[1] |
Grażyna Kałuża, Ewa Majchrzak, Łukasz Turchan, 1D generalized dual-phase lag equation. Sensitivity analysis with respect to the porosity, Journal of Applied Mathematics and Computational Mechanics, 15(1), 2016, pages 49-58.
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[2] |
Ewa Majchrzak, Grażyna Kałuża, Heat flux formulation for 1D dual-phase lag equation, Journal of Applied Mathematics and Computational Mechanics, 14(1), 2015, pages 71-78.
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[3] |
Grażyna Kałuża, The numerical solution of the transient heat conduction problem using the lattice Boltzmann method, Scientific Research of the Institute of Mathematics and Computer Science, 11(1), 2012, pages 23-30.
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[4] |
Grażyna Kałuża, Ewa Ładyga, Application of BEM for numerical solution of thermal wave model of bioheat transfer, Scientific Research of the Institute of Mathematics and Computer Science, 10(1), 2011, pages 83-91.
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[5] |
Grażyna Kałuża, Ewa Ładyga, Numerical realization of boundary element method for 1D Fourier-Kirchhoff type equation, Scientific Research of the Institute of Mathematics and Computer Science, 9(1), 2010, pages 45-52.
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[6] |
Grażyna Kałuża, Application of the BEM using discretization in time for numerical solution of 3D parabolic equation, Scientific Research of the Institute of Mathematics and Computer Science, 9(2), 2010, pages 83-90.
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[7] |
Ewa Majchrzak, Mirosław Dziewoński, Grażyna Kałuża, Application of the boundary element method coupled with the artificial heat source procedure for numerical modelling of freezing process, Scientific Research of the Institute of Mathematics and Computer Science, 8(1), 2009, pages 105-112.
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[8] |
Ewa Majchrzak, Grażyna Kałuża, Jolanta Poteralska, Application of the DRBEM for numerical solution of Cattaneo-Vernotte bioheat transfer equation, Scientific Research of the Institute of Mathematics and Computer Science, 7(1), 2008, pages 111-120.
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[9] |
Grażyna Kałuża, Ewa Majchrzak, 3D thermal wave model of bioheat transfer - solution by means of finite difference method, Scientific Research of the Institute of Mathematics and Computer Science, 6(1), 2007, pages 91-98.
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[10] |
Ewa Majchrzak, Mirosław Dziewoński, Grażyna Kałuża, Identification of latent heat of biological tissue subjected to the freezing, Scientific Research of the Institute of Mathematics and Computer Science, 5(1), 2006, pages 106-113.
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[11] |
Ewa Majchrzak, Grażyna Kałuża, Shape sensitivity analysis of temperature distribution in heating tissue, Scientific Research of the Institute of Mathematics and Computer Science, 4(1), 2005, pages 157-164.
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[12] |
Ewa Majchrzak, Grażyna Kałuża, Marek Paruch, Sensitivity analysis of temperature field with respect to the radius of internal hole, Scientific Research of the Institute of Mathematics and Computer Science, 4(1), 2005, pages 165-172.
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[13] |
Ewa Majchrzak, Grażyna Kałuża, Modelling of temperature distribution in heating tissue with regard to the shape sensitivity analysis, Scientific Research of the Institute of Mathematics and Computer Science, 3(1), 2004, pages 121-126.
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[14] |
Ewa Majchrzak, Grażyna Kałuża, Shape sensitivity analysis in nonlinear transient heat transfer, Scientific Research of the Institute of Mathematics and Computer Science, 2(1), 2003, pages 87-92.
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[15] |
Ewa Majchrzak, Joanna Drozdek, Grażyna Kałuża, Application of the multiple reciprocity BEM for numerical solution of bioheat transfer equation, Scientific Research of the Institute of Mathematics and Computer Science, 1(1), 2002, pages 113-124.
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