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Related lectures (28)
Coordinate Systems and Rotations
Covers cylindrical and spherical coordinates, vector positions, velocities, accelerations, and rotations.
Coordinate Systems: Cylindrical, Spherical, Rotations
Covers cylindrical and spherical coordinates, position, velocity, and acceleration vectors.
Untitled
Rotations: Fixed Points and Spherical Coordinates
Covers rotations around fixed points and spherical coordinates, discussing cinematic moments and angular velocity.
Coordinate Systems: Polar, Cylindrical, Spherical
Covers position, velocity, and acceleration in polar, cylindrical, and spherical coordinate systems.
Cylindrical and Spherical Coordinates, Rotations
Covers cylindrical and spherical coordinates, transformations between coordinate systems, and rotations in physics.
Physics 1: Harmonic Oscillator and Spherical Coordinates
Explores harmonic oscillators, pendulum movement, and spherical coordinates in physics.
Acceleration and Rotation
Explores acceleration derivation, vector rotation, and coordinate systems in rotational motion.
Polar Coordinates: Position and Velocity
Explores polar coordinates, position, velocity, and acceleration vectors in Cartesian and polar systems, including cylindrical and spherical coordinates.
Mechanics: Rotational Dynamics
Explores rotational dynamics, equilibrium analysis, forces in tension, and conservation principles in motion.
Coordinate Systems: Spherical Coordinates
Covers unit vectors, rotations, and accelerations in spherical coordinates for physics applications.
Advanced Analysis II: Laplacian and Coordinates
Covers the Laplacian operator in different coordinate systems and its applications in differential equations.
Surface Tension and Wetting: Solid/Liquid/Gas Interfaces
Explores surface tension, wetting, and the law of Laplace at interfaces.
Cinématique: Vecteur Rotation
Covers the concept of vector rotation in kinematics and the derivative of a vector with constant norm.
Rotations in Mechanics
Explores rotations in solid mechanics, from two-dimensional to three-dimensional scenarios, emphasizing small angles and different coordinate systems.
Geometric Constraints
Explores how to handle mechanical problems with geometric constraints and associated forces.
Physics 1: Normal Acceleration and Spatial Rotations
Explores normal acceleration, spatial rotations, vector rotation, and angular speed concepts in physics.
Triple Integrals: Properties and Calculations
Covers the definition of triple integrals, properties, and calculation methods.
Rotating Vectors in Physics 1
Explores rotating vectors in physics, emphasizing the norm-angular speed relationship and various coordinate systems.
Center of Mass Calculation in Mechanics
Explores center of mass calculation in mechanics, emphasizing system symmetry and spherical coordinates for simplifying calculations.
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