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COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014)

COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014)

COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014)
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COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014) Hardback - 2014

by KAVEH

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USA Edition . New. Brand New! Fast Delivery US Edition and ship within 24-48 hours. Deliver by FedEx and Dhl, & Aramex, UPS, & USPS and we do accept APO and PO BOX Addresses. Order can be delivered worldwide within 6-10 days and we do have flat rate for up to 2LB. Extra shipping charges will be requested if the Book weight is more than 5 LB. This Item May be shipped from India, United states & United Kingdom. Depending on your location and availability.
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Details

  • Title COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014)
  • Author KAVEH
  • Binding Hardback
  • Edition USA Edition
  • Condition New
  • Pages 432
  • Volumes 1
  • Language ENG
  • Publisher Springer
  • Publication date 2014-01-07
  • Illustrated Yes
  • Features Illustrated
  • Bookseller's Inventory # CBS 9783319029634
  • ISBN 9783319029634 / 3319029630
  • Weight 1.77 lbs (0.80 kg)
  • Dimensions 9.21 x 6.14 x 1 in (23.39 x 15.60 x 2.54 cm)
  • Themes
    • Aspects (Academic): Science/Technology Aspects
  • Category Science
  • Dewey Decimal Code 004
  • Quantity available 2

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Reader reviews for COMPUTATIONAL STRUCTURAL ANALYSIS AND FINITE ELEMENT METHODS (HB 2014)

From the rear cover

Graph theory gained initial prominence in science and engineering through its strong links with matrix algebra and computer science. Moreover, the structure of the mathematics is well suited to that of engineering problems in analysis and design. The methods of analysis in this book employ matrix algebra, graph theory and meta-heuristic algorithms, which are ideally suited for modern computational mechanics. Efficient methods are presented that lead to highly sparse and banded structural matrices. The main features of the book include: application of graph theory for efficient analysis; extension of the force method to finite element analysis; application of meta-heuristic algorithms to ordering and decomposition (sparse matrix technology); efficient use of symmetry and regularity in the force method; and simultaneous analysis and design of structures.

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