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Dynamics Of Rigid Bodies Simulations
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Showing 14 of 14 simulations.
Statics simulation family
Dynamics Of Rigid Bodies
Kinematics of Particles - Theory & Concepts - Radial Transverse
Study of the geometry of motion of particles without considering the forces causing the motion, including rectilinear and curvilinear motion.
Open simulationKinetics of Particles: Force and Acceleration - Theory & Concepts - Orbital Mechanics
Application of Newton's Second Law to determine the motion of a particle subjected to unbalanced forces.
Open simulationKinetics of Particles: Work and Energy - Theory & Concepts - Work Energy
Application of the Principle of Work and Energy to solve kinetics problems involving displacement and speed, including conservative and non-conservative forces.
Open simulationKinetics of Particles: Impulse and Momentum - Theory & Concepts - Collision
Application of the principle of linear impulse and momentum to solve problems involving force, mass, velocity, and time, including systems of particles.
Open simulationKinetics of Particles: Impulse and Momentum - Theory & Concepts - Coefficient Of Restitution
Application of the principle of linear impulse and momentum to solve problems involving force, mass, velocity, and time, including systems of particles.
Open simulationKinematics of Rigid Bodies - Theory & Concepts - Rigid Body Translation
Analysis of the motion of solid bodies where distances between any two points remain constant, including translation, rotation, and general plane motion.
Open simulationKinematics of Rigid Bodies - Theory & Concepts - I C
Analysis of the motion of solid bodies where distances between any two points remain constant, including translation, rotation, and general plane motion.
Open simulationKinetics of Rigid Bodies: Force and Acceleration - Theory & Concepts - Mass Moment Of Inertia
Application of Newton's Second Law and Euler's Equations to determine the general plane motion of rigid bodies.
Open simulationKinetics of Rigid Bodies: Work and Energy - Theory & Concepts - Rolling Sphere
Energy methods applied to rigid bodies, including rotational kinetic energy, potential energy of rigid bodies, and conservation of energy.
Open simulationKinetics of Rigid Bodies: Impulse and Momentum - Theory & Concepts - Bullet Rod
Analysis of impulsive forces and moments acting on rigid bodies, introducing angular momentum and the principle of impulse and momentum.
Open simulationThree-Dimensional Kinematics of Rigid Bodies - Theory & Concepts - Coriolis
Analysis of the motion of rigid bodies in three dimensions, including translation, rotation about a fixed axis, general motion, and Euler's theorem.
Open simulationThree-Dimensional Kinetics of Rigid Bodies - Theory & Concepts - Gyroscopic
Study of the relationships between the forces and moments acting on rigid bodies and the resulting 3D motion, including Eulerian angles, gyroscopic motion, and torque-free motion.
Open simulationMechanical Vibrations - Theory & Concepts
Introduction to free and forced vibrations of single-degree-of-freedom systems, including torsional vibrations and damping.
Open simulationMechanical Vibrations - Theory & Concepts - Pendulum
Introduction to free and forced vibrations of single-degree-of-freedom systems, including torsional vibrations and damping.
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