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Related lectures (31)
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Electronic Structure of Atoms: Hydrogen Atom
Explores the electronic structure of the hydrogen atom, covering radial wave functions, quantum numbers, and orbital sublayers.
Higher Order Methods: Iterative Techniques
Covers higher order methods for solving equations iteratively, including fixed point methods and Newton's method.
Wave Equation: Euler-Paissan-Doubana
Covers the wave equation and introduces the Euler-Paissan-Doubana formula, emphasizing key concepts.
Electromagnetic Waves: Wave Equation and Maxwell's Equations
Explores the wave equation for electromagnetic waves, Maxwell's predictions, and the importance of polarization in defining wave properties.
Plasma Two-fluid Model
Explores the two-fluid model in plasma physics, focusing on linearization and equilibrium conditions.
Electron Oscillator Model: Lorentz Model
Introduces the electron oscillator model and its impact on electromagnetic wave propagation.
Advanced General Chemistry I: Atomic Structure
Explores the emission spectrum of hydrogen, wave functions, and probability density of electron distribution.
Wave Equation and Laplacian
Explores the wave equation, Laplacian properties, and non-dependent functions in neighborhoods.
Wave Equations Stability
Explores resonant shallow water equations, stability analysis, eigenmodes, and clean modes in waves.
Applications of Trigonometric Functions
Covers various applications of trigonometric functions, such as calculating values using inverse trigonometric functions.
Differential Equations: Speed Variation Analysis
Covers the analysis of speed variation using differential equations and small time intervals.
Electromagnetic Waves: Basics and Equations
Explores electromagnetic waves, wave equations, solutions, polarization, and energy transport in waves.
Wave Propagation: Basics
Introduces the basics of wave propagation, covering longitudinal and transverse waves, superposition, reflection, d'Alembert equation, Fourier decomposition, and wave surfaces.
Parametric Pendulum: Equations and Solutions
Analyzes a parametric pendulum using Lagrange method, Mathieu equation, and Ince method to find solutions.
Waves in Fluids: Basic Properties and Equations
Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Untitled
Nonlinear Equations: Fixed Point Method
Covers the topic of nonlinear equations and the fixed point method.
Tangent Plane to Implicit Function
Explores the tangent plane to implicit functions, emphasizing equations and graphical representations.
Electromagnetic Waves: Basics and Applications
Explores the basics of optics, Maxwell's equations, wave propagation, and electromagnetic wave energy.
Sound Field Reconstruction at Low Frequencies
Explores sound field reconstruction at low frequencies in rooms, emphasizing room modes, modal decomposition, and numerical validation.
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