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Related lectures (28)
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Orthogonality and Least Squares Method
Covers orthogonal vectors, unit vectors, and the Pythagorean theorem in R^m.
Physics 1: Vectors and Dot Product
Covers the properties of vectors, including commutativity, distributivity, and linearity.
Elements of Lie Groups and Algebras
Explores the transformation of vectors and tensors in quantum physics, emphasizing Lie groups and algebras.
Advanced Physics I: Definitions and Motion
Covers advanced physics topics such as definitions, rectilinear motion, vectors, and motion in three dimensions.
Vectors: Definitions and Operations
Introduces vector definitions, displacement, addition, and applications in geometry.
Indicial Notation and Vectors
Explores indicial notation, vectors, and the transformation law in the context of mass flux density.
Vector Transformation and Tense
Explores the transformation of vectors and tensors, including rotations and representations in quantum physics.
Decomposition of a Vector
Covers the decomposition of a vector in a base and its applications in speed and distance calculations.
Linear Algebra: Linear Dependence and Independence
Explores linear dependence and independence of vectors in geometric spaces.
Vector Calculus: Scalars and Vectors
Introduces scalars and vectors, explaining their properties and mathematical operations.
School Product: Geometric Properties
Covers the school product and geometric properties of vectors in space.
Analytical Study of Space
Explores landmarks, coordinates, vectors, coplanarity, Cartesian equations, and geometric rules in space.
Vector Geometry: Basics and Applications
Explores vector geometry basics, historical perspectives, and practical applications.
Vectors: Fundamentals
Covers the basic concepts related to vectors, including their definition, operations, and properties, as well as applications through examples and the Varignon's theorem.
Coordinate Systems: Polar, Cylindrical, Spherical
Covers position, velocity, and acceleration in polar, cylindrical, and spherical coordinate systems.
Analytical Geometry: Vectors and Operations
Covers the fundamentals of analytical geometry, focusing on vectors and their operations.
Analytical Geometry: Cross Product and Orientation
Explains the cross product in analytical geometry and vector orientation.
Motion in Two and Three Dimensions
Covers motion in two and three dimensions, including projectile motion and gravity effects.
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.
Rotating Vectors: Fish Formula
Covers the interpretation of rotation in a coordinate system and the fish formula.
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