, technology infrastructure, and professional development.
  • such as textbooks linked to course ratings by students)
  • Mirroring": Immersive virtual environments provide replicas of distant physical settings
  • Middleware, interoperability, open content, and open source
  • Finding information Sequential assimilation of linear information stream
  • Student products generally tests or papers Grading centers on individual performance
  • These ideas are admittedly speculative rather than based on detailed evidence and are presented to stimulate reaction and dialogue about these trends.
  • f we accept much of the analysis above
    • Barbara Lindsey
       
      But have they made the case for its educational value?
  • students of all ages with increasingly neomillennial learning styles will be drawn to colleges and universities that have these capabilities. Four implications for investments in professional development also are apparent. Faculty will increasingly need capabilities in:
  • Some of these shifts are controversial for many faculty; all involve "unlearning" almost unconscious beliefs, assumptions, and values about the nature of teaching, learning, and the academy. Professional development that requires unlearning necessitates high levels of emotional/social support in addition to mastering the intellectual/technical dimensions involved. The ideal form for this type of professional development is distributed learning communities so that the learning process is consistent with the knowledge and culture to be acquired. In other words, faculty must themselves experience mediated immersion and develop neomillennial learning styles to continue teaching effectively as the nature of students alters.
  • Differences among individuals are greater than dissimilarities between groups, so students in any age cohort will present a mixture of neomillennial, millennial, and traditional learning styles
  • The technologies discussed are emerging rather than mature, so their final form and influences on users are not fully understood. A substantial number of faculty and administrators will likely dismiss and resist some of the ideas and recommendations presented here.
Barbara Lindsey

The Marketplace of Ideas: Reform and ... - Google Books - 0 views

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    Why do professors all tend to think alike? What makes it so hard for colleges to decide which subjects should be required? Why do teachers and scholars find it so difficult to transcend the limits of their disciplines? Why, in short, are problems that should be easy for universities to solve so intractable? The answer, Louis Menand argues, is that the institutional structure and the educational philosophy of higher education have remained the same for one hundred years, while faculties and student bodies have radically changed and technology has drastically transformed the way people produce and disseminate knowledge. At a time when competition to get into and succeed in college has never been more intense, universities are providing a less-useful education. Sparking a long-overdue debate about the future of American education, The Marketplace of Ideas examines what professors and students--and all the rest of us--might be better off without, while assessing what it is worth saving in our traditional university institutions.
Barbara Lindsey

YouTube - OASIS: Playing Lego with Kinect style camera and interactive projector system - 0 views

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    This is what Cindy Kendall says about this: magine creating a 3D world in your classroom where students interact, where objects can have interactive properties and can be manipulated, and you can interact with each other and those objects; the next 5 years are going to be very interesting! OK, I know this can be done with real objects now if you have them - but - I'm thinking of the scaling potential as well as simulations for objects in areas such as biology, chemistry, physics, etc. Play and problem solving in immersive 3D/4D environments... Kinnect is going to have some awesome classroom applications, and when it goes 3D...
Barbara Lindsey

Stop Chasing High-Tech Cheaters | Inside Higher Ed - 0 views

  • It has long been academe's dirty little secret that bad instructors and bad assignments create cheating.
  • "In today's information age, where a body of information in all but the narrowest of fields is beyond anyone's ability to master, why aren't colleges teaching students how to research, organize and evaluate the information that is out there?"
  • If, however, processing information is the issue, if creative solutions are being sought, if students are being asked to develop new syntheses, then cheating will be much rarer, and much more difficult, technology use will become essential, and learning will be far more relevant.
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  • So schools do not teach effective use of Google, of text-messaging, of instant-messaging. They don't teach collaboration. They barely teach communication outside the stilted prose only academics use. No wonder students are prepared for nothing except more school.
  • There is also the issue of educational discrimination. When schools fight against technology, they are fighting access to education for people who learn and function differently. Technology, from computers to calculators to classroom cellphones, enables a wide variety of students who would otherwise be left out to participate and succeed. Technology in the hands of all students allows disabilities and functional deficits to be invisibly accommodated so that knowledge can be developed, nurtured, and evaluated on terms fair to everyone.So, no, the problem is not cheating. The problem is firmly one of instructional and evaluation technique. It will not be solved until teachers and professors figure out that understanding and the ability to work with knowledge is what counts, and that anything you can instantly Google, or store in your calculator, or retrieve via quick text-message or phone call need not be remembered, nor tested, because, obviously, you will always be able to instantly Google it, or store it in your cellphone, or get someone to text it to you. 
Barbara Lindsey

Calhoun School: Steve's Blog Is it Learning or Training? - 0 views

  • proponents claim, the methods “work,” as represented by higher test scores.   Because, they add, the methods are efficient, meaning you can produce results with brutal economic efficiency and large classes.  And, in ed policy-speak, the systematized, highly structured methodologies are “scaleable,” easily replicated and exported to other schools. 
  • Anyone intensely “drilled” in facts or simple algorithms will demonstrate superior performance when tested on short-term retention.   The students in programs like that at Williamsburg Collegiate are being trained to give the “right” answers, but they are learning little or nothing.   Other evidence exposes the folly of these practices, as test score gains among younger students are not holding as the same students move into older grades. But the policy response in most places is reflexive, not reflective.   Drill them more and test ‘em again! 
  • Perhaps the greatest tragedy of this approach to education is that it disregards, often punishes, the qualities that most characterize real learning.  Children are discouraged from expressing a point of view – no time for that and it isn’t on the test.  Creativity is irrelevant.  Children who are sensitive and poetic are devalued, forced into quick, aggressive responses by a drill sergeant teacher.   Critical thinking is not welcome.  Where is the space for empathy and imagination?  What about the child whose unique intelligence is the ability to visualize something beautiful, to see another possible way to solve a problem, to turn a history assignment into a song?
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  • Most highly regimented urban charter schools are largely for the “other” –the underclass children of color whom powerful people talk about but seldom meet.    I wonder if Mssrs. Gates, Broad, Dell, Walton or Bloomberg would subject their own children to such a school environment, where they would march in tight formation and eagerly parrot the “right” answers required by the training manual?    I would guess not.  Of course I didn’t see many of those guys at Fort Benning either.         
  • There is little evidence outside of the short term, self-fulfilling cycle of call and response, that these schools are educating students at all
Barbara Lindsey

