About
Dr. Deepika Singh is an Assistant Professor in the Department of Mathematics at Netaji Subhas University of Technology, New Delhi. She earned her Ph.D. degree in Mathematics from the Department of Applied Mathematics and Scientific Computing, Indian Institute of Technology Roorkee. Her academic work is centered on the analytical study of nonlinear wave and flow models arising in gas-dynamical and related physical systems. Her research investigates shock propagation, discontinuities, and evolving flow structures, with the aim of obtaining mathematical solutions that help explain such phenomena in applied scientific problems. She has published 19 research papers in reputed peer-reviewed international journals.
Employment
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Netaji Subhas University of Technology Assistant Professor2023 - Present
Education
Education history is unavailable.
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Publications (19)
- Shock wave dynamics in a non-ideal dusty rotating gas influenced by magnetic field and radiation heat flux Save
- Similarity solution for magnetogasdynamic shock wave in a non-ideal dusty rotating gas with gravitational field Save
- Analysis of magnetogasdynamic shock wave in a self-gravitating non-ideal dusty gas using Lie group theory Save
- An analysis of magnetogasdynamic shock wave propagation in a rotational axisymmetric self-gravitating nonideal gas Save
- A perturbation approach to study the shock wave propagation in a non-ideal magnetogasdynamics under isothermal condition Save
- Similarity solutions for strong shock waves in magnetogasdynamics under a gravitational field Save
- The propagation of strong cylindrical shock wave in a rotating axisymmetric non-ideal gas with radiation heat flux Save
- Convergence of strong shock waves in an ideal gas with dust particles Save
- Similarity solution for isothermal flow behind the magnetogasdynamic cylindrical shock wave in a rotating non-ideal gas with the effect of the gravitational field Save
- Lie group of invariance technique for analyzing propagation of strong shock wave in a rotating non-ideal gas with azimuthal magnetic field Save