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Marc Patton

WOWparts Online Store - 2 views

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    We're big fans of all the latest cutting-edge consumer electronics here. We also believe that A Good Cat Deserves A Good Rat. For this reason, we specialize in selling the good value accessories.
Howard Rheingold

Discovering How to Learn Smarter | MindShift - 100 views

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    Stanford psychologist Carol Dweck conducted the groundbreaking research showing that praise intended to raise young people's self-esteem can seriously backfire. When we tell children, "You're so smart," we communicate the message that they'd better not take risks or make mistakes, lest they reveal that they're not so smart after all. Dweck calls this cautious attitude the "fixed mindset," and she's found that it's associated with greater anxiety and reduced achievement. Students with a "growth mindset," on the other hand, believe that intelligence can be expanded with hard work and persistence, and they view challenges as invigorating and even fun. They're more resilient in the face of setbacks, and they do better academically. Now Dweck has designed a program, called Brainology, which aims to help students develop a growth mindset. Its website explains: "Brainology makes this happen by teaching students how the brain functions, learns, and remembers, and how it changes in a physical way when we exercise it. Brainology shows students that they are in control of their brain and its development." That's a crucial message to pass on to children, and it's not just empty words of encouragement-it's supported by cutting-edge research on neuroplasticity, which shows that the brain changes and grows when we learn new things. You, and your child, can learn to be smarter.
BalancEd Tech

Seven Tips for Maximizing the Impact of PD - Houston, TX, United States, ASCD EDge Blog... - 50 views

  • Current research indicates that teacher expertise is the most significant school-based influence on student learning.
    • BalancEd Tech
       
      Expertise in what? Content, pedagogy, technology integration, child psychology, empathizing, formative assessment, ...
  • Model what you expect teachers to do.
Tonya Thomas

Authoring Tools - The Mobile Learning Edge - 0 views

  • Udutu, a Canadian company, has a set of rich media interactive course development tools for creating courses on iPads and iPhones. Courses built with the Udutu authoring tool will play on iPads and iPhones because the interactions utilize DHTML or HTML5 as an option instead of Flash, and all the navigation and templates are HTML.
  • Articulate has several tools for publishing learning content to mobile devices, including Presenter ’09 and Screenr.
Patience Wieland

Innovations in Teaching and Learning Technology Conference - FREE - 0 views

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    In the greater Houston area: this is a free conference occuring in November of this year (so the warmer weather will be a nice break for out of towners) focusing on best practices in teaching and learning, and technology. Also an opportunity to meet other educators!
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    Learning takes place in many locations and within the context of a variety of forums. Instructors are challenged on a daily basis to find innovative ways of enhancing the Net generation of students learning experiences. Our goal is promote greater understanding of cutting-edge approaches, techniques and instructional methodologies online and in the classroom. The Teaching and Learning Technology Conference provides a forum for educators to share effective and innovative teaching and learning models. This conference will explore and showcase excellence and innovation in teaching that facilitates student learning and positively impacts student academic success.
Eleanor Douglass

Visuals - Histories of Maps and Other Visual Books - Review - NYTimes.com - 29 views

  • not just with topography but with typography too
  • my favorite maps are those of unknown worlds
  • For instance, the Chinese, who had long been reassured by their maps that they occupied the “middle kingdom,” were “extremely exasperated,” the authors write, “when they discovered . . . that they had been relegated to the right edge of a map prepared by the Jesuits.”
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  • For instance, the Chinese, who had long been reassured by their maps that they occupied the “middle kingdom,” were “extremely exasperated,” the authors write, “when they discovered . . . that they had been relegated to the right edge of a map prepared by the Jesuits.”
  • l aspec
Greg Gichan

A Nation at Risk: Edited by Yong Zhao - Eugene, MO, United States, ASCD EDge Blog post - 28 views

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    A new look at "A Nation at Risk" on its 30 year anniverary!
Liane St. Laurent

Why Some Schools Are Selling All Their iPads - The Atlantic - 49 views

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    "While nobody hated the iPad, by any means, the iPad was edged out by some key feedback, said Joel Handler, Hillsborough's director of technology. Students saw the iPad as a "fun" gaming environment, while the Chromebook was perceived as a place to "get to work.""
Martin Burrett

