- Level Professional
- المدة 18 ساعات hours
- الطبع بواسطة Rice University
-
Offered by
عن
This fourth course serves as an introduction to the physics of electricity and magnetism. Upon completion, learners will understand how mathematical laws and conservation principles describe fields and how these fields are related to electrical circuits. Learners will gain experience in solving physics problems with tools such as graphical analysis, algebra, vector analysis, and calculus. This fourth course covers AC circuits, Impedance, and Magnetism. Each of the two modules contains reading links to a free textbook, complete video lectures, conceptual quizzes, and a set of homework problems. Once the modules are completed, the course ends with an exam. This comprehensive course is similar in detail and rigor to those taught on-campus at Rice. It will thoroughly prepare learners for their upcoming introductory physics courses or more advanced courses in physics.الوحدات
Inductors
1
Assignment
- Filling an Inductor
3
Videos
- Faraday's Law in a Circuit
- Defining the Inductance
- Calculating Inductance from Solenoid Geometry
1
Readings
- University Physics
LR Circuits
1
Assignment
- Circuit Quandry
5
Videos
- You Can't Apply Kirchhoff's Loop Rule to a Circuit with an Inductor!
- Faraday's Law is the Correct Approach for a Circuit with an Inductor!
- A Differential Equation for the LR Circuit
- The LR Circuit Solution
- Discombobulating the LR Circuit
1
Readings
- University Physics
LC Circuits
1
Assignment
- What is Zero?
7
Videos
- Setting up the Differential Equation for an LC Circuit
- Finding a Solution to the LC Circuit
- Testing Another LC Circuit Solution
- Testing Yet Another LC Circuit Solution
- Oscillating Solutions for an LC Circuit
- Applying Initial Conditions
- Applying Initial Conditions Again
1
Readings
- University Physics
RLC Circuits
3
Videos
- The Differential Equation for the RLC Circuit
- Damped Charge Oscillations in the RLC Circuit
- Regimes of Damping of the RLC Circuit
1
Readings
- University Physics
AC Elements
1
Assignment
- On Resonance
6
Videos
- The Value of Average Values
- AC Driven Resistor
- AC Driven Capacitor
- Capacitive Reactance
- AC Driven Inductor
- Inductive Reactance
1
Readings
- University Physics
Driven RLC Circuits
3
Videos
- The RLC Response and Impedance
- Current in Each Element
- RLC Resonance
1
Readings
- University Physics
AC Circuits Homework
1
Assignment
- AC Circuits Homework
1
Videos
- SPT - The Cold Burger
Differential Form
13
Videos
- Fundamental Theorem of Calculus
- The Derivative of a Scalar Field
- Fundamental Theorem of the Gradient
- The Divergence of a Vector Field
- The Divergence Theorem
- Gauss's Law
- Gauss's Law for Magnetism
- The Curl of a Vector Field
- Curl Examples
- Stokes' Theorem
- Faraday's Law
- Ampere's Law
- Ampere-Maxwell Law
Dielectrics: 1D
4
Videos
- A Dielectric in an E-Field
- The Polarization Field
- Bound Surface Charge
- The Dielectric Constant
Dielectrics: 3D
6
Videos
- Volume Bound Charge (really!)
- The Displacement Field
- How to Use the D
- E and P from D
- A Disappointing Approach
- Finish the Solution
Magnetism in Matter
6
Videos
- Magnetism Introduction
- Orbital Current Loops
- Spin Current Loops
- Paramagnetism
- Diamagnetism
- Ferromagnetism
Maxwell's Equations
9
Videos
- Derivative of Faraday
- Second Derivatives
- Gradient of Divergence
- Curl of the Curl
- The Vector Laplacian is Leftover Garbage
- Electromagnetic Wave Equation
- Spark Gap Equation
- The Electromagnetic Spectrum
- The Finale
1
Readings
- University Physics
Maxwell and Matter Homework
1
Assignment
- Maxwell and Matter Homework
1
Videos
- Art Car
Exam
1
Assignment
- Exam
1
Videos
- Board at the Movies
Auto Summary
Dive into "Physics 102 - AC Circuits and Maxwell's Equations," a comprehensive course by Coursera designed for professionals in Science & Engineering. Learn the fundamentals of electricity and magnetism, and master topics like AC circuits, impedance, and magnetism through video lectures, quizzes, and homework. This detailed 1080-hour course, taught with the same rigor as on-campus classes at Rice, offers flexible subscription options to prepare you for advanced physics studies. Ideal for those aiming to deepen their understanding of electrical circuits and field theory.

Jason Hafner