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Mechanical Systems Dynamics: Modeling and Analysis
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Related lectures (44)
Kinematics and Dynamics: Material Point
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Covers the mathematical description of movement and introduces the concept of a material point.
Kinematic Chains and Dynamics of Mechanical Systems
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Explores kinematic chains, dynamics of mechanical systems, laws of space, and speed characterization.
Physics 1: Harmonic Oscillator and Spherical Coordinates
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Explores harmonic oscillators, pendulum movement, and spherical coordinates in physics.
Flexible Guides: General Overview
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Covers the concept of flexible guides, exploring their properties, design principles, material selection, and manufacturing technologies.
Dynamics of Mechanical Systems: Piston Machines
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Explores the dynamics of mechanical systems using piston machines as examples, focusing on balancing oscillating forces and adding masses for reduction.
Physics Principles and Mechanics
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Explores fundamental physics principles, with a focus on mechanics and thermodynamics, emphasizing real-world applications.
Kirchhoff Rods: Kinematics and Twisted Solutions
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Explores the kinematics of 3D structures and twisted solutions in rod mechanics, including the mechanics of knots.
Block Pulled by a Spring
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Explores the dynamics of a block pulled by a spring under various conditions.
Kinematics: Deformation and Expansion
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Explores kinematics of deformation, focusing on radial and linear expansion, torsion, and rotation by an angle.
Structures and Mechanisms: Opening a Box
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Explores the analysis of structures and mechanisms through a sample problem of opening a box with a string-held lid.
General Physics: Mechanics
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Covers the organization of a general physics course for mathematics students, focusing on mechanical problems and fundamental laws of physics.
Physics: Angular Motion
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Explores angular position, velocity, and acceleration, torque, moment of inertia, and their practical applications.
Kinematics of Material Point
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Covers the kinematics of a material point, including orders of magnitude and practical applications.
Structural Mechanics Principles: Equilibrium and Stability
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Explores the principles of structural mechanics, including internal loads, equilibrium stability, and the superposition principle.
Deformation Analysis: Small Strain and Kinematics
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Explores small strain theory, kinematics, and compatibility conditions in solid mechanics.
Dynamics of Mechanical Systems
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Covers the concept of geometry and stress, inertia constraints, useful efforts, prestress, and the dynamics of mechanical systems.
Continuum Mechanics: Forces and Deformation
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Explores the laws of dynamics, stress, energy conservation, and deformation in continuum mechanics.
Virtual Work II
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Explores virtual work in mechanical systems, equilibrium of external loads, and linear elastic behavior in beams.
Continuum Mechanics: Forces and Deformation
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Covers the basics of continuum mechanics, including forces transmission, energy conservation, and body motion geometry.
Advanced Physics I
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Explores kinematics, vectors, non-Cartesian coordinates, and the motion of charged particles in electric and magnetic fields.
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