Schools starting to allow use of digital devices - 0 views

  • "We want them to start modeling what they're going to see when they get out of here," said Lee, who envisions someday replacing students' print planners with online calendars. Most of all, he wants to cultivate what he calls good digital citizenship.
  • Drawing inspiration from fake Twitter accounts that parody celebrities or historical figures, Haines has had his students tweet as characters from George Orwell's "Animal Farm."
  • There is little data on how many school districts across the country have policies allowing the use of cellphones and other digital devices in class. A 2009 U.S. Department of Education survey shows only 4 percent of public-school teachers say a handheld device is available in the classroom every day.
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  • "Everybody in the technology end of schools are talking about not so much loosening the reins as opening the opportunities for students," she said. "That's the world they live in - not in a classroom, in rows, with books in front of them."
  • "All the conversation, even at the grad-school level, is 'Put away your phones,' " said Sree Sreenivasan, a professor of digital media at Columbia University. "If I was a teacher, and as a parent, I would be concerned. Forty kids, all pulling out their cellphones - that's a total recipe for disaster."
  • "If you stopped and waited for every unknown to be solved, you'd never get anything done," he said.
  • "If a student is cheating, it's the same punishment as if they were using handwritten notes to cheat. If a student is using a cellphone to make threats, it's the same punishment as if they were making verbal threats," Ross said. "Cellphones didn't invent any of (those) things."
  • forcing students to pretend their phones don't exist when they enter school creates an "unrealistic environment" for children.
Barbara Lindsey

Cell Phones in the (Language) Classroom: Recasting the Debate (EDUCAUSE Quarterly) | ED... - 0 views

  • My Google Voice number has served primarily as a messaging service students call (sometimes spontaneously during the instructional period, more often outside of the classroom) to record dialogues, poetry, even song, either individually or in pairs. These recordings are stored on Google servers, but can be downloaded and posted on course management pages (Moodle, Blackboard, Sakai, etc.) or podcasting, blogging, or social networking sites (I post particularly good recordings on my Spanish Facebook page). While I have yet to experiment with this particular feature, Google Voice can also be used for conference calling, and dialogues with groups of students can be recorded for later informal group or formal teacher evaluation.
    • Barbara Lindsey
       
      Do you see any issues with posting recordings on Facebook?
  • It is generally accepted that students work harder and become more engaged and invested in activities and assignments that might be publicly posted (on the Internet or otherwise). My own experience shows that students required to record speech of any kind in a computer laboratory setting spend considerable time preparing prior to recording. The very act of recording their voices — creating a permanent record of their speech — instilled a strong desire to perform well. In short, the act of recording increased students’ investment and engagement in the learning process.
    • Barbara Lindsey
       
      Do you find this to be true for your students as well? How about for you?
  • The access that I had to that student combined with the ease and speed of communication presented by Google Voice solved more than a pronunciation problem; it likely helped me head off a building class management issue by engaging that student on his terms outside of the classroom setting.
    • Barbara Lindsey
       
      Your thoughts?
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  • “I have a student who hasn’t done any homework this quarter, and out of the blue he sent me a goofy text message to my Google Voice number — completely unrelated to Spanish — something like “I hate this rain”— and, being the nerdy teacher, I texted him immediately back in Spanish: “No me gusta la lluvia tampoco.” One day later, he walks in for the first time with his homework and makes a big production about turning it in. I can’t help but feel that the personal connection of texting helped him remember — and actually want to do — the work for my class.”
  • While not all students will text back when I supply SMS feedback, those that do, like this one, tend to be looking for specifics and positive reinforcement. How is this additional engagement and interaction bad?
Barbara Lindsey

Education Week: Science Grows on Acquiring New Language - 0 views

  • For example, when babies born to native-English-speaking parents played three times a week during that window with a native-Mandarin-speaking tutor, at 12 months, they had progressed in their ability to recognize both English and Mandarin sounds, rather than starting to retrench in the non-native language. By contrast, children exposed only to audio or video recordings of native speakers showed no change in their language trajectory. Brain-imaging of the same children backed up the results of test-based measures of language specialization.
  • The research may not immediately translate into a new language arts curriculum, but it has already deepened the evidence for something most educators believe instinctively: Social engagement, particularly with speakers of multiple languages, is critical to language learning.
  • “The key to that series of studies is exposure and live interactions with native speakers,” Ms. Lebedeva said. “The interactions need to be naturalistic: eye contact, gestures, exaggerated phonemes.”
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  • “Human brains are wired to learn best in social interactions, whether that learning is about language or problem-solving or emotion,” Ms. Lebedeva said, “but language is such a ubiquitous human behavior that studying it gives us an example of how more general learning takes place.”
  • at the science-oriented Ultimate Block Party held in New York City this month, children of different backgrounds played games in which they were required to sort toys either by shape or color, based on a rule indicated by changing flashcards. A child sorting blue and yellow ducks and trucks by shape, say, might suddenly have to switch to sorting them by color. The field games exemplified research findings that bilingual children have greater cognitive flexibility than monolingual children. That is, they can adapt better than monolingual children to changes in rules—What criteria do I use to sort?—and close out mental distractions—It doesn’t matter that some blue items are ducks and some are trucks.
  •  
    researchers long thought the window for learning a new language shrinks rapidly after age 7 and closes almost entirely after puberty. Yet interdisciplinary research conducted over the past five years at the University of Washington, Pennsylvania State University, and other colleges suggest that the time frame may be more flexible than first thought and that students who learn additional languages become more adaptable in other types of learning, too.
Barbara Lindsey

