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Jorge Eduardo Macías-Díaz
Person information
- affiliation: Autonomous University of Aguascalientes, Mexico
- affiliation (PhD 2007): University of New Orleans, LA, USA
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2020 – today
- 2024
- [j100]Angel Eduardo Muñoz Zavala, Jorge Eduardo Macías-Díaz, Daniel Alba-Cuellar, José A. Guerrero-Díaz-de-León:
A Literature Review on Some Trends in Artificial Neural Networks for Modeling and Simulation with Time Series. Algorithms 17(2): 76 (2024) - [j99]Romeo Martínez, Armando Gallegos, Jorge Eduardo Macías-Díaz:
A fractional tumor-growth model and the determination of the power law for different cancers based on data fitting. Appl. Math. Lett. 147: 108840 (2024) - [j98]Mohamed M. Khader, Jorge Eduardo Macías-Díaz, Alejandro Roman-Loera, Khaled M. Saad:
A Note on a Fractional Extension of the Lotka-Volterra Model Using the Rabotnov Exponential Kernel. Axioms 13(1): 71 (2024) - [j97]Rubén Hernández, Antonio Guerrero, Jorge Eduardo Macías-Díaz:
A template-based algorithm by geometric means for the automatic and efficient recognition of music chords. Evol. Intell. 17(1): 467-481 (2024) - [j96]Vanessa Ramírez-Pérez, José A. Guerrero-Díaz-de-León, Jorge Eduardo Macías-Díaz:
On the detection of activity patterns in electromyographic signals via decision trees. Evol. Intell. 17(1): 577-588 (2024) - [j95]Rubén Hernández, Antonio Guerrero-Díaz-de-León, Jorge Eduardo Macías-Díaz:
Artificial neural network-based positioning error modeling and compensation for low-cost encoders of four-wheeled vehicles. Evol. Intell. 17(5): 4295-4302 (2024) - [j94]Jorge Eduardo Macías-Díaz, Adán J. Serna-Reyes, Luis A. Flores-Oropeza:
A stable and convergent finite-difference model which conserves the positivity and the dissipativity of Gibbs' free energy for a nonlinear combustion equation. J. Comput. Appl. Math. 437: 115492 (2024) - 2023
- [j93]Muhammad Bilal Khan, Hatim Ghazi Zaini, Jorge Eduardo Macías-Díaz, Mohamed S. Soliman:
Up and Down h-Pre-Invex Fuzzy-Number Valued Mappings and Some Certain Fuzzy Integral Inequalities. Axioms 12(1): 1 (2023) - [j92]Jorge E. Herrera-Serrano, José A. Guerrero-Díaz-de-León, Iliana E. Medina-Ramírez, Jorge Eduardo Macías-Díaz:
A multiconsistent computational methodology to resolve a diffusive epidemiological system with effects of migration, vaccination and quarantine. Comput. Methods Programs Biomed. 236: 107526 (2023) - [j91]Tassos Bountis, Jorge Eduardo Macías-Díaz:
The Effect of On-Site Potentials on Supratransmission in One-Dimensional Hamiltonian Lattices. Entropy 25(3): 423 (2023) - [j90]Stefania Tomasiello, Jorge Eduardo Macías-Díaz, Joel Alba-Pérez:
An alternative formulation of the differential quadrature method with a neural network perspective. Int. J. Comput. Math. 100(6): 1248-1263 (2023) - [j89]Muhammad Bilal Khan, Jorge Eduardo Macías-Díaz, Saeid Jafari, Abdulwadoud A. Maash, Mohamed S. Soliman:
Pre-Invexity and Fuzzy Fractional Integral Inequalities via Fuzzy Up and Down Relation. Symmetry 15(4): 862 (2023) - [j88]Mohamed M. Khader, Jorge Eduardo Macías-Díaz, Khaled M. Saad, Waleed M. Hamanah:
