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Related lectures (32)
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Conservation Laws: General Framework
Covers the fundamental conservation laws and properties of space and time beyond mechanics.
Forced Harmonic Systems: Ground Force Calculation
Explores forced harmonic systems, ground force calculation, damping, and hydraulic shock absorbers.
Frahm Damper: Vibratory Mechanics
Explores the Frahm damper in vibratory mechanics and its optimization.
Straight Shock Waves - Shock Tube Application
Discusses the application of straight shock waves in shock tubes and experimental conditions.
Chocs et Collisions: Newton's Laws and Restitution Coefficient
Explores Newton's laws, kinetic energy, and restitution coefficient in collisions, including conservation laws and attached objects.
Conservation of Momentum and Kinetic Energy
Explores conservation of momentum and kinetic energy in collisions, emphasizing the importance of understanding collision outcomes.
Experiments: Collisions
Explores experiments on collisions, kinetic energy, momentum conservation, and observation anomalies.
Introduction to Electroacoustics
Covers acoustic phenomena at low frequencies and the development of new absorbers.
Advanced Physics I: Energy and Collisions
Explores energy, collisions, and variable mass systems in advanced physics.
Variable Mass Systems
Covers rotation, energy, shocks, and variable mass systems in advanced physics.
Elastic and Inelastic Collisions
Explains elastic and inelastic collisions, focusing on momentum and kinetic energy conservation with practical examples.
Rocket Dynamics: Conservation Laws and Center of Mass
Explores conservation laws in collisions and rocket dynamics with variable mass systems.
Untitled
Thermally Activated Dislocation Motion
Explores thermally activated dislocation motion and physically based constitutive models in materials at high strain rates.
Action-Reaction Law, Collisions
Covers the action-reaction law, types of collisions, and conservation of momentum.
Modeling Shock Response of Brittle Materials
Explores shock response modeling of brittle materials, including spall strength evaluation and shear failure mechanisms.
Electroacoustic Absorbers: Principles and Performance
Explores the principles and performance of electroacoustic absorbers in recording studios, covering bass traps, specific impedance, and tuning techniques.
Mechanisms in Robotics: Springs
Covers the design and function of springs in robotics, including overconstraint mechanisms and energy storage.
Forced Harmonic Oscillator: Digital Solution
Explores forced harmonic oscillators, resonance, and effects of damping on mechanical oscillators.
Forced Harmonic Oscillator: Resonance
Explores forced harmonic oscillators, resonance, and practical applications in physics and engineering.
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