Endre Kovács

Orcid: 0000-0002-0439-3070

According to our database1, Endre Kovács authored at least 15 papers between 2019 and 2024.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of five.

Timeline

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Bibliography

2024
Effects of OpenCL-Based Parallelization Methods on Explicit Numerical Methods to Solve the Heat Equation.
Comput., October, 2024

Systematic Investigation of the Explicit, Dynamically Consistent Methods for Fisher's Equation.
Comput., March, 2024

Unconditionally Positive, Explicit, Fourth Order Method for the Diffusion- and Nagumo-Type Diffusion-Reaction Equations.
J. Sci. Comput., February, 2024

2023
Design of a Machine Learning Model to Predict Student Attrition.
Int. J. Emerg. Technol. Learn., September, 2023

New stable, explicit, second order hopscotch methods for diffusion-type problems.
Math. Comput. Simul., June, 2023

Analytical Solution and Numerical Simulation of Heat Transfer in Cylindrical- and Spherical-Shaped Bodies.
Comput., June, 2023

Analytical and Numerical Results for the Diffusion-Reaction Equation When the Reaction Coefficient Depends on Simultaneously the Space and Time Coordinates.
Comput., June, 2023

Analytical and Numerical Results for the Transient Diffusion Equation with Diffusion Coefficient Depending on Both Space and Time.
Algorithms, April, 2023

Adaptive step size controllers based on Runge-Kutta and linear-neighbor methods for solving the non-stationary heat conduction equation.
Networks Heterog. Media, 2023

2022
Solution of the 1D KPZ Equation by Explicit Methods.
Symmetry, 2022

Consistency and Convergence Properties of 20 Recent and Old Numerical Schemes for the Diffusion Equation.
Algorithms, 2022

Testing Some Different Implementations of Heat Convection and Radiation in the Leapfrog-Hopscotch Algorithm.
Algorithms, 2022

2021
A class of new stable, explicit methods to solve the non-stationary heat equation.
CoRR, 2021

Stable, Explicit, Leapfrog-Hopscotch Algorithms for the Diffusion Equation.
Comput., 2021

2019
New stable method to solve heat conduction problems in extremely large systems.
CoRR, 2019


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