Sweta | Applied Mathematics | Research Excellence Award

Dr. Sweta | Applied Mathematics | Research Excellence Award

SRM Institute of Technology and Science Kattankulathur, India

Dr. Sweta is an Assistant Professor of Mathematics with expertise in fluid dynamics, nanofluid transport, and computational modeling. She holds a doctoral degree in Mathematics and has strong academic training in applied mathematics. Her research focuses on convective heat and mass transfer, entropy generation, stability analysis, and analytical–numerical solutions of nonlinear PDEs using spectral methods and Lie group analysis. She has published in reputed journals, received national-level academic recognitions, and actively contributes to teaching, research, and curriculum development in higher education.

Research Metrics (Scopus)

50
40
30
20
10
5
0

Citations
30

Documents
8

h-index
4

Citations

Documents

h-index

Featured Publications


Response surface methodology-based new model to optimize heat transfer and shear stress for ferrites/motor oil hybrid nanofluid


International Journal of Numerical Methods for Heat & Fluid Flow · 2024 · 6 Citations

Aishwarya Jaiswal | Numerical Analysis | Best Researcher Award

Ms. Aishwarya Jaiswal | Numerical Analysis | Best Researcher Award

IIT BHU| India

Aishwarya Jaiswal is a dedicated researcher in numerical analysis of partial differential equations, contributing to the advancement of efficient and uniformly convergent computational methods. With strong academic preparation in mathematics and computing from premier Indian institutes, she has developed expertise in numerical schemes for singularly perturbed systems, convection–diffusion models, parabolic reaction–diffusion equations, and multiscale interface problems. Her scholarly output includes multiple peer-reviewed publications in international journals, supported by citation metrics that reflect early research impact, including 1 citation, 1 h-index, and 0 i10-index, along with 1 indexed document. She has worked on diverse research themes such as boundary and interior layer phenomena, component-wise splitting algorithms, higher-order numerical schemes, and efficient discretization techniques. Her academic journey includes hands-on research experience through conference presentations, workshops, and collaborative visits at reputed institutions, contributing to global knowledge exchange in applied mathematics. Her interests span numerical PDEs, error analysis, computational methods, and scientific computing. She has been recognized with prestigious competitive awards, including highly regarded research fellowships that support her doctoral investigations. Through her continued focus on accuracy, robustness, and computational efficiency, she aims to contribute impactful advancements to the field of numerical mathematics and applied scientific computation.

Profile: Google Scholar

Featured Publications

Jaiswal, A., Kumar, S., & Ramos, H. Boundary and interior layer phenomena in coupled multiscale parabolic convection–diffusion interface problems: Efficient numerical resolution and analysis. International Journal of Numerical Methods for Heat & Fluid Flow., Cited by: 1

Jaiswal, A., Kumar, S., & Clavero, C. Efficient component-wise splitting approach to solve coupled singularly perturbed parabolic reaction–diffusion systems with interior layers. Numerical Algorithms.

Jaiswal, A., Kumar, S., & Ramos, H. Efficient uniformly convergent numerical methods for singularly perturbed parabolic reaction–diffusion systems with discontinuous source term. Journal of Applied Mathematics and Computing.

Jaiswal, A., Kumar, S., & Kumar, S. A priori and a posteriori error analysis for a system of singularly perturbed Volterra integro-differential equations. Computational and Applied Mathematics, 42(6), 278.

PRIYA RAO | Mathematics | Best Researcher Award

Ms. PRIYA RAO | Mathematics | Best Researcher Award

NIT Rourkela, India

Author Profile

SCOPUS

GOOGLE SCHOLAR

🎓 EARLY ACADEMIC PURSUITS

Ms. Priya Rao’s academic foundation is rooted in mathematics, developed through rigorous undergraduate and postgraduate training. She completed her education from reputed Indian institutions, demonstrating a consistent focus on theoretical and applied aspects of mathematical sciences. This academic background laid a solid groundwork for her doctoral research at the National Institute of Technology Rourkela, where she delved into advanced modeling techniques in uncertain environments.

