000 02268nam a2200349 i 4500
001 CR9780511611469
003 UkCbUP
005 20230516164919.0
006 m|||||o||d||||||||
007 cr||||||||||||
008 090910s2008||||enk o ||1 0|eng|d
020 _a9780511611469 (ebook)
020 _z9780521885690 (hardback)
020 _z9780521174381 (paperback)
040 _aUkCbUP
_beng
_erda
_cUkCbUP
050 0 0 _aQA808.2
_b.S46 2008
082 0 0 _a531
_222
100 1 _aShabana, Ahmed A.,
_d1951-
_eauthor.
_96923
245 1 0 _aComputational continuum mechanics /
_cAhmed A. Shabana.
264 1 _aCambridge :
_bCambridge University Press,
_c2008.
300 _a1 online resource (xii, 335 pages) :
_bdigital, PDF file(s).
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
500 _aTitle from publisher's bibliographic system (viewed on 05 Oct 2015).
520 _aThis book presents the nonlinear theory of continuum mechanics and demonstrates its use in developing nonlinear computer formulations for large displacement dynamic analysis. Basic concepts used in continuum mechanics are presented and used to develop nonlinear general finite element formulations that can be effectively used in large displacement analysis. The book considers two nonlinear finite element dynamic formulations: a general large deformation finite element formulation and a formulation that can efficiently solve small deformation problems that characterize very stiff structures. The book presents material clearly and systematically, assuming the reader has only basic knowledge in matrix and vector algebra and dynamics. The book is designed for use by advanced undergraduates and first-year graduate students. It is also a reference for researchers, practising engineers, and scientists working in computational mechanics, bio-mechanics, computational biology, multibody system dynamics, and other fields of science and engineering using the general continuum mechanics theory.
650 0 _aContinuum mechanics.
_93467
650 0 _aEngineering mathematics.
_93254
776 0 8 _iPrint version:
_z9780521885690
856 4 0 _uhttps://doi.org/10.1017/CBO9780511611469
942 _cEBK
999 _c82263
_d82263