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Barbara Lindsey

Open for Learning: The CMS and the Open Learning Network | in education - 0 views

  • Through a series of comparative studies--in which students of different age groups studied different subject matters under different instructional conditions--Bloom established that the average student instructed individually by a tutor outperformed 98% of students instructed in a conventional classroom setting.
  • Bloom, B. S. (1984). The 2-Sigma Problem: The Search for Methods of Group Instruction as Effective as One-to-One tutoring. Educational Researcher, 13(6), 4–16.
  • To be clear, our assertions about the weaknesses of the CMS paradigm should also be taken as critiques of the predominant pedagogical model in higher education
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  • The OLN model is aimed at leveraging these affordances in ways that the CMS does not. For example, discussions that last longer than 50 minutes can be conducted online without prompting or intervention by the instructor. And such discussions can include more voices than those of the students formally enrolled in the class. Whatever connections students make with each other can be maintained via social networking applications of their choosing. And students can capture, annotate, and archive the content they assemble and create in their courses as well as in their less formal learning experiences. And since they are using their tools, they maintain control of and access to the content as long as they choose.
  • Given the ever increasing rate of change and improvement in learning technologies and approaches, committed teachers should be anxious to find and employ new, more effective tools to help their students learn more effectively.
  • The OLN also has the significant advantage of being time-persistent. Compared with the frequent starts and stops in the CMS (see Figure 2), much of what happens in the OLN allows learners to build their learning networks over time, since it is not bound to semesters, terms, or even the institution. And the artificial boundaries of the CMS are removed thereby allowing the learner to benefit from participation in a broader community of networked learners, further removing the limitations on learner network growth (see Figure 4).  
  • One of the primary aims of the OLN model is to reestablish teachers and learners at the center of learning activity (both inside and outside of courses).
  • By combining several functions into one application, the CMS has forced us to make a tradeoff that is suboptimal for learning. Because there is some confidential and proprietary data in the CMS, we have traditionally locked all course data behind a login screen, viewable only by an instructor and the officially enrolled members of his or her class - and then only for the duration of the semester or term. This is perhaps the most debilitating example of CMS technology being used to reinvent the past. The traditional classroom has always been a private, physically, and temporally bounded space. The natural inclination was to replicate that model within the CMS. However, doing so has imposed the limits of the old space in a new space where such limitations do not exist.
  • there are several key components of the OLN that should be private and secure, situated within an institution's intranet. These include student information systems (SISs), identity and role repositories, proprietary content stores, and secure online assessment applications. These are and should remain core components of the institutional IT infrastructure. Beyond these, however, there are several OLN components that need not be private. Faculty and student blogs, wikis, portfolios, and open courseware and open educational resource repositories can be open (at the option and discretion of individual faculty members and students). These functions can exist, spread across multiple applications and websites, in the cloud. Some applications might even be mashups of intranet and cloud-based applications.
  • Light's examination of the impact of group study among students at Harvard is particularly compelling. In Making the Most of College, Light presents evidence that "students who study outside of class in small groups of four to six students, even just once a week, benefit enormously. Group meetings are organized around discussions of the homework, and as a result of their study group discussion, students are far more engaged and better prepared for class, learning significantly more" (2001, 52).
  • Learning is not a simple acquisition activity. A large body of critical analysis and research concur that learning is at least as much a function of social discourse as it is solitary cognition (e.g., Vygotsky, 1962, 1978, or Schon, Brown, et al., 1989).
  • The same is true for the best educational content—it draws people into arguments, explorations, discussions, and relationships that add depth, meaning, and value to that content.
  • Brown & Adler have argued that, "The 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" (2008, 18). This is in contrast to the prevailing "traditional Cartesian view" of instruction that focuses primarily on the transfer of knowledge—as if it were a substance—from teacher to learner (18). Educational theorists have long argued against the didactic approach. Freire critiqued what he called "banking education," a model in which student activity is limited to "receiving, filing, and storing the deposits" of information apportioned them by the instructor (1970, 72).
  • We may fruitfully update Freire's metaphor of "banking education" to a metaphor of "downloading learning." So much of what passes for innovative uses of instructional technology today, like the OpenCourseWare collections available from MIT and other universities, restricts learners to downloading files.
  • If "hyperlinks subvert hierarchy" (Levine, et al., 1999), Web 2.0 tools are making the learning space fundamentally and permanently flat. CIOs, academic leaders, and individual faculty members might argue that they need the structure and security of the CMS. We agree that some elements of the CMS should be maintained. But students, and a growing number of instructors, are engaging in rich, meaningful dialog, content creation, and sharing outside the CMS.
  • When students enter the walled garden of the CMS, they are largely "acted upon." Efficacious, self-regulating learners, on the other hand, "act" as they participate in and take ownership of their own learning activities and ultimately what they learn and how they employ that new learning in pursuit of their various life projects.
  • The center of gravity in the CMS is decidedly on institutional and instructor efficiency and convenience, not student participation and learning. This should not be surprising given Cuban's findings that educational technology is used largely to "maintain existing practices" rather than to "revolutionize," or even change in any substantial way, teaching and learning practices (2001).
