@spatialgrow
Bridging Classrooms to Careers with Immersive STEM Education
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Instagram
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LinkedIn
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Website
SpatialGrow provides AI-powered tools for STEM education and automation through our immersive SpatialGrow Classroom and SpatialHub products.
E-Waste to Harvest Whitepaper
E-Waste to Harvest Whitepaper
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AutomatingSustainability - Twitch
AutomatingSustainability - Twitch
Twitch is the world's leading video platform and community for gamers.
3D Experience - Upcycled Server Rack
3D Experience - Upcycled Server Rack
This virtual world brings you into an office where two upcycled server racks have been converted into hydroponic vertical farms. Use the SpatialHub to connect the real and virtual worlds! Read environment data and control pumps all from the comfort of your virtual world.
How Growing Local Produce Empowers Students, Communities, and the Future
How Growing Local Produce Empowers Students, Communities, and the Future
High school students are learning to grow their own food, gaining essential skills in resilience, teamwork, and sustainability. These programs empower young people to tackle food insecurity and build stronger, self-reliant communities.
The Synergy of Controlled Environment Agriculture, Renewable Energy, Robotics, and Computer Science: A Vision for the Future
The Synergy of Controlled Environment Agriculture, Renewable Energy, Robotics, and Computer Science: A Vision for the Future
The future of sustainable agriculture lies in the integration of Controlled Environment Agriculture (CEA), renewable energy, robotics, and computer science. Together, these technologies optimize resource use, reduce environmental impact, and enhance food security. Robotics automates labor-intensive tasks, while computer algorithms ensure precise climate and nutrient control. When powered by renewable energy, CEA systems become even more sustainable, cutting costs and emissions. This synergy not only transforms food production but also creates new opportunities for urban farming, job creation, and resilience in a changing world.
Building Global Competence: Preparing Students for a Connected World
Building Global Competence: Preparing Students for a Connected World
Digital twins—virtual models of real-world systems—are revolutionizing education by bridging the gap between classroom learning and real-world application. These interactive tools allow students to manipulate variables in virtual environments and immediately see the results, making learning more practical and engaging. Digital twins help students develop critical thinking and problem-solving skills, preparing them for careers in fields like engineering, agriculture, and environmental science. By offering hands-on, real-time experience, digital twins make education more interactive and prepare students for global collaboration and real-world challenges.
Building a Solar-Powered Fan: A Step-by-Step Activity
Building a Solar-Powered Fan: A Step-by-Step Activity
This activity guide for building a solar-powered fan introduces students (grades 5-12) to renewable energy, basic circuits, and engineering design. Over the course of 1-2 hour sessions, students will design, build, and test their own solar-powered fan using materials like a mini solar panel, a small fan, and cardboard. The project begins with an introduction to solar energy and the fundamentals of electricity, progressing through various construction stages where students connect circuits and experiment with solar panel positioning. This hands-on activity encourages creativity and problem-solving, allowing students to explore real-world applications of STEM concepts.
The Impact of Virtual Reality on Experiential Learning
The Impact of Virtual Reality on Experiential Learning
3D learning is breaking down barriers to education by making immersive, hands-on experiences available on everyday devices like laptops and tablets. Students can now conduct virtual experiments, explore historical sites, and model engineering solutions, all without the need for expensive labs or equipment. This technology is particularly impactful in STEM education, where students can safely perform experiments and practice real-world skills. By expanding access to quality education, 3D learning ensures that students from all backgrounds can engage deeply with the material and prepare for future careers.
How Controlled Environment Agriculture and Renewable Energy Benefit Each Other
How Controlled Environment Agriculture and Renewable Energy Benefit Each Other
Controlled Environment Agriculture (CEA) allows for year-round food production in controlled settings, optimizing resource use and reducing waste. When paired with renewable energy, CEA becomes even more efficient and sustainable, reducing operational costs and carbon footprints. Solar, wind, and other renewable sources provide reliable power to CEA systems, ensuring resilience in food production even during energy shortages. This synergy supports sustainable urban agriculture, bringing fresh, locally grown produce to urban areas while minimizing environmental impact and promoting energy independence.
Building a Fan-Powered Boat: A Step-by-Step Activity
Building a Fan-Powered Boat: A Step-by-Step Activity
This activity guide for building a fan-powered boat introduces students (grades 5-12) to basic circuits, engineering design, and iterative problem-solving. Over the course of multiple one-hour sessions, students will design, build, and test boat prototypes using materials like paper, cardboard, copper tape, and small computer fans. The project begins with a review of basic circuits and progresses through various construction stages, including an optional 3D modeling and printing phase. The activity emphasizes hands-on learning, creativity, and adaptability, allowing students to explore real-world applications of STEM concepts.
SpatialGrow Trailer
SpatialGrow Trailer
Enjoy the videos and music you love, upload original content, and share it all with friends, family, and the world on YouTube.
STEM Magazine
STEM Magazine
Edible Memphis
Edible Memphis
The Impact of Agriculture and Technology on STEM Education
The Impact of Agriculture and Technology on STEM Education
Why Agriculture in STEM?
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