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Physics
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Total Videos :158
Introduction to Vectors and Scalars
00:08:39
Calculating Average Velocity or Speed
00:11:45
Solving for Time
00:09:35
Displacement from Time and Velocity Example
00:05:00
Acceleration
00:09:06
Newton s First Law of Motion
00:09:32
Newton s Second Law of Motion
00:07:14
Newton s Third Law of Motion
00:08:00
Airbus A380 Take-off Time
00:08:08
Airbus A380 Take-off Distance
00:05:29
Why Distance is Area under Velocity-Time Line
00:09:26
Average Velocity for Constant Acceleration
00:14:10
Acceleration of Aircraft Carrier Takeoff
00:14:16
Race Cars with Constant Speed Around Curve
00:04:49
Introduction to Gravity
00:15:43
Mass and Weight Clarification
00:10:41
Gravity for Astronauts in Orbit
00:07:12
Would a Brick or Feather Fall Faster
00:10:35
Deriving Displacement as a Function of Time, Acceleration and Initial Velocity
00:09:58
Plotting Projectile Displacement, Acceleration, and Velocity
00:16:18
Projectile Height Given Time
00:08:51
Deriving Max Projectile Displacement Given Time
00:07:09
Impact Velocity From Given Height
00:11:43
Visualizing Vectors in 2 Dimensions
00:12:54
Projectile at an Angle
00:12:46
Different Way to Determine Time in Air
00:09:47
Launching and Landing on Different Elevations
00:15:12
Total Displacement for Projectile
00:13:46
Total Final Velocity for Projectile
00:07:53
Correction to Total Final Velocity for Projectile
00:02:41
Projectile on an Incline
00:18:17
Unit Vectors and Engineering Notation
00:07:58
Clearing the Green Monster at Fenway
00:09:30
Green Monster at Fenway Part 2
00:12:30
Optimal angle for a projectile part 1
00:05:50
Optimal angle for a projectile part 2 - Hangtime
00:04:12
Optimal angle for a projectile part 3 - Horizontal distance as a function of angle (and speed)
00:02:39
Optimal angle for a projectile part 4 Finding the optimal angle and distance with a bit of calculus
00:10:41
Normal Force and Contact Force
00:07:18
Normal Force in an Elevator
00:11:49
Inclined Plane Force Components
00:12:42
Ice Accelerating Down an Incline
00:10:37
Force of Friction Keeping the Block Stationary
00:08:41
Correction to Force of Friction Keeping the Block Stationary
00:00:51
Force of Friction Keeping Velocity Constant
00:09:09
Intuition on Static and Kinetic Friction Comparisons
00:07:21
Static and Kinetic Friction Example
00:09:50
Introduction to Tension
00:10:19
Tension (part 2)
00:10:19
Tension in an accelerating system and pie in the face
00:09:28
Private video
Unavaliable
Introduction to Momentum
00:09:18
Momentum: Ice skater throws a ball
00:06:00
2-dimensional momentum problem
00:10:35
2-dimensional momentum problem (part 2)
00:09:32
Introduction to work and energy
00:09:18
Work and Energy (part 2)
00:09:51
Conservation of Energy
00:10:06
Work/Energy problem with Friction
00:10:05
Introduction to mechanical advantage
00:10:02
Mechanical Advantage (part 2)
00:06:50
Mechanical Advantage (part 3)
00:10:34
Center of Mass
00:09:36
Introduction to Torque
00:09:24
Moments
00:14:14
Moments (part 2)
00:13:50
Unit Vector Notation
00:09:54
Unit Vector Notation (part 2)
00:09:13
Projectile Motion with Ordered Set Notation
00:10:17
Centripetal Force and Acceleration Intuition
00:10:47
Visual Understanding of Centripetal Acceleration Formula
00:09:48
Relationship between angular velocity and speed
