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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

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

Shirky: A Group Is Its Own Worst Enemy - 1 views

  • April 24, 2003
  • I want to talk about a pattern I've seen over and over again in social software that supports large and long-lived groups.
  • definition of social software
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  • It's software that supports group interaction
  • how radical that pattern is. The Internet supports lots of communications patterns, principally point-to-point and two-way, one-to-many outbound, and many-to-many two-way.
  • Prior to the Internet, the last technology that had any real effect on the way people sat down and talked together was the table.
  • We've had social software for 40 years at most, dated from the Plato BBS system, and we've only had 10 years or so of widespread availability, so we're just finding out what works. We're still learning how to make these kinds of things.
  • If it's a cluster of half a dozen LiveJournal users, on the other hand, talking about their lives with one another, that's social. So, again, weblogs are not necessarily social, although they can support social patterns.
  • So email doesn't necessarily support social patterns, group patterns, although it can. Ditto a weblog. If I'm Glenn Reynolds, and I'm publishing something with Comments Off and reaching a million users a month, that's really broadcast.
  • So there's this very complicated moment of a group coming together, where enough individuals, for whatever reason, sort of agree that something worthwhile is happening, and the decision they make at that moment is: This is good and must be protected. And at that moment, even if it's subconscious, you start getting group effects. And the effects that we've seen come up over and over and over again in online communities.
  • You are at a party, and you get bored. You say "This isn't doing it for me anymore. I'd rather be someplace else.
  • The party fails to meet some threshold of interest. And then a really remarkable thing happens: You don't leave.
  • That kind of social stickiness is what Bion is talking about.
  • Twenty minutes later, one person stands up and gets their coat, and what happens? Suddenly everyone is getting their coats on, all at the same time. Which means that everyone had decided that the party was not for them, and no one had done anything about it, until finally this triggering event let the air out of the group, and everyone kind of felt okay about leaving.
  • This effect is so steady it's sometimes called the paradox of groups.
  • what's less obvious is that there are no members without a group.
  • there are some very specific patterns that they're entering into to defeat the ostensible purpose of the group meeting together. And he detailed three patterns.
  • The first is sex talk,
  • second basic pattern
  • The identification and vilification of external enemies.
  • So even if someone isn't really your enemy, identifying them as an enemy can cause a pleasant sense of group cohesion. And groups often gravitate towards members who are the most paranoid and make them leaders, because those are the people who are best at identifying external enemies.
  • third pattern Bion identified: Religious veneration
  • The religious pattern is, essentially, we have nominated something that's beyond critique.
  • So these are human patterns that have shown up on the Internet, not because of the software, but because it's being used by humans. Bion has identified this possibility of groups sandbagging their sophisticated goals with these basic urges. And what he finally came to, in analyzing this tension, is that group structure is necessary. Robert's Rules of Order are necessary. Constitutions are necessary. Norms, rituals, laws, the whole list of ways that we say, out of the universe of possible behaviors, we're going to draw a relatively small circle around the acceptable ones.
  • He said the group structure is necessary to defend the group from itself. Group structure exists to keep a group on target, on track, on message, on charter, whatever. To keep a group focused on its own sophisticated goals and to keep a group from sliding into these basic patterns. Group structure defends the group from the action of its own members.
  • technical and social issues are deeply intertwined. There's no way to completely separate them.
  • Some of the users wanted the system to continue to exist and to provide a forum for discussion. And other of the users, the high school boys, either didn't care or were actively inimical. And the system provided no way for the former group to defend itself from the latter.
  • What matters is, a group designed this and then was unable, in the context they'd set up, partly a technical and partly a social context, to save it from this attack from within. And attack from within is what matters.
  • This pattern has happened over and over and over again. Someone built the system, they assumed certain user behaviors. The users came on and exhibited different behaviors. And the people running the system discovered to their horror that the technological and social issues could not in fact be decoupled.
  • nd the worst crisis is the first crisis, because it's not just "We need to have some rules." It's also "We need to have some rules for making some rules." And this is what we see over and over again in large and long-lived social software systems. Constitutions are a necessary component of large, long-lived, heterogenous groups.
  • As a group commits to its existence as a group, and begins to think that the group is good or important, the chance that they will begin to call for additional structure, in order to defend themselves from themselves, gets very, very high.
  • The downside of going for size and scale above all else is that the dense, interconnected pattern that drives group conversation and collaboration isn't supportable at any large scale. Less is different -- small groups of people can engage in kinds of interaction that large groups can't. And so we blew past that interesting scale of small groups. Larger than a dozen, smaller than a few hundred, where people can actually have these conversational forms that can't be supported when you're talking about tens of thousands or millions of users, at least in a single group.
  • So the first answer to Why Now? is simply "Because it's time." I can't tell you why it took as long for weblogs to happen as it did, except to say it had absolutely nothing to do with technology. We had every bit of technology we needed to do weblogs the day Mosaic launched the first forms-capable browser. Every single piece of it was right there. Instead, we got Geocities. Why did we get Geocities and not weblogs? We didn't know what we were doing.
