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Carlos Quintero

Innovate: Future Learning Landscapes: Transforming Pedagogy through Social Software - 0 views

  • Web 2.0 has inspired intense and growing interest, particularly as wikis, weblogs (blogs), really simple syndication (RSS) feeds, social networking sites, tag-based folksonomies, and peer-to-peer media-sharing applications have gained traction in all sectors of the education industry (Allen 2004; Alexander 2006)
  • Web 2.0 allows customization, personalization, and rich opportunities for networking and collaboration, all of which offer considerable potential for addressing the needs of today's diverse student body (Bryant 2006).
  • In contrast to earlier e-learning approaches that simply replicated traditional models, the Web 2.0 movement with its associated array of social software tools offers opportunities to move away from the last century's highly centralized, industrial model of learning and toward individual learner empowerment through designs that focus on collaborative, networked interaction (Rogers et al. 2007; Sims 2006; Sheely 2006)
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  • learning management systems (Exhibit 1).
  • The reality, however, is that today's students demand greater control of their own learning and the inclusion of technologies in ways that meet their needs and preferences (Prensky 2005)
  • Tools like blogs, wikis, media-sharing applications, and social networking sites can support and encourage informal conversation, dialogue, collaborative content generation, and knowledge sharing, giving learners access to a wide range of ideas and representations. Used appropriately, they promise to make truly learner-centered education a reality by promoting learner agency, autonomy, and engagement in social networks that straddle multiple real and virtual communities by reaching across physical, geographic, institutional, and organizational boundaries.
  • "I have always imagined the information space as something to which everyone has immediate and intuitive access, and not just to browse, but to create” (2000, 216). Social software tools make it easy to contribute ideas and content, placing the power of media creation and distribution into the hands of "the people formerly known as the audience" (Rosen 2006).
  • the most promising settings for a pedagogy that capitalizes on the capabilities of these tools are fully online or blended so that students can engage with peers, instructors, and the community in creating and sharing ideas. In this model, some learners engage in creative authorship, producing and manipulating digital images and video clips, tagging them with chosen keywords, and making this content available to peers worldwide through Flickr, MySpace, and YouTube
  • Student-centered tasks designed by constructivist teachers reach toward this ideal, but they too often lack the dimension of real-world interactivity and community engagement that social software can contribute.
  • Pedagogy 2.0: Teaching and Learning for the Knowledge Age In striving to achieve these goals, educators need to revisit their conceptualization of teaching and learning (Exhibit 2).
  • Pedagogy 2.0: Teaching and Learning for the Knowledge Age In striving to achieve these goals, educators need to revisit their conceptualization of teaching and learning
  • Pedagogy 2.0 is defined by: Content: Microunits that augment thinking and cognition by offering diverse perspectives and representations to learners and learner-generated resources that accrue from students creating, sharing, and revising ideas; Curriculum: Syllabi that are not fixed but dynamic, open to negotiation and learner input, consisting of bite-sized modules that are interdisciplinary in focus and that blend formal and informal learning;Communication: Open, peer-to-peer, multifaceted communication using multiple media types to achieve relevance and clarity;Process: Situated, reflective, integrated thinking processes that are iterative, dynamic, and performance and inquiry based;Resources: Multiple informal and formal sources that are rich in media and global in reach;Scaffolds: Support for students from a network of peers, teachers, experts, and communities; andLearning tasks: Authentic, personalized, learner-driven and learner-designed, experiential tasks that enable learners to create content.
  • Instructors implementing Pedagogy 2.0 principles will need to work collaboratively with learners to review, edit, and apply quality assurance mechanisms to student work while also drawing on input from the wider community outside the classroom or institution (making use of the "wisdom of crowds” [Surowiecki 2004]).
  • A small portion of student performance content—if it is new knowledge—will be useful to keep. Most of the student performance content will be generated, then used, and will become stored in places that will never again see the light of day. Yet . . . it is still important to understand that the role of this student content in learning is critical.
  • This understanding of student-generated content is also consistent with the constructivist view that acknowledges the learner as the chief architect of knowledge building. From this perspective, learners build or negotiate meaning for a concept by being exposed to, analyzing, and critiquing multiple perspectives and by interpreting these perspectives in one or more observed or experienced contexts
  • This understanding of student-generated content is also consistent with the constructivist view that acknowledges the learner as the chief architect of knowledge building. From this perspective, learners build or negotiate meaning for a concept by being exposed to, analyzing, and critiquing multiple perspectives and by interpreting these perspectives in one or more observed or experienced contexts. In so doing, learners generate their own personal rules and knowledge structures, using them to make sense of their experiences and refining them through interaction and dialogue with others.
  • Other divides are evident. For example, the social networking site Facebook is now the most heavily trafficked Web site in the United States with over 8 million university students connected across academic communities and institutions worldwide. The majority of Facebook participants are students, and teachers may not feel welcome in these communities. Moreover, recent research has shown that many students perceive teaching staff who use Facebook as lacking credibility as they may present different self-images online than they do in face-to-face situations (Mazer, Murphy, and Simonds 2007). Further, students may perceive instructors' attempts to coopt such social technologies for educational purposes as intrusions into their space. Innovative teachers who wish to adopt social software tools must do so with these attitudes in mind.
  • "students want to be able to take content from other people. They want to mix it, in new creative ways—to produce it, to publish it, and to distribute it"
  • Furthermore, although the advent of Web 2.0 and the open-content movement significantly increase the volume of information available to students, many higher education students lack the competencies necessary to navigate and use the overabundance of information available, including the skills required to locate quality sources and assess them for objectivity, reliability, and currency
  • In combination with appropriate learning strategies, Pedagogy 2.0 can assist students in developing such critical thinking and metacognitive skills (Sener 2007; McLoughlin, Lee, and Chan 2006).
  • We envision that social technologies coupled with a paradigm of learning focused on knowledge creation and community participation offer the potential for radical and transformational shifts in teaching and learning practices, allowing learners to access peers, experts, and the wider community in ways that enable reflective, self-directed learning.
  • . By capitalizing on personalization, participation, and content creation, existing and future Pedagogy 2.0 practices can result in educational experiences that are productive, engaging, and community based and that extend the learning landscape far beyond the boundaries of classrooms and educational institutions.
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    About pedagogic 2.0
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    Future Learning Landscapes: Transforming Pedagogy through Social Software Catherine McLoughlin and Mark J. W. Lee
anonymous

