Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction

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Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction. / Gimperlein, Heiko; Maischak, Matthias; Schrohe, Elmar; Stephan, Ernst P.

I: Numerische Mathematik, Bind 117, Nr. 2, 02.2011, s. 307-332.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Gimperlein, H, Maischak, M, Schrohe, E & Stephan, EP 2011, 'Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction', Numerische Mathematik, bind 117, nr. 2, s. 307-332.

APA

Gimperlein, H., Maischak, M., Schrohe, E., & Stephan, E. P. (2011). Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction. Numerische Mathematik, 117(2), 307-332.

Vancouver

Gimperlein H, Maischak M, Schrohe E, Stephan EP. Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction. Numerische Mathematik. 2011 feb.;117(2):307-332.

Author

Gimperlein, Heiko ; Maischak, Matthias ; Schrohe, Elmar ; Stephan, Ernst P. / Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction. I: Numerische Mathematik. 2011 ; Bind 117, Nr. 2. s. 307-332.

Bibtex

@article{96ddc61d6adb45498fcbb6f87266b79d,
title = "Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction",
author = "Heiko Gimperlein and Matthias Maischak and Elmar Schrohe and Stephan, {Ernst P.}",
year = "2011",
month = feb,
language = "English",
volume = "117",
pages = "307--332",
journal = "Numerische Mathematik",
issn = "0029-599X",
publisher = "Springer",
number = "2",

}

RIS

TY - JOUR

T1 - Adaptive FE–BE coupling for strongly nonlinear transmission problems with Coulomb friction

AU - Gimperlein, Heiko

AU - Maischak, Matthias

AU - Schrohe, Elmar

AU - Stephan, Ernst P.

PY - 2011/2

Y1 - 2011/2

M3 - Journal article

VL - 117

SP - 307

EP - 332

JO - Numerische Mathematik

JF - Numerische Mathematik

SN - 0029-599X

IS - 2

ER -

ID: 32432612