SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
5126
Lecture 1: Introduction to Nonlinear Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5127
Lecture 20: Beam, Plate, and Shell Elements II (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5128
Lecture 21: Demonstration Using ADINA – Linear Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5129
Lecture 22: Demonstration Using ADINA – Nonlinear Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5130
"Engineering M13 Bacteriophage NIR-II Platforms for Tumor Imaging Applications" (M-I-T)
Applications of Camera Technology (M-I-T) MIT Uyanga Tsedev Applied Sciences
5131
Lecture 2: Basic Considerations in Nonlinear Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5132
"Inspiring the Next Generation: Women's Technology Program at MIT" (M-I-T)
Applications of Camera Technology (M-I-T) MIT Barbara Hughey Applied Sciences
5133
Lecture 3: Lagrangian Continuum Mechanics Variables for Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5134
"SWE Opportunities for High School Students" (M-I-T)
Applications of Camera Technology (M-I-T) MIT Nicole Woon Applied Sciences
5135
Lecture 4: Total Lagrangian Formulation – Incremental Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5136
Lecture 11: The Hamiltonian formulation; introduction to waves (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5137
Lecture 5: Updated Lagrangian Formulation – Incremental Analysis (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5138
"What Cameras Can Do For You; and How They Do It!" (M-I-T)
Applications of Camera Technology (M-I-T) MIT Kris Clark Applied Sciences
5139
Lecture 12: The wave equation; phasor representation; 3D waves (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5140
Lecture 6: Formulation of Finite Element Matrices (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5141
Lecture 13: 3D wave phenomena; introduction to electromagnetics (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5142
Lecture 7: 2D & 3D Solid Elements; Plane Stress/Strain Conditions (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5143
Lecture 14: Maxwell's equations; polarization; Poynting's vector (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5144
Lecture 8: 2-Noded Truss Element – Updated Lagrangian Formulation (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5145
Lecture 15: Huygens principle; interferometers; Fresnel diffraction (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5146
Lecture 9: 2-Noded Truss Element – Total Lagrangian Formulation (M-I-T)
Non-Linear Analysis (M-I-T) MIT Prof. Klaus-Jürgen Bathe Applied Sciences
5147
Lecture 16: Gratings: amplitude and phase, sinusoidal and binary (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5148
Lecture 17: Fraunhofer diffraction; Fourier transforms and theorems (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5149
Lecture 18: Spatial filtering; lens transfer functions & transforms (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences
5150
Lecture 19: The 4F system; binary amplitude & pupil masks (M-I-T)
Optics (M-I-T) MIT Prof. George Barbastathis, Prof. Colin Sheppard Applied Sciences