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John Evans

9 Magnetic Building Toys for STEM Play and Making - 0 views

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    "Magnetic building toys are among the most popular STEM construction options for a number of simple reasons. They are robust and affordable. There are no batteries required (magnets are always on). And they straddle a number of important engineering concepts such as design, structure, geometry and are an excellent stepping stone to more complex conversations around physics and electronics. While magnets alone (or the ones stuck to the fridge door) can provide hours of fun, the below nine magnetic building toys have all been created especially for children who have that engineering streak. Take a look and see how magnets can motivate learning in your children!"
John Evans

KIDZ Scramble Word Magenet Online Game - 16 views

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    This applet creates a 'magnetic poetry' board upon which the user may shift around the words the webpage designer has listed (mouse click and drag a word to move it). Furthermore, the user may modify an existing 'magnet' by SHIFT-clicking on it. Alternately, new magnets may be created by SHIFT-clicking in vacant area of the applet (then type what new letters you want on the magnet piece).
John Evans

Logistics of a Makerspace: Scheduling | Renovated Learning - 1 views

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    "During my poster session at ISTE, I must have been asked dozens of times: "When do students use your Makerspace?  How do you organize scheduling?" I am in a magnet middle school on a flexible schedule.  I have an extremely supportive administration and staff and an enthusiastic student body that's eager to learn.  I realize that these circumstances won't apply to everyone and that I'm very lucky to be in the place that I'm in. That being said, here's how and when students at Stewart Middle Magnet use our Makerspace:"
John Evans

Teaching the Design Process in Makerspaces | Renovated Learning - 2 views

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    "Stewart Middle Magnet is a STEM magnet school, and part of our curriculum comes from Project Lead the Way, including classes in engineering, robotics and aerospace.  The Design Process is an important part of that curriculum.  It also ties in beautifully with what we do in our makerspace.  So it made sense for me to partner up with one of our Project Lead the Way classes to teach our students about the basics of the design process.  While this was a lesson with a specific class, it could easily work with small groups, after-school clubs, or any group that you bring into your makerspace."
John Evans

Edutech for Teachers » Blog Archive » Spring into Magnetic Poetry Activities - 0 views

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    "Looking for a super cool and useful spring-time activity to utilize in your classroom? Then all you gotta do is snag a copy of my Spring Magnetic Poetry template! This Google Slides resource contains 75+ words and phrases that can be manipulated into a fun-filled poem, story, etc. for you and your students."
John Evans

Kid Builds BB-8 Robot Out of Beach Ball, Deodorant Rollers, Speaker Magnets | Make: - 2 views

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    "I saw this video on YouTube this past week and was completely floored by it. Not only is it an impressive build for any maker, but the builder here, Angelo Casimiro, is a 17 year old boy."
John Evans

Summer Book Study - Teach Like a Pirate #tlap - Begins 6/17 | Chris Kesler - 1 views

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    "Summer has begun! This is a great opportunity to reflect on the past year and to learn some new skills for next school year. We will be starting a weekly book study of Dave Burgess', Teach Like a Pirate on 6/17 at 8pm CST. Burgess teaches cutting-edge strategies for skyrocketing creativity so that teachers will be able to design lessons to draw students into their content like a magnet. Readers will leave with the ability to create a classroom experience that will have students knocking down the doors to get in. The book will have your mind racing with ideas that you can bring into your classroom immediately."
John Evans

Why Inquiry Learning is Worth the Trouble | MindShift - 0 views

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    "early seven years after first opening its doors, the Science Leadership Academy public magnet high school* in Philadelphia and its inquiry-based approach to learning have become a national model for the kinds of reforms educators strive towards. "
John Evans