Vieta-Lucas Polynomials for the Brusselator System with the Rabotnov Fractional-Exponential Kernel Fractional Derivative. Symmetry 15(9): 1619 (2023) - 2022
- [j87]Nauman Ahmed, Jorge Eduardo Macías-Díaz, Ali Raza, Dumitru Baleanu, Muhammad Rafiq, Zafar Iqbal, Muhammad Ovais Ahmad:
Design, Analysis and Comparison of a Nonstandard Computational Method for the Solution of a General Stochastic Fractional Epidemic Model. Axioms 11(1): 10 (2022) - [j86]Jorge Eduardo Macías-Díaz:
Fractional Calculus - Theory and Applications. Axioms 11(2): 43 (2022) - [j85]Muhammad Bilal Khan, Jorge Eduardo Macías-Díaz, Mohamed S. Soliman, Muhammad Aslam Noor:
Some New Integral Inequalities for Generalized Preinvex Functions in Interval-Valued Settings. Axioms 11(11): 622 (2022) - [j84]Nauman Ahmed, Jorge Eduardo Macías-Díaz, Naveed Shahid, Ali Raza, Muhammad Rafiq:
A dynamically consistent computational method to solve numerically a mathematical model of polio propagation with spatial diffusion. Comput. Methods Programs Biomed. 218: 106709 (2022) - [j83]Jorge E. Herrera-Serrano, Jorge Eduardo Macías-Díaz, Iliana E. Medina-Ramírez, José A. Guerrero:
An efficient nonstandard computer method to solve a compartmental epidemiological model for COVID-19 with vaccination and population migration. Comput. Methods Programs Biomed. 221: 106920 (2022) - [j82]Ahmed S. Hendy, Mahmoud A. Zaky, Jorge Eduardo Macías-Díaz:
On the dissipativity of some Caputo time-fractional subdiffusion models in multiple dimensions: Theoretical and numerical investigations. J. Comput. Appl. Math. 400: 113748 (2022) - [j81]Jorge Eduardo Macías-Díaz, Armando Gallegos:
Design and numerical analysis of a logarithmic scheme for nonlinear fractional diffusion-reaction equations. J. Comput. Appl. Math. 404: 113118 (2022) - [j80]Jorge Eduardo Macías-Díaz:
Design and analysis of a dissipative scheme to solve a generalized multi-dimensional Higgs boson equation in the de Sitter space-time. J. Comput. Appl. Math. 404: 113120 (2022) - [j79]Adán J. Serna-Reyes, Jorge Eduardo Macías-Díaz:
Theoretical analysis of a conservative finite-difference scheme to solve a Riesz space-fractional Gross-Pitaevskii system. J. Comput. Appl. Math. 404: 113413 (2022) - [j78]Jorge Eduardo Macías-Díaz, Héctor Vargas-Rodríguez:
Analysis and simulation of numerical schemes for nonlinear hyperbolic predator-prey models with spatial diffusion. J. Comput. Appl. Math. 404: 113636 (2022) - [j77]Jorge Eduardo Macías-Díaz, Romeo Martínez, Qin Sheng:
Two energy-preserving numerical models for a multi-fractional extension of the Klein-Gordon-Zakharov system. J. Comput. Appl. Math. 406: 114023 (2022) - [j76]Romeo Martínez, Jorge Eduardo Macías-Díaz, Qin Sheng:
A nonlinear discrete model for approximating a conservative multi-fractional Zakharov system: Analysis and computational simulations. Math. Comput. Simul. 202: 1-21 (2022) - [j75]Alejandro Roman-Loera, Anurag Veerabathini, Jorge Eduardo Macías-Díaz, Felipe de Jesus Rizo-Diaz:
An Interleaved Segmented Spectrum Analysis: A Measurement Technique for System Frequency Response and Fault Detection. Sensors 22(18): 6757 (2022) - [j74]Muhammad Bilal Khan, Hatim Ghazi Zaini, Jorge Eduardo Macías-Díaz, Savin Treanta, Mohamed S. Soliman:
Some Fuzzy Riemann-Liouville Fractional Integral Inequalities for Preinvex Fuzzy Interval-Valued Functions. Symmetry 14(2): 313 (2022) - [j73]Muhammad Bilal Khan, Hatim Ghazi Zaini, Savin Treanta, Gustavo Santos-García, Jorge Eduardo Macías-Díaz, Mohamed S. Soliman:
Fractional Calculus for Convex Functions in Interval-Valued Settings and Inequalities. Symmetry 14(2): 341 (2022) - [j72]Jorge Eduardo Macías-Díaz, Muhammad Bilal Khan, Hleil Alrweili, Mohamed S. Soliman:
Some Fuzzy Inequalities for Harmonically s-Convex Fuzzy Number Valued Functions in the Second Sense Integral. Symmetry 14(8): 1639 (2022) - [j71]Zafar Iqbal, Jorge Eduardo Macías-Díaz, Nauman Ahmed, Aqsa Javaid, Muhammad Rafiq, Ali Raza:
Analytical and Numerical Boundedness of a Model with Memory Effects for the Spreading of Infectious Diseases. Symmetry 14(12): 2540 (2022) - 2021
- [j70]Jorge Eduardo Macías-Díaz, Ali Raza, Nauman Ahmed, Muhammad Rafiq:
Analysis of a nonstandard computer method to simulate a nonlinear stochastic epidemiological model of coronavirus-like diseases. Comput. Methods Programs Biomed. 204: 106054 (2021) - [j69]Zafar Iqbal, Jorge Eduardo Macías-Díaz, Nauman Ahmed, M. Aziz-ur Rehman, Ali Raza, Muhammad Rafiq:
A SEIR model with memory effects for the propagation of Ebola-like infections and its dynamically consistent approximation. Comput. Methods Programs Biomed. 209: 106322 (2021) - [j68]Sedrique A. Tiomela, Jorge Eduardo Macías-Díaz, Alain Mvogo:
Computer simulation of the dynamics of a spatial susceptible-infected-recovered epidemic model with time delays in transmission and treatment. Comput. Methods Programs Biomed. 212: 106469 (2021) - [j67]Jorge Eduardo Macías-Díaz:
A dissipation-preserving scheme to approximate radially symmetric solutions of the Higgs boson equation in the de Sitter space-time. Commun. Nonlinear Sci. Numer. Simul. 96: 105698 (2021) - [j66]Jorge Eduardo Macías-Díaz, Ahmed S. Hendy, Nikita S. Markov:
A bounded numerical solver for a fractional FitzHugh-Nagumo equation and its high-performance implementation. Eng. Comput. 37(2): 1593-1609 (2021) - [j65]Joel Alba-Pérez, Jorge Eduardo Macías-Díaz:
A positive and bounded convergent scheme for general space-fractional diffusion-reaction systems with inertial times. Int. J. Comput. Math. 98(6): 1071-1097 (2021) - [j64]Jorge Eduardo Macías-Díaz:
A numerically efficient variational algorithm to solve a fractional nonlinear elastic string equation. Numer. Algorithms 86(1): 75-102 (2021) - 2020
- [j63]Luis F. Munoz-Pérez, Jorge Eduardo Macías-Díaz, José A. Guerrero:
A dissipation-preserving finite-difference scheme for a generalized Higgs boson equation in the de Sitter space-time. Appl. Math. Lett. 107: 106425 (2020) - [j62]José A. Guerrero, Jorge Eduardo Macías-Díaz:
A threshold selection criterion based on the number of runs for the detection of bursts in EMG signals. Biomed. Signal Process. Control. 57 (2020) - [j61]Shumaila Azam, Jorge Eduardo Macías-Díaz, Nauman Ahmed, Ilyas Khan, Muhammad Sajid Iqbal, Muhammad Rafiq, Kottakkaran Sooppy Nisar, Muhammad Ozair Ahmad:
Numerical modeling and theoretical analysis of a nonlinear advection-reaction epidemic system. Comput. Methods Programs Biomed. 193: 105429 (2020) - [j60]Romeo Martínez, Jorge Eduardo Macías-Díaz, Ahmed S. Hendy:
Corrigendum to "A numerically efficient and conservative model for a Riesz space-fractional Klein-Gordon-Zakharov system". Commun. Nonlinear Sci. Numer. Simul. 83: 105109 (2020) - [j59]Jorge Eduardo Macías-Díaz:
Fractional generalization of the fermi-Pasta-Ulam-Tsingou media and theoretical analysis of an explicit variational scheme. Commun. Nonlinear Sci. Numer. Simul. 88: 105158 (2020) - [j58]Jorge Eduardo Macías-Díaz:
An easy-to-implement parallel algorithm to simulate complex instabilities in three-dimensional (fractional) hyperbolic systems. Comput. Phys. Commun. 254: 107383 (2020) - [j57]Jorge Eduardo Macías-Díaz:
A dynamically consistent exponential scheme to solve some advection-reaction equations with Riesz anomalous diffusion. J. Comput. Appl. Math. 378: 112920 (2020) - [j56]Jorge Eduardo Macías-Díaz:
A parallelized computational model for multidimensional systems of coupled nonlinear fractional hyperbolic equations. J. Comput. Phys. 402 (2020) - [j55]Luis F. Munoz-Pérez, Jorge Eduardo Macías-Díaz:
On the solution of a generalized Higgs boson equation in the de Sitter space-time through an efficient and Hamiltonian scheme. J. Comput. Phys. 417: 109568 (2020) - [j54]Mahmoud A. Zaky, Ahmed S. Hendy, Jorge Eduardo Macías-Díaz:
Semi-implicit Galerkin-Legendre Spectral Schemes for Nonlinear Time-Space Fractional Diffusion-Reaction Equations with Smooth and Nonsmooth Solutions. J. Sci. Comput. 82(1): 13 (2020) - [j53]Jorge Eduardo Macías-Díaz:
A Numerical Schemefor the Probability Density of the First Hitting Time for Some Random Processes. Symmetry 12(11): 1907 (2020)
2010 – 2019
- 2019
- [j52]Ahmed S. Hendy, Jorge Eduardo Macías-Díaz:
A Conservative Scheme with Optimal Error Estimates for a Multidimensional Space-Fractional Gross-Pitaevskii Equation. Int. J. Appl. Math. Comput. Sci. 29(4): 713-723 (2019) - [j51]Ahmed S. Hendy, Jorge Eduardo Macías-Díaz:
A numerically efficient and conservative model for a Riesz space-fractional Klein-Gordon-Zakharov system. Commun. Nonlinear Sci. Numer. Simul. 71: 22-37 (2019) - [j50]Ahmed S. Hendy, Jorge Eduardo Macías-Díaz:
A novel discrete Gronwall inequality in the analysis of difference schemes for time-fractional multi-delayed diffusion equations. Commun. Nonlinear Sci. Numer. Simul. 73: 110-119 (2019) - [j49]Ernesto Urenda-Cázares, Armando Gallegos, Jorge Eduardo Macías-Díaz, Héctor Vargas-Rodríguez:
An integral of motion for the damped cubic-quintic Duffing oscillator with variable coefficients. Commun. Nonlinear Sci. Numer. Simul. 78: 104860 (2019) - [j48]Jorge Eduardo Macías-Díaz:
On the solution of a Riesz space-fractional nonlinear wave equation through an efficient and energy-invariant scheme. Int. J. Comput. Math. 96(2): 337-361 (2019) - [j47]Jorge Eduardo Macías-Díaz, Bilge Inan:
Numerical efficiency of some exponential methods for an advection-diffusion equation. Int. J. Comput. Math. 96(5): 1005-1029 (2019) - [j46]Jesús Vigo-Aguiar, Jorge Eduardo Macías-Díaz, Raquel García Rubio:
Special issue: Selected papers of CMMSE. J. Comput. Appl. Math. 354: 81-85 (2019) - [j45]Jorge Eduardo Macías-Díaz, Héctor Vargas-Rodríguez:
Some exact solutions of a hyperbolic model of energy transmission in non-homogeneous media. J. Comput. Appl. Math. 354: 597-602 (2019) - [j44]Jorge Eduardo Macías-Díaz, Armando Gallegos:
On a positivity-preserving numerical model for a linearized hyperbolic Fisher-Kolmogorov-Petrovski-Piscounov equation. J. Comput. Appl. Math. 354: 603-611 (2019) - [j43]Ahmed S. Hendy, Jorge Eduardo Macías-Díaz, Adán J. Serna-Reyes:
On the solution of hyperbolic two-dimensional fractional systems via discrete variational schemes of high order of accuracy. J. Comput. Appl. Math. 354: 612-622 (2019) - [j42]Jorge Eduardo Macías-Díaz, Joel Alba-Pérez:
A structure-preserving Bhattacharya method for nonlinear parabolic equations with fractional diffusion and advection. J. Comput. Appl. Math. 354: 623-640 (2019) - [j41]Jorge Eduardo Macías-Díaz, Ahmed S. Hendy:
Algorithm for some anomalously diffusive hyperbolic systems in molecular dynamics: Theoretical analysis and pattern formation. J. Comput. Phys. 397 (2019) - [j40]Stefania Tomasiello, Jorge Eduardo Macías-Díaz, Alireza Khastan, Zahra Alijani:
New sinusoidal basis functions and a neural network approach to solve nonlinear Volterra-Fredholm integral equations. Neural Comput. Appl. 31(9): 4865-4878 (2019) - [j39]Luis F. Munoz-Pérez, José A. Guerrero, Jorge Eduardo Macías-Díaz:
Entropy-Based Selection of Cluster Representatives for Document Image Compression. SIAM J. Imaging Sci. 12(4): 1720-1738 (2019) - 2018
- [j38]Jorge Eduardo Macías-Díaz, Ahmed S. Hendy, Rob H. De Staelen:
A compact fourth-order in space energy-preserving method for Riesz space-fractional nonlinear wave equations. Appl. Math. Comput. 325: 1-14 (2018) - [j37]Jorge Eduardo Macías-Díaz:
A numerically efficient Hamiltonian method for fractional wave equations. Appl. Math. Comput. 338: 231-248 (2018) - [j36]José A. Guerrero, M. A. Castillo-Galván, Jorge Eduardo Macías-Díaz:
Novel electromyography signal envelopes based on binary segmentation. Biomed. Signal Process. Control. 45: 225-236 (2018) - [j35]Jorge Eduardo Macías-Díaz:
A bounded and efficient scheme for multidimensional problems with anomalous convection and diffusion. Comput. Math. Appl. 75(11): 3995-4011 (2018) - [j34]Jorge Eduardo Macías-Díaz:
Numerical simulation of the nonlinear dynamics of harmonically driven Riesz-fractional extensions of the Fermi-Pasta-Ulam chains. Commun. Nonlinear Sci. Numer. Simul. 55: 248-264 (2018) - [j33]Jorge Eduardo Macías-Díaz:
An explicit dissipation-preserving method for Riesz space-fractional nonlinear wave equations in multiple dimensions. Commun. Nonlinear Sci. Numer. Simul. 59: 67-87 (2018) - [j32]Jorge Eduardo Macías-Díaz, Anastasios Bountis:
Supratransmission in β-Fermi-Pasta-Ulam chains with different ranges of interactions. Commun. Nonlinear Sci. Numer. Simul. 63: 307-321 (2018) - [j31]Jorge Eduardo Macías-Díaz, Ahmed S. Hendy, Rob H. De Staelen:
A pseudo energy-invariant method for relativistic wave equations with Riesz space-fractional derivatives. Comput. Phys. Commun. 224: 98-107 (2018) - [j30]Jorge Eduardo Macías-Díaz:
A modified exponential method that preserves structural properties of the solutions of the Burgers-Huxley equation. Int. J. Comput. Math. 95(1): 3-19 (2018) - [j29]Jorge Eduardo Macías-Díaz:
A dynamically consistent method to solve nonlinear multidimensional advection-reaction equations with fractional diffusion. J. Comput. Phys. 366: 71-88 (2018) - [j28]Jorge Eduardo Macías-Díaz:
