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Lecture
Physics: Motion Description
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Related lectures (31)
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Kinematics: Velocity and Inertial Frames
Explores kinematics, velocity definitions, inertial frames equivalence, and acceleration importance in different frames of reference.
Coordinate Systems: Spherical Coordinates
Explores spherical coordinates, trajectory equations, and circular motion in different reference frames.
Non-inertial Reference Frames & Constraints
Covers forces in non-inertial reference frames, constraints, and the use of pulleys and ropes.
Dynamics in Non-Inertial Frames
Covers dynamics in non-inertial frames, including transformation laws, Coriolis force, and examples of dynamic systems.
Inertial Forces and Reference Frames
Explores inertial forces, reference frames, Newton's laws, and apparent weight in an accelerated elevator.
Changes of Reference Frames: Deriving Formulas and Applications
Covers the derivation of formulas for velocity and acceleration changes when switching frames, with practical examples like the Foucault pendulum.
Transformation of Speeds and Accelerations
Covers the transformation of speeds and accelerations in different reference frames and the concept of angular velocity.
Mechanics: Inertial and Non-Inertial Frames
Explores mechanics in inertial and non-inertial frames, covering forces, Coriolis effect, and Poisson formula.
Forces and Motion on Inclined Plane
Explores forces and motion on an inclined plane, analyzing minimum mass requirements and velocity calculations.
Reference Frames and Motion
Explores reference frames, motion transformation, and the Coriolis effect's significance in simplifying problem-solving by choosing the right frame.