Critical Issue: Using Technology to Improve Student Achievement - 0 views

shared by anonymous on 23 Feb 10 - Cached
  • Technologies available in classrooms today range from simple tool-based applications (such as word processors) to online repositories of scientific data and primary historical documents, to handheld computers, closed-circuit television channels, and two-way distance learning classrooms. Even the cell phones that many students now carry with them can be used to learn (Prensky, 2005).
  • Bruce and Levin (1997), for example, look at ways in which the tools, techniques, and applications of technology can support integrated, inquiry-based learning to "engage children in exploring, thinking, reading, writing, researching, inventing, problem-solving, and experiencing the world." They developed the idea of technology as media with four different focuses: media for inquiry (such as data modeling, spreadsheets, access to online databases, access to online observatories and microscopes, and hypertext), media for communication (such as word processing, e-mail, synchronous conferencing, graphics software, simulations, and tutorials), media for construction (such as robotics, computer-aided design, and control systems), and media for expression (such as interactive video, animation software, and music composition). In a review of existing evidence of technology's impact on learning, Marshall (2002) found strong evidence that educational technology "complements what a great teacher does naturally," extending their reach and broadening their students' experience beyond the classroom. "With ever-expanding content and technology choices, from video to multimedia to the Internet," Marshall suggests "there's an unprecedented need to understand the recipe for success, which involves the learner, the teacher, the content, and the environment in which technology is used."
  • In examining large-scale state and national studies, as well as some innovative smaller studies on newer educational technologies, Schacter (1999) found that students with access to any of a number of technologies (such as computer assisted instruction, integrated learning systems, simulations and software that teaches higher order thinking, collaborative networked technologies, or design and programming technologies) show positive gains in achievement on researcher constructed tests, standardized tests, and national tests.
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  • Boster, Meyer, Roberto, & Inge (2002) examined the integration of standards-based video clips into lessons developed by classroom teachers and found increases student achievement. The study of more than 1,400 elementary and middle school students in three Virginia school districts showed an average increase in learning for students exposed to the video clip application compared to students who received traditional instruction alone.
  • Wenglinsky (1998) noted that for fourth- and eighth-graders technology has "positive benefits" on achievement as measured in NAEP's mathematics test. Interestingly, Wenglinsky found that using computers to teach low order thinking skills, such as drill and practice, had a negative impact on academic achievement, while using computers to solve simulations saw their students' math scores increase significantly. Hiebert (1999) raised a similar point. When students over-practice procedures before they understand them, they have more difficulty making sense of them later; however, they can learn new concepts and skills while they are solving problems. In a study that examined relationship between computer use and students' science achievement based on data from a standardized assessment, Papanastasiou, Zemblyas, & Vrasidas (2003) found it is not the computer use itself that has a positive or negative effect on achievement of students, but the way in which computers are used.
  • Another factor influencing the impact of technology on student achievement is that changes in classroom technologies correlate to changes in other educational factors as well. Originally the determination of student achievement was based on traditional methods of social scientific investigation: it asked whether there was a specific, causal relationship between one thing—technology—and another—student achievement. Because schools are complex social environments, however, it is impossible to change just one thing at a time (Glennan & Melmed, 1996; Hawkins, Panush, & Spielvogel, 1996; Newman, 1990). If a new technology is introduced into a classroom, other things also change. For example, teachers' perceptions of their students' capabilities can shift dramatically when technology is integrated into the classroom (Honey, Chang, Light, Moeller, in press). Also, teachers frequently find themselves acting more as coaches and less as lecturers (Henriquez & Riconscente, 1998). Another example is that use of technology tends to foster collaboration among students, which in turn may have a positive effect on student achievement (Tinzmann, 1998). Because the technology becomes part of a complex network of changes, its impact cannot be reduced to a simple cause-and-effect model that would provide a definitive answer to how it has improved student achievement.
  • When new technologies are adopted, learning how to use the technology may take precedence over learning through the technology. "The technology learning curve tends to eclipse content learning temporarily; both kids and teachers seem to orient to technology until they become comfortable," note Goldman, Cole, and Syer (1999). Effective content integration takes time, and new technologies may have glitches. As a result, "teachers' first technology projects generate excitement but often little content learning. Often it takes a few years until teachers can use technology effectively in core subject areas" (Goldman, Cole, & Syer, 1999). Educators may find impediments to evaluating the impact of technology. Such impediments include lack of measures to assess higher-order thinking skills, difficulty in separating technology from the entire instructional process, and the outdating of technologies used by the school. To address these impediments, educators may need to develop new strategies for student assessment, ensure that all aspects of the instructional process—including technology, instructional design, content, teaching strategies, and classroom environment—are conducive to student learning, and conduct ongoing evaluation studies to determine the effectiveness of learning with technology (Kosakowski, 1998).
Dennis OConnor

