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Lecture
Advanced Physics I: Kinematics and Vectors
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Related lectures (38)
Vectors and Kinematics
Introduces vectors in a solid reference frame and explains the importance of determinants in interpreting vector products and coordinate changes.
Continuum Mechanics: Tensor Analysis and Kinematics
Covers tensor analysis, kinematics, and fluid mechanics in continuum mechanics.
Cinématique: Polar Coordinates Part 1
Covers the basics of polar coordinates and their application in kinematics.
Coordinate Systems: Polar, Cylindrical, Spherical
Covers position, velocity, and acceleration in polar, cylindrical, and spherical coordinate systems.
Cinématique: Polar Coordinates, Part 2
Explores polar coordinates in circular motion with constant speed and acceleration.
Kinematics: Position, Velocity, Acceleration, Trajectory
Covers the fundamental concepts of kinematics, including reference frames, position vectors, velocity, acceleration, and trajectories.
Cinématique: Cartesian Coordinates
Covers the concept of Cartesian coordinates in kinematics and includes examples.
Introduction and Historical Perspective, Vectors and Kinematics
Explores historical perspective, vectors, kinematics, and mathematical modeling of physical systems.
Kinematics: Robot Joint Coordinates
Explores robot joint coordinates, kinematics models, and homogeneous matrices for motion combinations.
Cinématique: Vecteur Rotation
Covers the concept of vector rotation in kinematics and the derivative of a vector with constant norm.
Kinematics Basics: Modeling & Transformations
Covers the basics of kinematics, including joint coordinates, operational variables, wrist configurations, and geometric models.
Uniformly Accelerated Motion: Experiments and Kinematics
MOOC: Newton's mechanics
Explores uniformly accelerated rectilinear motion and the equality of times with and without acceleration.
Advanced Physics I
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Explores kinematics, vectors, non-Cartesian coordinates, and the motion of charged particles in electric and magnetic fields.
Advanced Physics I
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Delves into advanced physics concepts like uniform motion, vectors, and three-dimensional movement, with practical exercises on kinematics and coordinate systems.
Kinematics and Dynamics: Reference Frames, Vectors, and Accelerations
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Explores reference frames, vectors, accelerations, and rotations in physics, including kinematics of a material point and uniform circular motion.
Kinematics: Deformation and Expansion
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Explores kinematics of deformation, focusing on radial and linear expansion, torsion, and rotation by an angle.
Motion in Two and Three Dimensions
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Explores motion in two and three dimensions, gravity effects, and vector dot products.
Motion Analysis: Cartesian and Polar Coordinates
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Covers the analysis of motion using Cartesian and polar coordinates, focusing on kinematics and acceleration components.
Kinematics: Position, Velocity, Acceleration
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Covers the fundamental concepts of kinematics, including position, velocity, and acceleration in different coordinate systems.
Systems of Forces III and Equilibrium 2D
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Covers systems of forces in 3D, equilibrium in 2D, system isolation, free-body diagrams, supports, and joints.
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