Design Theory: Volume 1

Author:   Thomas Beth (Universität Fridericiana Karlsruhe, Germany) ,  Deiter Jungnickel (Universität Augsburg) ,  Hanfried Lenz (Freie Universität Berlin)
Publisher:   Cambridge University Press
Edition:   2nd Revised edition
Volume:   69
ISBN:  

9780511549533


Publication Date:   26 October 2011
Format:   Undefined
Availability:   In stock   Availability explained
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Design Theory: Volume 1


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Overview

This is the first volume of the second edition of the standard text on design theory. Since the first edition there has been extensive development of the theory and this book has been thoroughly rewritten and extended during that time. In particular the growing importance of discrete mathematics to many parts of engineering and science have made designs a useful tool for applications. It is suitable for advanced courses and as a reference work, not only for researchers in discrete mathematics or finite algebra, but also for those working in computer and communications engineering and other mathematically oriented disciplines. Exercises are included throughout, and the book concludes with an extensive and updated bibliography of well over 1800 items.

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Author:   Thomas Beth (Universität Fridericiana Karlsruhe, Germany) ,  Deiter Jungnickel (Universität Augsburg) ,  Hanfried Lenz (Freie Universität Berlin)
Publisher:   Cambridge University Press
Imprint:   Cambridge University Press (Virtual Publishing)
Edition:   2nd Revised edition
Volume:   69
ISBN:  

9780511549533


ISBN 10:   0511549539
Publication Date:   26 October 2011
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Undefined
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

1. Examples and basic definitions; 2. Combinatorial analysis of designs; 3. Groups and designs; 4. Witt designs and Mathieu groups; 5. Highly transitive groups; 6. Difference sets and regular symmetric designs; 7. Difference families; 8. Further direct constructions.

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