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Related lectures (31)
Nonlinear Beam Theory: Mechanics of Slender Structure
Covers strain-displacement relations, simplifications, constitutive relations, equilibrium equations, and circular rings.
Nonlinear beam theory
Covers strain-displacement relations, equilibrium equations, and energy functional in nonlinear beam theory with small strain and moderate rotation.
Elastic Deformation Mechanics
Explores elastic deformation mechanics, covering topics like young modulus, stiffness, and thermal expansion.
Ballistics: Earth Rotation Effect (2)
Covers the effect of the Earth's rotation on ballistics and projectile trajectories.
Deformation and Rotation
Covers linear and volume deformations, angular deformations, and rotation speed.
Laminate Analysis: Introduction
Introduces the theory behind laminates and their applications in different industries.
Elastic Deformation: Materials Behavior & Homogenization
Explores elastic deformation, thermal expansion, and homogenization techniques in materials behavior.
Introduction to Structural Mechanics
Covers the basics of structural mechanics, including static forces, stress, strain, and structural elements like bars, cables, trusses, and beams.
Pendulum with Zero Repercussion Point
Demonstrates the behavior of a pendulum when subjected to percussion forces at different points.
Angular Momentum: Theory and Applications
Explores angular momentum theory, conservation, and practical applications in various scenarios.
Structural Mechanics: Beam Bending and Boundary Conditions
Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Axial Loading: Stress and Strain in Deformable Bodies
Covers axial loading, stress, strain, and their implications in deformable bodies.
Physics of Pharmacy: Static Forces
Explores static forces, equilibrium conditions, and moments of forces in objects.
Angular Speed of Rotation: Solid System
Analyzes angular speed of rotation, internal forces, vectors, and system transformation in a solid.
Solid Mechanics II + Material Models
Explores material models for elastic objects, including inverse shape optimization and hyperelasticity.
Elasticity-Plasticity: Materials Science Fundamentals
Covers elasticity, plasticity, stress-strain relationships, and material behavior under different loading conditions.
Vertical Movement: Equations and Integration
Explores equations of vertical movement under gravity and their integration, as well as horizontal movement with stress conditions and the Foucault pendulum heuristic.
Finite Element Analysis: Advanced Mechanisms in Engineering
Provides an overview of advanced mechanisms analysis using Finite Element Method and Finite Element Analysis in engineering applications.
Kinetic Energy of a Solid
Covers the kinetic energy of a solid and its movement and rotation.
Mechanical Properties I: Elastic and Plastic Deformation
Explores elastic and plastic deformation in materials, including tensile tests, modulus of elasticity, and structural design.
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