Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Methods of Demonstrations: Recurrence and Taylor Formula
Graph Chatbot
Related lectures (33)
Gradient and Taylor Formula
Introduces gradient, Laplacian, Taylor formula, polynomial approximations, extrema, and Taylor series expansions in multiple variables.
Coordinate Systems: Polar, Cylindrical, Spherical
Covers position, velocity, and acceleration in polar, cylindrical, and spherical coordinate systems.
Taylor Polynomial: Order 2
Explores Taylor polynomials of order 2 and their applications in differential calculus and polar coordinates.
Coordinate Changes: Spherical System
Explores differentiability, coordinate changes, Jacobian determinant, gradient transformation, and chain rule.
General Physics: Mechanics
Covers mechanics concepts in different coordinate systems, explaining position, velocity, and acceleration vectors.
Coordinate Systems: Applications and Transformations
Explores coordinate systems, including polar and curvilinear coordinates, and their transformations.
Recurrence on Two Variables
Covers methods of proof, such as recurrence on two variables and the gradient.
Coordinate Change: Polar and Spherical Coordinates
Covers coordinate changes, focusing on polar and spherical coordinates and their transformations, determinants, and invertibility.
Coordinate Systems: Polar and Cylindrical
Explores position, velocity, and acceleration in polar and cylindrical coordinate systems, simplifying complex formulas for motion analysis.
Coordinate Change: Chapter 4
Explores coordinate changes between polar and Cartesian coordinates, and introduces the spherical coordinate system.
Coordinate Changes: Polar and Spherical
Explores differentiability and coordinate transformations between polar and spherical systems.
Coordinate Systems: Polar, Cylindrical, and Spherical
Explains polar, cylindrical, and spherical coordinates in physics, emphasizing their advantages in simplifying motion analysis.
Understanding Jacobian and Normal Vectors in Surfaces
Clarifies the use of Jacobian, normal vectors in surfaces, and arccos(z) constraints.
Kinematics: Basics and Coordinates
Introduces the basics of kinematics, covering reference frames, trajectories, and coordinate systems.
Cinématique: Polar Coordinates Part 1
Covers the basics of polar coordinates and their application in kinematics.
Polar Coordinates: Jacobian Matrix and Examples
Log in to Mediaspace to watch this video
Covers polar coordinates, the Jacobian matrix, and examples of calculating areas in polar coordinates.
Coordinate Systems: Transformations and Applications
Log in to Mediaspace to watch this video
Covers the transformation and application of coordinate systems, focusing on cylindrical coordinates and Jacobian matrix.
Circular motion: Concepts and Calculations
Log in to Mediaspace to watch this video
Explores circular motion concepts, centripetal force, velocity, and acceleration in different coordinate systems, with a focus on auto racing and Formula 1 tire physics.
Circular motion: Friction and Newton's Laws
Log in to Mediaspace to watch this video
Explores circular motion, friction, and Newton's laws in various coordinate systems.
Kinematics: Position, Velocity, Acceleration
Log in to Mediaspace to watch this video
Covers the fundamental concepts of kinematics, including position, velocity, and acceleration in different coordinate systems.
Previous
Page 1 of 2
Next