Book: Learning with Leonardo by Ian Warwick & Ray Speakman via @JohnCattEd - 10 views

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    "From the outset, I want to be clear - Leonardo da Vinci, not Leonardo DiCaprio. But don't despair, there is a still a lot Mr da Vinci has to offer in our modern world, with many of seven key concepts that drove his inventive thinking still helping to influence our creative thinking. Ray Speakman and Ian Warwick, in their book, look closely at the seven key concepts that influenced da Vinci's life, and how they can make our own learning more original and thoughtful. The seven key concepts are no big secret, but the authors frame them into a modern narrative that makes understanding ourselves, nature and reality possible. Throughout, much is made of Leonardo's notebooks - the sanctuary where he noted his observations, thoughts and discoveries - where he was constantly pushing his understanding to the edges of what was possible during the period he lived. A lot can be learned from such an approach, as jotting down our thoughts, discoveries and inspirations can help us organise our minds - and could be beneficial for many young learners."
Gareth Jones

Looking in the Wrong Places | Edge.org - 5 views

  • We should be very careful in thinking about whether we’re working on the right problems. If we don’t, that ties into the problem that we don’t have experimental evidence that could move us forward. We're trying to develop theories that we use to find out which are good experiments to make, and these are the experiments that we build.   We build particle detectors and try to find dark matter; we build larger colliders in the hope of producing new particles; we shoot satellites into orbit and try to look back into the early universe, and we do that because we hope there’s something new to find there. We think there is because we have some idea from the theories that we’ve been working on that this would be something good to probe. If we are working with the wrong theories, we are making the wrong extrapolations, we have the wrong expectations, we make the wrong experiments, and then we don’t get any new data. We have no guidance to develop these theories. So, it’s a chicken and egg problem. We have to break the cycle. I don’t have a miracle cure to these problems. These are hard problems. It’s not clear what a good theory is to develop. I’m not any wiser than all the other 20,000 people in the field.
  • I’m still asking myself the same question that I asked myself ten years ago: "What is going on in my community?" I work in the foundations of physics, and I see a lot of strange things happening there. When I look at the papers that are being published, many of them seem to be produced simply because papers have to be produced. They don’t move us forward in any significant way. I get the impression that people are working on them not so much because it’s what they’re interested in but because they have to produce outcomes in a short amount of time. They sit on short-term positions and have short-term contracts, and papers must be produced.
  • The field that I mostly work in is the foundations of physics, which is, roughly speaking, composed of cosmology, the foundations of quantum mechanics, high-energy particle physics, and quantum gravity. It’s a peculiar field because there hasn’t been new data for almost four decades, since we established the Standard Model of particle physics. There has been, of course, the Higgs particle that was discovered at the LHC in 2012, and there have been some additions to the Standard Model, but there has not been a great new paradigm change, as Kuhn would have put it. We’re still using the same techniques, and we’re still working with the same theories as we did in the 1970s.
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  • That makes this field of science rather peculiar and probably explains why there hasn’t been much progress. But it’s not like we don’t have any questions that need to be answered. There are a lot of questions that have been around for decades. For example, what is dark energy? What is dark matter? What are the masses of the Standard Model particles? And what’s up with the foundation of quantum mechanics? Is a theory that's fundamentally not deterministic, where we cannot predict outcomes, the last word that we have, or is there something more to it? Is there maybe another underlying structure to reality?
  • but we haven't reached the fundamental level. Maybe we will never reach it. Certainly, the theories that we have right now are not all there is. The question is, of course, if we don’t have any guidance by experiment, how do we make progress? And are we doing the right thing?
  • We’ve reached this point where we have to carefully rethink if the criteria that we’re using to select our theories are promising at all. If one looks at the history of this field in the foundations of physics, progress has usually been made by looking at questions that, at least in hindsight, were well posed, where there was an actual mathematical contradiction. For example, special relativity is incompatible with Newtonian gravity. If you try to resolve this incompatibility, you get general relativity.
  • There are various similar examples where such breakthroughs have happened because there was a real problem. There was an inconsistency and people had to resolve it. It had nothing to do with beauty. Maybe beauty was, in some cases, the personal motivation of the people to work on it. There’s certainly some truth to this, but I don’t think it’s good to turn this story around and say that if we only pay attention to this motivation that comes from ideals of beauty it will lead to progress.
  • If we are working with the wrong theories, we are making the wrong extrapolations, we have the wrong expectations, we make the wrong experiments, and then we don’t get any new data. We have no guidance to develop these theories. So, it’s a chicken and egg problem. We have to break the cycle. I don’t have a miracle cure to these problems. These are hard problems. It’s not clear what a good theory is to develop. I’m not any wiser than all the other 20,000 people in the field.
  • The way that research is funded in foundations of physics and in many other fields just puts a lot of things at a disadvantage that are not pursued anymore. Typically, everything that takes longer than three years to complete, no one will start it because they can’t afford it. They can literally not afford it.
  • Who makes the decisions about the funding? Superficially, people say that it's a funding agency, so it’s the university who get to hire people. But that puts the blame on the wrong party. In the end it’s the community itself who makes the decisions. What do the funding agencies do if they get a proposal? They send it to reviewers. And who are the reviewers? They're people from the same community. If you look at how hiring decisions are being made, there’s some committee and they are people from the same community. They have some advisory boards or something, which contains people from the same community.
  • Even if that wasn’t so, what the people in these committees would be doing is looking at easy measures for scientific success. Presently, the most popular of these measures are the number of publications and the number of citations. And maybe also whether the person has published in high-impact journals. So, these are the typical measures that are presently being used. But what do they measure? They primarily measure popularity. They indicate whether somebody’s research is well received by a lot of people in the same community. And that’s why once a research area grows beyond a certain critical mass, you have sufficiently many people who tell each other that what they’re doing is the good thing to do. They review each other’s papers and say that that’s great and it's what we should continue to do. It’s a problem in all communities that grow beyond a certain size.
  • I later came to the United States and then Canada, and that gave me the opportunity to learn a lot about quantum gravity. I also figured out that much of what goes on in quantum gravity is very detached from reality. It’s pretty much only mathematics. Yes, the mathematics is there, but I still don’t know if it’s the mathematics that describes reality.
  • That’s the very reason why we don’t normally think of gravity as a weak force. It’s the only force that is left over on long distances, and the reason for this is that it adds up. It gets stronger the more mass you pile up. More precisely, we should say that the reason we find it so hard to measure quantum gravitational effects is that we either have a particle that has very pronounced quantum properties, like, say, a single electron or something like that, but then it’s so light that we cannot measure the gravitational field. Or we have some object that is so heavy that we can measure the gravitational field, but then it doesn’t have quantum properties. Okay, so that’s the actual problem.
Jennie Snyder

