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Phil Taylor

Where's the Innovation? | always learning - 0 views

  • Generally speaking, schools are excruciatingly slow to change. Even when schools are making a concerned effort to be innovative and re-think traditional modes of learning, it often ends up being a variation of what’s already in place.
  • has to be driven by a focus on authentic learning and learner competency. What can our students do? What should they be able to do? How do we help them become capable of doing the things that really matter?
John Evans

Futurelab - Handbooks - Curriculum and Teaching Innovation - 0 views

  • Curriculum and teaching innovation
  • This handbook is intended to provide guidance for educators interested in exploring the potential of personalisation to transform curriculum design and teaching practices. It is aimed primarily at educational leaders involved in curriculum and teaching innovation.
John Evans

The Innovative Educator: Let's Stop Making Students Power Down at School - 4 views

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    When school started this Fall, I was impressed with 9-year old Sarah's two-minute recorded response to President Obama's speech, posted to YouTube. She had 187,632 views, 1600 comments, and a 4 star rating. Talk about authentic assessment, authentic audience, and real learning.
John Evans

How to Build an Innovation Ecosystem | The New York Academy of Sciences - 0 views

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    Good post: How to Build an #Innovation Ecosystem | The New York Academy of Sciences http://bit.ly/fHBS1q
John Evans

Coursera.org - 2 views

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    "Tinkering activities provide a powerful way to inspire students' interest, engagement, and understanding in science. The Tinkering Fundamentals course will help educators and enthusiasts develop a practice of tinkering and making. This course will focus on key design elements of high-quality, science-rich tinkering activities, effective facilitation strategies and environmental organization. Watch Intro Video About the Course The Tinkering Fundamentals course will offer educators and enthusiasts an opportunity to develop a practice of tinkering and making.  We see tinkering as a serious endeavor -- one that is generalizable across content and especially good at interweaving disciplines in a way that leads to complex projects and individualized learning opportunities.   Tinkering has recently been introduced into the educational field as a potential driver of creativity, excitement, and innovation in science learning. It is seen by many as an effective means to engage in exploring STEM concepts, practices and phenomena. Tinkering typically blends the high and low tech tools of science along with a strong aesthetic dimension that supports children's (and adults) self expression.  For over a decade, the Exploratorium has been developing science-rich tinkering activities. Working with learning scientists, we have identified a set of design principles and indicators of learning that can help you to integrate tinkering activities into your elementary and middle school science programs. This course will focus on key design elements of high quality science-rich tinkering activities, facilitation strategies, and environmental organization. Selected  tinkering activities will be centered around circuits for this course.  We will review the ways in which tinkering supports science learning through providing opportunities to deepen engagement, intentionality, innovation, collaboration, and understanding. This course will excite you, inspire you, and get you tinkering in
John Evans

5 Education technology trends worth implementing - Daily Genius - 0 views

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    "Figuring out what the future of education is going to look like is downright impossible. Startups have a very difficult time cracking into the education world because many schools either don't have the money or the time to devote to integrating the best edtech tools into the classroom. So what kind of future are we all in store for? While we may not know the future of online learning, we do know that innovation is a constant. Education is a bit resistant to change when it comes to technology and large-scale adoption of innovative products. However, there are some key trends that you should know about as a student or teacher looking to be ahead of the curve."
John Evans

4 things Finland's schools do better than America - Business Insider - 3 views

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    "Finland is an innovative country when it comes to education, and its innovation yields results. It's consistently one of the highest performing developed countries on the Program for International Student Assessment (PISA), an important tool for measuring education systems worldwide. While Finland's ranking dropped to 12 in the most recent PISA ranking, it's still a lot higher than the US ranking of 36. Here are some things Finland does differently - and arguably better - than the US when it comes to education."
John Evans

Let Tinkerbell Tinker - Craftsmanship Magazine - 2 views

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    "As the economy's reliance on innovation grows, the offering of toys for girls remains somewhat less than innovative. Fortunately, a few women who are educators, engineers, and entrepreneurs are starting to figure this problem out, by reviving the time-honored principles of tinkering."
John Evans

The Daring Librarian: The Way of the Lego - 3 views

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    "When I first started the Makerspace, inspired by my PLN, I had a very small budget and a admittedly a rather large dose of skepticism that all this Makerspace folderoll could just be another fad or Ed Tech buzzword. Like the $11,000 Smart Board everyone just HAD to have 10 years ago that seemed to end up as a very expensive white board a few years later. But I did want to give it a whirl! The reason I often talk about baby-steppin into Makerspace (or any new education innovation)  it's because I don't want you to feel like pressured or guilted into jumping into something new or spending thousands of dollars. Remember, you can date new technology (or innovation) you don't have to marry it! "
John Evans

Fun Building Challenges: STEM Activities on a Budget - Kid World Citizen - 3 views

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    "When I was a Destination Imagination team leader, we had weekly challenges for our team to complete with minimal supplies, all found around the house. These fun building challenges were STEM activities on a budget! The innovation and creativity that came from the kids was phenomenal. It took practice, teamwork, strategic thinking, patience, and a sense of humor, but with practice my team grew together and became expert engineers. Here are 10 building, STEM activities you can do with materials you already have at home. The key to innovation and success is to repeat the activities several times, discussing strategy, what worked and didn't work, and how you will improve it next time. Remember to let the kids be in charge, and hold yourself back from interfering with their creative process. In all of the challenges, kids are invited to alter the materials in any way: tearing, folding, rolling, bending, etc."
John Evans

