
As an Amazon Associate and affiliate partner, Menrva Books earns from qualifying purchases. Learn more
This book is about 'action' and the Principle of Least Action. These ideas are at the heart of physical science and engineering. Physics is well known as being concerned with grand conservatory principles (e.g. the conservation of energy) but equally important is the optimization principle (such as getting somewhere in the shortest time or with the least resistance). The book explains: why an optimization principle underlies physics, what action is, what 'the Hamiltonian' is, and how new insights into energy, space, and time arise. It assumes some background in the physical sciences, at the level of undergraduate science, but it is not a textbook. The requisite derivations and worked examples are given but may be skim-read if desired. The author draws from Cornelius Lanczos's book 'The Variational Principles of Mechanics' (1949 and 1970). The present book is no mere copy with the difficult bits left out. It aims to explain ideas rather than achieve technical competence, and to show how Least Action leads into the whole of physics.
This book investigates the fundamental role of the Principle of Least Action as the underlying optimization framework governing physical laws. Jennifer Coopersmith, drawing on her background in physics, examines how optimization principles—rather than just conservation laws—dictate the behavior of systems in space and time. The text argues that the concept of 'action' provides a unified perspective on energy and mechanics, bridging the gap between abstract mathematical theory and physical reality.
What You Will Find
Scope Limits
Readers frequently note that the prose balances conceptual depth with accessibility, making it suitable for those who wish to understand the 'why' behind physics without getting bogged down in excessive technical drills. Experts highlight this as a valuable bridge between introductory physics and advanced variational mechanics.
Page Count:
267
Publication Date:
2017-01-01
Publisher:
Oxford University Press
ISBN-10:
0191802964
ISBN-13:
9780191802966
No comments yet. Be the first to share your thoughts!