Minds on Fire: Open Education, the Long Tail, and Learning 2.0 (EDUCAUSE Review) | EDUC... - 0 views

  • But at the same time that the world has become flatter, it has also become “spikier”: the places that are globally competitive are those that have robust local ecosystems of resources supporting innovation and productiveness.2
  • various initiatives launched over the past few years have created a series of building blocks that could provide the means for transforming the ways in which we provide education and support learning. Much of this activity has been enabled and inspired by the growth and evolution of the Internet, which has created a global “platform” that has vastly expanded access to all sorts of resources, including formal and informal educational materials. The Internet has also fostered a new culture of sharing, one in which content is freely contributed and distributed with few restrictions or costs.
  • the most visible impact of the Internet on education to date has been the Open Educational Resources (OER) movement, which has provided free access to a wide range of courses and other educational materials to anyone who wants to use them. The movement began in 2001 when the William and Flora Hewlett and the Andrew W. Mellon foundations jointly funded MIT’s OpenCourseWare (OCW) initiative, which today provides open access to undergraduate- and graduate-level materials and modules from more than 1,700 courses (covering virtually all of MIT’s curriculum). MIT’s initiative has inspired hundreds of other colleges and universities in the United States and abroad to join the movement and contribute their own open educational resources.4 The Internet has also been used to provide students with direct access to high-quality (and therefore scarce and expensive) tools like telescopes, scanning electron microscopes, and supercomputer simulation models, allowing students to engage personally in research.
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  • most profound impact of the Internet, an impact that has yet to be fully realized, is its ability to support and expand the various aspects of social learning. What do we mean by “social learning”? Perhaps the simplest way to explain this concept is to note that social learning is based on the premise that our understanding of content is socially constructed through conversations about that content and through grounded interactions, especially with others, around problems or actions. The focus is not so much on what we are learning but on how we are learning.5
  • This perspective shifts the focus of our attention from the content of a subject to the learning activities and human interactions around which that content is situated. This perspective also helps to explain the effectiveness of study groups. Students in these groups can ask questions to clarify areas of uncertainty or confusion, can improve their grasp of the material by hearing the answers to questions from fellow students, and perhaps most powerfully, can take on the role of teacher to help other group members benefit from their understanding (one of the best ways to learn something is, after all, to teach it to others).
  • This encourages the practice of what John Dewey called “productive inquiry”—that is, the process of seeking the knowledge when it is needed in order to carry out a particular situated task.
  • ecoming a trusted contributor to Wikipedia involves a process of legitimate peripheral participation that is similar to the process in open source software communities. Any reader can modify the text of an entry or contribute new entries. But only more experienced and more trusted individuals are invited to become “administrators” who have access to higher-level editing tools.8
  • by clicking on tabs that appear on every page, a user can easily review the history of any article as well as contributors’ ongoing discussion of and sometimes fierce debates around its content, which offer useful insights into the practices and standards of the community that is responsible for creating that entry in Wikipedia. (In some cases, Wikipedia articles start with initial contributions by passionate amateurs, followed by contributions from professional scholars/researchers who weigh in on the “final” versions. Here is where the contested part of the material becomes most usefully evident.) In this open environment, both the content and the process by which it is created are equally visible, thereby enabling a new kind of critical reading—almost a new form of literacy—that invites the reader to join in the consideration of what information is reliable and/or important.
  • But viewing learning as the process of joining a community of practice reverses this pattern and allows new students to engage in “learning to be” even as they are mastering the content of a field.
  • Mastering a field of knowledge involves not only “learning about” the subject matter but also “learning to be” a full participant in the field. This involves acquiring the practices and the norms of established practitioners in that field or acculturating into a community of practice.
  • Another interesting experiment in Second Life was the Harvard Law School and Harvard Extension School fall 2006 course called “CyberOne: Law in the Court of Public Opinion.” The course was offered at three levels of participation. First, students enrolled in Harvard Law School were able to attend the class in person. Second, non–law school students could enroll in the class through the Harvard Extension School and could attend lectures, participate in discussions, and interact with faculty members during their office hours within Second Life. And at the third level, any participant in Second Life could review the lectures and other course materials online at no cost. This experiment suggests one way that the social life of Internet-based virtual education can coexist with and extend traditional education.
  • Digital StudyHall (DSH), which is designed to improve education for students in schools in rural areas and urban slums in India. The project is described by its developers as “the educational equivalent of Netflix + YouTube + Kazaa.”11 Lectures from model teachers are recorded on video and are then physically distributed via DVD to schools that typically lack well-trained instructors (as well as Internet connections). While the lectures are being played on a monitor (which is often powered by a battery, since many participating schools also lack reliable electricity), a “mediator,” who could be a local teacher or simply a bright student, periodically pauses the video and encourages engagement among the students by asking questions or initiating discussions about the material they are watching.
  • John King, the associate provost of the University of Michigan
  • For the past few years, he points out, incoming students have been bringing along their online social networks, allowing them to stay in touch with their old friends and former classmates through tools like SMS, IM, Facebook, and MySpace. Through these continuing connections, the University of Michigan students can extend the discussions, debates, bull sessions, and study groups that naturally arise on campus to include their broader networks. Even though these extended connections were not developed to serve educational purposes, they amplify the impact that the university is having while also benefiting students on campus.14 If King is right, it makes sense for colleges and universities to consider how they can leverage these new connections through the variety of social software platforms that are being established for other reasons.
  • The project’s website includes reports of how students, under the guidance of professional astronomers, are using the Faulkes telescopes to make small but meaningful contributions to astronomy.