A Numerically Efficient Dissipation-Preserving Implicit Method for a Nonlinear Multidimensional Fractional Wave Equation. J. Sci. Comput. 77(1): 1-26 (2018) - 2017
- [j27]Jorge Eduardo Macías-Díaz, José Villa-Morales:
A structure-preserving method for the distribution of the first hitting time to a moving boundary for some Gaussian processes. Comput. Math. Appl. 74(8): 1799-1812 (2017) - [j26]Jorge Eduardo Macías-Díaz:
Numerical study of the process of nonlinear supratransmission in Riesz space-fractional sine-Gordon equations. Commun. Nonlinear Sci. Numer. Simul. 46: 89-102 (2017) - [j25]Jorge Eduardo Macías-Díaz:
Persistence of nonlinear hysteresis in fractional models of Josephson transmission lines. Commun. Nonlinear Sci. Numer. Simul. 53: 31-43 (2017) - [j24]Jorge Eduardo Macías-Díaz, José Villa-Morales:
A deterministic model for the distribution of the stopping time in a stochastic equation and its numerical solution. J. Comput. Appl. Math. 318: 93-106 (2017) - [j23]M. G. Medina-Guevara, Jorge Eduardo Macías-Díaz, Armando Gallegos, Héctor Vargas-Rodríguez:
On S1 as an alternative continuous opinion space in a three-party regime. J. Comput. Appl. Math. 318: 230-241 (2017) - [j22]Jorge Eduardo Macías-Díaz, Armando Gallegos, Héctor Vargas-Rodríguez:
A modified Bhattacharya exponential method to approximate positive and bounded solutions of the Burgers-Fisher equation. J. Comput. Appl. Math. 318: 366-377 (2017) - [j21]Jorge Eduardo Macías-Díaz, José A. Guerrero:
A bounded linear integrator for some diffusive nonlinear time-dependent partial differential equations. J. Comput. Appl. Math. 318: 515-528 (2017) - [j20]Jorge Eduardo Macías-Díaz, A. E. González:
A convergent and dynamically consistent finite-difference method to approximate the positive and bounded solutions of the classical Burgers-Fisher equation. J. Comput. Appl. Math. 318: 604-615 (2017) - [j19]Jorge Eduardo Macías-Díaz:
A structure-preserving method for a class of nonlinear dissipative wave equations with Riesz space-fractional derivatives. J. Comput. Phys. 351: 40-58 (2017) - 2016
- [j18]Jorge Eduardo Macías-Díaz:
Conciliating efficiency and dynamical consistency in the simulation of the effects of proliferation and motility of transforming growth factor β on cancer cells. Commun. Nonlinear Sci. Numer. Simul. 40: 173-188 (2016) - [j17]Jorge Eduardo Macías-Díaz, Stefania Tomasiello:
A differential quadrature-based approach à la Picard for systems of partial differential equations associated with fuzzy differential equations. J. Comput. Appl. Math. 299: 15-23 (2016) - 2015
- [j16]Jorge Eduardo Macías-Díaz:
An integro-differential generalization and dynamically consistent discretizations of some hyperbolic models with nonlinear damping. Int. J. Comput. Math. 92(10): 2109-2120 (2015) - 2014
- [j15]Jorge Eduardo Macías-Díaz, K. A. Rejniak:
On a conditionally stable nonlinear method to approximate some monotone and bounded solutions of a generalized population model. Appl. Math. Comput. 229: 273-282 (2014) - [j14]Jorge Eduardo Macías-Díaz, R. E. Landry, A. Puri:
A finite-difference scheme in the computational modelling of a coupled substrate-biomass system. Int. J. Comput. Math. 91(10): 2199-2214 (2014) - 2013