🏢 PROFESSIONAL ENDEAVORS

Priya Rao has amassed over five years of intensive research experience, specializing in fuzzy uncertainty modeling and vibration analysis of robotic manipulators. Her academic tenure at NIT Rourkela is complemented by her role as a reviewer for top-tier journals in applied mathematics. She has actively participated in numerous international conferences and workshops, reflecting her commitment to interdisciplinary collaboration and academic growth.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN MATHEMATICS

Her core research revolves around:

  • Dynamic modeling and vibration analysis of flexible robotic manipulators under uncertain (fuzzy/interval) environments.

  • Investigating inverse vibration problems, and evaluating the impact of structural damage and material variability.

  • Modeling multi-degree-of-freedom systems using advanced mathematical and computational tools like Galerkin method, Higher-order Shear Deformation Theory, and Timoshenko beam theory.

  • Application of soft computing, numerical techniques, and non-linear ODE/PDE solvers for robotics systems.

🏅 ACCOLADES AND RECOGNITION

Her research has been published in prestigious journals such as Applied Mathematical Modelling, Journal of Vibration Engineering and Technologies, and book chapters with CRC Press and IOP Publishing. Key highlights include:

  • GATE Qualification (2020), awarded by the National Coordination Board, MHRD, Government of India.

  • Multiple international conference presentations across India and abroad (e.g., IIT Ropar, IIT Indore, University of Sharjah).

Her work has already started gaining citations from both academic and applied research communities due to its interdisciplinary nature and practical relevance.

🌍 IMPACT AND INFLUENCE

Through a series of high-impact publications and collaborative research, Ms. Rao has contributed significantly to the advancement of computational mathematics in the domain of robotic system dynamics. Her work bridges the gap between theoretical mathematics and its application in real-world robotic systems, especially in areas of assistive robotics, flexible automation, and material-sensitive modeling.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Having submitted her dissertation in April 2025, Priya Rao is poised to take on postdoctoral or independent research roles in the fields of robotics mathematics, uncertainty quantification, and dynamic modeling. Future goals include:

  • Building computational frameworks for multi-link manipulators under complex boundary conditions.

  • Extending vibration and uncertainty models to bio-inspired robotics and nanomechanical systems.

  • Leading collaborative research in AI-integrated robotics, especially focusing on uncertain, variable, and soft structures.

 ✅CONCLUSION

Priya Rao is a rising scholar in applied mathematics, whose specialized expertise in uncertainty modeling and vibration analysis for flexible robotic systems has opened new pathways in both academic research and applied robotic design. Her work stands at the intersection of mathematics, engineering, and artificial intelligence, promising valuable contributions to science, technology, and innovation.

 🔬NOTABLE PUBLICATION:

Title: Vibration analysis of single-link flexible manipulator in an uncertain environment
Authors: P. Rao, D. Roy, S. Chakraverty
Journal: Journal of Vibration Engineering & Technologies
Year: 2024

Title: Vibration analysis of single-link robotic manipulator by polynomial based Galerkin method in uncertain environment
Authors: P. Rao, S. Chakraverty, D. Roy
Journal: Polynomial Paradigms: Trends and Applications in Science and Engineering
Year: 2022

Title: Dynamics of slender single-link flexible robotic manipulator based on Timoshenko beam theory
Authors: P. Rao, S. Chakraverty, D. Roy
Journal: Mathematical Methods in Dynamical Systems
Year: 2023

Title: Vibration analysis of non-homogenous single-link flexible manipulator in uncertain environment
Authors: P. Rao, D. Mohapatra, S. Chakraverty, D. Roy
Journal: Applied Mathematical Modelling
Year: 2025

Title: Oscillation characteristics of single-link flexible manipulator using design parameters in fuzzy domain
Authors: P. Rao, S. Chakraverty, D. Roy
Journal: Journal of Vibration Engineering & Technologies
Year: 2024