Thermal Physics (6/6)

WeekCourse ContentCourse VideoCourse Download
Course IntroductionWatch OnlineMP4 Download
Chapter 1: Be able to use dimensional analysis to make order of magnitude estimates.Watch OnlineMP4 Download
Chapter 2: Be able to describe the relation between position, velocity and acceleration using words, motion diagrams, graphs, and mathematical formulae.Watch OnlineMP4 Download
Chapter 2: Problem solving using the constant acceleration model in one dimension.Watch OnlineMP4 Download
Chapter 3: Be able to translate between magnitude and direction of vectors and vector components. Be able to add and subtract vectors graphically as well as using components.Watch OnlineMP4 Download
Chapter 4: Problem solving using the constant acceleration model of projectile motion.Watch OnlineMP4 Download
Chapter 5: Be able to describe in words, free body diagrams, and mathematical formula the forces acting on an object using the point particle model.Be able to explain Newton’s second and third laws.Watch OnlineMP4 Download
Chapter 5: Problem solving using Newton’s second and third laws.
Chapter 6: Problem solving using Newton’s second law applied to circular motion.
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Chapter 6: Be able to derive equations of motion for systems with resistive forces.
Chapter 7: Problem solving using the relation between work and kinetic energy.
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Chapter 7: Be able to describe in words, energy diagrams, and mathematical formulae the concepts of potential energy and the conservation of energy.
Chapter 8: Problem solving using conservation of energy.
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Chapter 9: Be able to describe in words, diagrams, and mathematical formulae the concepts of impulse and momentum.Watch OnlineMP4 Download
Chapter 9: Problem solving using conservation of momentum.Watch OnlineMP4 Download
Chapter 10: Problem solving using rotational kinematics of rigid objects. Be able to describe in words and mathematical formulae the concepts of moment of inertia, torque and rotational kinetic energy. Watch OnlineMP4 Download
Chapter 10: Problem solving using Newton’s second law for rotation as well as using energy considerations.
Chapter 11: Be able to describe in words and mathematical formulae the vector product and the concept of angular momentum.
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Chapter 11: Problem solving using conservation of angular momentum.
Chapter 12: Problem solving for static equilibrium including the concept of center of gravity. (1/2)
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Chapter 12 (2/2)Watch OnlineMP4 Download
Chapter 13: Be able to describe in words Newton’s Law of Universal Gravitation, gravitational field, and gravitational potential energy.Watch OnlineMP4 Download
Chapter 13: Problem solving including Kepler’s laws and escape velocity.
Chapter 14: Be able to describe in words, figures, and mathematical formulae the concepts of pressure and buoyant force.Problem solving including the use of Archimedes Principle, and Bernoulli’s equation.
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Chapter 15: Be able to determine the amplitude, frequency, phase, kinetic energy and potential energy of simple harmonic motion in different physical situations.Watch OnlineMP4 Download
Chapter 15 (2/3)Watch OnlineMP4 Download
Chapter 15 (3/3)
Chapter 16: Be able to translate back and forth between the mathematical formulation of traveling waves to snapshots of wave motion and the time variation of wave motion at a specific location.
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Chapter 16: Be able to determine the wave speed, frequency, and wavelength of a traveling wave.Watch OnlineMP4 Download
Chapter 17: Be able to describe in words, graphs and mathematical formulae standing waves under different circumstances.Watch OnlineMP4 Download
Thermal Physics (1/6)Watch OnlineMP4 Download
Thermal Physics (2/6)Watch OnlineMP4 Download
Thermal Physics (3/6)Watch OnlineMP4 Download
Thermal Physics (4/6)Watch OnlineMP4 Download
Thermal Physics (5/6)Watch OnlineMP4 Download
Thermal Physics (6/6)Watch OnlineMP4 Download