  • But the CMS paradigm actually works against such a transformation of the relationship between teachers and learners because it privileges the role of the instructor and technically restricts individual students from contributing and to shaping courses in any meaningful way. Sclater has argued that the term "learning management system" itself suggests "disempowerment—an attempt to manage and control the activities of the student by the university" (2008, p. 2). The tendencies of the CMS are not, he argues, just "minor irritations" but rather forces that "may overtly or subtly align the institutional processes with the software rather than having the system serve the requirements of the institution" (p. 3).
  • Most (if not all) of these sorts of activities are absent from the typical CMS-based course. This is true primarily because there is no space provided for students to publish such content and engage in such activities of their own creation. Moreover, students engaged in such activities are unlikely to make the CMS the base of their activities because they would be walled off from the rest of the world, destined for deletion at the end of the semester.
  • 12-year-old home schooled girl, Heather Lawver, who created an online, fan-authored version of The Daily Prophet, the fictional newspaper in the Harry Potter series (see http://dprophet.com).
  • Jenkins argues that Lawver's activities, and those of the reporters she recruited, went far beyond a creative outlet for fans—participants acquired knowledge creation, knowledge pooling, and knowledge sharing skills, gained experiences sharing and comparing value systems, learned how to express and interpret feelings about a literary work, and developed Internet publishing skills (p. 185). Gee has argued that similarly transferable skills can be acquired in online role-playing games, where players learn to work well with team members, collaborate to solve problems, and hone individual skills in the context while understanding and appreciating others' skills, etc. (2009).
  • Learners as Co-Instructors, Instructors as Co-Learners
  • the overwhelming usage patterns of instructors indicate that the CMS has been used primarily to mimic the traditional, semester-based, lecture-driven, content-centric model of instruction - one of bestowing "course info" on students.
  • the CMS was designed primarily to support and enhance traditional teaching. It is not coincidental that the first incarnation of Blackboard was branded "CourseInfo."
  • While perhaps a bit stylized, the typical CMS-delivered, content-centric, lecture-driven course complete with multiple-choice midterm and final exams, does little to prepare students to succeed in a world in which there will always be more new knowledge created every day than they can possibly access, much less assimilate, master, and apply. Given the overwhelming flow of data all around us, our job should be increasingly less focussed on making our students "knowledgeable" and focused instead more on making them "knowledge-able" (Wesch, 2009).
  • When a student at Ryerson University convened a chemistry study group inside Facebook in 2007, the University threatened to expel him for academic misconduct. In his defense, the student observed that he was simply replicating online what was common practice in face-to-face study group and tutorial sessions (Schaffhauser, 2008). The difference between these face-to-face sessions and the groups the student created in Facebook, however, was that the online versions of the study groups would persist over time, perhaps far beyond the students' time at Ryerson. Access to Facebook, unlike access to live study sessions or to the CMS, does not expire when a student graduates.
  • mposing artificial time limits on learner access to course content and other learners, privileging the role of the instructor at the expense of the learner, and limiting the power of the network effect in the learning process.
  • Bush & Mott (2009) have argued that the failure of technology to transform learning stems from a preoccupation with "the tactical implementation of specific technologies which often simply automate the past" (p. 17).
  • such software has generally been focused primarily on helping teachers increase the efficiency of the administrative tasks of instruction (e.g., distribute documents, make assignments, give quizzes, initiate discussion boards, assign students to working groups, etc.).
  • tendency to use the CMS to improve instructional efficiency rather than effectiveness.
  • Self-Reported Function Usage in Blackboard by BYU Faculty Members (2004-2009)
  • CMS are "fundamentally a conservative technology ... [for] managing groups, providing tools, and delivering content" (2006, 1).
  • course content distribution and teacher-student communication platform
  • Cuban concluded that "teachers used technology to maintain existing practices" rather than to "revolutionize" the way they teach their students (p. 138).
  • course managment software leads universities to "think they are in the information industry" (356).
  • he industrial, course management model has its center of gravity in teachers generating content, teachers gathering resources, teachers grouping and sequencing information, and teachers giving the information to students (356). This is so, they argue, because teachers "often yield to the seductive appeal of a course management system, where it is easy enough to populate a weekly schedule with static resources and decontextualized tasks" which results in a "focus on content ... rather than the process of educating the student" (357).
  • the CMS continues to artificially situate instruction and learning inside walled gardens that are disconnected from the rich and vibrant networks of learners and content in the wider world.
  • the changes necessary to bridge the 2 sigma gap are at least as much cultural and pedagogical as they are technological.  
  • an unintended consequence of CMS deployment by artificially limiting the potential of the Web to keep students connected to each other and their content. While the CMS facilitates substantial interaction and community building around content within courses, the resulting learning communities are almost always limited to those formally enrolled in the course and those communities exist only for the duration of a particular semester or term. When each period of instruction draws to a close, CMS courses are routinely deactivated and sometimes even deleted to make way for the next semester's courses.
  • course-centric, content-driven model of instruction that dominates higher education.
  • no record left behind of the activity and learning that occurred within them. This is a pattern that repeats from semester to semester, throughout a student's learning career at a particular institution.
    • Barbara Lindsey
       