News: The Evidence on Online Education - Inside Higher Ed - 0 views

  • WASHINGTON -- Online learning has definite advantages over face-to-face instruction when it comes to teaching and learning, according to a new meta-analysis released Friday by the U.S. Department of Education.The study found that students who took all or part of their instruction online performed better, on average, than those taking the same course through face-to-face instruction. Further, those who took "blended" courses -- those that combine elements of online learning and face-to-face instruction -- appeared to do best of all. That finding could be significant as many colleges report that blended instruction is among the fastest-growing types of enrollment.
  • the positive results appeared consistent (and statistically significant) for all types of higher education, undergraduate and graduate, across a range of disciplines, the study said.
  • On the topic of online learning, there is a steady stream of studies, but many of them focus on limited issues or lack control groups. The Education Department report said that it had identified more than 1,000 empirical studies of online learning that were published from 1996 through July 2008. For its conclusions, however, the Education Department considered only a small number (51) of independent studies that met strict criteria. They had to contrast an online teaching experience to a face-to-face situation, measure student learning outcomes, use a "rigorous research design," and provide adequate information to calculate the differences.
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  • Using technology to give students "control of their interactions" has a positive effect on student learning, however. "Studies indicate that manipulations that trigger learner activity or learner reflection and self-monitoring of understanding are effective when students pursue online learning as individuals," the report says.
  • n noting caveats about the findings, the study returns to the issue of time."Despite what appears to be strong support for online learning applications, the studies in this meta-analysis do not demonstrate that online learning is superior as a medium," the report says. "In many of the studies showing an advantage for online learning, the online and classroom conditions differed in terms of time spent, curriculum and pedagogy. It was the combination of elements in the treatment conditions (which was likely to have included additional learning time and materials as well as additional opportunities for collaboration) that produced the observed learning advantages. At the same time, one should note that online learning is much more conducive to the expansion of learning time than is face-to-face instruction."
  • " What the study demonstrates, she said, is that colleges need to think broadly about using online education, and not be "artificially limited" to face-to-face instruction.
  • Successful education has always been about engaging students whether it is in an online environment, face to face or in a blended setting. And fundamental to that is having faculty who are fully supported and engaged in that process as well."
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    Timely information for our group! The learning time issue in particular is an important finding that points to a cost effective way to increase student learning time without tackling the issue of a longer school day head on. We know that more time on meaningful tasks is crucial, but the physical cost of attending a bricks and mortar classrooms is prohibitive.
Ian Woods

AJET 26(3) Drexler (2010) - The networked student model for construction of personal le... - 17 views

    • jordi guim
       
      Muy interesante sobre PLE / PLN
  • Table 2: Personal learning environment toolset Web application (networked student component) Tool used in test case Student activity level of structure Social bookmarking (RSS) Delicious http://delicious.com/ Set up the account Subscribe to each others accounts Bookmark and read 10 reliable websites that reflect the content of chosen topic Add and read at least 3 additional sites each week. News and blog alert (RSS) Google Alert http://www.google.com/alerts Create a Google Alert of keywords associated with selected topic Read news and blogs on that topic that are delivered via email daily Subscribe to appropriate blogs in reader News and blog reader (RSS) Google Reader http://reader.google.com Search for blogs devoted to chosen topic Subscribe to blogs to keep track of updates Personal blog (RSS) Blogger http://www.blogger.com Create a personal blog Post a personal reflection each day of the content found and experiences related to the use of personal learning environment Students subscribe to each others blogs in reader Internet search (information management, contacts, and synchronous communication) Google Scholar http://scholar.google.com/ Conduct searches in Google Scholar and library databases for scholarly works. Bookmark appropriate sites Consider