
Public learning track
Forces, Newton's Laws, Gravitation, and Fluid Mechanics
9th Grade · Science · Open Global Science
13 lessons
Goal
Analyze forces and motion mathematically to predict mechanical interactions, momentum exchanges, gravitational attractions, and fluid behaviors.
Featured Diagrams
Using the Speed Formula: v = d / t to Calculate Speed
13 lessons
0 of 13 done
- 1Using the Speed Formula: v = d / t to Calculate SpeedUp nextStart
- 2Vector Addition and Free-Body Net Force AnalysisPremiumNot started yet
- 3Introduction to Newton's Laws of MotionNot started yet
- 4Calculating Acceleration and Net Force with Newton's Second LawNot started yet
- 5Static and Kinetic Friction: Calculating Resistance ForcesNot started yet
- 6Connecting Gravitation to Newton's Laws of MotionNot started yet
- 7Applying Newton's Law of Universal Gravitation QuantitativelyNot started yet
- 8The Principle of Conservation of MomentumNot started yet
- 9Conservation of Momentum in Isolated SystemsNot started yet
- 10Hydrostatic Pressure and Depth in FluidsNot started yet
- 11Pascal's Principle and Hydraulic Force MultiplicationNot started yet
- 12Understanding Archimedes' Principle MathematicallyNot started yet
- 13Predicting Sinking, Floating, and Neutral Buoyancy EquilibriumNot started yet
Curriculum Framework
9th Grade · Science · Open Global Science
1
13 lessons
Forces, Newton's Laws, Gravitation, and Fluid Mechanics
Analyze forces and motion mathematically to predict mechanical interactions, momentum exchanges, gravitational attractions, and fluid behaviors.
2
11 lessons
Work, Power, Thermal Transfers, and Thermodynamics
Apply the first law of thermodynamics and mechanical energy conservation to quantify work, power, thermal transitions, and system efficiency.
3
11 lessons
Wave Properties, Optics, and Wave Phenomena
Model mechanical and electromagnetic wave propagation and mathematically analyze reflection, refraction, diffraction, and standing waves.
4
12 lessons
DC Circuits, Electrical Power, and Electromagnetism
Analyze series and parallel direct-current circuits using Ohm's law, calculate electrical energy use, and model electromagnetic induction in motors and generators.