December  2017, 10(6): i-iii. doi: 10.3934/dcdss.201706i

Tomáš Roubíček celebrates his sixtieth anniversary

1. 

Institute of Mathematics, University of Würzburg, Emil-Fischer-Straẞe 40,97074 Würzburg, Germany

2. 

Institute of Information Theory and Automation, Czech Academy of Sciences, Pod Vodárenskou věží 4,182 08, Praha 8, Czech Republic

Published  June 2017

Citation: Barbora Benešová, Martin Kružík. Tomáš Roubíček celebrates his sixtieth anniversary. Discrete and Continuous Dynamical Systems - S, 2017, 10 (6) : i-iii. doi: 10.3934/dcdss.201706i
References:
[1]

S. Bartels and T. Roubíček, Numerical approaches to thermally coupled perfect plasticity, Numer. Meth. for Partial Diff. Equations, 29 (2013), 1837-1863. 

[2]

A. Mielke and T. Roubíček, A rate-independent model for inelastic behavior of shape-memory alloys, Multiscale Modeling and Simulation, 1 (2003), 571-597.  doi: 10.1137/S1540345903422860.

[3]

A. MielkeT. Roubíček and M. Thomas, From damage to delamination in nonlinearly elastic materials at small strains, J. Elasticity, 109 (2012), 235-273.  doi: 10.1007/s10659-012-9379-0.

[4]

A. Mielke and T. Roubíček, Rate-Independent Systems -Theory and Application, Springer, New York, 2015. doi: 10.1007/978-1-4939-2706-7.

[5]

A. MielkeT. Roubíček and U. Stefanelli, Γ-limits and relaxations for rate-independent evolutionary problems, Calc. Var. PDE, 31 (2008), 387-416.  doi: 10.1007/s00526-007-0119-4.

[6]

C. G. PanagiotopoulosV. Mantič and T. Roubíček, BEM implementation of energetic solutions for quasistatic delamination problems, Computational Mechanics, 51 (2013), 505-521.  doi: 10.1007/s00466-012-0826-3.

[7]

P. Podio GuidugliT. Roubíček and G. Tomassetti, A thermodynamically-consistent theory of the ferro/paramagnetic transition, Archive Rat. Mech. Anal., 198 (2010), 1057-1094.  doi: 10.1007/s00205-010-0349-z.

[8]

K. R. Rajagopal and T. Roubíček, On the effect of dissipation in shape-memory alloys, Nonlinear Anal. Real World Appl., 4 (2003), 581-597.  doi: 10.1016/S1468-1218(02)00079-2.

[9]

T. Roubíček, Relaxation in Optimization Theory and Variational Calculus, Walther de Gruyter, Berlin, 1997.

[10]

T. Roubíček, Thermodynamics of rate-independent processes in viscous solids at small strains, SIAM J. Math. Anal., 42 (2010), 256-297.  doi: 10.1137/080729992.

[11]

T. Roubíček, Nonlinear Partial Differential Equations with Applications, 2nd edition, Birkhäuser, Basel, 2013.

[12]

T. Roubíček, Geophysical models of heat and fluid flow in damageable poro-elastic continua, Cont. Mech. Thermodyn., 29 (2017), 625-646.  doi: 10.1007/s00161-016-0547-5.

[13]

R. VodičkaV. Mantič and T. Roubíček, Energetic versus maximally-dissipative local solutions of a quasi-static rate-independent mixed-mode delamination model, Meccanica, 49 (2014), 2933-2963.  doi: 10.1007/s11012-014-0045-4.

show all references

References:
[1]

S. Bartels and T. Roubíček, Numerical approaches to thermally coupled perfect plasticity, Numer. Meth. for Partial Diff. Equations, 29 (2013), 1837-1863. 

[2]

A. Mielke and T. Roubíček, A rate-independent model for inelastic behavior of shape-memory alloys, Multiscale Modeling and Simulation, 1 (2003), 571-597.  doi: 10.1137/S1540345903422860.

[3]

A. MielkeT. Roubíček and M. Thomas, From damage to delamination in nonlinearly elastic materials at small strains, J. Elasticity, 109 (2012), 235-273.  doi: 10.1007/s10659-012-9379-0.

[4]

A. Mielke and T. Roubíček, Rate-Independent Systems -Theory and Application, Springer, New York, 2015. doi: 10.1007/978-1-4939-2706-7.

[5]

A. MielkeT. Roubíček and U. Stefanelli, Γ-limits and relaxations for rate-independent evolutionary problems, Calc. Var. PDE, 31 (2008), 387-416.  doi: 10.1007/s00526-007-0119-4.

[6]

C. G. PanagiotopoulosV. Mantič and T. Roubíček, BEM implementation of energetic solutions for quasistatic delamination problems, Computational Mechanics, 51 (2013), 505-521.  doi: 10.1007/s00466-012-0826-3.

[7]

P. Podio GuidugliT. Roubíček and G. Tomassetti, A thermodynamically-consistent theory of the ferro/paramagnetic transition, Archive Rat. Mech. Anal., 198 (2010), 1057-1094.  doi: 10.1007/s00205-010-0349-z.

[8]

K. R. Rajagopal and T. Roubíček, On the effect of dissipation in shape-memory alloys, Nonlinear Anal. Real World Appl., 4 (2003), 581-597.  doi: 10.1016/S1468-1218(02)00079-2.

[9]

T. Roubíček, Relaxation in Optimization Theory and Variational Calculus, Walther de Gruyter, Berlin, 1997.

[10]

T. Roubíček, Thermodynamics of rate-independent processes in viscous solids at small strains, SIAM J. Math. Anal., 42 (2010), 256-297.  doi: 10.1137/080729992.

[11]

T. Roubíček, Nonlinear Partial Differential Equations with Applications, 2nd edition, Birkhäuser, Basel, 2013.

[12]

T. Roubíček, Geophysical models of heat and fluid flow in damageable poro-elastic continua, Cont. Mech. Thermodyn., 29 (2017), 625-646.  doi: 10.1007/s00161-016-0547-5.

[13]

R. VodičkaV. Mantič and T. Roubíček, Energetic versus maximally-dissipative local solutions of a quasi-static rate-independent mixed-mode delamination model, Meccanica, 49 (2014), 2933-2963.  doi: 10.1007/s11012-014-0045-4.

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