| Topic |
Professor |
Total Video Time |
|
| Units and Physical Quantities
| |
|
| Algebra Review |
Dr. Chris Duston |
5 min 46 sec |
| Dimensional Analysis |
Dr. Ameya Kolarkar |
7 min 8 sec |
| Units and Prefixes |
Dr. Ameya Kolarkar |
3 min 59 sec |
| Unit Conversion Examples |
Dr. Ameya Kolarkar |
5 min 16 sec |
| |
|
|
| Vectors
| |
|
| Vectors: Vector Properties |
Dr. Ameya Kolarkar |
2 min 28 sec |
| Vectors: More Vector Manipulation |
Dr. Ameya Kolarkar |
5 min 57 sec |
| |
|
|
| 1D Motion
| |
|
| 1-D Motion: Displacement |
Dr. Ameya Kolarkar |
4 min 33 sec |
| 1-D Motion: Velocity and Acceleration |
Dr. Ameya Kolarkar |
4 min 6 sec |
| 1-D Motion: Kinematic Example |
Dr. Ameya Kolarkar |
2 min 37 sec |
| 1-D Motion: Basics of Graphs |
Dr. Ameya Kolarkar |
4 min 36 sec |
| 1-D Motion: Area Under the Curve Alg |
Dr. Ameya Kolarkar |
2 min 44 sec |
| Area Under the Curve Calc |
Dr. Ameya Kolarkar |
4 min 33 sec |
| 1-D Motion: Graphical Representation of Motion |
Dr. Chris Duston |
8 min 3 sec |
| 1-D Motion: Deriving Kinematic Equations |
Dr. Chris Duston |
11 min 36 sec |
| 1-D Motion: Objects in Free Fall |
Dr. Chris Duston |
3 min 50 sec |
| |
|
|
| 2D Motion
| |
|
| Projectile Motion |
Dr. Ameya Kolarkar |
7 min 32 sec |
| Projectile Motion: Introduction |
Dr. Chris Duston |
5 min 37 sec |
| Projectile Motion: Example |
Dr. Ameya Kolarkar |
3 min 5 sec |
| Uniform Circular Motion: Introduction |
Dr. Ameya Kolarkar |
5 min 48 sec |
| Uniform Circular Motion: Forces |
Dr. Ameya Kolarkar |
1 min 54 sec |
| |
|
|
| Newton’s Laws
| |
|
| Interactions As Forces |
Dr. Chris Duston |
2 min 35 sec |
| Newton’s First Law |
Dr. Chris Duston |
3 min 1 sec |
| Newton’s Second Law |
Dr. Ameya Kolarkar |
6 min 15 sec |
| Newton’s Second Law: Example |
Dr. Ameya Kolarkar |
6 min 34 sec |
| Newton’s Second Law: Weight and Normal Force |
Dr. Ameya Kolarkar |
5 min 55 sec |
| Newton’s Third Law |
Dr. Ameya Kolarkar |
3 min 56 sec |
| Newton’s Third Law |
Dr. Chris Duston |
7 min 14 sec |
| Friction: Kinetic and Static |
Dr. Ameya Kolarkar |
6 min 4 sec |
| Kinetic Friction: One Block |
Dr. Ameya Kolarkar |
3 min 2 sec |
| Kinetic Friction: Two Blocks |
Dr. Ameya Kolarkar |
5 min 35 sec |
| Kinetic Friction: Inclined Plane |
Dr. Ameya Kolarkar |
3 min 51 sec |
| Application of Newton’s Laws: Stacked Blocks |
Dr. Ameya Kolarkar |
3 min 21 sec |
| Application of Newton’s Laws: Atwood Machine |
Dr. Ameya Kolarkar |
3 min 8 sec |
| Application of Newton’s Laws: In an Elevator |
Dr. Ameya Kolarkar |
1 min 56 sec |
| Free Body Diagrams |
Dr. Chris Duston |
7 min 32 sec |
| Coupled Objects |
Dr. Chris Duston |
10 min 26 sec |
| |
|
|
| Circular Motion
| |
|
| Uniform Circular Motion for Newton’s Second Law |
Dr. Chris Duston |
3 min 22 sec |
| Uniform Circular Motion: Banking |
Dr. Chris Duston |
11 min 27 sec |
| |
|
|
| Work and Kinetic Energy
| |
|
| Work: Introduction |
Dr. Ameya Kolarkar |
2 min 48 sec |
| Work: Example |
Dr. Ameya Kolarkar |
