A new and expanded edition of one of the decade’s most influential education books.
“The bible of the maker movement in schools” includes new coverage of the BBC micro:bit, Scratch, littleBits, Hummingbird robotics, equity issues, and lessons from schools around the world.
In this practical guide, Sylvia Martinez and Gary Stager provide K-12 educators with the how, why, and cool stuff that supports making in the classroom, library, makerspace, or anywhere learners learn.
Join the maker movement and transform education!
There’s a technological and creative revolution underway. Amazing new tools, materials and skills turn us all into makers. Using technology to make, repair or customize the things we need brings engineering, design and computer science to the masses. Fortunately for educators, this maker movement overlaps with the natural inclinations of children and the power of learning by doing. The active learner is at the center of the learning process, amplifying the best traditions of progressive education. This book helps educators bring the exciting opportunities of the maker movement to every classroom.
Children are natural tinkerers
Their seminal learning experiences come through direct experience with materials. Digital fabrication, such as 3D printing and physical computing, including Arduino, Makey Makey and Raspberry Pi, expands a child’s toy and toolboxes with new ways to make things and new things to make. For the first time ever, childhood inventions may be printed, programmed or imbued with interactivity. Recycled materials can be brought back to life. While school traditionally separates art and science, theory and practice, such divisions are artificial. The real world just doesn’t work that way! Architects are artists. Craftsmen deal in aesthetics, tradition and mathematical precision. Video game developers rely on computer science. Engineering and industrial design are inseparable. The finest scientists are often accomplished musicians. The maker community brings children, hobbyists and professionals together in a glorious celebration of personal expression with a modern flare. When 3D printing, laser cutting, microcomputer control, robotics and computer programming become integral to the art studio, auto shop or physics lab, every student needs access to tools, knowledge and problem solving skills. The maker movement not only blurs the artificial boundaries between subject areas, it erases distinctions between art and science while most importantly obliterating the crippling practice of tracking students in academic pursuits or vocational training. There are now multiple pathways to learning what we have always taught and things to do that were unimaginable just a few years ago.
Making for every classroom budget
Even if you don’t have access to expensive (but increasingly affordable) hardware, every classroom can become a makerspace where kids and teachers learn together through direct experience with an assortment of high and low-tech materials. The potential range, breadth, power, complexity and beauty of projects has never been greater thanks to the amazing new tools, materials, ingenuity and playfulness you will encounter in this book.
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Join the learning revolution sweeping the globe!
3D printers, robotics, programming, wearable computing, and microcontrollers like micro:bit and Arduino capture the imaginations of today's student. When exciting new technologies combine with hands-on traditions, your classroom becomes a makerspace where learning soars. The time is now to place invention and creativity ahead of worksheets and testing.
Using technology to make, repair, or customize the things we need democratizes engineering, design, and computer science. Fortunately for educators, this maker movement overlaps with the natural inclinations of children and the power of learning by doing. Making, tinkering, and engineering are how people learn and work in the 21st Century.
This book explores how you can join the exciting maker movement and turn any K-12 classroom into a center of innovation.
Sylvia Martinez works in schools around the world to bring the power of authentic learning into classrooms, particularly in Science, Technology, Engineering, and Math (STEM) subjects. Sylvia is principal advisor to the Columbia University FabLearn Fellows, a group of global educators researching and developing hands-on, minds-on projects and curriculum.
Gary S. Stager, Ph.D. is one of the world's leading experts and advocates for computer programming, robotics and learning-by-doing in classrooms.
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