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source: Francesco Fedele 2015年3月3日
CEE 6811 Nonlinear Waves at Georgia Institute of Technology
Poisson cumpling heuristics 1/3: Introduction 8:56
Poisson cumpling heuristics 2/3: Volterra integral equation 15:00
Poisson cumpling heuristics 3/3: Gaussian case 12:43
Wave extremes 1/7: Definition & Properties 9:1
Wave extremes 2/7: Probability of Exceedance of a Crest 13:59
Wave extremes 3/7: Rice formulation for upcrossings of a random process 19:00
Wave extremes 4/7: Rice formulation for upcrossings of Gaussian processes 16:17
Wave extremes 5/7: Rayleigh distribution for crest heights 1:16
Wave extremes 6/7: Expected number of local maxima of a random process 2:56
Wave extremes 7/7: quasi-determinism 24:29
Gaussian Processes 1/5: Definition and Properties 12:09
Gaussian Processes 2/5: Probability Structure & Characteristic Function 24:25
Gaussian Processes 3/5: What is Ergodicity? 6:20
Gaussian processes 4/5: Ergodicity in the Mean, Part 1 4:40
Gaussian Processes 5/5: Ergodicity in the Mean, Part 2 10:47
Lagrangians & Hamiltonians 1/6: Lagrangian of of mass-spring systems 16:08
Lagrangians & Hamiltonians 2/6: Hamiltonian of mass-spring systems 25:50
Lagrangians & Hamiltonians 3/6: Hydrodynamic interpretation of Hamiltonian flows 6:37
Lagrangians & Hamiltonians 4/6: Streamfunction as Hamiltonian 7:12
Hamiltonians & Lagrangians 5/6: Lagrangian of distributed systems 16:44
Hamiltonians & Lagrangians 6/6: Hamiltonian of distributed systems 27:12
Dispersive wave systems 22:34
Fourier Transform Gaussian signal (no audio, just follow the math! ) 18:40
Fourier Series for Engineers 49:09
Least Square Approximation Part 1 14:30
Least Square Approximation Part 2 17:50
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