Building the Culture of an Empowered Mindset Towards Technology Innovation | The Princi... - 23 views

  • In this work, I have realized how truly important the role of principal is in building, not only in creating a positive culture, but an innovative one.  
  • Often times, as the principal goes, so does the culture of the school.
  • It is unlikely for an entire school to be “pushing the edge” if the principal or administrative team is not helping to pave the way for their community as they learn alongside of them.
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  • o create a visual that discusses the correlation of the school mindset on technology innovation in learning, and the alignment it has with administrator support, professional development, and the corresponding hardware/infrastructure within the school/classroom.  
Sharin Tebo

OPINION: Personalization, Possibilities and Challenges with Learning Analytics | EdSurg... - 34 views

  • Many of these challenges result from trying to personalize within the context of traditional school structures that standardize the curriculum, the assessments, the grouping, and the instructional time.
  • a genuine problem: how to achieve the tremendous academic gains that are possible through personalized instructional methods within the constraints of a traditional classroom.
  • Knowledge mapsFormalizing a learning map--sequences of connected concepts and skills that define how one masters a domain, such as beginning Algebra--and mapping student mastery on the map, enables intelligent learning systems to recommend the next concept or skill to be learned, propose aligned instructional content, and present appropriate questions and tasks to assess mastery.
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  • Learning analytics combines data from student models with data on learning behaviors, knowledge maps, and learning outcomes, and mines these data sets to identify patterns that associate student attributes and behaviors with successful outcomes.
  • Learning analytics marks a significant departure from traditional data-driven instructional strategies. That’s because so much more data is available to mine, make sense of, and use.
  • It is not enough to design cutting edge analytics to shape educational decision making if we do not understand how teachers can apply them to optimize student learning outcomes.
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    Learner analytics to help personalize learning
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