SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
4801
Ses. 3-5 Quality tools and topics (M-I-T)
Introduction to Lean Six Sigma Methods (M-I-T) MIT Prof. Earll Murman, Dr. Hugh McManus, Prof. Annalisa Weigel, Dr. Bo Madsen Applied Sciences
4802
L41v2: Using Energy in Different Contexts
Mechanics: Simple Harmonic Motion MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh Basic and Health Sciences
4803
2. Processing of Cellular Solids (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences
4804
Lecture 2 (M-I-T)
Atomistic Computer Modeling of Materials (M-I-T) MIT Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari Applied Sciences
4805
Nutation and Total Angular Momentum
Mechanics: Rotational Dynamics MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel Basic and Health Sciences
4806
Ses. 3-6 Six Sigma basics (M-I-T)
Introduction to Lean Six Sigma Methods (M-I-T) MIT Prof. Earll Murman, Dr. Hugh McManus, Prof. Annalisa Weigel, Dr. Bo Madsen Applied Sciences
4807
L41v3: Derivition of the SHM Equation from Energy
Mechanics: Simple Harmonic Motion MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh Basic and Health Sciences
4808
3. Structure of Cellular Solids (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences
4809
Lecture 20 (M-I-T)
Atomistic Computer Modeling of Materials (M-I-T) MIT Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari Applied Sciences
4810
Precessional Angular Speed and the Gyroscopic Approximation
Mechanics: Rotational Dynamics MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel Basic and Health Sciences
4811
4. Honeycombs: In-plane Behavior (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences
4812
L41v4: Generalized Energy in SHM
Mechanics: Simple Harmonic Motion MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh Basic and Health Sciences
4813
Lecture 22 (M-I-T)
Atomistic Computer Modeling of Materials (M-I-T) MIT Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari Applied Sciences
4814
Rotations and Translation – Rolling 
Mechanics: Rotational Dynamics MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel Basic and Health Sciences
4815
5. Honeycombs: Out-of-plane Behavior (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences
4816
L41v6: Worked Example – U-tube
Mechanics: Simple Harmonic Motion MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh Basic and Health Sciences
4817
Lecture 23 (M-I-T)
Atomistic Computer Modeling of Materials (M-I-T) MIT Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari Applied Sciences
4818
Spool Demo
Mechanics: Rotational Dynamics MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel Basic and Health Sciences
4819
Lecture 10a (M-I-T)
Symmetry, Structure, and Tensor Properties of Materials (M-I-T) MIT Prof. Dr. Bernhardt Wuensch Applied Sciences
4820
6. Natural Honeycombs: Wood (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences
4821
L42v1: Expand Cosine with the Taylor Formula
Mechanics: Simple Harmonic Motion MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh Basic and Health Sciences
4822
Lecture 25 (M-I-T)
Atomistic Computer Modeling of Materials (M-I-T) MIT Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari Applied Sciences
4823
Tilted Gyroscope
Mechanics: Rotational Dynamics MIT Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel Basic and Health Sciences
4824
Lecture 10b (M-I-T)
Symmetry, Structure, and Tensor Properties of Materials (M-I-T) MIT Prof. Dr. Bernhardt Wuensch Applied Sciences
4825
7. Natural Honeycombs: Cork; Foams: Linear Elasticity (M-I-T)
Cellular Solids Structure, Properties and Applications (M-I-T) MIT Lorna Gibson Applied Sciences