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Preview of Solving Linear Equations Differentiated Worksheet | 4 Levels Easy-Hard | KS3-4

Solving Linear Equations Differentiated Worksheet | 4 Levels Easy-Hard | KS3-4

Created by
Concept Clicks
Solving Linear Equations Differentiated Worksheet | 4 Levels Easy-Hard | KS3-4 Maths General Information: Tiered PDF worksheet with 30+ equations across Easy (4x=32), Developing (+/-), Medium (both sides, brackets), Hard (fractions). Includes self-evaluation and full answers; branded for single-teacher use.​ Estimated Content:Pages: ~4 with 8–12 questions per level.​Activities: 1 main graded practice set with reflection.​How Teachers Can Use It: Homework, classwork, or assessment; students self-
Preview of Pumpkin Catapult Challenge — Fall STEM Activity | Force & Motion Experimen

Pumpkin Catapult Challenge — Fall STEM Activity | Force & Motion Experimen

Created by
Allison Smith
Description: Launch into fall with this hands-on STEM challenge! Students design and test a mini catapult using simple materials to launch candy pumpkins (or pom-poms). Perfect for teaching force, motion, and energy transfer in a fun, seasonal way. ✅ Low-prep printable worksheet ✅ Covers Science, Technology, Engineering, and Math ✅ Great for early finishers, sub plans, or one-day STEM lessons ✅ Ideal for grades 3–8 Skills Covered: Force & motion Engineering design Measurement & data collect
Preview of Paper Airplane Engineering STEM Challenge | Forces of Flight | Grades 4–7

Paper Airplane Engineering STEM Challenge | Forces of Flight | Grades 4–7

Get your students thinking like real aerospace engineers with this hands-on Paper Airplane Engineering STEM Challenge!In this engaging middle school STEM lab, students will use the Engineering Design Process to design, test, and improve a paper airplane that can fly the farthest distance. Students will explore the Forces of Flight — lift, thrust, drag, and gravity — while collecting real data and making modifications to improve performance through multiple trials. This 10-page illustrated stu
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.
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 Aluminum Foil Boat STEM Challenge | Buoyancy & Density Science Activity

Aluminum Foil Boat STEM Challenge | Buoyancy & Density Science Activity

Looking for a no-prep, high-engagement STEM activity? This Aluminum Foil Boat Challenge is a perfect way to introduce students to the concepts of buoyancy, density, and the engineering design process. Students will design, test, and learn as they attempt to build a boat that can hold the most weight without sinking. Resource Highlights:Clear Objective: Students must create a floating boat using a single $6~in \times 6~in$ sheet of aluminum foil.Scaffolded Student Worksheets: * Prediction & Pl
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