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Greening the Economy: Sustainable Cities
Introduction to Graphic Illustration
Computational Social Science Methods
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Learn to create a Python-based route generator for Ticket to Ride, enhancing gameplay variety by randomly selecting cities and assigning points based on distance.
Explore beam weapon optimization in FTL game through coding, focusing on user interface, ship design, and room management techniques.
Explore double-planet and trinary star systems using a gravity simulator. Learn to code physics simulations and visualize complex celestial interactions in VPython.
Explore gravitational interactions in binary star systems using a simulator. Learn about energy calculations, angular momentum, and the fascinating patterns of orbital motion.
Explore gravitational motion simulation using VPython, focusing on Sun-Earth dynamics. Learn about Euler-Cromer method, indices tracking, and Earth's scale in space.
Explore 3D bouncy ball simulations using VPython. Learn about collisions, pressure, temperature, and the Ideal Gas Law through interactive coding and experimentation.
Explore temperature, pressure, and the Ideal Gas Law through bouncy ball simulations using VPython. Calculate and visualize ensemble properties in this engaging physics coding tutorial.
Learn to code bouncy ball physics simulations in VPython, including collision detection and vector calculations for realistic ball movements and interactions.
Explore elastic collision math for bouncy balls, covering conservation of momentum, parallel axis, and unit vectors. Practical application in coding physics simulations.
Learn to import lab data into Jupyter notebooks using pandas, access and manipulate the data, and create plots with customized labels for effective data analysis and visualization.
Reflections on 2022 AAPT Winter Meeting highlights, discussing exciting developments in physics education, including the James Webb Telescope, planetary systems, and the L5 Society.
Reflections on the 2022 AAPT Winter Meeting, discussing key developments in physics education, including climate change, energy conservation, and diversity, equity, and inclusion.
Explore projectile motion model validation through real-world examples and video analysis, enhancing understanding of physics concepts and practical applications.
Explore projectile trajectories by systematically altering properties, enhancing understanding of physics concepts through coding and visualization techniques.
Explore quantum mechanics using Python arrays to model spin, measurements, and strange experiments, with hands-on challenges for high school physics teachers.
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