Topic |
Professor |
Total Video Time |
|
Rotational Motion Dynamics
| |
|
Rolling Without Sliding |
Dr. Chris Duston |
5 min 20 sec |
Torque and Determinants |
Dr. Chris Duston |
3 min 23 sec |
Torque and Rotational Equilibrium |
Dr. Chris Duston |
15 min 06 sec |
Conservation of Angular Momentum |
Dr. Ameya Kolarkar |
3 min 42 sec |
|
|
|
Equilibrium and Elasticity
| |
|
Introduction to Static Equilibrium: Pre-class Activity |
Dr. Ameya Kolarkar |
1 min 26 sec |
Static Equilibrium: Mobile |
Dr. Ameya Kolarkar |
6 min 24 sec |
Static Equilibrium: Drawbridge |
Dr. Ameya Kolarkar |
8 min 28 sec |
Static Equilibrium: Pivot Forces |
Dr. Chris Duston |
8 min 21 sec |
Static Equilibrium: Easy Torque Beam |
Dr. Chris Duston |
12 min 26 sec |
Introduction to Stress, Strain, and Elastic Moduli |
Dr. Chris Duston |
4 min 22 sec |
Young’s Modulus |
Dr. Chris Duston |
4 min 16 sec |
Bulk Modulus |
Dr. Chris Duston |
4 min 05 sec |
|
|
|
Periodic Motion
| |
|
Introduction to Harmonic Motion |
Dr. Chris Duston |
3 min 14 sec |
Simple Harmonic Motion of Mass on Spring |
Dr. Chris Duston |
15 min 02 sec |
Energy in Simple Harmonic Motion |
Dr. Chris Duston |
3 min 47 sec |
Simple Pendulum |
Dr. Chris Duston |
10 min 33 sec |
Small Angle Approximation |
Dr. Chris Duston |
6 min 25 sec |
|
|
|
Gravitation
| |
|
Introduction to Universal Gravitation |
Dr. Ameya Kolarkar |
8 min 08 sec |
Universal Gravitation: 2D Problem |
Dr. Ameya Kolarkar |
6 min 17 sec |
Universal Gravitation: 1D Problem |
Dr. Ameya Kolarkar |
6 min 43 sec |
Universal Gravitation: Dark Matter and Extra Dimensions |
Dr. Ameya Kolarkar |
4 min 26 sec |
Universal Gravitation: Potential Energy |
Dr. Ameya Kolarkar |
3 min 30 sec |
|
|
|
Fluid Mechanics
| |
|
Introduction to Fluids: Pre-class Activity |
Dr. Ameya Kolarkar |
1 min 25 sec |
Fluids: Pressure and Depth |
Dr. Ameya Kolarkar |
3 min 28 sec |
Fluids: Buoyancy and Archimedes Principle |
Dr. Ameya Kolarkar |
3 min 34 sec |
Fluid Flow: Pre-class Activity |
Dr. Ameya Kolarkar |
1 min 13 sec |
Fluid Flow: Continuity Equation |
Dr. Ameya Kolarkar |
1 min 11 sec |
Fluid Flow: Bernoulli’s Equation |
Dr. Ameya Kolarkar |
2 min 05 sec |
|
|
|
Temperature
| |
|
Thermodynamic Equilibrium and Temperature |
Dr. Chris Duston |
3 min 54 sec |
Celsius and Fahrenheit Temperature Scales |
Dr. Chris Duston |
3 min 04 sec |
Gas Thermometer and Kelvin Scale |
Dr. Chris Duston |
5 min 47 sec |
Linear Thermal Expansion |
Dr. Chris Duston |
5 min 16 sec |
Volume Thermal Expansion |
Dr. Chris Duston |
6 min 24 sec |
Ideal Gas Law and Equations of State |
Dr. Chris Duston |
5 min 03 sec |
Ideal Gas Law – Example |
Dr. Chris Duston |
6 min 05 sec |
Ideal Gas Law – Alternate Form |
Dr. Chris Duston |
2 min 08 sec |
van der Waals Equation |
Dr. Chris Duston |
3 min 02 sec |
Microscopic Model of Ideal Gas: Application |