making contact with expert for video conference Podcasts (RSS) iTunesU http://www.apple.com/itunes/ whatson/itunesu.html Search iTunesU for podcasts related to topic Subscribe to at least 2 podcasts if possible Video conferencing (contacts and synchronous communication) Skype http://www.skype.com Identify at least one subject matter expert to invite to Skype with the class. Content gathering/ digital notebook Evernote http://evernote.com/ Set up account Use Evernote to take notes on all content collected via other tools Content synthesis Wikispaces http://www.wikispaces.com Post final project on personal page of class wiki The process and tools are overwhelming to students if presented all at once. As with any instructional design, the teacher determines the pace at which the students best assimilate each new learning tool. For this particular project, a new tool was introduced each day over two weeks. Once the construction process was complete, there were a number of personal web page aggregators that could have been selected to bring everything together in one place. Options at the time included iGoogle, PageFlakes, NetVibes, and Symbaloo. These sites offer a means to compile or pull together content from a variety of web applications. A web widget or gadget is a bit of code that is executed within the personal web page to pull up external content from other sites. The students in this case designed the personal web page using the gadgets needed in the format that best met their learning goals. Figure 3 is an instructor example of a personal webpage that includes the reader, email, personal blog, note taking program, and social bookmarks on one page.
  • The personal learning environment can take the place of a traditional textbook, though does not preclude the student from using a textbook or accessing one or more numerous open source texts that may be available for the research topic. The goal is to access content from many sources to effectively meet the learning objectives. The next challenge is to determine whether those objectives have been met.
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  • AssessmentThere were four components of the assessment process for this test case of the Networked Student Model: (1) Ongoing performance assessment in the form of weekly assignments to facilitate the construction and maintenance of the personal learning environment, (2) rubric-based assessment of the personal learning environment at the end of the project, (3) written essay, and (4) multimedia synthesis of topic content. Points were earned for meeting the following requirements: Identify ten reliable resources and post to social bookmarking account. At least three new resources should be added each week. Subscribe and respond to at least 3 new blogs each week. Follow these blogs and news alerts using the reader. Subscribe to and listen to at least two podcasts (if available). Respectfully contact and request a video conference from a subject matter expert recognised in the field. Maintain daily notes and highlight resources as needed in digital notebook. Post at least a one-paragraph reflection in personal blog each day. At the end of the project, the personal learning environment was assessed with a rubric that encompassed each of the items listed above. The student's ability to synthesise the research was further evaluated with a reflective essay. Writing shapes thinking (Langer & Applebee, 1987), and the essay requirement was one more avenue through which the students demonstrated higher order learning. The personal blog provided an opportunity for regular reflection during the course of the project. The essay was the culmination of the reflections along with a thoughtful synthesis of the learning experience. Students were instructed to articulate what was learned about the selected topic and why others should care or be concerned. The essay provided an overview of everything learned about the contemporary issue. It was well organised, detailed, and long enough to serve as a resource for others who wished to learn from the work. As part of a final exam, the students were required to access the final projects of their classmates and reflect on what they learned from this exposure. The purpose of this activity was to give the students an additional opportunity to share and learn from each other. Creativity is considered a key 21st century skill (Partnership for 21st Century Skills, 2009). A number of emerging web applications support the academic creative process. Students in this project used web tools to combine text, video, audio, and photographs to teach the research topics to others. The final multimedia project was posted or embedded on the student's personal wiki page. Analysis and assessment of student work was facilitated by the very technologies in use by the students. In order to follow their progress, the teacher simply subscribed to student social bookmarking accounts, readers, and blogs. Clicking through daily contributions was relatively quick and efficient.
Wendy Windust