7 min 26 sec |
| Work Done by a Constant Force |
Dr. Chris Duston |
8 min 31 sec |
| Vectors: The Dot Product |
Dr. Ameya Kolarkar |
2 min 56 sec |
| The Dot Product |
Dr. Chris Duston |
3 min 37 sec |
| Work Done by a Varying Force |
Dr. Chris Duston |
2 min 48 sec |
| Work-Energy Theorem: Introduction |
Dr. Ameya Kolarkar |
3 min 16 sec |
| Work-Energy Theorem: Example Using Graphs |
Dr. Ameya Kolarkar |
5 min 45 sec |
| |
|
|
| Potential Energy and Mechanical Energy
| |
|
| Work, Potential, and Equilibrium |
Dr. Chris Duston |
7 min 38 sec |
| Gravitational Potential Energy: Near Earth |
Dr. Ameya Kolarkar |
5 min 41 sec |
| Conservative Forces: A Test |
Dr. Ameya Kolarkar |
5 min 51 sec |
| Non-Conservative Forces: Introduction |
Dr. Ameya Kolarkar |
3 min 25 sec |
| Work and Conservative Forces |
Dr. Chris Duston |
12 min 53 sec |
| Conservation of Energy |
Dr. Chris Duston |
20 min 17 sec |
| Energy Conservation: Example |
Dr. Chris Duston |
10 min 25 sec |
| Conservation of Mechanical Energy: Introduction |
Dr. Ameya Kolarkar |
4 min 5 sec |
| Energy Conservation: Example |
Dr. Ameya Kolarkar |
2 min 40 sec |
| Work and Nonconservative Forces |
Dr. Chris Duston |
9 min 4 sec |
| Non-conservative Forces: Interactive Example |
Dr. Ameya Kolarkar |
4 min 32 sec |
| Forgotten Friction: Example |
Dr. Chris Duston |
7 min 38 sec |
| Spring Force Derivation: Using Work-Energy |
Dr. Chris Duston |
4 min 53 sec |
| |
|
|
| Momentum, Impulse, and Collisions
| |
|
| Moment and Impulse: Introduction |
Dr. Ameya Kolarkar |
4 min 19 sec |
| Elastic vs. Inelastic Collisions |
Dr. Chris Duston |
6 min 32 sec |
| Elastic vs. Inelastic Collisions: Examples |
Dr. Chris Duston |
15 min 28 sec |
| Negative Signs for Momentum in 1D Collision: Example |
Dr. Chris Duston |
5 min |
| Conservation of Momentum in 2D: Example |
Dr. Ameya Kolarkar |
7 min 35 sec |
| |
|
|
| Rotation of a Rigid Object
| |
|
| Moment of Inertia |
Dr. Ameya Kolarkar |
2 min 50 sec |
| Net Torque |
Dr. Ameya Kolarkar |
2 min 12 sec |
| Newton’s Second Law: Rotation |
Dr. Ameya Kolarkar |
57 sec |
| Rotational Displacement |
Dr. Ameya Kolarkar |
5 min 12 sec |
| Rotational Velocity and Acceleration; Period and Frequency |
Dr. Ameya Kolarkar |
6 min 18 sec |
| Rotational Kinematics |
Dr. Ameya Kolarkar |
2 min 32 sec |
| Rotational Kinetic Energy |
Dr. Ameya Kolarkar |
8 min 23 sec |
| Introduction to Torque: Pre-class Activity |
Dr. Ameya Kolarkar |
2 min 23 sec |
| Introduction to Torque |
Dr. Ameya Kolarkar |
4 min 06 sec |
| Calculating Torque |
Dr. Ameya Kolarkar |
4 min 28 sec |
| Torque and Moment Arm |
Dr. Chris Duston |
5 min 02 sec |
| Newton’s Second Law: Rotation |
Dr. Ameya Kolarkar |
58 sec |
| Newton’s Laws for Rotation |
Dr. Ameya Kolarkar |
6 min 12 sec |
| Net Torque |
Dr. Ameya Kolarkar |
2 min 31 sec |
| Introduction to Moment of Inertia: Pre-class Activity |
Dr. Ameya Kolarkar |
1 min 06 sec |
| Introduction to Moment of Inertia |
Dr. Ameya Kolarkar |
3 min 36 sec |