00:09:24
Calculus proof of centripetal acceleration formula
00:14:22
Loop De Loop Question
00:03:01
Loop De Loop Answer part 1
00:06:05
Loop De Loop Answer part 2
00:04:48
Acceleration Due to Gravity at the Space Station
00:10:13
Space Station Speed in Orbit
00:06:36
Conservation of angular momemtum
00:10:12
Introduction to Newton s Law of Gravitation
00:08:37
Gravitation (part 2)
00:08:16
Intro to springs and Hooke s Law
00:10:05
Potential energy stored in a spring
00:10:00
Spring potential energy example (mistake in math)
00:09:38
Introduction to Harmonic Motion
00:10:03
Harmonic Motion Part 2 (calculus)
00:09:46
Harmonic Motion Part 3 (no calculus)
00:09:44
Fluids (part 1)
00:09:46
Fluids (part 2)
00:10:12
Fluids (part 3)
00:09:54
Fluids (part 4)
00:10:09
Fluids (part 5)
00:08:41
Fluids (part 6)
00:09:41
Fluids (part 7)
00:09:59
Fluids (part 8)
00:10:08
Fluids (part 9)
00:10:09
Fluids (part 10)
00:08:35
Fluids (part 11)
00:05:19
Fluids (part 12)
00:07:46
Thermodynamics (part 1)
00:09:49
Thermodynamics (part 2)
00:10:17
Thermodynamics (part 3)
00:10:24
Thermodynamics (part 4)
00:10:14
Thermodynamics (part 5)
00:08:02
Electrostatics (part 1): Introduction to Charge and Coulomb s Law
00:14:02
Electrostatics (part 2)
00:13:32
Proof (Advanced): Field from infinite plate (part 1)
00:13:27
Proof (Advanced): Field from infinite plate (part 2)
00:11:28
Electric Potential Energy
00:12:37
Electric Potential Energy (part 2-- involves calculus)
00:09:50
Voltage
00:08:55
Capacitance
00:13:35
Circuits (part 1)
00:11:39
Circuits (part 2)
00:11:08
Circuits (part 3)
00:12:20
Circuits (part 4)
00:07:07
Cross product 1
00:10:02
Cross Product 2
00:10:53
Cross Product and Torque
00:10:00
Introduction to Magnetism
00:10:44
Magnetism 2
00:08:58
Magnetism 3
00:10:47
Magnetism 4
00:10:39
Magnetism 5
00:10:55
Magnetism 6: Magnetic field due to current
00:09:42
Magnetism 7
00:11:00
Magnetism 8
00:11:01
Magnetism 9: Electric Motors
00:10:36
Magnetism 10: Electric Motors
00:10:37
Magnetism 11: Electric Motors
00:06:40
Magnetism 12: Induced Current in a Wire
00:12:07
The dot product
00:10:33
Dot vs. Cross Product
00:10:45
Calculating dot and cross products with unit vector notation
00:09:46
Introduction to Waves
00:13:03
Amplitude, Period, Frequency and Wavelength of Periodic Waves
00:14:26
Introduction to the Doppler Effect
00:10:36
Doppler effect formula for observed frequency
00:10:13
Doppler effect formula when source is moving away
00:09:18
When the source and the wave move at the same velocity
00:07:35
Mach Numbers
00:04:04
Specular and Diffuse Reflection
00:11:00
Specular and Diffuse Reflection 2
00:07:41
Refraction and Snell s Law
00:14:24
Refraction in Water
00:04:24
Snell s Law Examples 1
00:10:44
Snell s Law Example 2
00:11:25
Total Internal Reflection
00:07:55
Virtual Image
00:07:53
Parabolic Mirrors and Real Images
00:11:37
Parabolic Mirrors 2
00:12:49
Convex Parabolic Mirrors
00:06:00
Convex Lenses
00:09:23
Convex Lens Examples
00:09:36
Concave Lenses
00:03:06
Object Image and Focal Distance Relationship (Proof of Formula)
00:12:29
Object Image Height and Distance Relationship
00:02:22
Viewing g as the value of Earth s Gravitational Field Near the Surface
00:07:31
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Total Videos :158
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Introduction to Vectors and Scalars
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