Mr. Mahtab Uddin
- APID
- 9045
- ORCID
- 0000-0002-6526-9276
- Scopus
- https://www.scopus.com/authid/detail.uri?authorId=55488469700
- Google Scholar
- https://scholar.google.com/citations?hl=en&user=UcuAYhkAAAAJ
- Location
- Dhaka, Dhaka, Bangladesh
- Expertise
- My research involves computer-aided simulation tools to implement feasible algorithms for solving large-scale matrix equations in control system analysis and related applications.
- Areas of interest
- My current research interests consist of modelling the systems and related topics of control theory, applications of numerical linear algebra, model-order reduction techniques, computational analysis of the behaviors of the systems arising from large-scale engineering applications, and statistical analysis of public health issues.
- Member since
- December 2024
Biography
Mahtab Uddin is currently serving as an Assistant Professor of Mathematics at the Institute of Natural Sciences at United International University. He received his B.Sc. and M.S. degrees in Mathematics from the University of Chittagong, Chittagong, Bangladesh. He pursued an M.Phil. degree in Mathematics from Bangladesh University of Engineering and Technology, Dhaka, Bangladesh. He is currently pursuing a Ph.D. degree in Mathematics at the Bangladesh University of Engineering and Technology, Dhaka, Bangladesh.
The research interests of Mahtab Uddin consist of modelling the systems and related topics of control theory, applications of numerical linear algebra, model-order reduction techniques, computational analysis of the behaviors of the systems arising from large-scale engineering applications, and statistical analysis of public health issues. His research involves computer-aided simulation tools to implement feasible algorithms for solving large-scale matrix equations in control system analysis and related applications. He has 11 years of teaching experience at the University level and 13 years of total teaching experience. He is the author of about 45 peer-reviewed journal articles and conference presentations.
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- Dynamical structure of optical soliton solutions for M−fractional paraxial wave equation by using unified technique
- Investigation of rogue wave and dynamic solitary wave propagations of the M-fractional (1 + 1)-dimensional longitudinal wave equation in a magnetic-electro-elastic circular rod
- Modulation Instability and Dynamical Analysis of New Abundant Closed-Form Solutions of the Modified Korteweg–de Vries–Zakharov–Kuznetsov Model With Truncated M-Fractional Derivative
- Modulation Instability, Analytical, and Numerical Studies for Integrable Time Fractional Nonlinear Model through Two Explicit Methods
- Modulation instability, and dynamical behavior of solitary wave solution of time M-fractional Clannish Random Walker's Parabolic equation via two analytic techniques
- Simulation of optical wave propagation of perturbed nonlinear Schrodinger’s equation with truncated M-fractional derivative