1. * Jan Valdman, L. Marcinkowski: Modeling and Simulation in Engineering : Selected Problems. IntechOpen, London 2020. Download |
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1. * H. N. Mallesham, K. Porwal, Jan Valdman, S. K. Acharya: Vectorized implementation of primal hybrid FEM in MATLAB. Computers & Mathematics With Applications 180:1 (2025), 144-165. Elsevier. Download |
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2. * J. Bevan, Martin Kružík, Jan Valdman: Hadamard’s inequality in the mean. Nonlinear Analysis: Theory, Methods & Applications 243. Elsevier. Download |
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3. * R. Lehnert, Jan Valdman, H. Zidkova: METHODOLOGY OF ROTATION OF GENERAL SURFACES. MM Science Journal 1 (2024), 7829-7838. MM publishing. Download |
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4. * P. Dondl, M. Jesenko, Martin Kružík, Jan Valdman: Linearization and computation for large-strain visco-elasticity. Mathematics in Engineering 5:2 (2023), 1-15. Download |
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5. * H. Gfrerer, M. Mandlmayr, Jiří Outrata, Jan Valdman: On the SCD semismooth* Newton method for generalized equations with application to a class of static contact problems with Coulomb friction. Computational Optimization and Applications 86:3 (2023), 1159-1191. Springer. Download |
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6. * Stefan Krömer, Jan Valdman: Surface penalization of self-interpenetration in linear and nonlinear elasticity. Applied Mathematical Modelling 122:1 (2023), 641-664. Elsevier. Download |
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7. * A. Moskovka, Jan Valdman: Fast MATLAB evaluation of nonlinear energies using FEM in 2D and 3D: Nodal elements. Applied Mathematics and Computation 424. Elsevier. Download |
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8. * D. Drozdenko, M. Knapek, Martin Kružík, K. Máthis, K. Švadlenka, Jan Valdman: Elastoplastic Deformations of Layered Structures. Milan Journal of Mathematics 90:2 (2022), 691-706. Download |
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9. * Miroslav Frost, Jan Valdman: Vectorized MATLAB Implementation of the Incremental Minimization Principle for Rate-Independent Dissipative Solids Using FEM: A Constitutive Model of Shape Memory Alloys. Mathematics 10. MDPI. Download |
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10. * H. Gfrerer, Jiří Outrata, Jan Valdman: On the Application of the SCD Semismooth* Newton Method to Variational Inequalities of the Second Kind. Set-Valued and Variational Analysis 30:4 (2022), 1453-1484. Springer. Download |
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11. * M. Friedrich, Martin Kružík, Jan Valdman: Numerical approximation of von Kármán viscoelastic plates. Discrete and Continuous Dynamical systems - Series S 14:1 (2021), 299-319. AIMS Press. Download |
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12. * Jiří Outrata, Jan Valdman: On computation of optimal strategies in oligopolistic markets respecting the cost of change. Mathematical Methods of Operations Research 92:3 (2020), 489-509. Springer. Download |
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13. * D. Pauly, Jan Valdman: Poincaré-Friedrichs type constants for operators involving grad, curl, and div: Theory and numerical experiments. Computers & Mathematics With Applications 79:11 (2020), 3027-3067. Elsevier. Download |
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14. * Miroslav Frost, Martin Kružík, Jan Valdman: Interfacial polyconvex energy-enhanced evolutionary model for shape memory alloys. Mathematics and Mechanics of Solids 24:8 (2019), 2619-2635. Sage. Download |
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15. * J. R. Li, V. D. Nguyen, T. N. Tran, Jan Valdman, C. B. Trang, K. V. Nguyen, D. T. S. Vu, H. A. Tran, H. T. A. Tran, T. M. P. Nguyen: SpinDoctor: A MATLAB toolbox for diffusion MRI simulation. Neuroimage 202. Elsevier. Download |
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16. * Stefan Krömer, Jan Valdman: Global injectivity in second-gradient Nonlinear Elasticity and its approximation with penalty terms. Mathematics and Mechanics of Solids 24:11 (2019), 3644-3673. Sage. Download |
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17. * Martin Čermák, Stanislav Sysala, Jan Valdman: Efficient and flexible MATLAB implementation of 2D and 3D elastoplastic problems. Applied Mathematics and Computation 355, 595-614. Elsevier. Download |
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18. * S. Repin, Jan Valdman: Error identities for variational problems with obstacles. ZAMM-Zeitschrift fur Angewandte Mathematik und Mechanik 98:4 (2018), 635-658. Wiley. Download |
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19. * Martin Kružík, Jan Valdman: Computational modeling of magnetic hysteresis with thermal effects. Mathematics and Computers in Simulation 145:1 (2018), 90-105. Elsevier. Download |
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20. * Tomáš Roubíček, Jan Valdman: Stress-driven solution to rate-independent elasto-plasticity with damage at small strains and its computer implementation. Mathematics and Mechanics of Solids 22:6 (2017), 1267-1287. Sage. Download |
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21. * F. Bozorgnia, Jan Valdman: A FEM approximation of a two-phase obstacle problem and its a posteriori error estimate. Computers & Mathematics With Applications 73:3 (2017), 419-432. Elsevier. Download |
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22. * Tomáš Roubíček, Jan Valdman: Stress-driven solution to rate-independent elasto-plasticity with damage at small strains and its computer implementation. Mathematics and Mechanics of Solids 22:6 (2017), 1267-1287. Sage. Download |