      Do you agree with this statement? Do you see any issues with this current situation?
  • These learning network disruptions are even more jarring for students who transfer from one institution to another or those who take courses from multiple institutions. Unless students fastidiously copy the content from their CMS courses and save the contact information of their classmates, the learning network connections they have made (both content and social) are essentially lost.
  • flocking to time-persistent social networking and media sharing sites like Facebook, Flickr, YouTube, GMail, and Google Docs.
  • blogs, and wikis
    • Barbara Lindsey
       
      What is your intial reaction to our public blog and wiki?
  • While we know of no formal research on the topic, we believe that knowing that the fruits of their efforts will be categorically deleted at the end of term is a significant negative motivation for students to contribute meaningfully within the CMS, particularly when the same effort invested elsewhere would persist indefinitely.
  • By eliminating access to the courses a student participates in within a CMS, an institution not only hampers them during their formal learning careers, but it takes away a potentially invaluable knowledge-able tool for continued success as a lifelong learner.
  • The old paradigm of making our students "knowingly prepared" is rapidly losing its value. We should instead help our students be "unknowingly prepared—to be unknowing but to possess the tools and skills to rapidly become 'knowing' at the moment-of-need" (p. 3).
  • No longer do students sit passively in the classroom, restricted only to the authority of the instructor and their textbook for the final word on the subject matter of a lecture. Now they can Google terms, concepts, and events mentioned by the instructor, they txt, Facebook, and Twitter each other about what's being said, and they carry their notes and even the lecture itself out of class with them, recorded on laptops, MP3 recorders, and digital pens to be reviewed and shared.
    • Barbara Lindsey
       
      Your reaction to this?
  • Between 2000 and 2008, the average licensing cost per campus for commercial CMS skyrocketed  500% (Delta Initiative, 2009; slide 11).
  • includes such factors as hosting, faculty development, curriculum and instructional course design, multimedia support, and help desk support while making literally no mention of student learning or student activity within the CMS (slide 21).
  • Where once the instructor was the sole (or at lease substantially privileged) possessor of content expertise and certainly the exclusive provider of course materials, learners are now instantaneously able to Google virtually any information about the content of a course (often during the lectures themselves), independently publish their thoughts about it, and interact with others (both inside and outside of the official course roster) about the course and it's subject matter.
  • instructors have largely employed the CMS to automate the past,
    • Barbara Lindsey
       
      What is so bad about 'automating the past'?
  • In a learning context, he argues that no educational information and communication technology can be "universally good." Rather, he asserts, "the best way to invest in instructional technologies is an instrumental approach that analyzes the natures of the curriculum, students, and teachers to select the appropriate tools, applications, media and environments" (59).
  • which learners select as they engage in their educational experiences (p. 59).
    • Barbara Lindsey
       
      Pretty radical approach, no?
  • we prefer to think of educational content as a campfire around which learners gather.
  • When combined with tools and environments that afford opportunities for social interaction, educational resources become semiotic tools that influence learners' actions and mediate the learning process.
    • Barbara Lindsey
       
      This is a key statement.
  • it seems paradoxical that we would we put hundreds, thousands, or millions of learners in front of advanced communications technology so that they can simply retrieve data instead of interacting with each other around that data.
  • We contend that its inadequacy stems from three specific weaknesses of the CMS—(1) the organization of learning experiences into discrete, artificially time-bound units, (2) the predominance of instructor-focused and content-centric tools in the CMS, and (3) the lack of persistent connections between learners, instructors, content, and the broader community across semesters and across class, program, and institutional boundaries.
  • these disruptions are likely to come from educational technologists and leaders exploring new tools and new approaches to learning.
  • while opening the space necessary for learners to act as co-instructors and for teachers to act as co-learners in a dynamically generated space (9).
  • Most institutions of higher education appear focused on . . . content coverage, course structure, and pre-existing time arrangments such as semesters and hours of credit than . . . issues such as learning and performance (
  • This work is licensed under a Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 Unported License.
Barbara Lindsey