WIDE World - Program Overview - 14 views

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    Our goal is to transform school systems by developing professional communities of teachers and school leaders with interactive online courses and on-site support programs that enable schools to cultivate the critical learning students need for the 21st century world. Research-Based. WIDE World professional development programs are based on Teaching for Understanding, a classroom-tested framework developed through research at the Harvard Graduate School of Education. Online. WIDE World courses are conducted online and are asynchronous. This allows for flexible, adaptive, and convenient learning for all participants, regardless of location or schedule. Job-embedded. Through our courses, WIDE World learners integrate research-based strategies in their own workplace. Online coaches support cycles of learning, applying, and reflecting as teams of educators improve lesson plans, instruction, and data-driven action projects. Team-Based with Coaching. Systemic change requires coordinated effort from all stakeholders. Expert coaches help teachers, leaders, and specialists work in teams to develop a common language for defining and achieving shared goals. Tailored for Local Impact. WIDE World works with you to design professional development programs adapted precisely to address the needs of your school, program, district, or system and build local capacity for continuous improvement. Global Learning. In the online environment, participants collaborate with innovative educators from across the US and around the globe.
Ruth Howard

GAME School Opens in New York:Quest to Learn | HASTAC - 0 views

  • In an atmosphere of academic excellence, Quest aims to foster the type of learning that is possible today—learning based on access to online resources and tools from around the globe, learning that supports customized content for every student on demand, learning that is game-like in its ability to inspire and motivate. “In an age when low-income urban kids continue to drop out of school at alarming rates, yet research is consistently showing the high levels of engagement youth are exhibiting in various media platforms, it is incumbent upon educators to take notice and indeed redirect teaching methods to meet the needs and interests of students,” says Schwartz.
  • a robust industry mentorship program allow students opportunities to learn alongside experts, s
  • critical pedagogic tool in secondary education.”
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  • 21st century learning materials and assessment
  • teacher training and digital arts
  • “learn by doing” through coursework focused on helping students make connections between ideas and skills in real world contexts. Enhanced literacy and math instruction occurs daily and all students have opportunities to gain expertise in reading, writing, and designing with digital media, including taking courses in computer programming, media arts, and game design. A fully integrated Wellness curriculum supports students in achieving healthy hearts, minds, and bodies.
  • based on research on how students today learn best
  • daily workshops in numeracy and literacy for struggling students,
  • cues from the media-rich learning kids are engaged in outside of school
  • expect a school that is all about beauty, science, thinking, learning, excitemen
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    A new New York school-curriculum by game designers fully integrating a new learning ecology.
Mike McIlveen

