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Lecture
Mechanics of Solids: Concepts and Applications
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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.
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.
Structural Mechanics: Understanding Structures' Behavior under Loads
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Covers the basics of structural mechanics, exploring how structures respond to loads and the factors influencing their behavior.
Eshelby Inclusion: Mechanics and Elastic Energy
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Explores the Eshelby method for inclusion mechanics and elastic energy storage.
Solid Mechanics II + Material Models
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Explores material models for elastic objects, including inverse shape optimization and hyperelasticity.
Structural Mechanics Fundamentals
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Covers the fundamentals of structural mechanics, including materials, mechanics vocabulary, the Eiffel Tower, and the collapse of the Quebec Bridge.
Nonlinear Beam Theory: Curved Beams Mechanics
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Covers the theory of nonlinear curved beams, discussing inextensible strains, finite rotations, and the exact inextensionable theory.
Composite Mechanics: Properties and Failure Criteria
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Covers laminate elasticity, fiber-matrix interactions, and failure criteria in composite materials.
Conservation Laws: General Framework
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Covers the fundamental conservation laws and properties of space and time beyond mechanics.
Fracture Mechanics: Introduction and Crack Growth Analysis
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Covers the basics of fracture mechanics, including crack shape and growth analysis.
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.
General Mechanics: Inverted Classroom
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Covers general mechanics in an inverted classroom setting, including quizzes on spheres and cylinders rolling without slipping.
Structural Mechanics: Truss/Beam Structures & Stress Analysis
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Covers mechanical equilibrium, stress analysis, materials, CAD, and design principles.
Beams: Internal Forces and Stress Resultants
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Covers the fundamentals of beams, including types, stress resultants, and internal load diagrams.
Structural Mechanics: Beam Bending and Boundary Conditions
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Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Moments and Beams: Structural Analysis Fundamentals
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Presents the fundamental principles of moments and beams in structural analysis.
Continuum Mechanics: Conservation Laws, Tensor Objects, and Fluid Dynamics
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Covers conservation laws, tensor objects, and fluid dynamics in Continuum Mechanics.
Internal Equilibrium of Solids
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Covers internal equilibrium of solids, stress analysis, beam deformation, and rupture criteria.
Quantum General Physics: Wave Function and Schrödinger Equation
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Explores the wave function, Schrödinger equation, classical-quantum mechanics relationship, and eigenvalue problem in quantum physics.
Forces and Tension in Mechanics
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Explores forces, tension, and weight in mechanics, including mathematical calculations and analysis of accelerations and deformations.
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