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Related lectures (16)
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Advanced Physics I
Covers empirical forces, applications of Newton's laws, momentum, and friction in physics.
Newton and Ballistics: Demonstrations and Laws
Explores Newtonian physics, ballistics laws, and angular momentum principles in motion analysis.
Forces and Friction: Understanding Mechanical Interactions
Explores elastic deformation, Hooke's Law, friction models, viscous friction, and Newton's laws in practical scenarios.
Static Equilibrium Modeling: Understanding Forces and Structures
Covers static equilibrium modeling, focusing on forces, bars, and their relationships in structures.
Structural Mechanics Fundamentals
Covers the basics of structural mechanics, including forces classification, resultant force, and object responses to loads.
Plane Trusses: Analysis and Strategies
Covers the analysis of rigid structures and strategies to solve isostatic trusses.
Structures and Mechanisms: Static (Rigid) Structures
Covers the analysis of static (rigid) structures, including equilibrium and free-body diagrams.
Friction: Dry Friction
Covers the topic of dry friction and its types, with examples and calculations.
Resultant on Sheet
Explains how to calculate and visualize resultant forces in structural systems.
Untitled
Structural Mechanics: Systems of Forces
Covers systems of forces, moments, couples, and stress in 2D and 3D, as well as the effect of force-couple systems.
Distributed Forces: Center of Forces
Covers the classification of distributed forces and the calculation of centroids for different shapes.
Systems of Forces III and Equilibrium 2D
Covers systems of forces in 3D, equilibrium in 2D, system isolation, free-body diagrams, supports, and joints.
Inclined Plane Physics: Forces and Friction
Explores forces and friction on an inclined plane without friction, analyzing binding forces and system dynamics.
Fundamental Systems: Isostatic Structures and Deformations
Covers fundamental systems in structural mechanics, focusing on isostatic structures, displacements, and the role of springs in understanding internal forces.
Principle of Virtual Work: Ensuring Correct Sign Conventions
Teaches the Principle of Virtual Work, emphasizing correct sign conventions in calculations through a structured four-step workflow.
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