21centuryedtech - home - 0 views

  • First they promote "a new instructional approach that engages learners". New Tech incorporates project-based learning (PBL) as the center of the instructional approach. PBL is facilitated by technology and student inquiry to engage learners with issues and questions that are relevant. Teachers design rigorous projects tied to state standards and customized to local community and student interests. Students collaborate in teams to acquire and apply knowledge and skills to solve problems. Next, " New Tech builds "a culture that empowers students and teachers". It is trust, respect, and responsibility that become the center of the learning culture. Students are put in charge of their own learning, becoming self-directed learners, while teachers are given the administrative support and resources to assist students in this realization. Last, New Tech maintains that "integrated use of technology" is essential for 21st Century education.
    • Mike McIlveen
       
      Trust, respect, responsibility - putting Character Ed. into practice, with admin. support - that's a new paradigm in my district.
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    New Tech incoporates three key concepts. First they promote "a new instructional approach that engages learners". New Tech incorporates project-based learning (PBL) as the center of the instructional approach. PBL is facilitated by technology and student inquiry to engage learners with issues and questions that are relevant. Teachers design rigorous projects tied to state standards and customized to local community and student interests. Students collaborate in teams to acquire and apply knowledge and skills to solve problems. Next, " New Tech builds "a culture that empowers students and teachers". It is trust, respect, and responsibility that become the center of the learning culture. Students are put in charge of their own learning, becoming self-directed learners, while teachers are given the administrative support and resources to assist students in this realization. Last, New Tech maintains that "integrated use of technology" is essential for 21st Century education
Paul Beaufait

Introduction to Inquiry-Based Learning - 55 views

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    "It is crucial to recognize that inquiry-based teaching should not be viewed as a technique or instructional practice or method used to teach a subject. Rather, inquiry starts with teachers as engaged learners and researchers with the foundational belief that the topics they teach are rich, living and generous places for wonder and exploration." (para. 4, retrieved 2012.11.23)
Ruth Howard

Place-Based Education | Promise of Place - Enriching Lives Through Place-Based Education - 0 views

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    Quote "Place-based education (PBE) immerses students in local heritage, cultures, landscapes, opportunities and experiences, using these as a foundation for the study of language arts, mathematics, social studies, science and other subjects across the curriculum. PBE emphasizes learning through participation in service projects for the local school and/or community. Research has shown that well-designed initiatives can achieve the goals outlined below. Learn more about the principles of place-based education and answers to frequently asked questions." PBE is Project-Based learning.
Michele Brown

Learning-Theories - Knowledge Base and Webliography - 0 views

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    Theories and Models of Learning for Educational Research and Practice. This knowledge base features learning theories that address how people learn. A resource useful for scholars of various fields such as educational psychology, instructional design, and human-computer interaction.
Mendi Benigni

