| S# |
Lecture |
Course |
Institute |
Instructor |
Discipline |
| 4751 |
L39v1: Simple Harmonic Motion – Equation of Motion
|
Mechanics: Simple Harmonic Motion
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh
|
Basic and Health Sciences
|
| 4752 |
11. Trabecular Bone and Osteoporosis (M-I-T)
|
Cellular Solids Structure, Properties and Applications (M-I-T)
|
MIT
|
Lorna Gibson
|
Applied Sciences
|
| 4753 |
L31v1: Relationship between Torque and Angular Acceleration
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4754 |
Ses. 2-1H, 2-3H, and 2-5H Simulation video (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
|
| 4755 |
L35v4: Rolling Without Slipping, Slipping, and Skidding
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4756 |
|
Mechanics: Momentum and Energy
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4757 |
L39v2: Simple Harmonic Motion – Guess a Solution to the Differential Equation
|
Mechanics: Simple Harmonic Motion
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh
|
Basic and Health Sciences
|
| 4758 |
12. Trabecular Bone, Osteoporosis, and Evolution (M-I-T)
|
Cellular Solids Structure, Properties and Applications (M-I-T)
|
MIT
|
Lorna Gibson
|
Applied Sciences
|
| 4759 |
L31v2: Internal Torques Cancel in Pairs
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4760 |
Ses. 2-2E Lean supply chain 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
|
| 4761 |
L35v5: Contact Point of a Wheel Rolling Without Slipping
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4762 |
|
Atomistic Computer Modeling of Materials (M-I-T)
|
MIT
|
Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari
|
Applied Sciences
|
| 4763 |
Potential Energy and Energy Conservation
|
Mechanics: Momentum and Energy
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4764 |
L39v3: Simple Harmonic Motion – Find the Solution Using Initial Conditions
|
Mechanics: Simple Harmonic Motion
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh
|
Basic and Health Sciences
|
| 4765 |
Ses. 2-2H Continuous process improvement (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
|
| 4766 |
13. Tissue Engineering Scaffolds: Processing and Properties (M-I-T)
|
Cellular Solids Structure, Properties and Applications (M-I-T)
|
MIT
|
Lorna Gibson
|
Applied Sciences
|
| 4767 |
L31v3: Worked Example – Find the Moment of Inertia of a Disc from a Falling Mass
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4768 |
|
Atomistic Computer Modeling of Materials (M-I-T)
|
MIT
|
Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari
|
Applied Sciences
|
| 4769 |
L36v1: Friction on a Rolling Wheel
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4770 |
14. Tissue Engineering: Osteochondral Scaffold; How To Write a Paper (M-I-T)
|
Cellular Solids Structure, Properties and Applications (M-I-T)
|
MIT
|
Lorna Gibson
|
Applied Sciences
|
| 4771 |
Ses. 2-4E Lean engineering 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
|
| 4772 |
L40v1: Simple Harmonic Motion Solution with Amplitude and Phase
|
Mechanics: Simple Harmonic Motion
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, Aidan MacDonagh
|
Basic and Health Sciences
|
| 4773 |
L31v4: Worked Example – Atwood Machine
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|
| 4774 |
|
Atomistic Computer Modeling of Materials (M-I-T)
|
MIT
|
Prof. Dr. Gerbrand Ceder, Prof. Dr. Nicola Marzari
|
Applied Sciences
|
| 4775 |
L36v2: Worked Example – Wheel Rolling Without Slipping Down Inclined Plane – Torque Method
|
Mechanics: Rotational Dynamics
|
MIT
|
Peter Dourmashkin, Deepto Charkrabarty,Michelle Tomasik, Analia Barrantes, George Stephans, Anna Frebel
|
Basic and Health Sciences
|