One Laptop One Child | Scholastic.com - 0 views

  • quietly tell select students about the policy
  • “We’re going to invite 20 seniors [this school year] selected by teachers,” he says. We don’t want the computers to be a distraction.”
  • The Consolidated High School District 230 in Orland Park, Illinois, has taken a step in this direction by allowing students to bring their computers to school and connect to the Internet, but not log on to the district’s network, says Darrell Walery, director of technology.Stay Away from My Networkwalery sums up the struggle in this issue succinctly. He says tech directors who have been teachers favor the experiment, while those who have business backgrounds blanche at the thought. “My role as technology director is to mediate this exact issue,” he adds.
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  • In Forsyth, the district uses radius servers for centralized network management. This device identifies the districts’ computers, allowing them access to the network according to their status. Laptops that don’t pass this test are put on the district’s virtual lan. This gives them online access while keeping the user behind the district’s firewall and within its Internet filters. It keeps these computers—and their users—away from the district’s network.
  • Murray’s Pennsylvania district scans each notebook before it can connect to the school server. Clean Server antivirus software is one of the tools it uses to avoid “malware” and worms. Also, the district’s scans point users to free patches and service packs that are needed to keep security up to date.
  • Compatibility seems to be less of an issue each day as more online applications become available.
  • schools can turn to the growing number of free online tools available to all.
  • Classroom management is another potential worry. If college professors feel like students sometime use their lectures as a quiet place to fool around or get other work done (see sidebar), then what chance do K–12 teachers have of getting—and keeping—25 students on task?Teachers in Pennsylvania use classroom management software (a small software download) to keep control. Murray says this program allows teachers to take complete control of each laptop if they want, pushing out their lesson to each screen, blocking all work with a single button, and even using the pcs as glorified personal response devices.
  • The last big hurdle to make this policy a reality in more districts is one that can’t be cleared with a simple software program. It is instilling the idea that teachers will no longer be the dominant information delivery for each class.
  • “How do you get teachers prepared to teach in a classroom where everyone is a teacher?
  • “Professional development is key. We have instructional technology specialists at every school. These folks are not the fix-it people but certified teachers [usually from that same building]. It’s a peer.”
  • “There’s an explosion of social activities” that computers enable, Murray says,  from talking with people worldwide to keeping in touch with like-minded groups through Twitter to having students take virtual field trips halfway around the world, or just down the street. Science students can do an online dissection with step-by-step analysis, or math problems where a simulation can help illustrate a difficult-to-grasp concept, he adds.
  • Teachers need to think about teaching in a different way,” he says. “If you’re doing that, a lot of these [problems] go away.”
  • Having kids bring in their own computers can help bring 1:1 a lot closer to reality, especially in poorer districts. Klingler says Forsyth can channel its existing computer stock to students without personal computers and help reduce tech disparity.
  • While his state’s Classrooms for the Future program brought 550 pcs into the district, the technology coordinator realizes he won’t have the funding needed to replace these machines in three or four years.
  • “The cell phone is their thing,” Walery says. “Communication is the main [goal]. They constantly text back and forth.”
  • Forsyth has even looked into using Sony Playstation handhelds in class, noting that they have a “decent Web browser.”“We want to support whatever kids bring in,” he adds.
  • “It’s much more likely in a few years all students will have their own smartphones,” he says.
  •  
    How 1-1 is changing as students ask to bring in their own laptops
Barbara Lindsey

untitled - 0 views

  • Delicious is the Rome, Jerusalem, and Paris of my existence as an academic these days. It's where I make my friends, how I get the news, and where I go to trade. All this from a little server that does nothing but share bookmarks in public.
  • I've been building a taxonomy -- the way some people use wikis, the way my boyfriend uses that utterly cool personal software, "the brain;" the way my father uses his vertical file, the way my DC friends use their rolodexes -- so I sort out all the information I take in, annexing technology to memory, sorting factoids and spare threads and notable evidence in neat, interlocking piles where I can find information again, draw connections, and create new connections.
  • The forty American history students I teach are instructed to go to my delicious page for writing help, research help, maps, and images relating to the class.
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  • What's rapidly happening with these shared tags is academics finding each other in rapid numbers. I have some twenty people in my network, at least half of whom I've never met in real life.
  • Every morning, I log into my delicious network and read the links that my small army of admired, clever, canny, eccentric brains has put together for me. What's more, I'm developing what I'd consider an actual working relationship with these other scholars. A few of them have added me to their own networks. Day to day, I watch their reactions to Bush, I get a sense of where their research is going, and they get a sense of mine. It's low-level, low-commitment hanging out with high levels of information exchange.
  • As Hannah Arendt understood, the modern democratic state happened when people in public spaces began interacting, and thus began taking action together. For this reason, she identified the medival carnivals and fair days of Europe as the seat of literature, culture, debate, and politics. The rule goes like this: make a public, get action. Today, Delicious does for the internet what open-air markets did for medieval society. Low key, high-information, continuous-formation community building.
Barbara Lindsey