  • It took a long time to figure out that people talking to one another, instead of simply uploading badly-scanned photos of their cats, would be a useful pattern. We got the weblog pattern in around '96 with Drudge. We got weblog platforms starting in '98. The thing really was taking off in 2000. By last year, everyone realized: Omigod, this thing is going mainstream, and it's going to change everything.
  • Why was there an eight-year gap between a forms-capable browser and the Pepys diaries? I don't know. It just takes a while for people to get used to these ideas. So, first of all, this is a revolution in part because it is a revolution. We've internalized the ideas and people are now working with them. Second, the things that people are now building are web-native.
  • A weblog is web-native. It's the web all the way in. A wiki is a web-native way of hosting collaboration. It's lightweight, it's loosely coupled, it's easy to extend, it's easy to break down. And it's not just the surface, like oh, you can just do things in a form. It assumes http is transport. It assumes markup in the coding. RSS is a web-native way of doing syndication. So we're taking all of these tools and we're extending them in a way that lets us build new things really quickly.
  • Third, in David Weinberger's felicitous phrase, we can now start to have a Small Pieces Loosely Joined pattern.
  • You can say, in the conference call or the chat: "Go over to the wiki and look at this."
  • It's just three little pieces of software laid next to each other and held together with a little bit of social glue. This is an incredibly powerful pattern. It's different from: Let's take the Lotus juggernaut and add a web front-end.
  • And finally, and this is the thing that I think is the real freakout, is ubiquity.
  • In many situations, all people have access to the network. And "all" is a different kind of amount than "most." "All" lets you start taking things for granted.
  • But for some groups of people -- students, people in high-tech offices, knowledge workers -- everyone they work with is online. Everyone they're friends with is online. Everyone in their family is online.
  • And this pattern of ubiquity lets you start taking this for granted.
  • There's a second kind of ubiquity, which is the kind we're enjoying here thanks to Wifi. If you assume whenever a group of people are gathered together, that they can be both face to face and online at the same time, you can start to do different kinds of things. I now don't run a meeting without either having a chat room or a wiki up and running. Three weeks ago I ran a meeting for the Library of Congress. We had a wiki, set up by Socialtext, to capture a large and very dense amount of technical information on long-term digital preservation.
  • The people who organized the meeting had never used a wiki before, and now the Library of Congress is talking as if they always had a wiki for their meetings, and are assuming it's going to be at the next meeting as well -- the wiki went from novel to normal in a couple of days.
  • It really quickly becomes an assumption that a group can do things like "Oh, I took my PowerPoint slides, I showed them, and then I dumped them into the wiki. So now you can get at them." It becomes a sort of shared repository for group memory. This is new. These kinds of ubiquity, both everyone is online, and everyone who's in a room can be online together at the same time, can lead to new patterns.
  • "What is required to make a large, long-lived online group successful?" and I think I can now answer with some confidence: "It depends."
  • The normal experience of social software is failure. If you go into Yahoo groups and you map out the subscriptions, it is, unsurprisingly, a power law. There's a small number of highly populated groups, a moderate number of moderately populated groups, and this long, flat tail of failure. And the failure is inevitably more than 50% of the total mailing lists in any category. So it's not like a cake recipe. There's nothing you can do to make it come out right every time.
  • Of the things you have to accept, the first is that you cannot completely separate technical and social issues.
  • So the group is real. It will exhibit emergent effects. It can't be ignored, and it can't be programmed, which means you have an ongoing issue. And the best pattern, or at least the pattern that's worked the most often, is to put into the hands of the group itself the responsibility for defining what value is, and defending that value, rather than trying to ascribe those things in the software upfront.
  • Members are different than users. A pattern will arise in which there is some group of users that cares more than average about the integrity and success of the group as a whole. And that becomes your core group, Art Kleiner's phrase for "the group within the group that matters most."
  • But in all successful online communities that I've looked at, a core group arises that cares about and gardens effectively. Gardens the environment, to keep it growing, to keep it healthy.
  • The core group has rights that trump individual rights in some situations
  • And absolute citizenship, with the idea that if you can log in, you are a citizen, is a harmful pattern, because it is the tyranny of the majority. So the core group needs ways to defend itself -- both in getting started and because of the effects I talked about earlier -- the core group needs to defend itself so that it can stay on its sophisticated goals and away from its basic instincts.
  • All groups of any integrity have a constitution. The constitution is always partly formal and partly informal. A
  • If you were going to build a piece of social software to support large and long-lived groups, what would you design for? The first thing you would design for is handles the user can invest in.
  • Second, you have to design a way for there to be members in good standing. Have to design some way in which good works get recognized. The minimal way is, posts appear with identity.
  • Three, you need barriers to participation.
  • It has to be hard to do at least some things on the system for some users, or the core group will not have the tools that they need to defend themselves.
  • The user of social software is the group, not the individual.
  • Reputation is not necessarily portable from one situation to another
  • If you want a good reputation system, just let me remember who you are. And if you do me a favor, I'll remember it. And I won't store it in the front of my brain, I'll store it here, in the back. I'll just get a good feeling next time I get email from you; I won't even remember why. And if you do me a disservice and I get email from you, my temples will start to throb, and I won't even remember why. If you give users a way of remembering one another, reputation will happen,
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.
Barbara Lindsey

