Staff Details
UMA D
Name: Dr. UMA D

Department: Computer Applications

Email: uma.d@scmsgroup.org

Field of Specialization: Stochastic Differential Equations, Numerical methods

Faculty Details

Academic Qualification
Academic DegreeSubjectUniversityAddress of the University
Ph. DMathematicsSASTRA Deemed UniversityThanjavur
PhD Details
Title of ThesisUniversity / Institution
A NUMERICAL STUDY FOR A CLASS OF STOCHASTIC MODELS DRIVEN BY WHITE NOISESASTRA Deemed University
Publications
Book
Publication TypeName of Journal/Book Chapter/ProceedingsLevelTitleVolumeDateImpact Factor/Citation IndexDOI/URL
BookDiscrete MathematicsNationalDiscrete Mathematics17-09-2025978-81-993439-1-7
BookDescriptive StatisticsNationalDescriptive Statistics03-01-2025978-93-5563-997-4
BookDiscrete MathematicNationalDiscrete Mathematic03-01-2025978-93-5563-762-8
Journal
Publication TypeName of Journal/Book Chapter/ProceedingsLevelTitleVolumeDateImpact Factor/Citation IndexDOI/URL
JournalMathematical Methods in the Applied SciencesInternationalA mathematical modeling and numerical study for stochastic Fisher–SI model driven by space uniform white noise.4608-08-2025Value between 3 to 3.99https://doi.org/10.1002/mma.9157
JournalComputational and Applied MathematicsInternationalAn approximate solution for stochastic Burgers’ equation driven by white noise4108-08-2025Value between 1 to 2.99https://doi.org/10.1007/s40314-022-02018-7 (SCIE). I.F: 2.6
JournalDiscrete Dynamics in Nature and Society.InternationalAn Approximate Solution for Stochastic FitzHugh - Nagumo Partial Differential Equations Arising in Neurobiology Models Representing Wave Propagation in a Neuron03-07-2024
JournalThermal ScienceInternationalNumerical solution for stochastic heat equation with Neumann boundary conditions.01-09-2023https://doi.org/10.2298/TSCI23S1057R
JournalFractalsInternationalNumerical Solution of Persistent Processes- based Fractional Stochastic Differential Equations01-08-202331(4) 2340052. https://doi.org/10.1142/S0218348X23400522 I.F: 4.7
JournalFractalsInternationalTwo-Dimensional Fractional Euler Polynomials Method For Fractional Diffusion-Wave Equations01-07-2023Value between 4 to 4.99https://doi.org/10.1142/S0218348X23400583
JournalInternational Journal of Applied and Computational MathematicsInternationalAn Approximation Method for Stochastic Heat Equation Driven by White Noise.03-03-2022https://doi.org/10.1007/s40819-022-01376-4
Research IDs
Google Scholar idResearchGate idOrcid idScopus Author ID
https://scholar.google.com/citations?user=ilh9yQUAAAAJ&hl=en00000000-0002-7984-2889000