Dr. Chris Duston |
6 min 55 sec |
Degrees of Freedom in a Gas |
Dr. Chris Duston |
12 min 04 sec |
|
|
|
Electric Charge and Electric Fields
| |
|
Charge Quantization |
Dr. Ameya Kolarkar |
1 min 27 sec |
Coulomb’s Law |
Dr. Chris Duston |
7 min 38 sec |
Electric Field from Uniformly Charged Rod |
Dr. Ameya Kolarkar |
9 min 13 sec |
Electric Field from Uniformly Charged Rod: Approximations |
Dr. Ameya Kolarkar |
5 min 39 sec |
Motion of Charge in Uniform Electric Field |
Dr. Ameya Kolarkar |
5 min 40 sec |
|
|
|
Gauss’s Law
| |
|
Electric Flux |
Dr. Ameya Kolarkar |
5 min 01 sec |
Gauss’s Law |
Dr. Ameya Kolarkar |
2 min 51 sec |
Gauss’s Law: Application |
Dr. Ameya Kolarkar |
3 min 05 sec |
|
|
|
Electric Potential
| |
|
Electric Potential: Algebra |
Dr. Chris Duston |
6 mim 38 sec |
Electric Potential and Field |
Dr. Chris Duston |
5 min 29 sec |
Electric Potential and Field |
Dr. Chris Duston |
4 min 01 sec |
Electric Potential and Field: Infinite Line Charge |
Dr. Chris Duston |
6 min 37 sec |
|
|
|
Current and Resistance
| |
|
Current |
Dr. Ameya Kolarkar |
2 min 59 sec |
Resistance and Ohm’s Law |
Dr. Ameya Kolarkar |
5 min 01 sec |
Resistivity and Temperature |
Dr. Chris Duston |
10 min 04 sec |
Electircal Energy and Power |
Dr. Chris Duston |
7 min 10 sec |
|
|
|
DC Circuits
| |
|
Emf, Voltage, Power |
Dr. Ameya Kolarkar |
3 min 07 sec |
Combining Resistors |
Dr. Ameya Kolarkar |
4 min 53 sec |
Combining Resistors: Example |
Dr. Ameya Kolarkar |
8 min 25 sec |
Combinations of Resistors |
Dr. Chris Duston |
11 min 56 sec |
|
|
|
Sources of the Magnetic Field
| |
|
Biot-Savart Law |
Dr. Ameya Kolarkar |
6 min 30 sec |
Bio-Savart Law: Example |
Dr. Ameya Kolarkar |
7 min 36 sec |
Ampère’s Law |
Dr. Ameya Kolarkar |
4 min 27 sec |
Ampère’s Law: Comparison with Gauss’s Law |
Dr. Ameya Kolarkar |
8 min 20 sec |
Magnetic Flux and Gauss’s Law for Magnetism |
Dr. Ameya Kolarkar |
6 min 02 sec |
Introduction to Magnetic Flux |
Dr. Ameya Kolarkar |
5 min 39 sec |
|
|
|
Faraday’s Law
| |
|
Faraday’s Law and Lenz’s Law: Algebra |
Dr. Ameya Kolarkar |
6 min 28 sec |
Faraday’s Law and Lenz’s Law |
Dr. Ameya Kolarkar |
7 min 03 sec |
Faraday’s Law and Lenz’s Law: Example |
Dr. Ameya Kolarkar |
3 min 24 sec |
|
|
|
Electromagnetic Waves
| |
|
Electromagnetic Waves |
Dr. Ameya Kolarkar |
2 min 22 sec |
Plane Electromagnetic Waves |
Dr. Ameya Kolarkar |
3 min |
Poynting Vector, Radiation Pressure |
Dr. Ameya Kolarkar |
2 min 52 sec |
|
|
|
Interference of Light Waves
| |
|
Interference: Introduction and Activity |
Dr. Ameya Kolarkar |
1 min 25 sec |
Interference: Ripples |
Dr. Ameya Kolarkar |
4 min 01 sec |
Interference: Double Slit |
Dr. Ameya Kolarkar |
5 min 21 sec |
|
|
|
Special Relativity
| |
|
Lorentz Transformations |
Dr. Chris Duston |
9 min 56 sec |
|
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