Mehr zum Buch
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.
Buchkauf
Essential University Physics Volume 2, Richard Wolfson
- Sprache
- Erscheinungsdatum
- 2006
- product-detail.submit-box.info.binding
- (Paperback)
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- Titel
- Essential University Physics Volume 2
- Sprache
- Englisch
- Autor*innen
- Richard Wolfson
- Verlag
- Addison Wesley
- Erscheinungsdatum
- 2006
- Einband
- Paperback
- Seitenzahl
- 340
- ISBN10
- 0805338381
- ISBN13
- 9780805338386
- Reihe
- Schlagwörter
- Sachbücher, Wissenschaft & Mathematik, Naturwissenschaften, Physik
- Bewertung
- 3,8 von 5 Sternen
- Beschreibung
- 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.


