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Related lectures (29)
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Motion Analysis: Trajectories and Acceleration
Explores trajectories, velocities, and accelerations in motion analysis, including tangential and normal acceleration components.
Kinematics: Position, Velocity, Acceleration, Trajectory
Covers the fundamental concepts of kinematics, including reference frames, position vectors, velocity, acceleration, and trajectories.
Kinematics: Reference Frames and Coordinates
Introduces reference frames, coordinates, point mass, trajectory, velocity, acceleration, and motion with constant acceleration.
Tension in a Rope (Theory)
Explores the theory of tension in a rope and the forces acting on a block of mass m.
Acceleration, CMS: Motion in the Plane
Covers acceleration, constant velocity, and motion in the plane with examples of objects in free fall.
Relative Movements and Gyroscopic Effects
Covers relative speed, Euler angles, and gyroscopic effects in rotating frames.
Gravitational Field Equations
Covers the formulation of gravitational field equations and the motion of particles in gravitational fields.
Special Relativity
Covers the main points of special relativity, including symmetries, transformations, 4-vectors, Maxwell equations, and proper time.
Robotics: Actuation and Mobility Analysis
Covers corrected exercises from the 2020 exam in the field of robotics, including topics such as accuracy, speed, DC motors, optimal gear ratio, dynamics of robot arms, encoders, and kinematics.
Kinematic Quantities and Linear Mass Density
Discusses kinematic quantities and linear mass density in examples of metal wires.
Kinematics of the Material Point
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Covers the kinematics of a material point, focusing on speed and accelerations.
Advanced Physics I
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Explores kinematics, vectors, non-Cartesian coordinates, and the motion of charged particles in electric and magnetic fields.
Differential Equations: Speed Variation Analysis
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Covers the analysis of speed variation using differential equations and small time intervals.
Uniform Acceleration: Equations and Interpretation
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Covers the concept of uniform acceleration and its equations.
Physics 1: Harmonic Oscillator and Spherical Coordinates
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Explores harmonic oscillators, pendulum movement, and spherical coordinates in physics.
Physics 1: Ball in Equilibrium
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Discusses a ball in equilibrium within a ring using spherical coordinates and accelerations.
Physics: Motion
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Explores the physics of motion, including free fall and trajectory, emphasizing the role of mathematics in predicting and analyzing movement.
Coordinate Systems: Polar and Spherical
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Covers polar and spherical coordinate systems, position vectors, equations of motion, and Frenet frame concepts.
Three-Dimensional Movement: Speed and Acceleration
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Explores the dynamics of a material point in three dimensions, emphasizing speed and acceleration.
Velocity and Acceleration in Cylindrical Coordinates
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Explores velocity, acceleration, constraints, and harmonic oscillators in cylindrical coordinates and physics applications.
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