50 Ways to Use Wikis for a More Collaborative and Interactive Classroom | Smart Teaching - 0 views

  • Make it a class project to collaboratively write a reference book that others can use.
  • sk students to create study guides for a specific part of the unit you’re
  • Get your class to create a glossary of terms they use and learn about in new units, adding definitions and images.
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  • Encourage students to submit words that they had trouble with, along with a dictionary entry
  • Let your students share their collective information so that everyone gets a better understanding of the subject.
  • Make it a class project to create an FAQ for your classroom that will help new students and those that will come in years later.
  • Encourage students to draft rules and policies for the classroom.
  • Using a wiki platform, students don’t have to worry about web design, so they can focus on content instead.
  • Save links, documents, and quotes related to units or your classroom as a whole
  • Work with other teachers to create lesson plans and track students’ success.
Chenwen Hong

YouTube Launches Auto-Captioning for Videos - 0 views

  • ouTube, Google, Stanford, Berkeley, and the California School for the Deaf (CSD) are about to speak on YouTube and accessibility.
  • Now the Google Speech Technology team is speaking about the challenges they faced to get auto-captioning operational. Their vision was to create accurate captions for all videos in all languages, but had to deal with huge vocabularies, background noise, poor recordings, accent variability, and distinguishing between song and speech.- Google’s approach is to deliver captions from the cloud, given them the ability to rapidly iterate and model at a large scale.
  • You can only caption your own videos — you can’t just caption someone else’s videos.
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  • You can see the full caption file with timestamps and even download them as a text document. You can also upload your own captions as its own track — useful if auto-captioning isn’t doing the job or to make edits to the auto-captioned text.
  • With auto-captioning, these people can simply use text-based search to find what they need.
    • Chenwen Hong
       
      This means auto-captioning works well as an index for videos. One of its strengths, particularly for us instructors, can be that it helps us effeciently locate relevant clips of videos. This function should also be helpful to our students because we can add notes into the clips at specific frames. Well, the downside is that one might misinterpret videos or misunderstand creators' intentions when using only parts of the videos to suit one's own purposes.
  • You can specify search only brings up videos with closed captioning (it shows the cc icon in search). In the past, when he was at MIT, he couldn’t understand lectures because he had no sign interpreter. Now he can use the captioning to watch lectures he missed.
  • Now students of the California School for the Deaf are speaking (sign language) on how they feel not excluded anymore from the major phenomenon of web video and are grateful to Google for building this technology.
Barbara Lindsey

t r u t h o u t | Dumbing Down Teachers: Attacking Colleges of Education in the Name of... - 0 views

