9780750304955-0750304952-Basic Vacuum Technology, 2nd edition

Basic Vacuum Technology, 2nd edition

ISBN-13: 9780750304955
ISBN-10: 0750304952
Edition: 2
Author: A Chambers
Publication date: 1998
Publisher: CRC Press
Format: Hardcover 189 pages
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Book details

ISBN-13: 9780750304955
ISBN-10: 0750304952
Edition: 2
Author: A Chambers
Publication date: 1998
Publisher: CRC Press
Format: Hardcover 189 pages

Summary

Basic Vacuum Technology, 2nd edition (ISBN-13: 9780750304955 and ISBN-10: 0750304952), written by authors A Chambers, was published by CRC Press in 1998. With an overall rating of 4.0 stars, it's a notable title among other Civil & Environmental (Engineering, Mechanical, Physics) books. You can easily purchase or rent Basic Vacuum Technology, 2nd edition (Hardcover) from BooksRun, along with many other new and used Civil & Environmental books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $1.12.

Description

Vacuum technology is widely used in many manufacturing and developmental processes and its applications grow in scope and sophistication. It is an inter-disciplinary subject, embracing aspects of mechanical, electrical and chemical engineering, chemistry, and materials science while having a broad foundation in physics. In spite of its technological importance, and perhaps because of its cross-disciplinary nature, substantial teaching and training is not widely available. Basic Vacuum Technology aims to give readers a firm foundation of fundamental knowledge about the subject and the ability to apply it.

This book is an introductory text on how to use vacuum techniques. It provides a good grounding in the basic scientific principles and concepts that underlie the production and measurement of vacua. The authors describe how these are applied in representative low, medium, high, and ultra-high vacuum systems and explain the most important practical aspects of the operation of a large variety of pumps, components, and measuring instrumentation. The book introduces numerical methods for analysis and prediction of the behavior of vacuum systems in terms of the properties of their individual elements and enables readers to recognize and resolve problems with malfunctioning systems.

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