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Lecture
Complex Numbers: Representations
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Related lectures (29)
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Taylor Polynomials: Calculating Limits and Derivatives
Covers the calculation of Taylor polynomials and their applications in limits and derivatives of functions from R² to R.
Complex Numbers: Introduction and Properties
Covers the introduction to complex numbers and their properties, including historical background and norm calculation.
Complex Hyperbolic and Trigonometric Functions
Explores complex hyperbolic and trigonometric functions, defining key properties and relationships with exponential functions.
Single-Phase Sinusoidal Circuits: Complex Numbers
Explains complex numbers in single-phase sinusoidal circuits and their geometric representation, Euler's formula, and complex exponential functions.
Magnetic Fields and Complex Numbers
Explores magnetic fields from moving charges and the properties of complex numbers.
Approximation of Functions by Taylor Polynomials
Explores the theory and application of Taylor polynomials for function approximation and limit calculations.
Examples: Complex Numbers
Covers examples related to complex numbers and their properties.
Complex Numbers: Operations and Properties
Explores complex numbers, including modulus, conjugation, and Euler formula.
Lagrange Interpolation
Introduces Lagrange interpolation for approximating data points with polynomials, discussing challenges and techniques for accurate interpolation.