A continuum theory of dislocation motion

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Original languageEnglish
Title of host publicationProceedings of Second International Conference on Multiscale Materials Modeling
EditorsN.M. Ghoniem
Place of PublicationLos Angeles, California
PublisherUniversity of California Los Angeles, Mechanical and Aerospace Engineering Department
Pages210-212
ISBN (Print)0-9762064-1-2
Publication statusPublished - 2004

ASJC Scopus subject areas

  • Materials Science(all)

Cite this

Hochrainer, T. (2004). A continuum theory of dislocation motion. In N. M. Ghoniem (Ed.), Proceedings of Second International Conference on Multiscale Materials Modeling (pp. 210-212). Los Angeles, California: University of California Los Angeles, Mechanical and Aerospace Engineering Department.

A continuum theory of dislocation motion. / Hochrainer, Thomas.

Proceedings of Second International Conference on Multiscale Materials Modeling. ed. / N.M. Ghoniem. Los Angeles, California : University of California Los Angeles, Mechanical and Aerospace Engineering Department, 2004. p. 210-212.

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Hochrainer, T 2004, A continuum theory of dislocation motion. in NM Ghoniem (ed.), Proceedings of Second International Conference on Multiscale Materials Modeling. University of California Los Angeles, Mechanical and Aerospace Engineering Department, Los Angeles, California, pp. 210-212.
Hochrainer T. A continuum theory of dislocation motion. In Ghoniem NM, editor, Proceedings of Second International Conference on Multiscale Materials Modeling. Los Angeles, California: University of California Los Angeles, Mechanical and Aerospace Engineering Department. 2004. p. 210-212
Hochrainer, Thomas. / A continuum theory of dislocation motion. Proceedings of Second International Conference on Multiscale Materials Modeling. editor / N.M. Ghoniem. Los Angeles, California : University of California Los Angeles, Mechanical and Aerospace Engineering Department, 2004. pp. 210-212
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