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Learning Myths And Realities From Brain Science : NPR Ed : NPR - 0 views

  • The idea that individuals have different learning styles, such as auditory or kinesthetic, is a pernicious myth. Boser compares it to the flat-earth myth — highly intuitive, but wrong.
  • Almost 90 percent of respondents agreed that simply re-reading material is "highly effective" for learning. Research suggests the opposite.
  • On the topic of "growth mindset," more than one-quarter of respondents believed intelligence is "fixed at birth". Neuroscience says otherwise.
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  • Nearly 60 percent argued that quizzes are not an effective way to gain new skills and knowledge. In fact, quizzing yourself on something you've just read is a great example of active learning, the best way to learn.
  • More than 40 percent of respondents believed that teachers don't need to know a subject area such as math or science, as long as they have good instructional skills. In fact, research shows that deep subject matter expertise is a key element in helping teachers excel.
  • "Parents' opinions are important, but teaching is a real craft," Boser says. "A lot of science goes into it. And we need to do more to respect that."
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Interactive teaching methods double learning in undergraduate physics class - 0 views

  • Interactive teaching methods significantly improved attendance and doubled both engagement and learning in a large physics class,
  • students in the interactive class were nearly twice as engaged as their counterparts in the traditional class
  • scored nearly twice as well in a test designed to determine their grasp of complex physics concepts (average score 74 per cent vs. 41 per cent, with random guessing producing a score of 23 per cent). Attendance in the interactive class also increased by 20 per cent during the experiment.
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  • During the experimental week, Deslauriers and Schelew gave no formal lecturing but guided students through a series of activities that had previously been shown to enhance learning, such as paired and small-group discussions and active learning tasks, which included the use of remote-control "clickers" to provide feedback for in-class questions
  • These activities require more work from the students, but the students report that they feel they are learning more and are more vested in their own learning,"
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Modeling Instruction in Physics - 0 views

shared by Ron King on 07 Apr 13 - Cached
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    This channel showcases teachers using Modeling Instruction (and other reformed physics teaching methods) in their classrooms. Instead of relying on lectures and textbooks, Modeling Instruction emphasizes active student construction of conceptual and mathematical models in an interactive learning community. Students are engaged with simple scenarios to learn to model the physical world.
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We know what you're doing... A social networking privacy experiment by Callum Haywood - 0 views

shared by Ron King on 29 Apr 13 - No Cached
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    Interesting Advisory Activity
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Activity: Feedback Action Planning Template | - 0 views

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    "I've been doing a ton of tinkering this year with the way that I give students feedback in my classroom.  My goal is to steal Dylan Wiliam's idea that our goal should be to turn feedback into detective work.  That just feels right to me."
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Science of NFL Football: Pythagorean Theorem - 0 views

shared by Ron King on 10 Apr 12 - No Cached
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    NBC Learn, in partnership with the National Science Foundation and National Football League, unravels the science behind professional football. For lesson plans and activities, visit our partner at Lessonopoly.
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How to nap effectively [infographic] - Holy Kaw! - 0 views

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    Interesting Advisory activity...
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Education Week: Using Technology to Move Beyond Schools - 0 views

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    Think ahead 10 or 15 years and ask yourself, "What proportion of the activity called 'learning' will be located in the institution called 'school'?"
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Curiosity Is a Unique Marker of Academic Success - The Atlantic - 0 views

  • Yet in actual schools, curiosity is drastically underappreciated.
  • The power of curiosity to contribute not only to high achievement, but also to a fulfilling existence, cannot be emphasized enough.
  • When Orville Wright, of the Wright brothers fame, was told by a friend that he and his brother would always be an example of how far someone can go in life with no special advantages, he emphatically responded, “to say we had no special advantages … the greatest thing in our favor was growing up in a family where there was always much encouragement to intellectual curiosity.”
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  • They initiated their study in 1979, and have been assessing the participants based on a wide range of variables (e.g., school performance, IQ, leadership, happiness) across multiple contexts (laboratory and home) since.
  • Cognitive giftedness matters.
  • While intellectually gifted children were not different than the comparison group with respect to their temperament, behavioral, social, or emotional functioning, they did differ in regards to their advanced sensory and motor functioning starting at age 1.5, their ability to understand the meaning of words starting at age 1, and their ability to both understand and communicate information thereafter.
  • Parents of intellectually gifted children reported similar observations and were more likely than those of average children to say that their kids actively elicited stimulation by, for example, requesting intellectual extracurricular activities.
  • The researchers also measured what they described as academic intrinsic motivation and identified the top 19 percent of the 111 adolescent participants as “motivationally gifted,” displaying extreme enjoyment of school and of learning of challenging, difficult, and novel tasks and an orientation toward mastery, curiosity, and persistence.
  • Interestingly, they found very little correspondence between intellectual giftedness and motivational giftedness.
  • Students with gifted curiosity outperformed their peers on a wide range of educational outcomes, including math and reading, SAT scores, and college attainment. According to ratings from teachers, the motivationally gifted students worked harder and learned more.
  • suggest that gifted curiosity is a distinct characteristic that contributes uniquely to academic success.
  • “Motivation should not be considered simply a catalyst for the development of other forms of giftedness, but should be nurtured in its own right,”
  • All in all, the Fullerton study is proof that giftedness is not something an individual is either born with or without—giftedness is clearly a developmental process.
  • “giftedness is not a chance event … giftedness will blossom when children’s cognitive ability, motivation and enriched environments coexist and meld together to foster its growth.”
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