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trisha_poole

3 Ways Disruptive Theory Can Change Education | Edudemic - 1 views

  • Disruptive theory posits that there is a new technology — referred to as an enabling technology — that alters the price/performance paradigm of an industry
  • Enabling technologies allow the price/performance paradigm to be altered in such a way that it allows enterprises that leverage the new, enabling technology reach customers that the incumbents operating with the status quo technology cannot reach
  • How Does It Apply To Education?
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  • The Internet and social media
  • Game mechanics
  • Peer-to-peer learning
  • I think niche social networking is a space where the new price/performance paradigm in education can really blossom
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    A quick overview of disruptive technologies and education.
webExplorations

Disrupting College - 3 views

  • Using online learning in a new business model focused exclusively on teaching and learning, not research—and focused on highly structured programs targeted at preparation for careers—has meanwhile given several organizations a significant cost advantage and allowed them to grow rapidly.
  • Using online learning in a new business model focused exclusively on teaching and learning, not research—and focused on highly structured programs targeted at preparation for careers—has meanwhile given several organizations a significant cost advantage and allowed them to grow rapidly.
  • Using online learning in a new business model focused exclusively on teaching and learning, not research—and focused on highly structured programs targeted at preparation for careers—has meanwhile given several organizations a significant cost advantage and allowed them to grow rapidly.
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  • Recommendations for existing institutions of higher education also emerge from an understanding of disruptive innovation. These colleges and universities should: Apply the correct business model for the task. These institutions have conflated value propositions and business models, which creates significant, unsustainable overhead costs. Drive the disruptive innovation. Some institutions have this opportunity, but to do so, they need to set up an autonomous business model unencumbered by their existing processes and priorities. They can leverage their existing fixed resources in this autonomous model to give themselves a cost advantage over what to this point have been the low-cost disruptive innovators. Develop a strategy of focus. The historical strategy of trying to be great at everything and mimic institutions such as Harvard is not a viable strategy going forward. Frame online learning as a sustaining innovation. Institutions can use this new technology to disrupt the existing classroom model to extend convenience to many more students as well as provide a better learning experience.
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    An article showing how online learning is a disruptive technology. Shining [the challenges of today's higher ed] through the lens of these theories on innovation will provide some insights into how we can move forward and a language that allows people to come together to frame these challenges in ways that will create a much higher chance of success. This report assumes that everyone is adept at online learning. This is not the case and students will have to be trained on how to be effective online learners. Courses will also have to address multiple learning styles and not just the read/write that most online courses currently are programmed for. Despite this missing piece, this is a very important article that focuses on some very key issues of our current higher ed system. The recommendations at the end of the article for policy makers are very apt. Highly recommended reading!
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    Are high schools preparing students for success in college and careers when what we do is so very different from what they will experience when they leave our little boxes?
Lisa C. Hurst

Inside the School Silicon Valley Thinks Will Save Education | WIRED - 9 views

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    "AUTHOR: ISSIE LAPOWSKY. ISSIE LAPOWSKY DATE OF PUBLICATION: 05.04.15. 05.04.15 TIME OF PUBLICATION: 7:00 AM. 7:00 AM INSIDE THE SCHOOL SILICON VALLEY THINKS WILL SAVE EDUCATION Click to Open Overlay Gallery Students in the youngest class at the Fort Mason AltSchool help their teacher, Jennifer Aguilar, compile a list of what they know and what they want to know about butterflies. CHRISTIE HEMM KLOK/WIRED SO YOU'RE A parent, thinking about sending your 7-year-old to this rogue startup of a school you heard about from your friend's neighbor's sister. It's prospective parent information day, and you make the trek to San Francisco's South of Market neighborhood. You walk up to the second floor of the school, file into a glass-walled conference room overlooking a classroom, and take a seat alongside dozens of other parents who, like you, feel that public schools-with their endless bubble-filled tests, 38-kid classrooms, and antiquated approach to learning-just aren't cutting it. At the same time, you're thinking: this school is kind of weird. On one side of the glass is a cheery little scene, with two teachers leading two different middle school lessons on opposite ends of the room. But on the other side is something altogether unusual: an airy and open office with vaulted ceilings, sunlight streaming onto low-slung couches, and rows of hoodie-wearing employees typing away on their computers while munching on free snacks from the kitchen. And while you can't quite be sure, you think that might be a robot on wheels roaming about. Then there's the guy who's standing at the front of the conference room, the school's founder. Dressed in the San Francisco standard issue t-shirt and jeans, he's unlike any school administrator you've ever met. But the more he talks about how this school uses technology to enhance and individualize education, the more you start to like what he has to say. And so, if you are truly fed up with the school stat
Kenuvis Romero