  • “This is not education in which people come in and lecture in a classroom. We’re helping students work with real data.”16
  • HOU invites students to request observations from professional observatories and provides them with image-processing software to visualize and analyze their data, encouraging interaction between the students and scientists
  • The site is intended to serve as “an open forum for worldwide discussions on the Decameron and related topics.” Both scholars and students are invited to submit their own contributions as well as to access the existing resources on the site. The site serves as an apprenticeship platform for students by allowing them to observe how scholars in the field argue with each other and also to publish their own contributions, which can be relatively small—an example of the “legitimate peripheral participation” that is characteristic of open source communities. This allows students to “learn to be,” in this instance by participating in the kind of rigorous argumentation that is generated around a particular form of deep scholarship. A community like this, in which students can acculturate into a particular scholarly practice, can be seen as a virtual “spike”: a highly specialized site that can serve as a global resource for its field.
  • I posted a list of links to all the student blogs and mentioned the list on my own blog. I also encouraged the students to start reading one another's writing. The difference in the writing that next week was startling. Each student wrote significantly more than they had previously. Each piece was more thoughtful. Students commented on each other's writing and interlinked their pieces to show related or contradicting thoughts. Then one of the student assignments was commented on and linked to from a very prominent blogger. Many people read the student blogs and subscribed to some of them. When these outside comments showed up, indicating that the students really were plugging into the international community's discourse, the quality of the writing improved again. The power of peer review had been brought to bear on the assignments.17
  • for any topic that a student is passionate about, there is likely to be an online niche community of practice of others who share that passion.
  • Finding and joining a community that ignites a student’s passion can set the stage for the student to acquire both deep knowledge about a subject (“learning about”) and the ability to participate in the practice of a field through productive inquiry and peer-based learning (“learning to be”). These communities are harbingers of the emergence of a new form of technology-enhanced learning—Learning 2.0—which goes beyond providing free access to traditional course materials and educational tools and creates a participatory architecture for supporting communities of learners.
  • We need to construct shared, distributed, reflective practicums in which experiences are collected, vetted, clustered, commented on, and tried out in new contexts.
  • An example of such a practicum is the online Teaching and Learning Commons (http://commons.carnegiefoundation.org/) launched earlier this year by the Carnegie Foundation for the Advancement of Teaching
  • The Commons is an open forum where instructors at all levels (and from around the world) can post their own examples and can participate in an ongoing conversation about effective teaching practices, as a means of supporting a process of “creating/using/re-mixing (or creating/sharing/using).”20
  • The original World Wide Web—the “Web 1.0” that emerged in the mid-1990s—vastly expanded access to information. The Open Educational Resources movement is an example of the impact that the Web 1.0 has had on education.
  • But the Web 2.0, which has emerged in just the past few years, is sparking an even more far-reaching revolution. Tools such as blogs, wikis, social networks, tagging systems, mashups, and content-sharing sites are examples of a new user-centric information infrastructure that emphasizes participation (e.g., creating, re-mixing) over presentation, that encourages focused conversation and short briefs (often written in a less technical, public vernacular) rather than traditional publication, and that facilitates innovative explorations, experimentations, and purposeful tinkerings that often form the basis of a situated understanding emerging from action, not passivity.
  • In the twentieth century, the dominant approach to education focused on helping students to build stocks of knowledge and cognitive skills that could be deployed later in appropriate situations. This approach to education worked well in a relatively stable, slowly changing world in which careers typically lasted a lifetime. But the twenty-first century is quite different.
  • We now need a new approach to learning—one characterized by a demand-pull rather than the traditional supply-push mode of building up an inventory of knowledge in students’ heads. Demand-pull learning shifts the focus to enabling participation in flows of action, where the focus is both on “learning to be” through enculturation into a practice as well as on collateral learning.
  • The demand-pull approach is based on providing students with access to rich (sometimes virtual) learning communities built around a practice. It is passion-based learning, motivated by the student either wanting to become a member of a particular community of practice or just wanting to learn about, make, or perform something. Often the learning that transpires is informal rather than formally conducted in a structured setting. Learning occurs in part through a form of reflective practicum, but in this case the reflection comes from being embedded in a community of practice that may be supported by both a physical and a virtual presence and by collaboration between newcomers and professional practitioners/scholars.
  • The building blocks provided by the OER movement, along with e-Science and e-Humanities and the resources of the Web 2.0, are creating the conditions for the emergence of new kinds of open participatory learning ecosystems23 that will support active, passion-based learning: Learning 2.0.
  • As a graduate student at UC-Berkeley in the late 1970s, Treisman worked on the poor performance of African-Americans and Latinos in undergraduate calculus classes. He discovered the problem was not these students’ lack of motivation or inadequate preparation but rather their approach to studying. In contrast to Asian students, who, Treisman found, naturally formed “academic communities” in which they studied and learned together, African-Americans tended to separate their academic and social lives and studied completely on their own. Treisman developed a program that engaged these students in workshop-style study groups in which they collaborated on solving particularly challenging calculus problems. The program was so successful that it was adopted by many other colleges. See Uri Treisman, “Studying Students Studying Calculus: A Look at the Lives of Minority Mathematics Students in College,” College Mathematics Journal, vol. 23, no. 5 (November 1992), pp. 362–72, http://math.sfsu.edu/hsu/workshops/treisman.html.
  • In the early 1970s, Stanford University Professor James Gibbons developed a similar technique, which he called Tutored Videotape Instruction (TVI). Like DSH, TVI was based on showing recorded classroom lectures to groups of students, accompanied by a “tutor” whose job was to stop the tape periodically and ask questions. Evaluations of TVI showed that students’ learning from TVI was as good as or better than in-classroom learning and that the weakest students academically learned more from participating in TVI instruction than from attending lectures in person. See J. F. Gibbons, W. R. Kincheloe, and S. K. Down, “Tutored Video-tape Instruction: A New Use of Electronics Media in Education,” Science, vol. 195 (1977), pp. 1136–49.
Barbara Lindsey

