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Python Coding Rubric

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Preview of AP Computer Science Project in Python - Flappy Ai

AP Computer Science Project in Python - Flappy Ai

This project is meant to give students an opportunity to work on a computer game in small groups (it can be used in other formats) as well as practice complex conditional flow statements in Python. It is based around a Flappy bird game, where students need to help bird navigate by modifying a single function in a python code. It gives students an opportunity to utilize Cartesian coordinates to make relevant decisions. It is also an excellent project to connect materials learned in math class wit
Preview of Build a Swimming Pool Student Handout and Exemplar

Build a Swimming Pool Student Handout and Exemplar

This lesson emphasizes application of geometric modeling in real-world contexts.What’s Included:Student swimming pool design projectSample sketch/modelGrading rubricAnswer keyOptional budgeting extension
Preview of Mathematics of World Cultures Project

Mathematics of World Cultures Project

Created by
GeoBright
Explore Math Through Culture!This cross-cultural math project invites students to investigate mathematical ideas, systems, and artifacts from cultures around the world—ancient or modern. Students choose a culture (e.g., China, India, Aztecs, Mali, Polynesia) and create a creative project based on their mathematical contributions. Includes student instructions, sample topics, and a grading rubric. Great for upper middle school and high school end of the year project!
Preview of Candy Cane Cantilever — Holiday Structures & Torque STEM Challenge (Grades 3–12,

Candy Cane Cantilever — Holiday Structures & Torque STEM Challenge (Grades 3–12,

Created by
Allison Smith
Engineer a festive cantilever that reaches the farthest overhang beyond the table edge—using only candy canes and limited tape! Students plan, build, test, and iterate while applying torque and center of mass ideas. Perfect for a high-engagement holiday lab, stations, or a one-period challenge. 🍬🧰 What students do 🧠 Plan & sketch: identify anchor vs. arm, place joints/tape, predict max overhang. 🧪 Test & measure: record trials, overhang (cm), stability (10 s), failure modes. 📈 Analyze
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