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amacrae

The Third Teacher - 1 views

shared by amacrae on 19 Nov 16 - No Cached
  • 2Getting Started with the Physical EnvironmentOVERALL ...It is both an art and a science to design (as opposed to decorate) a learning environment that responds to our ultimate goal as educators – to develop independent and rigorous thought. Therefore, if we want to foster discovery and reflection, dialogue and the sharing of ideas, the overall physical environment should include:•A large gathering space for whole-group work and discussions, located near whiteboards, easels and/or projector screens.•A gathering space for small-group and whole-group discussions – where students can see clearly the representations of learning that are posted on boards or screens and hear classmates as they share ideas.•Flexible and reconfigurable space for small-group collaborative work and inquiry – space must allow for groupings of various sizes, such as pairs, triads and groups of four or more.•Desks and tables configured to facilitate discussion by allowing eye contact with peers and teacher, the unencumbered flow of traffic and enough space for students to write collaboratively.•Active areas for inquiry, investigation and wonder and quiet areas for thinking and exploring technology – all areas need to be accessible to students for communicating and documenting their own learning (e.g., computers, computer software, tablets, digital cameras and video recorders, document cameras, interactive white boards).•Instructional materials organized in such a way as to provide easy selection and access for all students – materials may include computer software, educational web sites and applications, found materials, graphic organizers, newspapers and other media, resource texts, etc.FOR MATHEMATICS ...Mathematically literate students demonstrate the capacity to “formulate, employ and interpret mathematics” (OECD, 2012, p. 4); they view themselves as mathematicians, knowing that mathematics can be used to understand important issues and to solve meaningful problems, not just in school but in life. By extension, the physical environment for mathematics learning should include: •Spaces where students can use manipulatives to solve problems and record their solutions.•Board and/or wall space to display student solutions for Math Congress and Bansho – student solutions should be easily visible from the group gathering space.•Space to post co-created reference charts such as glossary terms and past and current summaries of learning that specifically support the development of the big ideas currently under study.•Instructional materials organized in such a way as to provide easy selection and access for all students; may include mathematics manipulatives, calculators and other mathematical tools, mathematical texts, hand-held technology.FOR LITERACY ... Today’s literate learners experience “a constant stream of ideas and information” – they need strategies for interpretation and making sense and lots of practice in identifying meaning, bias and perspective (Ontario Ministry of Education, 2009, 2006). By extension, the physical environment for literacy learning should include: •Spaces where students can talk, listen, read and write.A place for wonder, mystery and discovery ...“We need to think about creating classroom environments that give children the opportunity for wonder, mystery and discovery; an environment that speaks to young children’s inherent curiosity and innate yearning for exploration is a classroom where children are passionate about learning and love school.” (Heard & McDonough, 2009)
  • maintain that the key to learning in today’s world is not just the physical space we provide for students but the social space as well (
  • A large gathering space
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  • mall-
katewhitters

Derek Muller (@veritasium) | Twitter - 0 views

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    Interesting and thought-provoking STEM videos. Great to kick-start class discussions.
su11armstrong

21 Things That Will Become Obsolete in Education by 2020 - THE DAILY RIFF - Be Smarter.... - 0 views

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    "Within the decade, it will either become the norm to teach this course (high school Algebra I) in middle school or we'll have finally woken up to the fact that there's no reason to give algebraweight over statistics and IT in high school for non-math majors (and they will have all taken it in middle school anyway)."
garth nichols

Pasi Sahlberg - The Finnish Paradox - 0 views

  • In the global perspective, the Finnish education system seems to be a paradox. When much of the rest of the world is implementing more oversight of schools to assure teachers meet specific goals, lengthening the school day, toughening academic standards, and increasing homework, Finnish children continue to enjoy a relatively short school day, a broad curriculum, and a light homework load. In addition, Finnish children do not attend private tutoring sessions or spend any time preparing for standardized tests, as so many of their peers around the world must.
  • Perhaps the most surprising part of the Finnish educational philosophy is the central role of play in children’s lives, both in and out of school. Formal learning doesn’t start before the first grade when children are seven years old. Before that, children spend their time in play to develop a sense of independence and responsibility, and to learn about themselves and others. In the early years of elementary education, children furthermore learn to read and do math through various forms of play, music, and drama.  The old adage of “less is more” is carried out every day in Finnish schools, as I describe in “Finnish Lessons: What can the world learn from educational change in Finland” (2011).
  • Finland’s success is a result of finding its own way of change rather than doing more of the same than others. This is particularly true in enhancing educational quality and equity.  Some foreign observers claim that Finnish educational success results from the country’s smallness, cultural homogeneity, and wealth. Those thinking this way often fail to distinguish the Finnish way from the global education reform movement (or GERM) that sees competition, standardization, frequent testing, and privatization as the most effective drivers of change.
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    As an addendum to Dr. Yong Zhoa's article about why Finland is still really the tops of education despite recent PISA results...read about the Finnish Paradox
garth nichols