IT MAY NOT BE EPIC,BUT IT'S STILL AN AWESOMELEGO WALL! - Tackk - 1 views

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    "To be honest, I had longed for the epic Lego wall that has graced so many makerspace blogs and websites.  But I didn't have the wall space for it, and I prefer furniture and resources that can serve dual purposes. Being a proponent of Theodore Roosevelt's motto of "Do what you can with what you have where you are" I became resourceful.  So with my Scholastic Book Fair points, I chose a metal cabinet from the rewards catalog to serve as both makerspace storage and a movable awesome Lego wall. With some heavy-duty magnets affixed to the back with a hot glue gun, our baseplates could be used both horizontally and vertically.  Bound by limitations, I was able to find a away to create something new that would fit the needs of our library and our students."
John Evans

This incredible robot (called Root) is teaching kids to code - Daily Genius - 3 views

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    "Root looks like a smoke detector but is actually a sophisticated robot. A magnetic surface, wheels, and an impressive arsenal of sensors allow it to navigate a classroom white board. But Root isn't actually programmed to do anything. Its tasks and functionality hinge on a child's imagination. To operate - Root needs instructions, a line of code. Zivthan Dubrovsky of Harvard's Wyss Institute recalls testing out Root with kids for the first time. He asked them this: "Can you make a text based java script line follower? They go 'no that's hard, can't do that', but we can put level one in front of them and they can do it in minutes." Level one introduces kids to principles of programming using an interface of simple instruction and pictures. As they become more adept, they jump to levels 2 and 3, at which point writing computer code becomes second nature, according to Dubrovsky."
John Evans

How to Run a SUPER Circuit Bracelet Workshop | Renovated Learning - 4 views

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    "My school is a STEM magnet school and unfortunately, that leads to a disproportionate number of male students.  This year the ratio was 65% male, 35% female, which led to many of my female students feeling disenfranchised.  I wanted to do something to help create a safe environment for my girls to explore STEM and to build a community with one another, so this year I partnered with several science teachers to start a STEMgirls club at our school.  At our first meeting, we talked about possibilities of projects and activities that we would like to do.  When I mentioned a workshop I had seen others do where you could sew light up bracelets, my students got really excited.  Thus, our Circuit Bracelet Workshop was born."
John Evans

iafrica.com | lifestyle | parenting | features | Baby doesn't need tech to learn - 0 views

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    "Experts at a panel discussion in New York last month entitled "Baby Brains and Video Games" urged parents to set limits on electronic device use - while acknowledging the magnetic appeal of iPads in particular."
John Evans

Social Media as a teaching tool: How to Tweet your students some knowledge | teachingwi... - 4 views

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    "As teachers, the pull of social media on your students attention will already be well known to you. The online world exerts a magnetic lure on the attention of young people today, offering community and information sharing, entertainment and gossip in ways that often pull students away from the blackboard. Understanding this dynamic, some educators are now bringing social media into the classroom in surprising ways. By working with something your students already enjoy and don't, perhaps, associate with learning, there are opportunities for creative teaching, as well as making genuine connection with your students."
John Evans

Makers in the Classroom: A How To Guide | EdSurge News - 2 views

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    "You see it everywhere in K-12. Kindergarteners design toys for their friends to practice empathy, while learning to use a saw and glue-gun along the way. Second graders deepen their understanding of character traits while designing and sewing puppets to represent a character in a folk-tale. In high school physics, students make wind turbines in order to internalize an understanding of how magnetism can create electricity. The "it" I'm referring to is "Making," and simply put, Making is any activity where people create something, often with their hands."
John Evans