Educational Leadership:Giving Students Ownership of Learning:Footprints in the Digital Age - 0 views

  • This 10-year-old probably still needs to learn many of these things, and she needs the guidance of teachers and adults who know them in their own practice.
  • We must help them learn how to identify their passions; build connections to others who share those passions; and communicate, collaborate, and work collectively with these networks. And we must do this not simply as a unit built around "Information and Web Literacy." Instead, we must make these new ways of collaborating and connecting a transparent part of the way we deliver curriculum from kindergarten to graduation.
  • Younger students need to see their teachers engaging experts in synchronous or asynchronous online conversations about content, and they need to begin to practice intelligently and appropriately sharing work with global audiences. Middle school students should be engaged in the process of cooperating and collaborating with others outside the classroom around their shared passions, just as they have seen their teachers do. And older students should be engaging in the hard work of what Shirky (2008) calls "collective action," sharing responsibility and outcomes in doing real work for real purposes for real audiences online.
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  • we educators must first own these technologies and be able to take advantage of these networked learning spaces. In this way, we can fully prepare students not just to be Googled well, but to be findable in good ways by people who share their passions for learning and who may well end up being lifelong teachers, mentors, or friends.
  • So what literacies must we educators master before we can help students make the most of these powerful potentials? It starts, as author Clay Shirky (2008) suggests, with an understanding of how transparency fosters connections and with a willingness to share our work and, to some extent, our personal lives. Sharing is the fundamental building block for building connections and networks;
  • In all likelihood, you, your school, your teachers, or your students are already being Googled on a regular basis, with information surfacing from news articles, blog posts, YouTube videos, Flickr photos, and Facebook groups. Some of it may be good, some may be bad, and most is beyond your control. Your personal footprint—and to some extent your school's—is most likely being written without you, thanks to the billions of us worldwide who now have our own printing presses and can publish what we want when we want to.
  • This may be the first large technological shift in history that's being driven by children. Picture a bus. Your students are standing in the front; most teachers (maybe even you) are in the back, hanging on to the seat straps as the bus careens down the road under the guidance of kids who have never been taught to steer and who are figuring it out as they go. In short, for a host of reasons, we're failing to empower kids to use one of the most important technologies for learning that we've ever had. One of the biggest challenges educators face right now is figuring out how to help students create, navigate, and grow the powerful, individualized networks of learning that bloom on the Web and helping them do this effectively, ethically, and safely.
Barbara Lindsey

How to Use Social Software in Higher Education - 0 views

  •  
    This handbook is a result of the iCamp project, a three-year EC-funded research project that set out to encourage innovative educational practices within European higher education. iCamp's vision is to support competence development in self-organizing intentional learning projects, in collaborating and in social networking by making systematic use of interoperable, networked tools and services. Reports social software higher education
Barbara Lindsey

T+L Top Story - Banning school technology: A bad idea? - 0 views

  • Banning school technology: A bad idea? Educators ponder which technologies are pedagogically useful, say planning is the key to success
  • panelists in a session titled "Leveraging Banned Technologies to Create Ubiquitous Learning Environments" offered their advice to educators on why technology shouldn't be banned from classrooms--and why saying "yes" is worth the time and effort
  • 50 percent of participants said they had schoolwide wireless access; most said they don't allow students to bring their own technology devices to school; and many don't have a policy in place about students bringing their own devices to school
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  • perhaps the most revealing data came from the next question: Do you allow cell phones in school? Most participants said students can carry cell phones as long as they keep them turned off during class; yet, most also agreed that cell phones could be useful for instruction. Participants also said that if students bring personal devices to school, 40 to 60 percent of those students bring a device with broadband access.
  • "Educators want their students to be able to use these technologies, but they don't know how they can be applied in the classroom."
  • "Schools first need to develop a plan of action for when new technologies are introduced and then determine their bandwidth needs. Then they'll be getting somewhere," she said.
  • Steve Hargadon, director of the K12 Open Technologies Initiative at the Consortium for School Networking, and founder of www.classroom20.com. Hargadon developed his social networking site for educators as a way to get educators used to the idea of social networking not always as a scary, educationally empty phenomenon. "We have to look at the tools and the devices behind popular technologies. Just because bad things sometimes happen on Facebook doesn't mean the technology itself can't be useful. It just depends how it's used," he said. Hargadon says that for educators, profile pages can be portfolios and background information for others to see. The "friends" you are making are really "colleagues," he said--and uploading content and adding commentary provides authentic feedback to your ideas. "Common interest groups can be turned into group projects, and the discussion forums allow for asking questions and getting engaged in meaningful conversation. The wisdom of the group will always help when trying to solve problems," he said.
    • Barbara Lindsey
       
