1:52
Welcome to my AP Physics C: Electricity and Magnetism Page!
Flipping Physics
13:31
Electric Charge, Law of Charges, and Quantization of Charge
12:10
Introduction to Coulomb's Law or the Electric Force
13:15
Charging by Conduction and Induction
5:11
Polarization of Charge
13:24
Conservation of Charge Example Problems
7:16
Determining the Speed of the Electron in the Bohr Model of the Hydrogen Atom
16:21
Balloon Excess Charges Experiment
8:59
Electric Fields
4:09
Continuous Charge Distributions
5:52
Charged Rod Electric Field
10:33
Thin Ring Electric Field
10:04
Electric Flux
7:00
Gauss's Law - Point Charge Electric Flux
9:35
Gauss's Law - Charged Plane Electric Field
2:56
Gauss's Law - Charged Sphere Electric Field
9:51
Electric Potential Difference using Integrals
2:23
Work to Move a Charge in an Electric Field in Electron Volts
2:00
Parallel Plates Electric Potential Difference using an Integral
4:59
Speed of a Proton in a Uniform Electric Field
8:37
Equipotential Surfaces
4:15
Thin Ring Electric Field using Electric Potential
8:49
3 Properties of Conductors in Electrostatic Equilibrium
4:29
Irregularly Shaped Conductors in Electrostatic Equilibrium
7:02
Capacitance
7:48
Parallel Plate Capacitors
8:45
Energy Stored in a Capacitor
10:14
Introduction to Conventional Current and Direct Current with an Example Problem
4:54
Current and Drift Velocity
13:38
Defining Resistance, Ohmic vs. Non-Ohmic and Electric Power
9:29
Finding the Cost to Power Light Bulbs (Example Problem) and Defining KiloWatt Hour
12:06
Resistivity
10:29
Graphing Resistivity
15:09
Electric Potential Difference and Circuit Basics
6:49
Resistance and Ohm's Law
4:51
Electric Power
6:19
Electric Circuit Basics
2:02
Terminal Voltage
10:46
Resistor Series and Parallel Circuits
5:35
Capacitor Series and Parallel Circuits
4:13
Ammeter and Voltmeter - Where Do They Go?
14:44
Kirchhoff's Rules of Electrical Circuits
10:26
Resistors in Series and Parallel Equation Derivations
27:38
Basic Series and Parallel Resistor Circuit Demos and Animations
15:27
Intermediate Series and Parallel Resistor Circuit Demos and Animations
6:50
Resistor Circuit Example
21:40
Equations to Memorize for AP Physics C: Electricity and Magnetism
6:41
RC Circuit Basics
11:23
Charge and Current vs. Time in an RC Circuit
4:10
RC Circuit Time Constant
Magnetic Fields and Magnetic Forces on Moving Charges
Magnetic Force Direction (Right-Hand Rule)
3:00
Magnetic Force on Current
7:41
Mass Spectrometer
9:48
Biot Savart Law and Magnetic Field around a Current Carrying Wire
Ampère's Law
10:11
Solenoid Magnetic Field
5:41
Magnetic Flux
3:51
Gauss's Law for Magnetism
Electromagnetic Induction
10:12
Lenz's Law
4:22
Maxwell's Equations
6:26
Motional emf via Newton's Second Law
5:54
Motional emf via Faraday's Law
10:49
Induced Forces on Current Carrying Loops
6:44
Electric Motor Basics
5:56
Back emf (electromotive force)
7:52
Inductance
3:47
Inductors vs. Resistors: Exploring the Fundamental Differences
Inductance of an Ideal Solenoid
Energy Stored in an Inductor
5:45
LR Circuit Basics
10:05
LR Circuit Equation Derivations
3:37
Time Constant - LR Circuit
6:02
Analogies Between LR Circuits and Falling Objects
4:06
LC Circuit Basics
11:22
LC Circuit Equation Derivations
Visualizing LC Circuits