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Related lectures (18)
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Fluid Friction: Velocity Calculation
Covers the calculation of velocity for an object in free fall experiencing fluid friction in laminar flow, considering a constant gravitational field.
General Mechanics: Application Exercises and Ballistics
Covers mechanics application exercises, ballistics, and equilibrium analysis of pulley systems.
Mechanics: Pulley Systems and Equations of Motion
Explores pulley systems, equations of motion, kinetic friction, and billiard dynamics.
Toothed Belt Transmissions: Coupling and Angular Stiffness
Explores toothed belt transmissions, emphasizing coupling and angular stiffness calculations, advantages, and practical optimization.
Introduction to Physics
Introduces the forces involved in suspending objects and explains static equilibrium.
Dynamics of Solids: Elevator Acceleration
Explores elevator acceleration, incline angles, and pulley systems in different scenarios.
Pulley System Dynamics: Acceleration and Torque
Explains how to find block acceleration and external torque in a pulley system.
Forces and Motion on Inclined Plane
Covers masses on an inclined plane connected by a pulley and explores friction and drag forces.
Mechanical Design: Transmission of Motion and Power
Discusses the principles of mechanical design, focusing on the transmission of motion and power through various mechanical elements.
Rigid body rotation and static equilibrium
Covers rigid body rotation, static equilibrium, bottle flipping, and pulley systems.
Pulley Systems: Constraints and Resistive Forces
Covers the setup of equations, constraint conditions, and solving systems of equations related to pulley systems.
Transmission Systems: Gears and Belts
Explores the basics of transmission systems, including gears and belts, covering differentials, gearboxes, and various belt types.
Differential Analysis: Tension and Friction
Explores tension, friction, and acceleration in systems of blocks and ropes.
Untitled
Mechanics: Forces and Motion
Covers the principles of mechanics, focusing on forces and motion in various scenarios.
Equilibrium and Forces in Structural Mechanics
Discusses equilibrium principles and force analysis in structural mechanics through various exercises and practical examples.
Non-inertial Reference Frames and Constraints
Covers non-inertial reference frames, constraints, and continuous systems, including angular velocity, linear and rotational acceleration, and modeling of merry-go-rounds, ropes, and pulleys.
Structural Mechanics Fundamentals
Introduces the fundamentals of structural mechanics, covering equilibrium, boundary conditions, free-body diagrams, and constraints.
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