Quantum Mechanics: The Theoretical Minimum, Friedman, Art,Susskind, Leonard, 978

$ 10.56

Language: English Number of Pages: 384 Pages Author: Art Friedman, Leonard Susskind ISBN-13: 9780465036677 Publication Year: 2014 Genre: Science width: 5.9 in ISBN-10: 0465036678 LC Classification Number: QC174.12.S8 2014 Dewey Edition: 23 Intended Audience: Trade Publisher: Basic Books height: 1.3 in ISBN: 9780465036677 Illustrator: Yes Edition: First Edition Topic: Physics / Quantum Theory, Physics / General Item Weight: 17 Oz Item Width: 5.9 in Book Series: The Theoretical Minimum Ser. Item Length: 8.2 in Format: Hardcover Dewey Decimal: 530.12 Book Title: Quantum Mechanics : the Theoretical Minimum Item Height: 1.3 in

Description

Quantum Mechanics: The Theoretical Minimum, Friedman, Art,Susskind, Leonard, 978. The product is a hardcover book titled "Quantum Mechanics: The Theoretical Minimum" by physicists Leonard Susskind and Art Friedman. Published by Basic Books in 2014, this book is part of the "Theoretical Minimum" series and is intended for a trade audience interested in quantum mechanics. It offers a detailed and clear explanation of the principles of quantum mechanics, including topics such as quantum states, uncertainty, entanglement, and wave-particle duality. With a focus on intuition and mathematical rigor, this book provides a comprehensive introduction to the strange and mysterious world of quantum mechanics for both students and armchair physicists. The product is a hardcover book titled "Quantum Mechanics: The Theoretical Minimum" by physicists Leonard Susskind and Art Friedman. Published by Basic Books in 2014, this book is part of the "Theoretical Minimum" series and is intended for a trade audience interested in quantum mechanics. It offers a detailed and clear explanation of the principles of quantum mechanics, including topics such as quantum states, uncertainty, entanglement, and wave-particle duality. With a focus on intuition and mathematical rigor, this book provides a comprehensive introduction to the strange and mysterious world of quantum mechanics for both students and armchair physicists.