
Public learning track
Energy Transformations, Fluid Mechanics, and Field Theories
10th Grade · Science · Open Global Science
9 lessons
Goal
Model energy dissipation in mechanical systems, analyze fluid statics and dynamics, and contrast gravitational, electric, and magnetic fields.
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Conservation of Mechanical Energy
9 lessons
0 of 9 done
- 1Conservation of Mechanical EnergyUp nextStart
- 2Thermal Dissipation and Efficiency in Mechanical SystemsPremiumNot started yet
- 3Hydrostatic Pressure and Pascal's PrincipleNot started yet
- 4Buoyancy and Archimedes' PrincipleNot started yet
- 5Fluid Continuity and Mass Flow RateNot started yet
- 6Bernoulli's Principle and Dynamic PressureNot started yet
- 7Comparing Gravitational and Electrostatic FieldsNot started yet
- 8Magnetic Fields and Lorentz Force on Moving ChargesNot started yet
- 9Magnetic Force on a Current-Carrying Conductor: F = BIl sin θNot started yet
Curriculum Framework
10th Grade · Science · Open Global Science
1
8 lessons
Advanced Mechanics, Momentum, and System Stability
Quantitatively model multi-dimensional forces, impulse-momentum conservation in collisions, and rotational stability based on center of mass.
2
9 lessons
Energy Transformations, Fluid Mechanics, and Field Theories
Model energy dissipation in mechanical systems, analyze fluid statics and dynamics, and contrast gravitational, electric, and magnetic fields.
3
8 lessons
Complex DC Circuits and Electrical Power Systems
Analyze multi-branch direct-current networks using Kirchhoff's laws, model real power transfer, and evaluate sensor circuits.