Maker Movement pioneer offers sage advice to creative educators - Dale Dougherty, USA |... - 2 views

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    "As part of last month's Hack the Classroom event, we heard from some true education innovators who have hacked learning spaces around the world to provide students with transformational learning experiences. One of the innovators we were fortunate enough to hear from was Dale Dougherty. Dougherty, founder of MAKE Magazine and a Maker Faire pioneer, shared some fascinating insights on why - and how - the global Maker Movement has become so successful, so quickly."
John Evans

Education Week - 1 views

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    "Makers-in the broadest sense, those who make things-and the maker movement have gone mainstream. Featured in articles from the Smithsonian to The Atlantic to The New York Times, today's makers are just as likely to be armed with traditional tools like hammers, anvils, and yarn, as they are with conductive paint, 3-D printers, and computers. They are participating in a movement marked by community norms of sharing, collaboration, and experimentation. They are gathering in libraries, garages, summer camps, and makerspaces. Cities and towns across the United States are paying attention, responding to the buzz with maker-related growth and development: Downtowns are outfitting digital workshop spaces, also knowns as "fablabs"; municipal libraries and church spaces are designating space for making; and now schools are getting on board. It is no wonder that school ears are perked. As businesses, libraries, and organizations lobby for ways to bring making into their domains, schools across the country are building innovation labs. Makerspaces are being carved out, 3-D printers are being brought into classrooms, and hacker/tinkering/maker/tech-ed teachers are being hired-and sometimes trained. There is clear enthusiasm around the tools and the sociocultural impact of maker-related values. Attend a school board meeting where a makerspace is on the agenda and the familiar selling point rings out: Maker education boosts STEM-science, technology, engineering, and math-learning, which will ultimately generate a cohort of innovative, inventive, entrepreneurial-minded young people. But we may be getting ahead of ourselves. The limited research around the cognitive benefits of maker-centered education is only recently emerging. Maker classes, maker curriculum, and maker teachers are being incorporated into educational settings in what appears to be a response to popular media and based, in part, on the hype."
John Evans

Understanding The 3D Printing Ecosystem | TechCrunch - 2 views

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    "Excitement about 3D printing has steadily accelerated over the past decade - but this excitement has largely outpaced innovation and development in the field. As a researcher in 3D printing technologies, I've built 3D printers using all of the major technologies, as well as more experimental ones. What I've learned is that many of these technologies are composed of very well-understood materials, software problems and mechanical systems - things that engineers have been doing for decades. This, then, begs the question: Why isn't 3D printing better? Why are failure rates so high and why is reproducibility so difficult? It's clear that it's not due to working with exotic materials or advanced motion control. What's actually holding back innovation is how we think about those technologies: as separate pieces, rather than as elements of a system. "
John Evans

38 Amazing Edtech Tools for Student Creation and Innovation - The Tech Edvocate - 6 views

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    " Are you looking for edtech tools that will allow your students to tap into their creativity? We got you covered. In this article, we will profile 38 amazing edtech tools for student creation and innovation."
John Evans

7 computational thinking strategies to help young innovators fail forward | eSchool News - 4 views

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    "Computational thinking has been trending, but what is it, really? Simply put, computational thinking is a method of reasoning that teaches students how to solve real-world, complex problems with strategies that computers use. Computational thinking and the design thinking process are frameworks for problem-solving to help address the need for 21st-century skills across our nation's K-12 school system. While computation governs the world around us, computational thinking as a teaching and learning framework is a new concept for many. These skills are becoming progressively important due to the constant evolution of technology and its place in our economy. An increasingly automated workforce means students who have had exposure to tech-thinking will be more likely to succeed. To help get students future-ready, I've identified seven effective thinking strategies to equip young innovators with valuable problem-solving abilities. Using these tips, students will not only be learning important skills, but will be preparing for what lies ahead post-graduation."
John Evans

Book Excerpt: Learner Centered Innovation: Spark Curiosity, Ignite Passion, Unleash Gen... - 0 views

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    "Katie Martin is one of BIE's Directors of District Leadership, and she's also a blogger, speaker, and author. Her new book, being released today, is Learner Centered Innovation: Spark Curiosity, Ignite Passion, Unleash Genius. As you can tell from this excerpt, it's got a great message for PBL practitioners and for the whole field of education:"
John Evans

6 Must-Haves for Developing a Maker Mindset | EdSurge News - 2 views

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    "Flashy spaces and shiny toys in makerspaces are enticing, but it takes time and explicit scaffolding to develop a true Innovator. Building and providing the space for Making to happen is one thing; nurturing a mindset that gives students the mental tools to engage with said spaces is a much larger, and timely, endeavor. Best defined by the research and work of Carol Dweck, Jo Boaler and Eduardo Briceno, growth mindset is the recognition of the brain as a muscle that-with practice, effort, and nurturing-can continue to grow and develop. When you think of an inventor or innovator, past or present, what descriptors come to mind? Creative. Persistent. Curious. Fearless. Passionate. But educators know that most students don't show up to your class on the first day of school exhibiting these qualities. So how do we provide not only the physical tools but the mental tools to Make? Here are the essential pieces:"
John Evans

Free Technology for Teachers: Design a School - A Lesson in Design and Innovation - 2 views

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    "The Open University offers a free course on design and innovation. The course includes a set of six short videos that provide a broad overview of the history and development of modern design. That playlist, beginning with the video on the influence of arts and crafts on design, is embedded below. "
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