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rabnawaz.faculty

Lecturer – Faculty of Heritage

Biography

Rabnawaz Mallah is a dedicated Lecturer in Mathematics at Aror University of Art, Architecture Design and Heritage Sukkur, Sindh Pakistan, with extensive experience in teaching undergraduate mathematics and conducting research in applied mathematics. His academic interests include numerical analysis, finite difference methods, partial differential equations, probability, linear algebra, optimization, and artificial intelligence applications in mathematics. He has authored multiple research publications in reputable journals and actively participates in academic conferences, workshops, and professional development programs. Passionate about student centered learning, he strives to integrate innovative teaching methodologies with research driven instruction to enhance students' analytical, critical thinking, and problem-solving skills. His long-term goal is to contribute to high-impact research and advance mathematics education through interdisciplinary collaboration and innovative computational techniques.

Education

MS

APPLIED MATHEMATICS

Shah Abdul Latif University Khairpur Mirs 2022

BS

APPLIED MATHEMATICS

Shah Abdul Latif University Khairpur Mirs 2010

B.ED

Education

Shah Abdul Latif University Khairpur Mirs 2016

Intermediate

Pre-Engineering

BISE Sukkur 2005

Matriculation

Science

BISE Sukkur 2003

Research Interests

Applied Mathematics

Research Publications

1

Mallah, Rabnawaz, et al. "Applying the Crank-Nicolson’s scheme to discretize the laplacian operator in polar gird system on extendable stencil 5-points to 9-points including symmetric and asymmetric lines." (2022).

Mallah Rabnawaz

Journal
2

Mallah, R., Soomro, I., Ahmed, A., Muhammad, D., Latif, S. and Ali, I., 2023. Simulation of 13 points Laplacian operator in cylindrical mesh system by using explicit finite difference technique. VFAST Transactions on Mathematics, 11(1), pp.84-95.

Journal
3

Mallah, R., Soomro, I., Ahmed, A., Muhammad, D., Latif, S. and Ali, I., 2023. Simulation of 13 points Laplacian operator in cylindrical mesh system by using explicit finite difference technique. VFAST Transactions on Mathematics, 11(1), pp.84-95.

Journal
4

Iqbal, Muhammad Javed, Inayatullah Soomro, Maryam Bibi, and Rab Nawaz Mallah. "Morphological Investigation of Lamellae Patterns in Diblock Copolymers under Change of Thickness and Confinement in Polar Geometry." VFAST Transactions on Mathematics 11, no. 2 (2023): 174-197.

Journal
5

Soomro, I., Mallah, R., Iqbal, M.J., Ahmed, W. and Ghafoor, A., 2023. Discretization of laplacian operator on 19 points stencil using cylindrical mesh system with the help of explicit finite difference scheme. Pakistan Journal of Engineering, Technology & Science, 11(2), pp.1-10.

Journal
6

Latif S, Mallah R, Soomro I. Discretization of Laplacian Operator in Polar Coordinates System on 9-Point Stencil with Mixed PDE's Derivative Approximation Using Finite Difference Method. Journal of Mathematical Sciences & Computational Mathematics. 2021 Apr 5;2(3):387-94.

Journal
7

Mallah, R. and Soomro, I., 2022. Comparative study of numerical approximation schemes for Laplacian operator in polar mesh system on 9-points stencil including mixed partial derivative by finite difference method. Journal of Mathematical Sciences & Computational Mathematics, 3(4), pp.516-525.

Journal
8

Mallah, Rabnawaz, and InayatullahSoomro. "A 2-connected graph in two dimensions containing 25 vertices with Gallai's Property." Journal of Mathematical Sciences & Computational Mathematics 4.1 (2022): 46-54.

Journal
9

Mallah, Rabnawaz, et al. "Modification in Two-Connected Graph with Gallai’s Property in 2-Dimensional and 3-Dimensional Graph Containing 19 Vertices." American Journal of Mathematical and Computer Modelling 8.1 (2023):1-5

Journal
10

Mallah, Rabnawaz, and Inayatullah Soomro. "Modification in Connected Graph with Satisfying the Gallai's Property Under Eighteen Vertices Including The Novel Concept of Mobius Strip." Journal of Mathematical Sciences & Computational Mathematics 4.3 (2023): 38-46.

Journal