F=ma and USAPhO preparation.
Vectors, projectile motion, and relative velocity reference frames.
Free body diagrams, friction, drag forces, and coupled systems.
Conservation of energy and potential energy curves.
Conservation laws, potential energy curves, and the work-kinetic energy theorem.
Impulse, variable mass systems, and 1D/2D elastic and inelastic collisions.
Angular velocity, acceleration, and rolling without slipping.
Torque, moment of inertia, rolling without slipping, and angular momentum.
Moment of inertia, parallel axis theorem, and rotational kinetic energy.
Conservation of angular momentum, gyroscopes, and point particle collisions.
Kepler's laws, orbital mechanics, and escape velocity.
Rigid body equilibrium, tension, and structural stability.
Kepler's laws, gravitational potential, and escape velocity.
Simple harmonic motion, pendulums, springs, and damped/driven oscillations.
Hydrostatics, buoyancy, continuity, and Bernoulli's principle. (USAPhO)
Ideal gas law, RMS velocity, and equipartition theorem. (USAPhO)
Laws of thermodynamics, PV diagrams, and heat engine efficiency. (USAPhO)
Wave equations, interference, standing waves, and the Doppler effect. (USAPhO)
Electric fields, potential, capacitors, and dielectrics. (USAPhO)
DC analysis, Kirchhoff's laws, and RC/RL/RLC transients. (USAPhO)
Magnetic forces, Biot-Savart, and charged particle trajectories. (USAPhO)
Faraday's law, Lenz's law, and motional EMF. (USAPhO)
Snell's law, mirrors, lenses, and double-slit interference. (USAPhO)
Special relativity, photons, and Bohr's atomic model. (USAPhO)