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{ "item_title" : "The Inverse Variational Problem in Classical Mechanics", "item_author" : [" Jan Lopuszanski "], "item_description" : "This book provides a concise description of the current status of a fascinating scientific problem -- the inverse variational problem in classical mechanics. The essence of this problem is as follows: one is given a set of equations of motion describing a certain classical mechanical system, and the question to be answered is: Do these equations of motion correspond to some Lagrange function as its Euler-Lagrange equations? In general, not for every system of equations of motion does a Lagrange function exist; it can, however, happen that one may modify the given equations of motion in such a way that they yield the same set of solutions as the original ones and they correspond already to a Lagrange function. Moreover, there can even be infinitely many such Lagrange functions, the relations among which are not trivial. The book deals with this scope of problems. No advanced mathematical methods, such as, contemporary differential geometry, are used. The intention is to meet the standard educational level of a broad group of physicists and mathematicians. The book is well suited for use as lecture notes in a university course for physicists.", "item_img_path" : "https://covers1.booksamillion.com/covers/bam/9/81/024/178/981024178X_b.jpg", "price_data" : { "retail_price" : "119.00", "online_price" : "119.00", "our_price" : "119.00", "club_price" : "119.00", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
The Inverse Variational Problem in Classical Mechanics|Jan Lopuszanski

The Inverse Variational Problem in Classical Mechanics

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Overview

This book provides a concise description of the current status of a fascinating scientific problem -- the inverse variational problem in classical mechanics. The essence of this problem is as follows: one is given a set of equations of motion describing a certain classical mechanical system, and the question to be answered is: Do these equations of motion correspond to some Lagrange function as its Euler-Lagrange equations? In general, not for every system of equations of motion does a Lagrange function exist; it can, however, happen that one may modify the given equations of motion in such a way that they yield the same set of solutions as the original ones and they correspond already to a Lagrange function. Moreover, there can even be infinitely many such Lagrange functions, the relations among which are not trivial. The book deals with this scope of problems. No advanced mathematical methods, such as, contemporary differential geometry, are used. The intention is to meet the standard educational level of a broad group of physicists and mathematicians. The book is well suited for use as lecture notes in a university course for physicists.

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Details

  • ISBN-13: 9789810241780
  • ISBN-10: 981024178X
  • Publisher: World Scientific Publishing Company
  • Publish Date: November 1999
  • Dimensions: 8.78 x 6.36 x 0.79 inches
  • Shipping Weight: 1.02 pounds
  • Page Count: 236

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