Educational Trends « Beyond WebCT: Integrating Social Networking Tools Into L... - 0 views

  • can one annotate on electronic books
  • “We must rethink ourselves.”
  • there is still a certain hierarchy that needs to be in place or else personal interest will become conflated with the interests of grading (we are still vested with a certain institutional authority, whether or not this is a pedagogical approach)
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  • I share your worry about technology becoming a roadblock instead of an open door in teaching.
  • Hopefully, as these approaches become more common and institutionalized, it there will be more opportunities to receive support from colleagues and other educators in their implementation.
  • Online materials are not necessarily peer reviewed, and those which are protected by copyright end up with inflated prices. I am not sure what the answer to this problem might be, but it is something that I would like to examine further in class.
  • Both the teacher AND the students become the LEARNERS.
  • The learners will label, name and design… 2. The learners will paraphrase, explain and illustrate… 3. The learners will demonstrate, prepare and solve… 4. The learners will differentiate, analyze and infer… 5. The learners will devise, revise and integrate… 6. The learners will evaluate, critique and compare…
    • Barbara Lindsey
       
      Bloom's taxonomy
  • both assume a business model of competition and profit. Education needs to maintain its sovereignty from what is really a form of hegemony.
  • But that the existence of such technology necessitates a total rethinking of the whole process seems like a power grab by a pervasive form of administration that stems from the business world. It is ridiculous that to be able simply to sit with a book in one’s lap and not be compelled to maintain permanent connectivity has become an act of resistance.
  • And I didn’t really want to hear the opinions of the other students who didn’t know anything more than I did. Or rather, it was nice to have discussions about the professor’s lecture, but without the lecture, there wouldn’t have been anything to discuss. We would have a book club, not a class.
  • By de-emphasizing content and knowledge, we’re turning students into middlemen who will know how to use technology to present a given subject matter, but who will be free to forget it as soon as the next task arrives on their desk.
Barbara Lindsey

2010 Horizon Report » One Year or Less: Open Content - 0 views

  • The movement toward open content reflects a growing shift in the way academics in many parts of the world are conceptualizing education to a view that is more about the process of learning than the information conveyed in their courses. Information is everywhere; the challenge is to make effective use of it.
  • As customizable educational content is made increasingly available for free over the Internet, students are learning not only the material, but also skills related to finding, evaluating, interpreting, and repurposing the resources they are studying in partnership with their teachers.
  • collective knowledge and the sharing and reuse of learning and scholarly content,
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  • the notion of open content is to take advantage of the Internet as a global dissemination platform for collective knowledge and wisdom, and to design learning experiences that maximize the use of it.
  • The role of open content producers has evolved as well, away from the idea of authoritative repositories of content and towards the broader notion of content being both free and ubiquitous.
  • schools like Tufts University (and many others) now consider making their course materials available to the public a social responsibility.
  • Many believe that reward structures that support the sharing of work in progress, ongoing research, highly collaborative projects, and a broad view of what constitutes scholarly publication are key challenges that institutions need to solve.
  • learning to find useful resources within a given discipline, assess the quality of content available, and repurpose them in support of a learning or research objective are in and of themselves valuable skills for any emerging scholar, and many adherents of open content list that aspect among the reasons they support the use of shareable materials.
  • Open content shifts the learning equation in a number of interesting ways; the most important is that its use promotes a set of skills that are critical in maintaining currency in any discipline — the ability to find, evaluate, and put new information to use.
  • Communities of practice and learning communities have formed around open content in a great many disciplines, and provide practitioners and independent learners alike an avenue for continuing education.
  • Art History. Smarthistory, an open educational resource dedicated to the study of art, seeks to replace traditional art history textbooks with an interactive, well-organized website. Search by time period, style, or artist (http://smarthistory.org).
  • American Literature before 1860 http://enh241.wetpaint.com Students in this course, held at Mesa Community College, contribute to the open course material as part of their research. MCC also features a number of lectures on YouTube (see http://www.youtube.com/user/mesacc#p/p).
  • Carnegie Mellon University’s Open Learning Initiative http://oli.web.cmu.edu/openlearning/ The Open Learning Initiative offers instructor-led and self-paced courses; any instructor may teach with the materials, regardless of affiliation. In addition, the courses include student assessment and intelligent tutoring capability.
  • Connexions http://cnx.org Connexions offers small modules of information and encourages users to piece together these chunks to meet their individual needs.
  • eScholarship: University of California http://escholarship.org/about_escholarship.html eScholarship provides peer review and publishing for scholarly articles, books, and papers, using an open content model. The service also includes tools for dissemination and research.
  • MIT OpenCourseWare http://ocw.mit.edu The Massachusetts Institute of Technology publishes lectures and materials from most of its undergraduate and graduate courses online, where they are freely available for self-study.
  • Open.Michigan’s dScribe Project https://open.umich.edu/projects/oer.php The University of Michigan’s Open.Michigan initiative houses several open content projects. One, dScribe, is a student-centered approach to creating open content. Students work with faculty to select and vet resources, easing the staffing and cost burden of content creation while involving the students in developing materials for themselves and their peers.
  • Center for Social Media Publishes New Code of Best Practices in OCW http://criticalcommons.org/blog/content/center-for-social-media-publishes-new-code-of-best-practices-in-ocw (Critical Commons, 25 October 2009.) The advocacy group Critical Commons seeks to promote the use of media in open educational resources. Their Code of Best Practices in Fair Use for OpenCourseWare is a guide for content developers who want to include fair-use material in their offerings.
  • Flat World Knowledge: A Disruptive Business Model http://industry.bnet.com/media/10003790/flat-world-knowledge-a-disruptive-business-model/ (David Weir, BNET, 20 August 2009.) Flat World Knowledge is enjoying rapid growth, from 1,000 students in the spring of 2009 to 40,000 in the fall semester using their materials. The company’s business model pays a higher royalty percentage to textbook authors and charges students a great deal less than traditional publishers.
Barbara Lindsey

