Lecture 36 - First Law of Thermodynamics
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Fall 2017 Lecture 1 - Introduction to the Course
Fall 2018 Lecture 1 - Introduction to the Course
Lecture 1 - Introduction to the Course
Recitation I: Kinematics Problems
Fall 2017 Lecture 2 - 1-D and 2-D Kinematics
Fall 2018 Lecture 2 - 1-D and 2-D Kinematics
Lecture 2 - 1D Kinematics
Recitation II: Force Problems
Fall 2017 Lecture 3 - 2 and 3 dimensional kinematics
Fall 2018 Lecture 3 - 2 and 3 dimensional kinematics
Lecture 3 - 2 and 3 dimensional kinematics
Recitation III: Circular Motion Problems
Fall 2017: Lecture 4 - Newton's Laws of Motion
Fall 2018: Lecture 4 - Newton's Laws of Motion
Lecture 4 - Projectile Motion Analysis
Recitation IV: Work and Energy Problems
Fall 2017: Lecture 5 - Applications of Newton's Laws
Fall 2018: Lecture 5 - Applications of Newton's Laws
Lecture 5 - Newton's Laws of Motion
Recitation V: Momentum Problems
Fall 2017: Lecture 6 - Forces with and without Friction
Fall 2018: Lecture 6 - Forces with and without Friction
Lecture 6 - Applications of Newton's Laws
Recitation VI: Rotation Problems
Fall 2017: Lecture 7 - Circular Motion
Fall 2018: Lecture 7 - Circular Motion
Lecture 7 - Force Problems with and without Friction
Recitation VII: Statics and Fluids Problems
Fall 2017: Lecture 8 - Applications of Circular Motion
Fall 2018: Lecture 8 - Applications of Circular Motion
Lecture 8 - Circular Motion
Recitation VIII: Oscillations Problems
Fall 2017: Lecture 9 - Gravitation
Fall 2018: Lecture 9 - Gravitation
Lecture 9 - Gravitation
Fall 2017: Lecture 10 - Planets, Satellites and Introduction to Work
Fall 2018: Lecture 10 - Planets, Satellites and Introduction to Work
Lecture 10 - Gravity, Planets, Satellites and Orbits
Fall 2017: Lecture 11 - Work, Energy and Conservation of Energy
Fall 2018: Lecture 11 - Work, Energy and Conservation of Energy
Lecture 11 - Work and Energy
Fall 2017: Lecture 12 - Energy Conservation with and without Friction
Fall 2018: Lecture 12 - Energy Conservation with and without Friction
Lecture 12 - Conservation of Energy
Fall 2013: Lecture 13 - Energy Problem, Linear Momentum and One Dimensional Collisions
Fall 2018: Lecture 13 - Linear Momentum and One Dimensional Collisions
Lecture 13 - Various Kinds of Energy Conservation Problems
Fall 2017: Lecture 14 - 1-D and 2-D Elastic and Inelastic Collisions
Fall 2018: Lecture 14 - 1-D and 2-D Elastic and Inelastic Collisions
Lecture 14 - Linear Momentum and One Dimensional Collisions
Fall 2017: Lecture 15 - 2-D Collisions and Center of Mass
Fall 2018: Lecture 15 - Center of Mass and Rockets
Lecture 15 - Linear momentum in more than one dimension
Fall 2017: Lecture 16 - Center of Mass and Rockets
Fall 2018: Lecture 16: MidTerm I Review
Lecture 16 - Center of Mass and Rockets
Fall 2017: Lecture 17: MidTerm I Review
Fall 2018: Lecture 17 - Rotation and Moment of Inertia
Lecture 17 - Rotation and Moment of Inertia
Fall 2017: Lecture 18 - Rotation and Moment of Inertia
