Peter M DeWitt; Steven W Anderson; Mark D Barnes; Rafranz Davis; Laura Fleming; Thomas C Murray; Starr Sackstein; Sanfeli Sage Publications (2015) Pehmeäkantinen kirja
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Peter M DeWitt; Mark D Barnes; Tom Whitby; John T Spencer; Steven W Anderson; Susan M Bearden; Pernille S Ripp; R Dillon Sage Publications (2016) Pehmeäkantinen kirja
John Gottberg Anderson; Peter (TEXAS A & M UNIVERSITY TEXAS A & M UNIVERSITY-to TEXAS A & M UNIVERSITY-to TEXAS A & M UNI Rose Rowman & Littlefield (1998) Pehmeäkantinen kirja
David Goldfield; Carl Abbott; Virginia DeJohn Anderson; Jo Ann E. Argersinger; Peter H. Argersinger; William M. Barney; Robert M (2009) Pehmeäkantinen kirja
David Goldfield; Carl Abbott; Virginia DeJohn Anderson; Jo Ann E. Argersinger; Peter H. Argersinger; William M. Barney; Robert M (2009) Kovakantinen kirja
David Goldfield; Carl Abbott; Virginia DeJohn Anderson; Jo Ann E. Argersinger; Peter H. Argersinger; William M. Barney; Robert M (2009) Pehmeäkantinen kirja
David Goldfield; Virginia DeJohn Anderson; Robert M. Weir; Carl Abbott; Jo Ann E. Argersinger; Peter H. Argersinger; William M. (2008) Pehmeäkantinen kirja
David Goldfield; Virginia DeJohn Anderson; Robert M. Weir; Carl Abbott; Jo Ann E. Argersinger; Peter H. Argersinger; William M. (2008) Pehmeäkantinen kirja
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Cambridge University Press Sivumäärä: 718 sivua Asu: Kovakantinen kirja Painos: 3rd Revised edition Julkaisuvuosi: 2017, 16.01.2017 (lisätietoa) Kieli: Englanti
Theory of Dislocations provides unparalleled coverage of the fundamentals of dislocation theory, with applications to specific metal and ionic crystals. Rather than citing final results, step-by-step developments are provided to offer an in-depth understanding of the topic. The text provides the solid theoretical foundation for researchers to develop modeling and computational approaches to discrete dislocation plasticity, yet it covers important experimental observations related to the effects of crystal structure, temperature, nucleation mechanisms, and specific systems. This new edition incorporates significant advances in theory, experimental observations of dislocations, and new findings from first principles and atomistic treatments of dislocations. Also included are new discussions on thin films, deformation in nanostructured systems, and connection to crystal plasticity and strain gradient continuum formulations. Several new computer programs and worked problems allow the reader to understand, visualize, and implement dislocation theory concepts.