Mobile Teaching Versus Mobile Learning (EDUCAUSE Quarterly) | EDUCAUSE - 0 views

    • Mendi Benigni
       
      It seems like it's more about multimedia stimulating the brain in different areas rather than the fact that it's mobile or portable.
  • need to move beyond the heavy reliance on text.
  • lot of digital books floating around, being hailed as amazing advancements in teaching and learning. Although I know the majority of materials currently available to students on their portable multimedia consumption devices are still primarily text-based, maybe including a static image or two (see Figure 3, a color, static digital page with a Venn diagram that is no different from the same page in the printed book5),
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  • it's not enough for CourseSmart to make PDF-like copies of textbooks available for students to purchase; instead, we need the type of interactivity we're starting to see from the textbooks available in Inkling.
  • transformative
  • we need to think more systematically about how to design education to facilitate learning
  • We need to provide materials or applications that allow students to practice identifying parts of the body on their mobile multimedia devices before taking the high-stakes midterm or final exam.
  • At minimum we could be asking our students to capture raw material from the real world and engage with it based on the concepts we are teaching them.
  • It's one thing to learn about different architectural styles in a Western Civ or Construction textbook or lecture; it's another to apply what you've learned by going out into the community and taking pictures of buildings and then identifying the architectural influences
  • In both cases the activity of capturing "raw" digital material can lead to further learning or assessment activities where students might develop multimedia projects.
  • a Citrix server with the ability for students to check out laptops and iPads with Citrix running on them gives faculty outside of the art and business departments the ability to require students to manipulate images. For example, Scottsdale Community College in Arizona has a Citrix environment that allows students to access applications like Photoshop on an iPad (Figure 6).
  • engaging
  • away from how instructors teach to how students learn. Research now shows that successful learning needs to be act
  • active
  • connect to the students' prior knowledge
  • simulate real-world experiences
  • To achieve the promise of mobile learning, we have to stop thinking about these powerful mobile multimedia devices as only consumption devices and get students using them as production devices.
  • To achieve the promise of mobile learning, we have to stop thinking about these powerful mobile mu
  • mobile devices not only makes the content more accessible, it also helps students engage the content using multiple senses
yc c

Mozilla Jetpack for Learning Design Challenge - 13 views

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    # Turn social bookmarking and page annotation into effective learning tools (for example by including peer-assessment features). # Allow users to easily compile personal e-portfolios (for example, by combining their own works - photos, comments, articles-with testimonials others have written about them). # Let the browser suggest relevant materials (for example, by automatically identifying additional articles based on what sites a person visit or which topics they search for). # Support social learning communities (for example, by making it easy to find and connect with others who share similar learning interests).
Kathleen N

ATutor Learning Content Management System: Information: - 0 views

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    ATutor is an Open Source Web-based Learning Content Management System (LCMS/LMS) and social networking environment designed with accessibility and adaptability in mind. ATutor Social is a social networking module that allows ATutor users to connect with each other. They can gather contacts, create a public profile, track network activity, create and join groups, and customize the environment with any of the thousands of OpenSocial gadgets available all over the Web. ATutor Social can be used alone as a social networking application, or it can be used with the ATutor Learning Management System to create a social learning environment.
Tero Toivanen

Project Based Learning - 66 views

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    "Welcome to PBL-Online, a one stop solution for Project Based Learning! You'll find all the resources you need to design and manage high quality projects for middle and high school students."
Scott Kinkoph

What Project-Based Learning Is - and What It Isn't | MindShift - 0 views

  • when an educator teaches a unit of study, then assigns a project, that is not project-based learning because the discovery didn’t arise from the project itself. And kids can see through the idea of a so-called “fun project” for what it often is – busy work. “They don’t see it as learning; they see it as something else to do,” said Terronez. “They don’t see the value.”
  • onnect classroom learning to its applications in the outside world. He’s found that when the project is based in the real world, addressing problems that people actually face, and not focused on a grade, students are naturally invested.
  • iligent planning by the teacher to design projects that give students space to explore themes
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  • When Terronez assigns a writing project, it’s rarely just for a grade. Rather, the goal of the assignment is to be published in an anthology or in some other way relevant to the world around them.
kabir mo

ZIIEI - INNOVATIVE PATHSHAALA- APP FOR TEACHERS - 0 views

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    ZIIEI Innovative Pathshaala App is designed to encourage and promote an experiential learning environment in the classroom. This platform serves as an everyday classroom companion to the teachers who can refer to the innovative ways of teaching different lessons through these zero-investment ideas. IP App is a digital leap of Innovative Pathshaala that is a series of books serving as a readymade teaching tool for all the teachers. This free learning App is a one-stop junction for subject-specific teaching tools mapped with all educational boards like C.B.S.E, I.C.S.E, Uttar Pradesh Board, Bihar Board, MP Board and many more. Teachers have access to innovative and experiential learning concepts, based on the existing school curriculum, applicable to any grade, multi-grade, and inclusive classrooms. The zero investment teaching tools available on this educational app can be of great help to govt. school teachers, private school teachers, tutors and to all kinds of educationists.
J Black