Fall 2018: Lecture 18 - Rotational Dynamics
Lecture 18 - Rotational Dynamics
Fall 2017: Lecture 19 - Rotational Dynamics
Fall 2018: Lecture 19 - Rotational Motion Applications
Lecture 19 - Angular Momentum
Fall 2017: Lecture 20 - Angular Momentum
Fall 2018: Lecture 20 - Angular Momentum
Lecture 20 - Angular Momentum Phenomena
Fall 2017: Lecture 21 - Angular Momentum and Torque
Fall 2018: Lecture 21 - Angular Momentum in 3-D
Lecture 21 - Statics
Fall 2017: Lecture 22 - Angular Momentum in 3-D
Fall 2018: Lecture 22 - Statics
Lecture 22 - Static Fluids
Fall 2017: Lecture 23 - Statics
Fall 2018: Lecture 23 - Static Fluids
Lecture 23 - Fluids in Motion
Fall 2017: Lecture 24 - Static Fluids
Fall 2018: Lecture 24 - Fluids in Motion and Harmonic Motion
Lecture 27 - Midterm II Concepts
Fall 2017: Lecture 25 - Fluids in Motion and Harmonic Motion
Fall 2018: Lecture 25 - Simple harmonic motion examples
Lecture 24 - Fluids in Motion and Simple Harmonic Motion
Fall 2017: Lecture 26 - Simple harmonic motion
Fall 2018: Lecture 26 - Midterm II Concepts
Lecture 25 - Not so simple harmonic motion
Fall 2017: Lecture 27 - Advanced Oscillations Concepts
Fall 2018: Lecture 27 - Advanced Oscillations Concepts and Introduction to Waves
Lecture 26 - Advanced Oscillations Concepts and Waves
Fall 2017: Lecture 28 - Wave Properties
Fall 2018: Lecture 28 - Wave Properties
Lecture 28 - Wave Properties
Fall 2017: Lecture 29 - Midterm II Concepts
Fall 2018: Lecture 29 - Wave Effects and Introduction to Sound
Lecture 29 - Wave Effects and Introduction to Sound
Fall 2017: Lecture 30 - Wave Effects and Introduction to Sound
Fall 2018: Lecture 30 - Sound Effects and Introduction to Temperature
Lecture 30 - Sound Effects
Fall 2017: Lecture 31 - Sound Effects
Fall 2018: Lecture 31 - Ideal Gases and Kinetic Theory
Lecture 31 - Temperature and Thermal Expansion
Fall 2017: Lecture 32 - Temperature and Thermal Expansion
Fall 2018: Lecture 32 - Kinetic Theory and Real Gases
Lecture 32 - Ideal Gases
Fall 2017: Lecture 33 - Ideal Gases and Kinetic Theory
Fall 2018: Lecture 33 - Heat
Lecture 33 - Kinetic Theory of Gases
Fall 2017: Lecture 34 - Kinetic Theory and Real Gases
Fall 2018: Lecture 34 - First Law of Thermodynamics
Lecture 34 - Real Gases
Fall 2017: Lecture 35 - Heat
Fall 2018: Lecture 35 - Second Law of Thermodynamics
Lecture 34 - Heat
Fall 2017: Lecture 36 - First Law of Thermodynamics
Fall 2018: Lecture 36 - Entropy
Lecture 35 - First Law of Thermodynamics
Fall 2017: Lecture 37 - Second Law of Thermodynamics
Fall 2018: Lecture 37 - Post-MidTermII Concepts
Lecture 36 - Second Law of Thermodynamics
Fall 2017: Lecture 38 - Entropy
Lecture 37 - Entropy
Fall 2017: Lecture 39 - Post-MidTermII Concepts
Lecture 39 - Lab Project Presentations
Lecture 40 - Course Wrap Up
Lecture 31 and 32 - Temperature and Ideal Gas Laws
Final Review Lecture 1 - Fluids, Oscillations, Waves and Sound
Final Review Lecture 2
Final Review Lecture 3
The first 13 lectures - the condensed version
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