FRONTLINE: digital nation: henry jenkins response to mark bauerlein | PBS - 0 views

  • let me say another word or two about our friend, the student who thinks he can read Romeo and Juliet in 10 minutes. It seems to me that he has a lot in common with educational policy makers who think that the experience of reading the book can be reduced to a small number of items on a standardized test. Both have an instrumental understanding of reading and learning which sees learning as a product and has not respect for the process of really engaging deeply with the literary experience. In many ways, the student's attitude is a byproduct of the current structure of education as much as it is a byproduct of the instant gratification promised by digital culture. As someone who has been involved in the last year with a project which seeks to model ways we can teach Moby-Dick in contemporary schools, I can tell you the resistance we've gotten from some teachers comes at both levels. Yes, some teachers don't think their students have the attention span to deal with a novel of this length and complexity but many more simply say that they don't think they have time to teach a novel of such richness if they are going to stay on track and review all of the content they are supposed to cover under the new national standards. Both push back against a depth of experience and the student may simply trying to act efficiently to give the teachers what they want on the test. As someone who loves literature, both sides of this equation break my heart.
  • what the gamers are doing in the Korean Bong is better described as intense concentration, entering a state of flow, rather than multitasking per se. A growing body of work has stressed the kinds of active problem solving which surrounds the play of certain kinds of games, the collaboration which occurs through certain forms of participatory culture, etc. as other ways of engaging with the online world. To me, there's something reductive about continuing to return to issues of multitasking when depicting Katie Salen's game school for example. Katie's approach is not about turning students lose on the computer; it is about teaching them to look at the world as a complex system and developing skills as designers. In my White Paper for MacArthur, I identify multitasking as a skill -- but I don't mean by this what young people think they are doing when they talk about multitasking. I mean the ability to manage attention -- sometimes concentrating on a single text or problem, sometimes scanning the environment to form a hazier understanding of the bigger picture, much as a driver needs to keep their eyes on the road in front of them but also needs to scan the rear view mirror. I think schools have a role to play in helping young people sharpen their understanding of which mode of engagement is appropriate for different tasks and contexts.
  • The goal shouldn't be to decide if computers are good or bad. Our goal should be to identify what a more constructive relationship to this technology might look like and to insure that those skills and practices get transmitted to a broader segment of the population.
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  • I also think that they should report the diverse range of cultural practices which emerged from the Digital Youth team's large scale ethnography of teen's on-line lives and the kinds of practices which seem to support robust informal learning outside the classroom. Unfortunately, this research ended up on the cutting room floor. Some of it is on the web. None of it is in the program.
Celeste Arrieta

Bloom's Taxonomy - 0 views

  • Bloom identified six cognitive levels: knowledge, comprehension, application, analysis, synthesis, and evaluation, with sophistication growing from basic knowledge-recall skills to the highest level, evaluation.
  • Originally developed as a method of classifying educational goals for student performance evaluation,
  • three major domains of learning: cognitive, affective, and psychomotor
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  • the affective domain covered “changes in interest, attitudes, and values, and the development of appreciations and adequate adjustment”;
  • The cognitive domain covered “the recall or recognition of knowledge and the development of intellectual abilities and skills”
  • psychomotor domain encompassed “the manipulative or motor-skill area
  • Bloom
  • applies only to acquiring knowledge in the cognitive domain
  • involves intellectual skill development.
  • The original Bloom’s Taxonomy contained six developmental categories: knowledge, comprehension, application, analysis, synthesis, and evaluation. The first step in the taxonomy focused on knowledge acquisition and at this level, students recall, memorize, list, and repeat information. In the second tier, students classify, describe, discuss, identify, and explain information. Next, students demonstrate, interpret, and write about what they’ve learned and solve problems. In the subsequent step, students compare, contrast, distinguish, and examine what they’ve learned with other information, and they have the opportunity to question and test this knowledge. Then students argue, defend, support, and evaluate their opinion on this information. Finally, in the original model of Bloom’s Taxonomy, students create a new project, product, or point of view
    • Celeste Arrieta
       
      specific activities
    • Celeste Arrieta
       
      definitions - developmental categories
  • factual, conceptual, procedural, and metacognitive.3 This newer taxonomy also moves the evaluation stage down a level and the highest element becomes “creating
  • types of knowledge
  • intellectual skills and behavior important to learning
  • interactive activity
  • across grade levels and content areas
  •  
    I hope you can see my highlightings
Inas Ayyoub