Memory - Wikipedia, the free encyclopedia - 0 views

  • Encoding of working memory involves the spiking of individual neurons induced by sensory input, which persists even after the sensory input disappears (Jensen and Lisman 2005; Fransen et al. 2002). Encoding of episodic memory involves persistent changes in molecular structures that alter synaptic transmission between neurons. Examples of such structural changes include long-term potentiation (LTP) or spike-timing-dependent plasticity (STDP). The persistent spiking in working memory can enhance the synaptic and cellular changes in the encoding of episodic memory (Jensen and Lisman 2005).
  • Recent functional imaging studies detected working memory signals in both medial temporal lobe (MTL), a brain area strongly associated with long-term memory, and prefrontal cortex (Ranganath et al. 2005), suggesting a strong relationship between working memory and long-term memory. However, the substantially more working memory signals seen in the prefrontal lobe suggest that this area play a more important role in working memory than MTL (Suzuki 2007).
  • Consolidation and reconsolidation. Short-term memory (STM) is temporary and subject to disruption, while long-term memory (LTM), once consolidated, is persistent and stable. Consolidation of STM into LTM at the molecular level presumably involves two processes: synaptic consolidation and system consolidation. The former involves a protein synthesis process in the medial temporal lobe (MTL), whereas the latter transforms the MTL-dependent memory into an MTL-independent memory over months to years (Ledoux 2007). In recent years, such traditional consolidation dogma has been re-evaluated as a result of the studies on reconsolidation. These studies showed that prevention after retrieval affects subsequent retrieval of the memory (Sara 2000). New studies have shown that post-retrieval treatment with protein synthesis inhibitors and many other compounds can lead to an amnestic state (Nadel et al. 2000b; Alberini 2005; Dudai 2006). These findings on reconsolidation fit with the behavioral evidence that retrieved memory is not a carbon copy of the initial experiences, and memories are updated during retrieval.
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  • Physical exercise, particularly continuous aerobic exercises such as running, cycling and swimming, has many cognitive benefits and effects on the brain. Influences on the brain include increases in neurotransmitter levels, improved oxygen and nutrient delivery, and increased neurogenesis in the hippocampus. The effects of exercise on memory have important implications for improving children's academic performance, maintaining mental abilities in old age, and the prevention and potential cure of neurological diseases.
  • At the Center for Cognitive Science at Ohio State University, researchers have found that memory accuracy of adults is hurt by the fact that they know more, and have more experience than children, and tend to apply all this knowledge when learning new information. The findings appeared in the August 2004 edition of the journal Psychological Science.
  • Interference can hamper memorization and retrieval. There is retroactive interference, when learning new information makes it harder to recall old information[59] and proactive interference, where prior learning disrupts recall of new information. Although interference can lead to forgetting, it is important to keep in mind that there are situations when old information can facilitate learning of new information. Knowing Latin, for instance, can help an individual learn a related language such as French – this phenomenon is known as positive transfer.[60]
  • Methods to optimize memorization[edit] Memorization is a method of learning that allows an individual to recall information verbatim. Rote learning is the method most often used. Methods of memorizing things have been the subject of much discussion over the years with some writers, such as Cosmos Rossellius using visual alphabets. The spacing effect shows that an individual is more likely to remember a list of items when rehearsal is spaced over an extended period of time. In contrast to this is cramming which is intensive memorization in a short period of time. Also relevant is the Zeigarnik effect which states that people remember uncompleted or interrupted tasks better than completed ones. The so-called Method of loci uses spatial memory to memorize non-spatial information.[72]
Tony Baldasaro

Inversions - Practical Theory - 1 views

  • Then, class, rather than being a time when all kids sat and received the instruction, could be the time when they reinforce skills by doing problem sets, worked on real-world application projects, collaborated with teachers to reinforce concepts, etc... in some ways, it's an inversion of what we traditionally think of as a math class.
  • If we use technology to invert that idea, so that kids could watch the teacher's demonstration of the skills and concepts at home (and with the ability to rewind when necessary,) we could allow kids the opportunity to apply and practice their knowledge in the space where they can get help, collaborate, etc... doesn't that make more sense? (Interestingly, I was trying to imagine what that would look like in an English classroom, and I realized that is, in many respects, similar to what we do already when we ask kids to read the book at home, and then come in and interact with the community to uncover the deeper aspects of the text. Hm.)
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    I'm about 80% of the way through Disrupting Class by Clayton Christensen and Michael Horn. (Yeah, I know... I'm the last one to read it.) There's a lot that's very interesting about the book, and while we should critically examine the book, it is still a fascinating read. If nothing else, it is continuing to make me think about how much more could happen in our classrooms if we created more opportunities for students to learn basic skills and content outside of class, rather than inside class. I've been thinking a lot about math class. How many students would learn math more efficiently if they could watch math videos, narrated by a teacher with problems done "on the board" as they watched with multiple examples of concepts (think geometry here, as an example) that speak to different learning modalities.
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