- [j13]Jorge Eduardo Macías-Díaz, Siegfried Macías, Iliana E. Medina-Ramírez:
An efficient nonlinear finite-difference approach in the computational modeling of the dynamics of a nonlinear diffusion-reaction equation in microbial ecology. Comput. Biol. Chem. 47: 24-30 (2013) - [j12]Iliana E. Medina-Ramírez, Jorge Eduardo Macías-Díaz:
On a fully discrete finite-difference approximation of a nonlinear diffusion-reaction model in microbial ecology. Int. J. Comput. Math. 90(9): 1915-1937 (2013) - [j11]Javier Ruiz Ramírez, Jorge Eduardo Macías-Díaz:
A skew symmetry-preserving computational technique for obtaining the positive and the bounded solutions of a time-delayed advection-diffusion-reaction equation. J. Comput. Appl. Math. 250: 256-269 (2013) - 2012
- [j10]Jorge Eduardo Macías-Díaz, A. Puri:
An explicit positivity-preserving finite-difference scheme for the classical Fisher-Kolmogorov-Petrovsky-Piscounov equation. Appl. Math. Comput. 218(9): 5829-5837 (2012) - [j9]Jorge Eduardo Macías-Díaz:
A bounded numerical method for approximating a hyperbolic and convective generalization of Fisher's model with nonlinear damping. Appl. Math. Lett. 25(6): 946-951 (2012) - [j8]Jorge Eduardo Macías-Díaz:
On a boundedness-preserving semi-linear discretization of a two-dimensional nonlinear diffusion-reaction model. Int. J. Comput. Math. 89(12): 1678-1688 (2012) - 2011
- [j7]Jorge Eduardo Macías-Díaz, Javier Ruiz Ramírez, José Villa:
The numerical solution of a generalized Burgers-Huxley equation through a conditionally bounded and symmetry-preserving method. Comput. Math. Appl. 61(11): 3330-3342 (2011) - [j6]Jorge Eduardo Macías-Díaz:
Sufficient conditions for the preservation of the boundedness in a numerical method for a physical model with transport memory and nonlinear damping. Comput. Phys. Commun. 182(12): 2471-2478 (2011) - [j5]Javier Ruiz Ramírez, Jorge Eduardo Macías-Díaz:
A finite-difference scheme to approximate non-negative and bounded solutions of a FitzHugh-Nagumo equation. Int. J. Comput. Math. 88(15): 3186-3201 (2011) - [j4]Jorge Eduardo Macías-Díaz, A. Puri:
On some explicit non-standard methods to approximate nonnegative solutions of a weakly hyperbolic equation with logistic nonlinearity. Int. J. Comput. Math. 88(15): 3308-3323 (2011) - 2010
- [j3]Jorge Eduardo Macías-Díaz:
On the simulation of the energy transmission in the forbidden band-gap of a spatially discrete double sine-Gordon system. Comput. Phys. Commun. 181(11): 1842-1849 (2010) - [c1]Jorge Eduardo Macías-Díaz, Juan Manuel Gómez Reynoso:
Utilizando el Modelo de Calidad de McCall y el Estándar ISO-9126 para la Evaluación de la Calidad de Sistemas de Información por los Usuarios. AMCIS 2010: 89
2000 – 2009
- 2009
- [j2]Jorge Eduardo Macías-Díaz, Iliana E. Medina-Ramírez, A. Puri:
Numerical treatment of the spherically symmetric solutions of a generalized Fisher-Kolmogorov-Petrovsky-Piscounov equation. J. Comput. Appl. Math. 231(2): 851-868 (2009) - 2008
- [j1]Jorge Eduardo Macías-Díaz:
On the bifurcation of energy in media governed by (2 + 1)-dimensional modified Klein-Gordon equations. Appl. Math. Comput. 206(1): 221-235 (2008)
Coauthor Index
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