The End in Mind » A Post-LMS Manifesto - 0 views

    • J Black
       
      This is a very profound statement that we should closely look at. Do LMS do nothing more than perpetuate the traditional classroom model?
  • Technology has and always will be an integral part of what we do to help our students “become.” But helping someone improve, to become a better, more skilled, more knowledgeable, more confident person is not fundamentally a technology problem. It’s a people problem. Or rather, it’s a people opportunity.
  • The problem with one-to-one instruction is that is simply doesn’t scale. Historically, there simply haven’t been enough tutors to go around if our goal is to educate the masses, to help every learner “become.”
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  • Through experimental investigation, Bloom found that “the average student under tutoring was about two standard deviations above the average” of students who studied in a traditional classroom setting with 30 other students
  • here is, at its very core, a problem with the LMS paradigm. The “M” in “LMS” stands for “management.” This is not insignificant. The word heavily implies that the provider of the LMS, the educational institution, is “managing” student learning. Since the dawn of public education and the praiseworthy societal undertaking “educate the masses,” management has become an integral part of the learning. And this is exactly what we have designed and used LMSs to do—to manage the flow of students through traditional, semester-based courses more efficiently than ever before. The LMS has done exactly what we hired it to do: it has reinforced, facilitated, and perpetuated the traditional classroom model, the same model that Bloom found woefully less effective than one-on-one learning.
  • Because the LMS is primarily a traditional classroom support tool, it is ill-suited to bridge the 2-sigma gap between classroom instruction and personal tutoring.
  • undamentally human endeavor that requires personal interaction and communication, person to person.
  • We can extend, expand, enhance, magnify, and amplify the reach and effectiveness of human interaction with technology and communication tools, but the underlying reality is that real people must converse with each other in the process of “becoming.”
  • n the post-LMS world, we need to worry less about “managing” learners and focus more on helping them connect with other like-minded learners both inside and outside of our institutions.
  • We need to foster in them greater personal accountability, responsibility and autonomy in their pursuit of learning in the broader community of learners. We need to use the communication tools available to us today and the tools that will be invented tomorrow to enable anytime, anywhere, any-scale learning conversations between our students and other learners
  • However, instead of that tutor appearing in the form of an individual human being or in the form of a virtual AI tutor, the tutor will be the crowd.
  • The paradigm—not the technology—is the problem.
  • Building a better, more feature-rich LMS won’t close the 2-sigma gap. We need to utilize technology to better connect people, content, and learning communities to facilitate authentic, personal, individualized learning. What are we waiting for?
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    A very insightful look into LMS use and student achievment. Highly recommended read for users of BB or Moodle.
Judy Robison

Interactive Websites - 0 views

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    Interactive Websites provide standards-based cross curricular web resources designed to enhance online learning opportunities. These sites interact with the user usually through either a text-based or graphical user interface.
Kathleen N

- Iron Teacher - 0 views

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    Iron Teacher is a contest based on fun but with serious intent; bringing together cutting edge educators with sharp ideas to infuse new life into traditional lesson design. We aim to revolutionize the way teachers look at teaching and learning through the use of innovative methods and unconventional ideas. Basic Premise: Like Iron Chef, participants are presented with key "ingredients" and required to come up with a final product that is judged on Originality, Adaptability, Student Appeal, and Ability to Meet Outcome. The Iron Teacher goal is two-fold: 1. To help teachers discover new strategies, ideas, or tools that will get their students to care, communicate and create something of value around the curriculum. 2. To help articulate the lesson design and creative brainstorming process used by master educators.
Nigel Coutts

An Introduction to Design Thinking (Part Two) - 20 views

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    In the constructivist-learning model, engagement and experience combine with immersive environments and self-organisation of knowledge to establish a context in which learning occurs naturally. Constructivism has since the time of Dewey become closely affiliated with Project Based Learning and yet despite years of efforts to refine the process the result does not always match the promise. Design Thinking might be the answer.
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