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Lecture
Deformable Bodies: Introduction
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Related lectures (45)
Transformation Laws: Diagonalization of Symmetric Tensors
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Discusses tensor transformations and diagonalization of symmetric tensors, focusing on stress analysis and the significance of principal stresses.
Axial Loading: Stress and Strain in Deformable Bodies
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Covers axial loading, stress, strain, and their implications in deformable bodies.
Review: 3D Linear Elasticity & Beams
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Covers the review of 3D Linear Elasticity and beams, focusing on mechanics of slender structures.
Mechanics of Slender Structures: Final Review and Overview
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Covers the main learning objectives of ME-411, focusing on dimensional analysis, scalings, and mechanical elements.
Eshelby Inclusion: Mechanics and Eigenstrains
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Explores the Eshelby method for mechanics of inclusions and eigenstrains, focusing on stress and strain fields inside inclusions.
Continuum Mechanics: Conservation Laws, Tensor Objects, and Fluid Dynamics
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Covers conservation laws, tensor objects, and fluid dynamics in Continuum Mechanics.
Continuum Mechanics: Theory and Applications
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Explores continuum mechanics, covering laws of thermodynamics, stress analysis, energy conservation, constitutive laws, and material response.
Continuum Mechanics: Forces and Motion
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Covers the governing equations for forces and motion in continua, including stress, energy conservation, solid deformation, and fluid motion.
Mechanics of Kirchhoff Rods I
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Explores the mechanics of slender structures, introducing concepts like finite strain and finite rotation theory.
Structural Mechanics Fundamentals
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Introduces structural mechanics for life sciences, emphasizing equilibrium, vectors, tensors, and problem-solving strategies.
Introduction to Structural Mechanics: Stress and Strain
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Covers stress equilibrium, strain, and constitutive equations in 2D and 3D.
Continuum Mechanics: Stress and Tensor Analysis
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Provides an overview of continuum mechanics, focusing on stress tensor analysis and transformation laws in material behavior under stress.
First Law of Thermodynamics: Energy Conservation and Work Calculation
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Explores the first law of thermodynamics, energy conservation, and work calculation in detail.
Plasticity and Deformation in Metals
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Explores plasticity, work hardening, critical stress states, and deviatoric stresses in metals.
Structural Mechanics: Basics and Applications
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Introduces fundamental concepts of engineering mechanics, materials classification, and basic mechanics vocabulary, along with the history of mechanics.
Continuum Mechanics: Newton's Laws and Stress Tensor Symmetry
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Discusses Newton's third law, stress tensor symmetry, and the governing equations in continuum mechanics.
Exercises: Series 22, Exercise 2
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Covers the solution to Series 22, Exercise 2 involving calculations of various physical parameters.
Thermodynamics and Chromatography
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Explores thermodynamics, chromatography, retention factors, and equilibrium constants in chemical analysis.
Work and Energy
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Explores work, energy, conservation principles, and angular momentum in physics.
Transport Phenomena in 3D
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Explores transport mechanisms in 3D, including diffusion and heat conduction equations.
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