Ahmad Jafarabadi
Orcid: 0000-0002-6173-1574
According to our database1,
Ahmad Jafarabadi
authored at least 13 papers
between 2011 and 2023.
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Bibliography
2023
Inverse heat conduction problem with a nonlinear source term by a local strong form of meshless technique based on radial point interpolation method.
Comput. Appl. Math., September, 2023
2020
Turing models in the biological pattern formation through spectral meshless radial point interpolation approach.
Eng. Comput., 2020
Two-dimensional capillary formation model in tumor angiogenesis problem through spectral meshless radial point interpolation.
Eng. Comput., 2020
2018
Analysis of the spectral meshless radial point interpolation for solving fractional reaction-subdiffusion equation.
J. Comput. Appl. Math., 2018
An improved meshless method for solving two- and three-dimensional coupled Klein-Gordon-Schrödinger equations on scattered data of general-shaped domains.
Eng. Comput., 2018
Capillary formation in tumor angiogenesis through meshless weak and strong local radial point interpolation.
Eng. Comput., 2018
Rayleigh-Stokes problem for a heated generalized second grade fluid with fractional derivatives: a stable scheme based on spectral meshless radial point interpolation.
Eng. Comput., 2018
An inverse problem of identifying the control function in two and three-dimensional parabolic equations through the spectral meshless radial point interpolation.
Appl. Math. Comput., 2018
2017
An improved spectral meshless radial point interpolation for a class of time-dependent fractional integral equations: 2D fractional evolution equation.
J. Comput. Appl. Math., 2017
Inverse Cauchy problem of annulus domains in the framework of spectral meshless radial point interpolation.
Eng. Comput., 2017
2015
A stochastic epidemiological model for the propagation of active worms considering the dynamicity of network topology.
Peer-to-Peer Netw. Appl., 2015
2011
On the impacts of join and leave on the propagation ratio of topology-aware active worms.
Proceedings of the 4th International Conference on Security of Information and Networks, 2011
An SIR model for the propagation of topology-aware active worms considering the join and leave of hosts.
Proceedings of the 7th International Conference on Information Assurance and Security, 2011