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Скачать или смотреть 9. 🚨 Continuing the Simulation Series: Visualizing the Effect of Constant Forces on Objects 🚨

  • IB Physics Hub | Quick Solve MCQs By Dr. Rao
  • 2025-05-08
  • 23
9. 🚨 Continuing the Simulation Series: Visualizing the Effect of Constant Forces on Objects 🚨
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Описание к видео 9. 🚨 Continuing the Simulation Series: Visualizing the Effect of Constant Forces on Objects 🚨

🚨 Continuing the Simulation Series: Visualizing the Effect of Constant Forces on Objects 🚨

After deep dives into free fall, projectile motion, circular motion, Newton’s laws, and kinematic graphs, today’s release focuses on understanding how constant forces act on objects using interactive simulations.

These tools aren't just visual aids — they offer an immersive experience to build conceptual clarity and prepare students for lab work, data analysis, and assessments.

Here’s what this new video covers:

🟢 1. Component of Gravity on an Incline

Understand how gravitational components vary with changing incline angles.

🟠 2. Friction at the Atomic Level

A molecular-level view of friction — how irregularities disappear as surfaces interact.

🟢 3. Static vs Kinetic Friction

Visualize how an object transitions from rest to motion under applied force, along with frictional behavior.

🟠 4. Worksheets on Friction Simulations (PhET)

Ready-to-use FA-compatible resources for classroom or home learning.

🟢 5. Air Resistance & Friction on a Sledge

See how combined resistive forces affect real-time motion.

🟠 6. Atwood’s Machine

Change mass values to explore how tension and acceleration vary.

🟢 7. Tension in a Simple Pendulum

Manipulate angle, mass, and length to study the effect on tension.

🟠 8. Tension in Two-String System (requires Wolfram Player)

Investigate how angles, masses, and symmetry affect string tension.

🟢 9. Force Direction on an Incline

Explore vector directions and how angle of pull affects motion with friction.

🟠 10. Friction on Inclined Planes

Modify surface interaction to study acceleration behavior.

🟢 11. Energy Changes on a Rough Incline

Observe real-time variation in potential and kinetic energy along the path.

🟠 12. Motion on Planets with Unknown Gravity

Estimate local g from motion on a frictionless incline — a great inverse problem.

🟢 13. Inclined Planes with Directional Angle Control

Understand reference directions when plane rotates.

🟠 14. Changing g on an Incline

Simulate alternate planetary environments by adjusting gravity.

🟢 15–18. Buoyancy Series:

a. Change density of objects and fluids

b. Observe float/sink behavior

c. Attach spring balances to study apparent weight

d. Track fluctuating buoyant forces during oscillations



🎯 This collection is ideal for IBDP, IGCSE, and senior high school students — not just for theory reinforcement, but as material for formative assessments, lab preps, and even mini-IA ideation.



#PhysicsEducation #IBPhysics #SimulationsInScience #EdTech #ActiveLearning #InclinedPlane #Friction #Buoyancy #Tension #TeachingWithSimulations #ConceptBasedLearning



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