Curricula Designed to Meet 21st-Century Expectations | EDUCAUSE - 1 views

  • Faculty concerns perhaps center less on being "replaceable" and more on worrying that the teaching and learning enterprise will be reduced to students gathering information that can be easily downloaded, causing them to rely too heavily on technology instead of intellect.
  • First, traditional age students overwhelmingly prefer face-to-face contact with faculty to mediated communication. Second, technology used in the service of learning will require more—not less—sophistication on the part of students as they engage in processes of integration, translation, audience analysis, and critical judgment.
  • With such specific applications of technology and the limited use of other forms (for example, multimedia), students' low expectations for the use of technology in the curriculum is not surprising. Such constrained use of technology by the faculty in the curriculum and low student expectations may serve to limit innovation and creativity as well as the faculty's capacity to engage students more deeply in their subject matter.
    • Barbara Lindsey
       
      Your thoughts on this?
    • Chenwen Hong
       
      I completely agree. As a student, I don't think a text-based PowerPoint slide presentation would interest me too much, partcularly when there are too many words squeezed into just one slide. If a PowerPoint slide presentation is just a copy of texts, the use of technology makes nothing different from teaching with a blackboard and chalks. The use of technology must have, and then can serve, a pedagogical purpose.
    • Inas Ayyoub
       
      This remindes me of the first time stuents at my school started using powerpoints to make presentations and how exciting it was for them to see thier classmates ideas presented in front of them this way. Over using this and without really integraing sth new than their words written, showed boredom and disinterest later! So teachers should think here of using technology in a different way like turning the lesson into a digital story or using technology differently ! Being unexpected in the way you use technology in the classrooom, would make them always eager to learn and excited about it!!!
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  • Today, these tools still provide middle school teachers with vehicles to enlarge their students' learning. Math and science problem sets are embedded in authentic stories that students understand because the stories reflect their everyday experiences. These authentic problem-solving exercises not only engage students in their learning but also stimulate them to want to learn more.
  • From the beginning, however, a problem arose in that those middle school students went on to high schools and later to colleges that did not (and do not) provide this type of rich learning experience—a learning experience that can best be achieved when technology is used in the service of learning.
  • Students need mastery in areas that include knowledge of human imagination and expression, global and cross-cultural communities, and modeling the natural world.
  • The assignment could take on a deeper dimension by using videoconferencing and e-mail to link teams to students living in the countries of origin of the groups being studied. Integrating real-time global experiences into the classroom can provide a new, first-person information source and engender debate about the validity of various sources of information used in conducting research.
    • Chenwen Hong
       
      I guess the project, with the Peace Corp., we saw during last Friday's session is the best example of technology engaging students with course materials by iintegrating real-time experiences with classroom studies.
Barbara Lindsey

Learning Spaces | EDUCAUSE - 0 views

  • Net Gen students are facile at multitasking
    • Barbara Lindsey
       
      The research shows that no one can multitask effectively... See John Medina and Brain Rules, for example.
  • Workers anticipated having a single profession for the duration of their working lives. Education was based on a factory-like, "one size fits all" model. Talent was developed by weeding out those who could not do well in a monochromatic learning environment.
    • Barbara Lindsey
       
      Also part and parcel of hegemonic educational practices which served to reinforce the existing social and economic paradigm.
  • Knowing now means using a well-organized set of facts to find new information and to solve novel problems. In 1900, learning consisted largely of memorization; today it relies chiefly on understanding.
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  • learners construct knowledge by understanding new information building on their current understanding and expertise. Constructivism contradicts the idea that learning is the transmission of content to a passive receiver. Instead, it views learning as an active process, always based on the learner's current understanding or intellectual paradigm. Knowledge is constructed by assimilating new information into the learner's knowledge paradigm. A learner does not come to a classroom or a course Web site with a mind that is a tabula rasa, a blank slate. Each learner arrives at a learning "site" with some preexisting level of understanding.
  • Learning science research also highlights the importance of learner engagement, or as the American Psychological Association describes it, intentional learning.1 This means that learners must have a "metaperspective" from which to view and assess their own learning, which is often referred to as metacognition.2 An active learning environment provides the opportunity to assess one's own learning, enabling learners to make decisions about the course, as well as reflect on and assess their progress. In the past, the measure of learning was the final grade (a summative measure). But a final grade is merely a measure of the student's performance on tests. It does not measure the learning that did—or did not—take place. To encourage learning, summative testing or assessments must be combined with formative assessments. Formative assessment is not directly associated with the final grade; it helps learners understand their learning and make decisions about next steps based on that understanding.
  • research indicating that learning is encouraged when it includes social components such as debate or direct engagement with peers and experts. Learning is strengthened through social interactions, interpersonal relations, and communication with others.
  • Research indicates that learners need to be active with respect to their own learning process and assessment. Net Gen students' goal and achievement orientation comes into play here: that achievement focus can be directed toward quizzes and exercises that assist learners in evaluating their progress toward learning goals.
  • Obviously not all forms of learning must be social or team-based. In a variety of learning contexts, individual work is important. It may well be that Net Gen students' strengths are also their weaknesses. The expectation for fast-paced, rapidly shifting interaction coupled with a relatively short attention span may be counterproductive in many learning contexts. Repetition and steady, patient practice—key to some forms of mastery—may prove difficult for Net Gen students. Designing courses for them necessitates balancing these strengths and weaknesses.
  • We should not neglect the informal for the formal, or assume that Net Gen students somehow will figure out the virtual space on their own. We should connect what happens in the classroom with what happens in informal and virtual spaces.
  • Simply installing wireless access points and fresh carpeting isn't enough if done in isolation; such improvements pay real dividends only if they are in concert with the institution's overall teaching and learning objectives. It is the vision that generates the design principles that will, in turn, be used to make key decisions about how learning spaces are configured.
  • The vision and design principles should emphasize the options students have as active participants in the learning process. Design principles should include terms such as analyze, create, criticize, debate, present, and classify—all directed at what the space enables the students to do. For example, students should be able to present materials to the class. Outside class, they should have access to applications and materials that directly support analysis of data, text, and other media. Forums for discussion and critical debate, both real and virtual, are key to encouraging learning and will be looked for by Net Gen students.
  • Learning spaces should accommodate the use of as many kinds of materials as possible and enable the display of and access to those materials by all participants. Learning space needs to provide the participants—instructors and students alike—with interactive tools that enable exploration, probing, and examination. This might include a robust set of applications installed on the computer that controls the room's displays, as well as a set of communication tools. Since the process of examination and debate leads to discovery and the construction of new knowledge, it could be important to equip spaces with devices that can capture classroom discussion and debate, which can be distributed to all participants for future reference and study.
  • the end of the class meeting marks a transition from one learning mode to another.
  • This lecture hall is of relatively recent vintage; its seats and paired tables make it much easier to deploy and use her "tools," which include printouts of the day's reading, as well as a small laptop computer. Her fellow students are doing likewise. Each of them is using some device to access the course's Web site—some with laptops, others with tablet computers, still others with handheld computers. Using wireless connections, they all access the course's Web site and navigate to the site's "voting" page.
  • a "magic wand," a radio-frequency controller that enables her to operate her computer—as well as many of the classroom's functions—wirelessly, from any point in the room. She can capture anything she writes on the blackboard and make it available to her students on the course Web site. Freed from needing to take extensive notes, the students are able to participate more fully in the class discussion. Finally, the professor is carrying a small recorder that captures her lecture, digitizes the audio, and uploads it to the course Web site for the students to review when they prepare for finals.
  • Sandra launches the classroom's screen sharing application. Within a few seconds, her computer's screen is projected on the room's main screen. The class discussion focuses on this diagram, and the professor, using a virtual pencil, is able to make notes on the diagram. The diagram and notes are captured and placed on the class Web site for review.
  • Soon the debate gets stuck; the students can't resolve the issue. The professor goes to the podium, types briefly, and then asks the students to go to a URL to see a question and to choose the answer they feel is correct. The students access the Web page from laptops, handhelds, or wireless IP-based phones. In two minutes they have completed the poll and submitted their responses. The results are quickly tabulated and displayed. The wide diversity of opinion surprises everyone. The professor reframes the issue, without giving the answer, and the students continue to discuss it. She repeats the poll; this time there is more agreement among the students, enabling her to move the discussion forward.
    • Barbara Lindsey
       
