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Josh Siegel
Josh Siegel works across disciplines to develop “Deep Technologies” - technologies that were impossible yesterday, that are barely feasible today, and that tomorrow have the potential to pervasively and invisibly solve meaningful and significant problems.
In a mobility context, this includes: pervasive sensing for identifying transit mode and vehicle diagnostics, defensive self-driving, applications for vehicular data, efficient vehicle-to-vehicle connectivity, transportation cybersecurity, human-vehicle interactions, simulator design, and trajectory forecasting.
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Robotics Engineering Fundamentals: Students collaborate to build and code a robotic vehicle, learning the basics of mechanical assembly, sensor integration, and programming logic.

Electronics and Circuitry Exploration: Students work hands-on with electronic components and utilizing tools like microscopes to understand the intricacies of circuit design.

Introduction to Biotechnology:
Introduction to the world of biotechnology through experiments in a lab setting, fostering an understanding of biological processes and laboratory techniques.
Creative Problem-Solving with Robotics: Engage in creative problem-solving by constructing and programming robots, integrating STEM principles with a focus on teamwork and innovation.
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Starting a Makerspace
Starting a school-based makerspace can be a transformative initiative that fosters creativity, innovation, and hands-on learning among students. A makerspace serves as a collaborative environment where students can explore and experiment with various tools and technologies, ranging from traditional crafting materials to cutting-edge electronics.
Fostering a maker community with an invention mindset contributes to interdisciplinary learning bringing together various fields such as science, technology, engineering, arts, and mathematics (STEAM) and fostering a holistic understanding of concepts.
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Inclusive Communication Skills:
A lesson on the importance of active listening, respectful dialogue, and the exchange of ideas in a collaborative setting.
Advanced Robotics Programming: Delve into advanced robotics, electronics, and control systems.


Self-Expression and Creativity:
A lesson on self-expression and creativity, encouraging students to explore their identities and present themselves confidently.
Engineering Design Process:
A lesson on the engineering design process, teamwork, and project-based learning.
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Program distributed by:
Privacy Policy | Terms of Use
© Copyright 2024 Maaia Mark Productions LLC

Privacy Policy | Terms of Use