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Lecture
Studying Mechanics: Historical Perspective
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Related lectures (32)
Mechanics: Introduction and Calculus
Introduces mechanics, differential and vector calculus, and historical perspectives from Aristotle to Newton.
Trajectory Determination in Mechanics
Explains trajectory determination in mechanics, including types of trajectories and effective potential, with practical examples.
Mechanics of Slender Structures: Elasticity, Plates, Shells
Covers the dimensional reduction in slender structures, constitutive laws, and mechanics of plates and shells.
Mechanics of Slender Structures: Elasticity & Buckling
Explores 3D elasticity, beam bending, and buckling phenomena in slender structures.
Mechanics: Equilibrium Points and Stability
Explores equilibrium points and stability in mechanical systems, analyzing how systems return to or move away from their positions after disturbances.
General Physics I: Mechanics
Covers the course format, tools, adjustments, online platforms, examination details, and additional resources for General Physics I: Mechanics.
Mechanics of Slender Structures: Final Review and Overview
Covers the main learning objectives of ME-411, focusing on dimensional analysis, scalings, and mechanical elements.
Conservation Laws: General Framework
Covers the fundamental conservation laws and properties of space and time beyond mechanics.
General Physics I: Mechanics
Covers moment of inertia, angular momentum, and kinetic energy in rotational motion.
Structural Mechanics Fundamentals
Covers the fundamentals of structural mechanics, including materials, mechanics vocabulary, the Eiffel Tower, and the collapse of the Quebec Bridge.
Conservation of Angular Momentum: Stress Balance
Covers the conservation of angular momentum and stress balance in mechanics.
Series Springs: Contact Hour 7
Covers the mechanics of series springs and the forces exerted by them.
Methodology of Mechanics
Explores the methodology of mechanics, including modeling, laws application, problem-solving, theory limitations, and the historical evolution of classical mechanics.
Advanced Physics I: Introduction to Mechanics
Introduces the basics of physics, including mechanics and making predictions based on observations and hypotheses.
Mechanics of Slender Structures
Explores the mechanics of slender structures, covering dimensional analysis, buckling, rods, plates, and shells.
Mechanics: Moments and Rotations
Covers the calculation of total forces moments and the concept of rigid bodies.
Mechanics of Springs
Covers the mechanics of springs, analyzing forces and elongations in connected springs.
Eshelby Inclusion: Mechanics and Eigenstrains
Explores the Eshelby method for mechanics of inclusions and eigenstrains, focusing on stress and strain fields inside inclusions.
Mechanics: System of Point Masses
Introduces mechanics concepts for systems of point masses, including moment of forces and kinetic energy conservation.
Newton's Laws: Harmonic Oscillator
Covers the application of Newton's laws to harmonic oscillators with damping.
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