      This is a good way to describe the 'Facebook-like' features to colleagues and admins as well as what some of the benefits are to using these environs.
  • For these panelists, the shift in education from a teacher-centric, factory-style model to a more dynamic model filled with ubiquitous access to information, newly created content, and personal devices is not a struggle if you start with a plan--because only by being open to new ideas will today's students be tomorrow's innovators.
    • Barbara Lindsey
       
      This is key.
Barbara Lindsey

On Making Sausage (EDUCAUSE Review) | EDUCAUSE CONNECT - 0 views

  • Buried within the 1,200 well-intentioned, time- and money-wasting pages are a couple of provisions related to copyright infringement on campus networks.
  • The second provision targeting traffic on college and university networks requires all campuses to certify that they (a) have “developed plans to effectively combat the unauthorized distribution of copyrighted material, including through the use of a variety of technology-based deterrents” and (b) “will, to the extent practicable, offer alternatives to illegal downloading or peer-to-peer distribution of intellectual property.”4
  • “Infringement of copyrighted works on university networks is a serious issue. However, a Federal policy that promotes or requires filtering will indirectly add to the costs of education and university research, introduce new security and privacy issues, degrade existing rights under copyright, and have little or no lasting impact on infringement of copyrighted works.”6
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  • the earliest emergence of detailed rules implementing the Higher Education Opportunity Act of 2008 is likely to be July 1, 2010.
  •  
    Description of the negative impact of the 2008 Higher Ed Opportunity Act and the new policing role universities must take on to stop students from file sharing.
Barbara Lindsey

The Alexandrine Dilemma | the human network - 0 views

  • People were invited to come by and sample the high-quality factual information on offer – and were encouraged to leave their own offerings. The high-quality facts encouraged visitors; some visitors would leave their own contributions, high-quality facts which would encourage more visitors, and so, in a “virtuous cycle”, Wikipedia grew as large as, then far larger than Encyclopedia Britannica.
    • Barbara Lindsey
       
      How does the actual quality and perception of quality of wikipedia affect its acceptance by academia?
  • It wasn’t the server crash that doomed Britannica; when the business minds at Britannica tried to crash through into profitability, that’s when they crashed into the paywall they themselves established.
  • Just a few weeks ago, the European Union launched a new website, Europeana. Europeana is a repository, a collection of cultural heritage of Europe, made freely available to everyone in the world via the Web. From Descartes to Darwin to Debussy, Europeana hopes to become the online cultural showcase of European thought.
    • Barbara Lindsey
       
      But it appears that they and the sites they link to will not allow for unfettered use of their content. Current, restrictive copyright laws are in place, it seems.
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  • there is an almost insatiable interest in factual information made available online
  • rbitrarily restricting access to factual information simply directs the flow around the institution restricting access. Britannica could be earning over a hundred million dollars a year from advertising revenue – that’s what it is projected that Wikipedia could earn, just from banner advertisements, if it ever accepted advertising. But Britannica chose to lock itself away from its audience.
  • under no circumstances do you take yourself off the network.
  • t seems as though many of our institutions are mired in older ways of thinking, where selfishness and protecting the collection are seen as a cardinal virtues. There’s a new logic operating: the more something is shared, the more valuable it becomes.
  • In a landmark settlement of a long-running copyright dispute with book publishers in the United States, Google agreed to pay a license fee to those publishers for their copyrights – even for books out of print. In return, the publishers are allowing Google to index, search and display all of the books they hold under copyright.
  • Each of these texts is indexed and searchable – just as with the books under copyright, but, in this case, the full text is available through Google’s book reader tool. For works under copyright but out-of-print, Google is now acting as the sales agent, translating document searches into book sales for the publishers, who may now see huge “long tail” revenues generated from their catalogues.
  • Since Google is available from every computer connected to the Internet (given that it is available on most mobile handsets, it’s available to nearly every one of the four billion mobile subscribers on the planet), this new library – at least seven million volumes – has become available everywhere. The library has become coextensive with the Internet.
  • When CD-ROM was introduced, twenty years ago, it was hailed as the “new papyrus,” capable of storing vast amounts of information in a richly hyperlinked format. As the limits of CD-ROM became apparent, the Web became the repository of the hopes of all the archivists and bibliophiles who dreamed of a new Library of Alexandria, a universal library with every text in every tongue freely available to all.
  • We have now gotten as close to that ideal as copyright law will allow;
  • For libraries, Google has established subscription-based fees for access to books covered by copyright.
  • Within another few years, every book within arm’s length of Google (and Google has many, many arms) will be scanned, indexed and accessible through books.google.com. This library can be brought to bear everywhere anyone sits down before a networked screen. This librar
  • The library has been obsolesced because it has become universal; the stacks have gone virtual, sitting behind every screen. Because the idea of the library has become so successful, so universal, it no longer means anything at all. We are all within the library.
  • The central task of the librarian – if I can be so bold as to state something categorically – is to bring order to chaos. The librarian takes a raw pile of information and makes it useful.
  • At its most visible, the book cataloging systems used in all libraries represents the librarian’s best efforts to keep an overwhelming amount of information well-managed and well-ordered.
  • Google seems to have abandoned – or ignored – library science in its own book project. I can’t tell you why this is, I can only tell you that it looks very foolish and naïve.
  • because the library is universal, library science now needs to be a universal skill set, more broadly taught than at any time previous to this. We have become a data-centric culture, and are presently drowning in data. It’s difficult enough for us to keep our collections of music and movies well organized; how can we propose to deal with collections that are a hundred thousand times larger?
Barbara Lindsey

