Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems
The few-body problem (FBP), the essence of which is the Schrödinger equation is not solvable for more than two interacting particles. Atomic collisions are ideally suited to study the FBP because the underlying force is essentially understood and because simple systems can be studied for which kinematically complete experiments are feasible. The book would cover various experimental and theoretical approaches in atomic collision research.

1131805594
Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems
The few-body problem (FBP), the essence of which is the Schrödinger equation is not solvable for more than two interacting particles. Atomic collisions are ideally suited to study the FBP because the underlying force is essentially understood and because simple systems can be studied for which kinematically complete experiments are feasible. The book would cover various experimental and theoretical approaches in atomic collision research.

179.99 In Stock
Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems

Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems

Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems

Ion-Atom Collisions: The Few-Body Problem in Dynamic Systems

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$179.99 
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Overview

The few-body problem (FBP), the essence of which is the Schrödinger equation is not solvable for more than two interacting particles. Atomic collisions are ideally suited to study the FBP because the underlying force is essentially understood and because simple systems can be studied for which kinematically complete experiments are feasible. The book would cover various experimental and theoretical approaches in atomic collision research.


Product Details

ISBN-13: 9783110579420
Publisher: De Gruyter
Publication date: 10/21/2019
Pages: 254
Product dimensions: 6.69(w) x 9.45(h) x (d)
Age Range: 18 Years

About the Author

Michael Schulz, Missouri University of Science & Technology, Missouri, USA.

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