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23. * Tomáš Roubíček, Jan Valdman: Perfect plasticity with damage and healing at small strains, its modeling, analysis, and computer implementation. Siam Journal on Applied Mathematics 76:1 (2016), 314-340. SIAM Society for Industrial and Applied Mathematics. Download |
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24. * L. Marcinkowski, T. Rahman, A. Loneland, Jan Valdman: Additive Schwarz preconditioner for the finite volume element discretization of symmetric elliptic problems. Bit 56:3 (2016), 967-993. Springer. Download |
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25. * S. Repin, Jan Valdman: A posteriori error estimates for two-phase obstacle problem. Journal of Mathematical Sciences 107:2 (2015), 324-335. Download |
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26. * I. Anjam, Jan Valdman: Fast MATLAB assembly of FEM matrices in 2D and 3D: Edge elements. Applied Mathematics and Computation 267:1 (2015), 252-263. Elsevier. Download |
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27. * P. Harasim, Jan Valdman: Verification of functional a posteriori error estimates for obstacle problem in 2D. Kybernetika 50:6 (2014), 978-1002. Ústav teorie informace a automatizace AV ČR, v. v. i.. Download |
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28. * M. Čermák, T. Kozubek, Stanislav Sysala, Jan Valdman: A TFETI domain decomposition solver for elastoplastic problems. Applied Mathematics and Computation 231:1 (2014), 634-653. Elsevier. Download |
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29. * P. Harasim, Jan Valdman: Verification of functional a posteriori error estimates for obstacle problem in 1D. Kybernetika 49:5 (2013), 738-754. Ústav teorie informace a automatizace AV ČR, v. v. i.. Download |
1. * Miroslav Frost, A. Moskovka, Jan Valdman: Minimization of energy functionals via FEM: Implementation of hp-FEM. Large-Scale Scientific Computations, 307-315. Springer Nature Switzerland AG, Cham 2024. Download |
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2. * Miroslav Frost, Alexej Moskovka, Petr Sedlák, Jan Valdman: Numerical implementation of incremental minimization principle for materials with multiple rate-independent dissipative mechanisms. Computational mechanics 2023. Proceedings of computational mechanics 2023, 52-54. University of West Bohemia, Plzeň 2023. Download |
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3. * Alexej Moskovka, Miroslav Frost, Jan Valdman: Numerical minimization of energy functionals in continuum mechanics using hp-FEM in MATLAB. Computational mechanics 2023. Proceedings of computational mechanics 2023, 130-132. University of West Bohemia, Plzeň 2023. Download |
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4. * A. Moskovka, Jan Valdman: MATLAB Implementation of Hp Finite Elements on Rectangles Using Hierarchical Basis Functions. Parallel Processing and Applied Mathematics : 14th International Conference, PPAM 2022, 287-299. Springer, Cham 2023. Download |
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5. * A. Moskovka, Jan Valdman, M. Vohnoutová: On Minimization of Nonlinear Energies Using FEM in MATLAB. Parallel Processing and Applied Mathematics : 14th International Conference, PPAM 2022, 331-342. Springer, Cham 2023. Download |
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6. * Ctirad Matonoha, A. Moskovka, Jan Valdman: Minimization of p-Laplacian via the Finite Element Method in MATLAB. Large-Scale Scientific Computing, 533-540. Springer, Cham 2022. Download |
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7. * H. Gfrerer, Jiří Outrata, Jan Valdman: On the Solution of Contact Problems with Tresca Friction by the Semismooth* Newton Method. Large-Scale Scientific Computing, 515-523. Springer, Cham 2022. Download |
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8. * Jan Valdman: MATLAB Implementation of C1 Finite Elements: Bogner-Fox-Schmit Rectangle. Parallel Processing and Applied Mathematics : 13th International Conference, PPAM 2019, 256-266. Springer, Cham 2020. Download |
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9. * Martin Čermák, Stanislav Sysala, Jan Valdman: On vectorized MATLAB implementation of elastoplastic problems. AIP Conference Proceedings, Volume 2293, Issue 1 : INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS ICNAAM 2019. AIP Publishing, Melville 2020. Download |
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10. * L. Marcinkowski, Jan Valdman: MATLAB Implementation of Element-Based Solvers. Large-Scale Scientific Computing : 12th International Conference, LSSC 2019, 601-609. Springer, Cham 2020. Download |
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11. * S. Repin, Jan Valdman: Verifications of Primal Energy Identities for Variational Problems with Obstacles. Large-Scale Scientific Computing : 11th International Conference, LSSC 2017, 175-182. Springer, Cham 2018. Download |
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12. * J. Kunovský, V. Šátek, Jan Valdman, V. Valenta: Construction of P-1 Gradient from P-0 Gradient by Averaging. PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON NUMERICAL ANALYSIS AND APPLIED MATHEMATICS 2014 (ICNAAM-2014). AIP, Rhodos 2015. Download |
1. * Miroslav Frost, Petr Sedlák, Hanuš Seiner, Jan Valdman, Alexej Moskovka, Petr Šittner: Constitutive Model for NiTi Polycrystalline Alloys Undergoing Transformation and Plastic Deformation Processes. SMST 2024: Extended Abstracts from the International Conference on Shape Memory and Superelastic Technologies, 82-83. ASM International 2024. Download |
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2. * Ctirad Matonoha, A. Moskovka, Jan Valdman: Minimization of Energy Functionals via the Finite Element Method in MATLAB. Large-Scale Scientific Computations LSSC’21. Scientific Program, Abstracts, List of Participants, 61-62. Institute of Information and Communication Technologies, Bulgarian Academy of Sciences, Sozopol 2021. Download |