      Could you see being able to do this? Would this work for you?
  • She goes to the podium computer and clicks on a few links, and soon a videoconferencing session is displayed on the right-hand screen. She has arranged to have a colleague of hers "drop in" on the class to discuss a point that is in the colleague's particular area of expertise. The class has a conversation with the expert, who is at large research institution more than 500 miles away. Students listen to the expert's comments and are able to pose questions using one of the three cordless microphones available to the class. On the left-hand screen, the visiting professor shows some images and charts that help explain the concepts under discussion.
  • the other students in her class have signed up for most of the slots, conferring with friends using chat programs to ensure that they sign up for the same lab slots.
  • The discussion pocket is the college's term for a small, curved space with a table and bench to accommodate a meeting of four or five people. Found outside the newer classrooms, they are handy for informal, spontaneous discussions. Sandra's group moves into the pocket and for the next 15 minutes continue their "spill over" discussion of the class.
    • Barbara Lindsey
       
      How does this change perceptions of when and where learning begins and ends?
  • hey are able to have an audio chat; Sandra's friend is in her dorm room, and Sandra is in a remote corner of the library where conversation will not disturb others. As their discussion progresses, they go to the course's Web site and launch the virtual whiteboard to diagram some concepts. They develop a conceptual diagram—drawing, erasing, and revising it until they agree the diagram is correct. They both download a copy. Sandra volunteers to work on polishing the diagram and will leave a copy of the final diagram in her share folder in her online portfolio "locker
  • The underlying theme remains the same, however: cultivating learning practices consistent with learning theory and aligned with the habits and expectations of Net Gen students
  • For most higher education institutions, the lecture hall will not disappear; the challenge is to develop a new generation of lecture hall, one that enables Net Gen students and faculty to engage in enlivened, more interactive experiences. If the lecture hall is integrated with other spaces—physically as well as virtually—it will enable participants to sustain the momentum from the class session into other learning contexts. The goal is not to do away with the traditional classroom, but rather to reinvent and to integrate it with the other learning spaces, moving toward a single learning environment.
  • Learning theory is central to any consideration of learning spaces; colleges and universities cannot afford to invest in "fads" tailored to the Net Gen student that might not meet the needs of the next generation.
  • For example, start with the Net Gen students' focus on goals and achievement. That achievement orientation ties to learning theory's emphasis on metacognition, where learners assess their progress and make active decisions to achieve learning goals. Learning space design could support this by providing contact with people who can provide feedback: tutors, consultants, and faculty. This could, in turn, be supported in the IT environment by making formative self-tests available, as well as an online portfolio, which would afford students the opportunity to assess their overall academic progress.
  • As institutions create an anywhere, anytime IT infrastructure, opportunities arise to tear down silos and replace them with a more ubiquitous learning environment. Using laptops and other networked devices, students and faculty are increasingly able to carry their entire working environment with them. To capitalize on this, campus organizations must work collaboratively to create a more integrated work environment for the students and faculty, one that better serves the mobile Net Gen students as well as a faculty faced with the initial influx of these students into their ranks
  • One of the key variables is the institution itself. Learning spaces are institutional in scope—their implementation involves the institution's culture, tradition, and mission.
  • The starting point for rethinking learning spaces to support Net Gen students begins with an underlying vision for the learning activities these spaces should support. This vision should be informed by learning theory, as well as by recognition of the characteristics of the students and faculty who use these spaces.
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