2008 |
22 | EE | Lucas Jódar,
Rafael J. Villanueva,
Abraham J. Arenas,
Gilberto C. González:
Nonstandard numerical methods for a mathematical model for influenza disease.
Mathematics and Computers in Simulation 79(3): 622-633 (2008) |
2007 |
21 | EE | M. Consuelo Casabán,
Lucas Jódar,
Gustavo A. Ossandón:
Conditional uniform time stable numerical solutions of coupled hyperbolic systems.
Appl. Math. Lett. 20(1): 13-16 (2007) |
20 | EE | Benito Chen,
Rafael Company,
Lucas Jódar,
M. D. Roselló:
Constructing accurate polynomial approximations for nonlinear differential initial value problems.
Applied Mathematics and Computation 193(2): 523-534 (2007) |
19 | EE | J. C. Cortés,
Lucas Jódar,
L. Villafuerte,
Rafael J. Villanueva:
Computing mean square approximations of random diffusion models with source term.
Mathematics and Computers in Simulation 76(1-3): 44-48 (2007) |
2006 |
18 | EE | Michael M. Tung,
Lucas Jódar:
Closed-form analytic solutions for dilogarithmic double integrals.
Appl. Math. Lett. 19(8): 775-779 (2006) |
17 | EE | J. C. Cortés,
P. Sevilla-Peris,
Lucas Jódar:
Constructing approximate diffusion processes with uncertain data.
Mathematics and Computers in Simulation 73(1-4): 125-132 (2006) |
16 | EE | J. M. Arnau,
S. Jerez,
Lucas Jódar,
J. V. Romero:
A semi-implicit conservation element-solution element method for chemical species transport simulation to tapered ducts of internal combustion engine.
Mathematics and Computers in Simulation 73(1-4): 28-37 (2006) |
2005 |
15 | EE | Lucas Jódar,
P. Sevilla-Peris,
J. C. Cortés,
R. Sala:
A new direct method for solving the Black-Scholes equation.
Appl. Math. Lett. 18(1): 29-32 (2005) |
14 | EE | Francisco J. Solis,
Lucas Jódar,
Benito Chen:
Chaos in the one-dimensional wave equation.
Appl. Math. Lett. 18(1): 85-90 (2005) |
13 | EE | J. C. Cortés,
Lucas Jódar,
R. Sala,
P. Sevilla-Peris:
Exact and numerical solution of Black-Scholes matrix equation.
Applied Mathematics and Computation 160(3): 607-613 (2005) |
12 | EE | Lucas Jódar,
L. A. Caudillo-Mata:
A low computational cost numerical method for solving mixed diffusion problems.
Applied Mathematics and Computation 170(1): 673-685 (2005) |
2004 |
11 | EE | J. C. Cortés,
Lucas Jódar,
M. D. Roselló:
An algorithm for solving variable coefficient hyperbolic problems in a semi-infinite mediu.
Appl. Math. Lett. 17(2): 145-151 (2004) |
2003 |
10 | EE | M. J. Rodriguez-Alvarez,
G. Rubio,
Lucas Jódar,
A. E. Posso:
Exact solution of variable coefficient mixed hyperbolic partial differential problems.
Appl. Math. Lett. 16(3): 309-312 (2003) |
9 | EE | Jorge Sastre,
Lucas Jódar:
Asymptotics of the modified bessel and the incomplete gamma matrix functions.
Appl. Math. Lett. 16(6): 815-820 (2003) |
8 | EE | Rafael Company,
Lucas Jódar,
Enrique Ponsoda:
Accurate numerical solution of initial value problems for the time dependent convection-diffusion equation.
Appl. Math. Lett. 16(6): 981-984 (2003) |
2002 |
7 | EE | M. Consuelo Casabán,
Lucas Jódar,
José Albeiro Sánchez Cano:
Stable numerical solution of strongly coupled mixed diffusion problems.
Appl. Math. Lett. 15(1): 115-119 (2002) |
6 | EE | José Emilio Enrique Navarro,
Lucas Jódar,
María Vicenta Ferrer:
Constructing eigenfunctions of strongly coupled parabolic boundary value systems.
Appl. Math. Lett. 15(4): 429-434 (2002) |
5 | EE | M. J. Rodriguez,
M. D. Roselló,
S. Jerez,
Lucas Jódar:
Solving Dirichlet's problem in a rectangle for separate variable coefficient elliptic equations.
Appl. Math. Lett. 15(6): 693-696 (2002) |
4 | EE | Jorge Iván Castaño,
Lucas Jódar,
Enrique Ponsoda,
Jose Albeiro Sánchez:
Continuous numerical solution of coupled parabolic initial value problems.
Appl. Math. Lett. 15(7): 819-823 (2002) |
2001 |
3 | EE | Lucas Jódar,
Jorge Sastre:
Asymptotic expressions of certain type of matrix integrals.
Appl. Math. Lett. 14(1): 21-26 (2001) |
2 | EE | Lucas Jódar,
M. Consuelo Casabán:
Convergent matrix pencils.
Appl. Math. Lett. 14(5): 549-551 (2001) |
2000 |
1 | EE | Lucas Jódar,
Marco Marletta:
Solving ODEs arising from non-selfadjoint Hamiltonian eigenproblems.
Adv. Comput. Math. 13(3): 231-256 (2000) |