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Preview of Pi-Day Catapult — Optimize Angle & Tension (Predict vs. Measure) | MS–HS NGSS

Pi-Day Catapult — Optimize Angle & Tension (Predict vs. Measure) | MS–HS NGSS

Created by
Allison Smith
Description (NGSS included) Celebrate Pi-Day with a data-driven projectile challenge! Students tune angle and tension on a simple launcher, then predict vs. measure range and compute percent error. Teams graph Range vs. Angle (and optional Range vs. Pullback) and explain results with CER. 🧠📈 🔬 Investigate: hold one variable constant to fairly test the other. 🧮 Model: use a calibration shot or R ≈ (v²·sin(2θ))/g to predict. 📊 Analyze: compare predicted vs. measured; percent error
Preview of Dry Ice Science: States of Matter Experiments That WOW! Holy Cow!

Dry Ice Science: States of Matter Experiments That WOW! Holy Cow!

Want to blow your students’ minds while teaching science concepts that stick? ❄️ This Dry Ice States of Matter STEM Resource transforms your classroom into a science lab of wonder—while giving you everything you need to teach, assess, and engage! ✨ What’s Included Editable Slides – ready-to-go presentations to introduce and explain states of matter. Vocabulary Cards – reinforce key terms with visuals and definitions. Exit Tickets – quick checks for understanding at the end of the lesson.
Preview of Aero Engineers Drone Engineering Lab and STREAM Program

Aero Engineers Drone Engineering Lab and STREAM Program

AERO ENGINEERS is a mission-based Drone Engineering STREAM Program designed to introduce students in Grades 4–6 to aerospace engineering, flight operations, teamwork, problem solving, and the engineering design process through hands-on learning experiences. WE use EC300 Drones that are built with LEGO Technic Like pieces. These drones are very affordable (about $50.00). Students work in collaborative flight teams as they build, test, fly, analyze, redesign, and improve a series of classroom dro
Preview of Complete Curriculum on Operating Systems in Computer Science & IT [full Lessons]

Complete Curriculum on Operating Systems in Computer Science & IT [full Lessons]

This curriculum provides a complete course on Operating Systems (OS), tailored for students studying Computer Science, Programming, Coding and Information Technology. It covers everything from the fundamentals of operating systems to advanced OS concepts, including types of OS, process management, memory management, file systems, I/O handling, virtualization, and security. ▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧ The Following Are Included in This Curriculum✤ PDF Lessons ✤ PowerPoint Presentations ✤ Pow
Preview of Introduction to Virtual Memory in Computer Science & Programming [Full Lessons]

Introduction to Virtual Memory in Computer Science & Programming [Full Lessons]

This lesson introduces students to the essential concept of Virtual Memory in Computer Science and Programming. Learners explore how operating systems use virtual memory to manage RAM efficiently, including paging, segmentation, and memory swapping. The lesson is designed to simplify complex concepts and help beginners understand how memory is extended beyond physical limits. ▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧ The Following Are Included in This Curriculum✤ PDF Lessons ✤ PowerPoint Presentations ✤ Po
Preview of Introduction to Processor Management in Computer Science [Complete Lesson]

Introduction to Processor Management in Computer Science [Complete Lesson]

This lesson introduces students to the fundamental concepts of Processor Management in Computer Science, Programming, Coding and Software Engineering. It explores how operating systems manage CPU resources, schedule tasks, and handle process execution. Learners gain insight into concepts such as multitasking, context switching, and process states. The content is designed to be both beginner-friendly and technically accurate. ▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧▧ The Following Are Included in This Curri
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