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Indicial Notation and Vectors
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Related lectures (32)
Elements of Lie Groups and Algebras
Explores the transformation of vectors and tensors in quantum physics, emphasizing Lie groups and algebras.
Vector Transformation and Tense
Explores the transformation of vectors and tensors, including rotations and representations in quantum physics.
Spherical Tensors and Wigner-Eckart Theorem
Covers the transformation of vectors and tensors in quantum physics.
Vector Transformation Law
Covers the transformation law of vectors and their properties, emphasizing direction and magnitude.
Covariant Derivatives and Christoffel Symbols
Covers accelerated and inertial coordinate systems, Jacobian, volume elements, covariant derivatives, Christoffel symbols, Lorentz case, and metric tensor properties.
Advanced Physics I: Definitions and Motion
Covers advanced physics topics such as definitions, rectilinear motion, vectors, and motion in three dimensions.
Continuum Mechanics: Tensor Analysis and Kinematics
Covers tensor analysis, kinematics, and fluid mechanics in continuum mechanics.
Motion in Two and Three Dimensions
Explores motion in two and three dimensions, gravity effects, and vector dot products.
Tensors and Lorentz Transformations
Covers tensors, Lorentz transformations, and electrodynamics in relativistic notation.
Special and General Relativity
Introduces special and general relativity, Einstein equations, and gravitational dynamics.
Physics 1: Vectors and Dot Product
Covers the properties of vectors, including commutativity, distributivity, and linearity.
Vectors and Tensors
Covers the basics of vectors in 3 dimensions, including representation, unit vectors, and basis transformations.
Mechanics: Introduction and Calculus
Introduces mechanics, differential and vector calculus, and historical perspectives from Aristotle to Newton.
Maxwell Lorentz Formulation
Covers the reminder of tensors, vectors, and Lorentz transformations, and the formulation of theory.
Kinematics and Dynamics: Reference Frames, Vectors, and Accelerations
Explores reference frames, vectors, accelerations, and rotations in physics, including kinematics of a material point and uniform circular motion.
Fluid Dynamics Fundamentals
Covers deriving fluid dynamics equations, including mass conservation and stress-strain relationships, through differential analysis and key mathematical concepts.
Vector Geometry: Basics and Applications
Explores vector geometry basics, historical perspectives, and practical applications.
Mathematical Basics: Vectors
Covers the fundamental concepts of vectors, including their characteristics and calculation methods.
Lorentz Transformations and Covariant Tensors
Explores Lorentz transformations, covariant tensors, rotational invariance, and linear transformations in vector spaces.
Decomposition of a Vector
Covers the decomposition of a vector in a base and its applications in speed and distance calculations.
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