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Lecture
Introduction to Field Theory
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Related lectures (32)
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Canonical Transformations in Analytical Mechanics
Explores canonical transformations, conservation of quantities, and differential equations in analytical mechanics.
Introduction to Structural Mechanics
Introduces structural mechanics concepts like distributed loads, centroids, and equilibrium in 2D and 3D.
Einstein Equations
Explores the Bianchi identity, Einstein tensor, and action principle for fields.
Limits and Continuity
Covers the concept of limits and continuity in real analysis.
Derivation of Boundary Conditions
Covers the derivation of boundary conditions for total energy in bending and stretching of plates.
Canonical Transformations: Properties and Applications
Explores canonical transformations, their properties, and applications in Hamiltonian mechanics, emphasizing their role in simplifying the analysis of complex systems.
Canonical Transformations in Hamiltonian Mechanics
Explores canonical transformations in Hamiltonian mechanics, emphasizing variable separation in the Hamilton-Jacobi equation.
Dynamical Systems: Mathematical Modeling
Covers mathematical modeling of dynamical systems, focusing on electromechanical systems and DC servomotors.
Canonical Transformations: Hamilton-Jacobi Equation
Covers canonical transformations and the Hamilton-Jacobi equation, emphasizing explicit motion solutions and system evolution.
Principle of Least Action
Covers the principle of least action, Euler-Lagrange equations, Lagrange multipliers, and variational calculus.