great technology requires an understanding of the humans who use it - 0 views

  • Clearly, MIT BLOSSOMS (the name stands for Blended Learning Open Source Science Or Math Studies) isn’t gaining fans by virtue of its whiz-bang technology. Rather, it exerts its appeal through an unassuming but remarkably sophisticated understanding of what it is that students and teachers actually need. It’s an understanding that is directly at odds with the assumptions of most of the edtech universe.
  • For example: BLOSSOMS is not “student-centered.” In its Twitter profile, the program is described as “teacher-centric”—heresy at a moment when teachers are supposed to be the “guide on the side,” not the “sage on the stage.” The attention of students engaged in a BLOSSOMS lesson, it’s expected, will be directed at the “guest teacher” on the video or at the classroom teacher leading the interactive session.
  • All this is blasphemy in view of the hardening orthodoxy of the edtech establishment. And all this is perfectly aligned with what research in psychology and cognitive science tells us about how students learn. We know that students do not make optimal choices when directing their own learning; especially when they’re new to a subject, they need guidance from an experienced teacher. We know that students do not learn deeply or lastingly when they have a world of distractions at their fingertips. And we know that students learn best not as isolated units but as part of a socially connected group. Modest as it is from a technological perspective, MIT BLOSSOMS is ideally designed for learning—a reminder that more and better technology does not always lead to more and better education.
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  • The creators of BLOSSOMS also candidly acknowledge that many teachers are threatened by the technology moving into their classrooms—and that they have reason to feel that way. Champions of educational technology often predict (with barely disguised glee) that computers will soon replace teachers, and school districts are already looking to edtech as a way to reduce teaching costs. The message to teachers from the advocates of technology is often heard as: Move aside, or get left behind.
  • Should the creators of educational technology care so much about the tender feelings of teachers, especially those inclined to stand in the way of technological progress? Yes—because it’s teachers who determine how well and how often technology is used.
  • Edtech proponents who think that technology can “disrupt” or “transform” education on its own would do well to take a lesson from the creators of BLOSSOM, who call their program’s blend of computers and people a “teaching duet.” Their enthusiasm for the possibilities of technology is matched by an awareness of the limits of human nature. 
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    A very important message to all who are trying to integrate Tech into their school...
Christina Schindler

How to Praise Your Child and Encourage a Growth Mindset | Motion Math - 2 views

  • How to Praise Your Child and Encourage a Growth Mindset
  • The right kind motivates students to learn.” - Carol Dweck
    • Christina Schindler
       
      Good summary of the research and data that explains the science behind this idea -- a key component of the PD conversation with teachers when discussing how we can implement this as a school-wide tool for communication & feedback 
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  • Being mindful about how you praise your child can help your child foster a growth mindset and boost his or her motivation, resilience and learning
  • Citing specific behaviors such as the amount of time spent or the approach your learner is taking to figure out the task enables the child to connect their actions with results. Additionally, the praise needs to be sincere, otherwise your kid will discredit all praise – insincere and sincere.
    • Christina Schindler
       
      The parent perspective is key part of a meaningful conversation on mindset, especially in the learning environment.  Trying to shift the focus away from marks alone -- towards the effort, energy and experience of learning is significant.  It is also not easy. I've included articles like this as part of the parent communication piece on how we are implementing a growth mindset perspective.  
  • “I’m proud of you for sticking with it and taking the time to understand the concepts you’re trying to learn.”
  • “I noticed you spent a lot of time figuring out your homework – I’m happy that you’re so dedicated. Let’s work together to figure out what you don’t understand.”
  • “When you ask questions to figure out what you’re doing, I appreciate your curiosity.” or “It makes us happy that we can discuss these activities.” – show your child that you value curiosity, intellectually stimulating conversations and the exploration of ideas.
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    This is an interesting perspective on the parent voice in the larger conversation about how feedback contributes to a growth mindset. 
kcardinale

ISTE | 3 ways to get every student coding - 3 views

  • 3 ways to get every student coding
  • nstead of starting with an elective for computer science, create a class that is required for all students. Better still, integrate it into the core curriculum for a math or science class, or maybe even art.
  • day it is integrated into a required class called CSTEM (the C stands for creativity, collaboration and computer science)
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  • Collaboration also makes coding more fun. Group projects turn it into a social activity, which engages all students, including girls
  • e rules of pair programming are simple: Each pair of students must share a single computer. One student acts as the “driver” and takes control of the mouse and keyboard. One students is the navigator, whose responsibilities include checking instructions, reading code and finding errors as they occur.
  • ast year, three sixth grade girls decided to use Processing with Khan Academy’s JavaScript implementation to create a multi-page yearbook.
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    A great article that was passed to me about coding and computer science in schools. Very fitting seeing as the Hour of Code is coming up soon.
lesmcbeth

Resources | Leadership+Design - 0 views

  • Ewan McIntosh at TEDxLondon. In this talk, hybrid teacher/investor Ewan McIntosh shows how really using the design thinking model requires a shift in teacher behavior to “get out of the way” and allow students to find solutions to relevant challenges.
  • esign Thinking for Independent School Educators.” This webinar by Leading is Learning co-founder Greg Bamford provides a 100-level introduction to design thinking and why is matters in the independent school environment. Design Thinking in Education. This partnership between IDEO and Riverdale Country Day School (NY) focuses on how design thinking is used in schools, often to help schools solve problems about where they should go, what they should do. It includes case studies and nice short videos about educators using design thinking here. The Stanford d. school K-12 Wiki has a range of resources for K-12 educators. Stanford REDLab (Design and Education) has scholarly articles on design thinking and education, videos, and a few models of design thinking units in middle school math and high school science here. The Nueva School in northern California, a K-8 independent school, is a national leader in using Design Thinking. Information on their curriculum and iLab facility is here.
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    What does Design Thinking look like in schools?
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