Open Thinking Wiki - 1 views

  •  
    Harnessing the Power of Social Networks in Teaching and Learning
Barbara Lindsey

From Participation to Creation - 2020 Forecast: Creating the Future of Learning - 0 views

  • The primary story within our last forecast, the 2006 KWF/IFTF Map of Future Forces Affecting Education, was about participation. Specifically, that forecast showed how individuals and groups were taking advantage of participatory media, creating “smart networks” to form groups, and creating value through bottom-up collaboration in “grassroots economies.” Participants were beginning to exchange learning resources, form smart education mobs, and release education from traditional institutions. All this participation was converging with a host of other external forces to effect real changes in the learning enterprise.
  • The 2020 Forecast depicts a set of forces that are pushing us to create the future of learning as an ecosystem, in which we have yet to determine the role of education institutions as we know them today.
  •  
    "The primary story within our last forecast, the 2006 KWF/IFTF Map of Future Forces Affecting Education, was about participation. Specifically, that forecast showed how individuals and groups were taking advantage of participatory media, creating "smart networks" to form groups, and creating value through bottom-up collaboration in "grassroots economies." Participants were beginning to exchange learning resources, form smart education mobs, and release education from traditional institutions. All this participation was converging with a host of other external forces to effect real changes in the learning enterprise."
Barbara Lindsey

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

  • The 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
  • The openness of Wikipedia is instructive in another way: 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.
  • 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. 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.
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  • A very different sort of initiative that is using technology to leverage social learning is Digital StudyHall (DSH), which is designed to improve education for students in schools in rural areas and urban slums in India.
  • many students in the United States and in many other parts of the world are already involved with online social networks that include their friends. John King, the associate provost of the University of Michigan, has attempted to bring attention to this phenomenon by asking how many students are being taught each year by his institution. Although about 40,000 students are enrolled in classes on the university’s campus in Ann Arbor, King believes that the actual number of students being reached by the school today is closer to 250,000.13
  • 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.
  • Hands-On Universe (HOU) is also designed to promote collaborative learning in astronomy (http://www.handsonuniverse.org). Based at the Lawrence Hall of Science, University of California, Berkeley, 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. According to Kyle Cudworth, the science director at Yerkes Observatory, which is part of the HOU network: “This is not education in which people come in and lecture in a classroom. We’re helping students work with real data.”16
  • the emphasis is on building a community of students and scholars as much as on providing access to educational content.
  • longtail
  • The power of peer review had been brought to bear on the assignments
  • 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.
  • 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
  • We are entering a world in which we all will have to acquire new knowledge and skills on an almost continuous basis.
  • Light discovered that one of the strongest determinants of students’ success in higher education—more important than the details of their instructors’ teaching styles—was their ability to form or participate in small study groups. Students who studied in groups, even only once a week, were more engaged in their studies, were better prepared for class, and learned significantly more than students who worked on their own.6
  • We need to construct shared, distributed, reflective practicums in which experiences are collected, vetted, clustered, commented on, and tried out in new contexts.
  • 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.
Barbara Lindsey

Locus Online Perspectives: Cory Doctorow: Close Enough for Rock 'n' Roll - 0 views

  • This is one of the great conundra of our era: the spectre that haunts every executive, every government, every powerful person who owes her stature to her command of an empire that enjoys its pride of place thanks to the prohibitive cost of replicating it.But lurking in those 80 percent replacements are an infinitude of ideas too weird and too funky and implausible to try at full price. Lurking there are ideas as weird and dumb as a company called (I kid you not) Google, an encyclopedia that everyone can write, a wireless network standard based on open spectrum that anyone is allowed to use, without central planning.
  •  
    This is one of the great conundra of our era: the spectre that haunts every executive, every government, every powerful person who owes her stature to her command of an empire that enjoys its pride of place thanks to the prohibitive cost of replicating it. But lurking in those 80 percent replacements are an infinitude of ideas too weird and too funky and implausible to try at full price. Lurking there are ideas as weird and dumb as a company called (I kid you not) Google, an encyclopedia that everyone can write, a wireless network standard based on open spectrum that anyone is allowed to use, without central planning.
Barbara Lindsey

