[1] |
Sylwia Lara-Dziembek, Grzegorz Biernat, Edyta Pawlak, Some remarks to the Jacobian Conjecture, Journal of Applied Mathematics and Computational Mechanics, 16(1), 2017, pages 87-96.
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[2] |
Edyta Pawlak, Sylwia Lara-Dziembek, Grzegorz Biernat, Magdalena Woźniakowska, An example of non-Keller mapping, Journal of Applied Mathematics and Computational Mechanics, 15(1), 2016, pages 115-121.
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[3] |
Sylwia Lara-Dziembek, Grzegorz Biernat, Edyta Pawlak, Magdalena Woźniakowska, A second example of non-Keller mapping, Journal of Applied Mathematics and Computational Mechanics, 15(2), 2016, pages 65-70.
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[4] |
Sylwia Lara-Dziembek, Grzegorz Biernat, Edyta Pawlak, The Jacobians of non-maximal degree, Journal of Applied Mathematics and Computational Mechanics, 15(4), 2016, pages 99-104.
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[5] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, Symmetric polynomials in the 3D Fourier equation, Journal of Applied Mathematics and Computational Mechanics, 14(1), 2015, pages 5-12.
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[6] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The determinants of the block band matrices based on the n-dimensional Fourier equation, Journal of Applied Mathematics and Computational Mechanics, 14(3), 2015, pages 5-15.
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[7] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The 3D Fourier equation with the Robin's boundary condition using the finite difference method, Journal of Applied Mathematics and Computational Mechanics, 13(1), 2014, pages 5-11.
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[8] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The n-dimensional Fourier equation with the Robin's boundary condition using the finite difference method, Journal of Applied Mathematics and Computational Mechanics, 13(3), 2014, pages 13-20.
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[9] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, Symmetric polynomials in the 2D Fourier equation, Journal of Applied Mathematics and Computational Mechanics, 13(4), 2014, pages 5-12.
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[10] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The determinants of the block band matrices based on the n-dimensional Fourier equation. Part 1, Journal of Applied Mathematics and Computational Mechanics, 12(3), 2013, pages 5-13.
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[11] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The determinants of the block band matrices based on the n-dimensional Fourier equation. Part 2, Journal of Applied Mathematics and Computational Mechanics, 12(3), 2013, pages 15-20.
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[12] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The finite difference method in the 2D Fourier equation with Robin's boundary condition, Journal of Applied Mathematics and Computational Mechanics, 12(4), 2013, pages 5-11.
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[13] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The determinants of the three-band block matrices, Scientific Research of the Institute of Mathematics and Computer Science, 11(3), 2012, pages 5-8.
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[14] |
Grzegorz Biernat, Sylwia Lara-Dziembek, Edyta Pawlak, The determinants of the block matrices in the 3D Fourier equation, Scientific Research of the Institute of Mathematics and Computer Science, 11(4), 2012, pages 5-10.
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[15] |
Sylwia Lara-Dziembek, Edyta Pawlak, Identification of boundary heat flux using sequential and global function specification methods and FDM algorithm, Scientific Research of the Institute of Mathematics and Computer Science, 10(1), 2011, pages 139-144.
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[16] |
Bohdan Mochnacki, Sylwia Lara-Dziembek, Weighted residual method as a tool of FDM algorithm construction, Scientific Research of the Institute of Mathematics and Computer Science, 9(1), 2010, pages 147-153.
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[17] |
Sylwia Lara-Dziembek, Jarosław Siedlecki, Curvilinear finite difference method (CFD) approximation of differential operators, Scientific Research of the Institute of Mathematics and Computer Science, 8(1), 2009, pages 97-103.
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[18] |
Sylwia Lara-Dziembek, Edyta Pawlak, Numerical solution of heat diffusion equation using the generalized FDM, Scientific Research of the Institute of Mathematics and Computer Science, 6(1), 2007, pages 117-126.
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[19] |
Andrzej Metelski, Sylwia Lara, Edyta Pawlak, Identification of source function using the numerical methods, Scientific Research of the Institute of Mathematics and Computer Science, 5(1), 2006, pages 148-153.
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[20] |
Romuald Szopa, Sylwia Lara, Sensitivity of linear crystallization model with respect to external parameters, Scientific Research of the Institute of Mathematics and Computer Science, 4(1), 2005, pages 246-254.
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[21] |
Bohdan Mochnacki, Sylwia Lara, Edyta Pawlak, Analysis of segregation process using the broken line model for an infinite cylinder, Scientific Research of the Institute of Mathematics and Computer Science, 3(1), 2004, pages 153-160.
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[22] |
Bohdan Mochnacki, Sylwia Lara, Application of generalized finite difference method in numerical modelling of moving boundary problems, Scientific Research of the Institute of Mathematics and Computer Science, 2(1), 2003, pages 129-143.
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[23] |
Bohdan Mochnacki, Sylwia Lara, Edyta Pawlak, Application of the enthalpy approach in numerical modelling of solidification process, Scientific Research of the Institute of Mathematics and Computer Science, 1(1), 2002, pages 163-176.
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