  • the Obama administration's educational policy under the leadership of Arne Duncan lacks a democratic vision and sense of moral direction
  • Almost all of Duncan's polices are indebted to the codes of a market-driven business culture, legitimated through discourses of measurement, efficiency and utility. This is a discourse that values hedge fund managers over teachers, privatization over the public good, management over leadership and training over education. Duncan's fervent support of neoliberal values are well-known and are evident in his support for high-stakes testing, charter schools, school-business alliances, merit pay, linking teacher pay to higher test scores, offering students monetary rewards for higher grades, CEO-type management, abolishing tenure, defining the purpose of schooling as largely job training, the weakening of teacher unions and blaming teachers exclusively for the failure of public schooling.[4]
  • Duncan has expanded the reach of his educational reform policies and is now attempting to rewrite curricular mandates. Emphasizing the practical and experiential, he seeks to gut the critical nature of theory, pedagogy and knowledge taught in colleges of education. This is an important issue to more than just teachers who are denied a voice in curricular development; it also affects whole generations of youth. Such a bold initiative reveals in very clear terms the political project that drives his reforms and what he fears about both public schooling and the teachers who labor in classrooms every day.
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  • According to Duncan, the great sin these colleges have committed in the past few decades is that they have focused too much on theory and not enough on clinical practice; and by theory he means critical pedagogy, or those theories that enable prospective teachers to situate school knowledges, practices and modes of governance within wider critical, historical, social, cultural, economic and political contexts. Duncan wants such colleges to focus on practical methods in order to prepare teachers for an outcome-based education system, which is code for pedagogical methods that are as anti-intellectual as they are politically conservative.
  • Rather than provide the best means for confronting "difficult truths about the inequality of America's political economy," such a pedagogy produces the swindle of "blaming inequalities on individuals and groups with low test scores."[7] This is a pedagogy that sabotages any attempt at self-reflection and quality education, all the while providing an excuse for producing moral comas and a flight from responsibility.
  • Duncan's insistence on banishing theory from teacher education programs in favor of promoting narrowly defined skills and practices foreshadows the preparation of teachers as a subaltern class who believe that the purpose of education is only to train students to compete successfully in a global economy. This model of teaching being celebrated here is one in which teachers are constructed as clerks and technicians who have no need for a public vision in which to imagine the democratic role and social responsibility that schools, teachers or pedagogy might assume for the world and future they offer to young people.
  • Duncan then goes on to praise Louisiana as a model for building longitudinal data systems that track the impact of new teachers on student achievement. For Duncan, Louisiana represents a beacon for how schools should be redefined, largely as sites of management and data collection, and advances the notion that teachers should be trained to operate proficiently in such sites.
  • the overuse of harsh discipline disproportionately affects some Louisiana school children over others. African American students make up 44% of the statewide public school population, but 68% of suspensions and 72.5% of expulsions. And in school districts with a larger percentage of African American and low-income students, there are higher rates of suspension and expulsion. These districts tend to have fewer resources for positive interventions.
  • Duncan's collusion with the growing corporatization and militarizing of public schools, along with the increased use of harsh disciplinary modes of punishment, surveillance, control and containment, especially in schools inhabited largely by poor minorities of color, reveals his unwillingness to address the degree to which many schools are dominated by a politics of fear, containment and authoritarianism, even as he advances reform as a civil rights issue.[12] Schools are not merely places where potential workers learn the marketable skills and abilities necessary to secure a decent job, they are also, as Martha C. Nussbaum pointed out, key institutions of the public good and are "crucial to both the health of democracy and to the creation of a decent world culture and a robust type of global citizenship."[13]
  • The diverse range of political, economic, racial and social forces that influence all aspects of schooling need to be critically engaged and rearticulated in the interest of justice, human development, freedom and equal opportunity. These are not merely political issues, they are also pedagogical concerns and the former cannot be separated from the latter, just as equity cannot be separated from matters of excellence. Defining schools exclusively in terms of mathematical coordinates and statistical formulas suggests that Duncan has no language for addressing schools as sites or teachers as engaged intellectuals that mediate, accommodate, reproduce and sometimes challenge the diverse and often anti-democratic forces that bear down on them.
  • What does it mean to ignore the increasing corporatization, privatization and militarization of schools at a time when all aspects of public life are under siege by corporate and market-driven forces? How can schools fulfill their democratic mission when they are shaped by a social order characterized by massive inequalities in wealth and power?
Barbara Lindsey

Collusion - 0 views

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    fall 2011 syllabus
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