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Blank Problem Set: https://drive.google.com/file/d/1DOin... Solutions: https://drive.google.com/file/d/1cl-p... 0:00: #1: Momentum of a Rolling Object 1:40: #2: Angular Kinematics 3:15: #3: More angular kinematics 5:00: #4: Comparing angular velocity at different points 6:55: #5: Static Equilibrium on a wheel 11:40: #6: Bowling Ball rolling up a ramp max height 14:40: #7: FBD of an object rolling down an incline 17:10: #8: Translation to Rotation KE Ratio for a Hoop 19:40: #9: Moment of Inertia Lab Graph Analysis 21:40: #10: Tensions in a massive pulley 25:00: #11: Hoop vs Disk max height 28:00: #12: Average Power input to a wheel 30:30: #13, #14: Horizontal Hanging Beam Equilibrium 35:00: #15: Ladder static equilibrium 40:20: #16: Static Equilibrium on a board 42:10: #17: Hand Rotating a Disk 44:25: #18: Parallel Axis Theorem for a rod 46:30: #19, #20: CoM and Moment of Inertia of a system of particles 50:25: #21: Calculus Kinematics 51:20: #22: Another rod Parallel Axis Theorem 53:40: #23: Parallel Axis Theorem for a barbell 55:15: #24: Hoop vs Disk race down a ramp 56:35: #25: Static Equilibrium of an angled rod 59:10: #26: Comparing linear and angular velocity for a bike 1:00:45: #27: Double-Pulley static equilibrium 1:02:00: #28: I forgot to do this one... Answer is B since the forces cancel 1:02:05: #29: Angular Speed of two gears 1:03:30: #30: Generating Equivalent Torque 1:05:35: #31: Calculating Rotational KE 1:06:15: #32: Meterstick Net Torque 1:08:30: #33: Plywood Equilibrium 1:10:00: #34: Calculating Angular Velocity 1:11:15: #35: Comparing Moments of Inertia 1:12:20: #36: Angular Kinematics (Again) 1:13:00: #37: Different Shapes Racing Down an Incline 1:14:25: #38: Rotational Kinematics (with revolutions) 1:15:40: #39: Moment of Inertia of a System 1:16:50: #40: Triple Pulley Equilibrium