The Wealth of Networks - 0 views

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    "In this comprehensive social theory of the Internet and the networked information economy, Benkler describes how patterns of information, knowledge, and cultural production are changing-and shows that the way information and knowledge are made available can either limit or enlarge the ways people can create and express themselves. He describes the range of legal and policy choices that confront us and maintains that there is much to be gained-or lost-by the decisions we make today."
Barbara Lindsey

Philosophy | Intrepid Teacher - 0 views

  • The 21st century classroom must be a place to network, to create, to publish, to share.
  • The new classroom does not integrate technology into an outdated curriculum, but rather infuses technology into the daily performance of classroom life.
  • In this new classroom, the teacher is not the sole expert or the only source of information, but rather the teacher is the lead member of a network—guiding and facilitating as students search for answers to questions they have carefully generated.
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  • It is important to note that some students may be quietly sitting in the corner engrossed in an old fashioned text.
  • Daily and total access to computers allows students to realize that technology is not something they “do” when they go to the lab or when the teacher has checked out the laptop cart, but rather technology is something they can use everyday in class to help themselves learn.
  • In this new classroom, students will begin to understand that their computer is not simply a novelty to take notes with, but it is their binder, their planner, their dictionary, their journal, their photo album, their music archive, their address book.
  • tudents will begin to understand that their computer is not simply a novel
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    Outstanding teaching philosophy that gets at the heart of how and why technology should be used in learning.
Nicole McClure

Planning for Neomillennial Learning Styles: Implications for Investments in Technology and Faculty | Resources | EDUCAUSE - 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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  • 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.
  • 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?
    • Nicole McClure
       
      That's an interesting question - sometimes I think we are already on the other side of this, meaning we've already passed it in some ways. Last night I was out for dinner at the Main Street and I saw something that was a little crazy. My husband and I were using my cellphone to look up words that would help trigger a creative name for his new company - a UConn professor (who shall remain unnamed :)) was using his iPhone for something other than a phone call - and the women at the table across from me were also engaged in half converstation - half text message/email, etc. The reason that I bring this up is that all of these people, myself included, are NOT part of the millenial generation (way past I'm afraid!) and we were using this stuff. As history goes - if the "grown-ups" are using it, the kids are over it and on to something else.
  • Immersion is the subjective impression that one is participating in a comprehensive, realistic experience.
  • 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.
  • Inducing a participant's symbolic immersion involves triggering powerful semantic associations via the content of an experience.
    • Barbara Lindsey
       
      Felice's Utopian City
  • 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.
  • 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!
  • 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.
  • 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.
    • Barbara Lindsey
       
      One of the most difficult skills to master.
  • 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
  • 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
  • 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
  • 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.
  • 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
  • Notion of place is layered/blended/multiple; mobility and nomadicity prevalent among dispersed, fragmented, fluctuating habitats (for example, coffeehouses near campus)
  • 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?
  • Guided social constructivism and situated learning as major forms of pedagogy
  • 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
  • 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
  • Multipurpose habitats—creating layered/blended/personalizable places rather than specialized locations (such as computer labs)
  • Neomillenial Versus Millennial Learning Styles
  • Emphasis is placed on implications for strategic investments in physical plant, technology infrastructure, and professional development.
  • 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.
  • 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

Sentiments On Common Sense » Credit where credit is due…. BLAME where blame sits - 0 views

  • With the use of quality networking tools, we can as a professional expand our learning and conversation and bring a true sense of understanding to the communities in which we work.  I would even guess that if used properly, we could drag the “parking lot conversations” that are currently happenning online into the staff room and even the administrators office where they could be productively dealt with in effective and productive ways.
  • IMAGINE a faculty meeting where a ning site was set up to allow for followup questions and online conversation. 
  • People are more apt to give you accurate and honest feedback immediately following a meeting instead of days and weeks afterward. 
Barbara Lindsey

Top News - Jr. colleges outpace 4-year schools in tech use - 0 views

  • Overall, U.S. colleges and universities are only half way to realizing the 21st-century campus, a new survey suggests
  • In a recent survey on technology integration in higher education, community colleges actually scored slightly higher than four-year institutions.
  • U.S. colleges and universities are only half way to fulfilling their potential for 21st-century teaching and learning, according to CDW-G's "21st-Century Campus" report. Only a third of professors said technology is fully integrated into the higher-educational experience, and although 63 percent of students said they use technology to prepare for their classes, just 24 percent said they use it during class.
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  • College faculty and IT staff agreed that a lack of technology know-how among professors is the biggest barrier to technology integration on campus. Although 85 percent of faculty members said their institutions provide some kind of technology training, 44 percent nevertheless said their biggest challenge is knowing how to use technology in their teaching.
  • But community colleges also lag in certain areas, the index suggests--including using social-networking tools to enhance faculty-student interaction and giving students access to their computer networks off campus.
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