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Preview of The Relationship Between Potential and Kinetic Energy

The Relationship Between Potential and Kinetic Energy

Created by
BrainBites
Engage your students with this colorful science poster illustrating the relationship between potential and kinetic energy!Perfect for grades 4–8, this cartoon-style visual shows how energy changes as a car moves up and down a hill, making abstract concepts easier to understand. Includes clear color-coded labels, arrows, and energy formulas for classroom display or review.
Preview of Paper Helicopters: Rotor Length vs Fall Time — Data Tables + Scatter Plot | 3–12

Paper Helicopters: Rotor Length vs Fall Time — Data Tables + Scatter Plot | 3–12

Created by
Allison Smith
🚁 Forces & Motion meets Data Literacy. Learners design three rotor lengths (L1–L3), collect 3 trials each from a fixed drop height, compute averages, and graph Rotor Length vs Time on a scatter plot. Middle/high school extensions add best-fit analysis and force/drag reasoning. What’s Included Student Pack p.1: Background, IV/DV/controls, criteria, sketch box with dimension callouts Student Pack p.2: Three data tables (L1–L3), large scatter-plot grid, best-fit guidance, CER prompts Teache
Preview of Roller Coaster Engineering Project | Energy, Forces & Motion | NGSS | Grades 6–8

Roller Coaster Engineering Project | Energy, Forces & Motion | NGSS | Grades 6–8

Does your class need a project that gets students genuinely excited about physics? This multi-week roller coaster engineering project challenges student teams to design and build a marble-run prototype for a fictional Six Flags client — applying real concepts of potential energy, kinetic energy, forces, motion, Newton's Laws, and speed calculations the whole way through. It's hands-on, standards-aligned, and built for the real classroom. WHAT'S INCLUDED (19 pages):KWL Warm-Up: Energy & Roller
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
Preview of Cranberry Bog Boat — Buoyancy & Density STEM Challenge (Grades 3–12, NGSS Aligne

Cranberry Bog Boat — Buoyancy & Density STEM Challenge (Grades 3–12, NGSS Aligne

Created by
Allison Smith
Make buoyancy click with a seasonal engineering lab: students design a small foil “bog boat” that carries the maximum mass (cranberries/coins/washers) before sinking. They plan, build, test in a water bin, record data, and iterate to optimize stability and displacement—perfect for stations or a full-period lab. What students do Plan & sketch under material/size constraints, predict capacity. Test in rounds, adding equal-mass items until failure; record max mass, freeboard, and failure mode.
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