Makers in the Classroom: A How To Guide | EdSurge News - 5 views

  • At Lighthouse Charter School, we use three Making-inspired models: open-ended student-driven projects, integration into curriculum, and Making-focused curriculum. While a single project may involve more than one of these models, you can use these categories to start thinking about Making in your own classroom, school, or educational program.
  • Open-ended student-driven projects ask students to do most of the heavy lifting. The open-ended projects have a strong focus initially on the heart, and a student’s interests--”What are you passionate about? What gets you excited? What would just be cool?” But to create a final project, the mind and hands must get involved as well.
  • Integrating Making into curriculum happens when Making is tied to core academic curriculum or standards, in order to enhance student understanding. For example, when students build circuits using open-ended materials to introduce to concepts about electricity, design bridges to withstand an earthquake as part of a geology study, and deepen their understanding of geometry by programming shapes in LOGO (a computer language developed as a tool for learning), they engage their hands to solidify and deepen the concepts that they are already learning in the classroom.
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  • In Making-focused curriculum, the goal is to focus on the Making process and skills, shifting from a focus on academic content/standards to a focus on the Making itself. A kindergarten study of sewing, a robotics elective, or a few class sessions on programming with Scratch fit this model. An important consideration is whether to concentrate on process (such as ideation and prototyping), skills (such as soldering, programming, and sewing), or both, and then tailor instruction to fit those goals. When I design Making classes that focus on process, I have my students write reflections and engage in whole-class discussions to help students think about how they worked through obstacles throughout the project process.
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    "You see it everywhere in K-12. Kindergarteners design toys for their friends to practice empathy, while learning to use a saw and glue-gun along the way. Second graders deepen their understanding of character traits while designing and sewing puppets to represent a character in a folk-tale. In high school physics, students make wind turbines in order to internalize an understanding of how magnetism can create electricity. The "it" I'm referring to is "Making," and simply put, Making is any activity where people create something, often with their hands. I often define Making by looking at what people bring to the Maker Faire, which does include more technical aspects like 3D printing, physical computing and programming. But Making also includes woodworking, growing food, making art and crafts."
John Evans

littleBits Quick Start Guides | Invent To Learn - 0 views

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    "littleBits are ingenious snap-together magnetic elements used to create whimsical machines and prototype complex electronic circuits. It's impossible to short-circuit the littleBits or create a syntax error in your physical "program" since they only snap together the "correct" way. Kids from 5-85 love inventing with littleBits. We recently created two "Quick Start" guides for the trickier aspects of working with littleBits. You may download them here: littleBits Quick Start Guide littleBits Arduino Bit Quick Start Guide (for programming your littleBits-based machine) littleBits Cloudbit Quick Start Guide (for Internet of Things) Download our complete 20+ page workshop kit"
John Evans

Valuable Lessons from My First Makerspace Year | Knowledge Quest - 5 views

  • Listen to student voice from the beginning
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    "When I first started my makerspace at Stewart Middle Magnet School back in January of 2014, I was figuring everything out as I went along.  The term was still brand new, I couldn't find any maker sessions at conferences, and there were only a handful of other school libraries sharing about their makerspaces.  Armed with a couple of books on the growing Maker Education Movement and a dream to create an engaging environment in my library,  I gathered some supplies, put them out there, and waited to see what would happen.  My ideas and philosophy were constantly growing and evolving as we tried new activities and formats at my school.  Some experiments worked; some failed miserably.  But I learned from each and every one as our makerspace grew into an integral part of our library culture.  Looking back on the last year and a half, I've realized that there's several essential lessons I've learned in getting our makerspace going. Hopefully they can help save you some stress (and reassure you that everything will be awesome)."
John Evans

Advocating for Makerspaces in Libraries | Knowledge Quest - 1 views

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    "Since I first started my Makerspace at Stewart Middle Magnet School in January 2014, I have received a lot of positive feedback. I've given talks, presented at conferences, and shared about our experiences through my blog and through social media.  Some of the questions I am most frequently asked are: Why should makerspaces be in the library?  Why not just convert a classroom into a STEM lab? In a similar vein, I often hear from librarians who are struggling to get their administration/teachers/community to understand the rationale for having a Makerspace in their library.  Aren't those kids just playing?  Shouldn't libraries be quiet and clean?  How does this tie in with the curriculum? How we react to these types of questions are crucial in our advocacy for our spaces.  Here's some ways to respond."
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