Explore the latest books of this year!
Bookbot

Essential University Physics Volume 2

Book rating

Parameters

  • 340 pages
  • 12 hours of reading

More about the book

Richard Wolfson’s Essential University Physics is a concise and progressive calculus-based physics textbook that offers clear writing, great problems, and interesting real-life applications. At nearly half the length and half the price of other physics texts on the market, Essential University Physics is a compelling alternative for professors who want to focus on the fundamentals. Electric Charge, Force, and Field; Gauss’s Law; Electric Potential; Electrostatic Energy and Capacitors; Electric Current; Electric Circuits; Magnetism; Electromagnetic Induction; Alternating-Current Circuits; Electromagnetic Waves The Behavior of Light; Images and Optical Instruments; Interference and Diffraction Modern Relativity For all readers interested in calculus-based physic.

Book purchase

Essential University Physics Volume 2, Richard Wolfson

Language
Released
2006
Binding
(Paperback)
We’ll email you as soon as we track it down.

Payment methods

3.8
Very Good
18 Ratings

We’re missing your review here.

Title
Essential University Physics Volume 2
Language
English
Released
2006
Format
Paperback
Pages
340
ISBN10
0805338381
ISBN13
9780805338386
Series
Rating
3.8 out of 5
Description
Richard Wolfson’s Essential University Physics is a concise and progressive calculus-based physics textbook that offers clear writing, great problems, and interesting real-life applications. At nearly half the length and half the price of other physics texts on the market, Essential University Physics is a compelling alternative for professors who want to focus on the fundamentals. Electric Charge, Force, and Field; Gauss’s Law; Electric Potential; Electrostatic Energy and Capacitors; Electric Current; Electric Circuits; Magnetism; Electromagnetic Induction; Alternating-Current Circuits; Electromagnetic Waves The Behavior of Light; Images and Optical Instruments; Interference and Diffraction Modern Relativity For all readers interested in calculus-based physic.