フォロー
Dr Sapna Pandit
Dr Sapna Pandit
Thapar Institute of Engineering and Technology, Patiala
確認したメール アドレス: thapar.edu - ホームページ
タイトル
引用先
引用先
Numerical simulation of two-dimensional sine-Gordon solitons by differential quadrature method
R Jiwari, S Pandit, RC Mittal
Computer Physics Communications 183 (3), 600-616, 2012
1392012
A differential quadrature algorithm to solve the two dimensional linear hyperbolic telegraph equation with Dirichlet and Neumann boundary conditions
R Jiwari, S Pandit, RC Mittal
Applied Mathematics and Computation 218 (13), 7279-7294, 2012
1212012
A composite numerical scheme for the numerical simulation of coupled Burgers’ equation
M Kumar, S Pandit
Computer Physics Communications 185 (3), 809-817, 2014
922014
Haar wavelet approach for numerical solution of two parameters singularly purturbed boundary value problems
Sapna Pandit, M. Kumar
Applied Mathematics and Information Sciences 8 (6), 2965-2974, 2014
462014
A differential quadrature algorithm for the numerical solution of the second-order one dimensional hyperbolic telegraph equation
R Jiwari, S Pandit, RC Mittal
International Journal of Nonlinear Science 13 (3), 259-266, 2012
462012
Numerical simulation of second-order hyperbolic telegraph type equations with variable coefficients
Sapna Pandit, Manoj Kumar, Surabhi Tiwari
Computer Physics Communications 187, 83-90, 2015
372015
Wavelet transform and wavelet based numerical methods: an introduction
M Kumar, S Pandit
International Journal of Nonlinear Science 13 (3), 325-345, 2012
352012
Numerical simulation of unsteady squeezing nanofluid and heat flow between two parallel plates using wavelets
RC Mittal, S Pandit
International Journal of Thermal Sciences 118, 410-422, 2017
342017
A numerical algorithm based on modified cubic trigonometric B-spline functions for computational modelling of hyperbolic-type wave equations
AS Alshomrani, S Pandit, AK Alzahrani, MS Alghamdi, R Jiwari
Engineering Computations, 2017
292017
Haar wavelets operational matrix based algorithm for computational modelling of hyperbolic type wave equations
S Pandit, R Jiwari, K Bedi, ME Koksal
Engineering Computations 34 (8), 2793-2814, 2017
272017
Sensitivity Analysis of Shock Wave Burgers’ Equation via a Novel Algorithm Based on scale-3 Haar Wavelets
RC Mittal, S Pandit
International Journal Of Computer Mathematics, 2017
272017
Quasilinearized Scale-3 Haar wavelets-based algorithm for numerical simulation of fractional dynamical systems
RC Mittal, S Pandit
Engineering Computations, 2018
202018
An efficient algorithm based on Haar wavelets for numerical simulation of Fokker-Planck equations with constants and variable coefficients
M Kumar, S Pandit
International Journal of Numerical Methods for Heat & Fluid Flow, 2015
132015
New scale-3 haar wavelets algorithm for numerical simulation of second order ordinary differential equations
RC Mittal, S Pandit
Proceedings of the National Academy of Sciences, India Section A: Physical …, 2019
122019
Wavelet strategy for flow and heat transfer in CNT-water based fluid with asymmetric variable rectangular porous channel
S Pandit, S Sharma
Engineering with Computers, 1-11, 2020
82020
Shock waves analysis of planar and non planar nonlinear Burgers’ equation using Scale-2 Haar wavelets
S Pandit, M Kumar, RN Mohapatra, AS Alshomrani
International Journal of Numerical Methods for Heat & Fluid Flow, 2017
82017
A Numerical Algorithm to Capture Spin Patterns of Fractional Bloch Nuclear Magnetic Resonance Flow Models
RC Mittal, S Pandit
Journal of Computational and Nonlinear Dynamics 14 (8), 2019
62019
Sensitivity analysis of emerging parameters in the presence of thermal radiation on magnetohydrodynamic nanofluids via wavelets
S Pandit, S Sharma
Engineering with Computers, 1-12, 2021
52021
A numerical algorithm based on scale-3 Haar wavelets for fractional advection dispersion equation
S Pandit, RC Mittal
Engineering Computations, 2020
42020
Local radial basis functions and scale-3 Haar wavelets operational matrices based numerical algorithms for generalized regularized long wave model
S Pandit
Wave Motion 109, 102846, 2022
2022
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