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Mohan K. Kadalbajoo
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2020 – today
- 2021
- [j69]Anuradha Jha, Mohan K. Kadalbajoo:
Hybrid method for two parameter singularly perturbed elliptic boundary value problems. Comput. Math. Methods 3(6) (2021)
2010 – 2019
- 2019
- [j68]Vikas Gupta, Mohan K. Kadalbajoo, Ritesh Kumar Dubey:
A parameter-uniform higher order finite difference scheme for singularly perturbed time-dependent parabolic problem with two small parameters. Int. J. Comput. Math. 96(3): 474-499 (2019) - 2018
- [j67]Mohan K. Kadalbajoo, Alpesh Kumar, Lok Pati Tripathi:
Radial-basis-function-based finite difference operator splitting method for pricing American options. Int. J. Comput. Math. 95(11): 2343-2359 (2018) - 2017
- [j66]Mohan K. Kadalbajoo, Lok Pati Tripathi, Alpesh Kumar:
An Error Analysis of a Finite Element Method with IMEX-Time Semidiscretizations for Some Partial Integro-differential Inequalities Arising in the Pricing of American Options. SIAM J. Numer. Anal. 55(2): 869-891 (2017) - 2016
- [j65]Vikas Gupta, Mohan K. Kadalbajoo:
Qualitative analysis and numerical solution of burgers' equation via B-spline collocation with implicit euler method on piecewise uniform mesh. J. Num. Math. 24(2): 73-94 (2016) - 2015
- [j64]Mohan K. Kadalbajoo, Alpesh Kumar, Lok Pati Tripathi:
A radial basis functions based finite differences method for wave equation with an integral condition. Appl. Math. Comput. 253: 8-16 (2015) - [j63]Anuradha Jha, Mohan K. Kadalbajoo:
A robust layer adapted difference method for singularly perturbed two-parameter parabolic problems. Int. J. Comput. Math. 92(6): 1204-1221 (2015) - [j62]Mohan K. Kadalbajoo, Alpesh Kumar, Lok Pati Tripathi:
Application of the local radial basis function-based finite difference method for pricing American options. Int. J. Comput. Math. 92(8): 1608-1624 (2015) - [j61]Mohan K. Kadalbajoo, Lok Pati Tripathi, Alpesh Kumar:
Second Order Accurate IMEX Methods for Option Pricing Under Merton and Kou Jump-Diffusion Models. J. Sci. Comput. 65(3): 979-1024 (2015) - 2013
- [j60]Mohan K. Kadalbajoo, Alpesh Kumar, Lok Pati Tripathi:
Application of radial basis function with L-stable Padé time marching scheme for pricing exotic option. Comput. Math. Appl. 66(4): 500-511 (2013) - [j59]Devendra Kumar, Mohan K. Kadalbajoo:
A parameter uniform method for singularly perturbed differential-difference equations with small shifts. J. Num. Math. 21(1): 1-22 (2013) - 2012
- [j58]Mohan K. Kadalbajoo, Anuradha Jha:
Exponentially fitted cubic spline for two-parameter singularly perturbed boundary value problems. Int. J. Comput. Math. 89(6): 836-850 (2012) - [j57]Devendra Kumar, Mohan K. Kadalbajoo:
Numerical approximations for singularly perturbed differential-difference BVPs with layer and oscillatory behavior. J. Num. Math. 20(1): 33-54 (2012) - [j56]Mohan K. Kadalbajoo, Lok Pati Tripathi, Alpesh Kumar:
A cubic B-spline collocation method for a numerical solution of the generalized Black-Scholes equation. Math. Comput. Model. 55(3-4): 1483-1505 (2012) - 2011
- [j55]Mohan K. Kadalbajoo, Puneet Arora, Vikas Gupta:
Collocation method using artificial viscosity for solving stiff singularly perturbed turning point problem having twin boundary layers. Comput. Math. Appl. 61(6): 1595-1607 (2011) - [j54]V. P. Ramesh, Mohan K. Kadalbajoo:
Numerical algorithm for singularly perturbed delay differential equations with layer and oscillatory behavior. Neural Parallel Sci. Comput. 19(1-2): 21-34 (2011) - [j53]Mohan K. Kadalbajoo, Ankit Gupta:
An overview on the eigenvalue computation for matrices. Neural Parallel Sci. Comput. 19(1-2): 129-164 (2011) - 2010
- [j52]Mohan K. Kadalbajoo, Vikas Gupta:
A brief survey on numerical methods for solving singularly perturbed problems. Appl. Math. Comput. 217(8): 3641-3716 (2010) - [j51]Mohan K. Kadalbajoo, Puneet Arora:
Space-time Galerkin least-squares method for the one-dimensional advection-diffusion equation. Int. J. Comput. Math. 87(1): 103-118 (2010) - [j50]Mohan K. Kadalbajoo, Vikas Gupta:
A parameter uniform B-spline collocation method for solving singularly perturbed turning point problem having twin boundary layers. Int. J. Comput. Math. 87(14): 3218-3235 (2010) - [j49]Mohan K. Kadalbajoo, Puneet Arora:
B-splines with artificial viscosity for solving singularly perturbed boundary value problems. Math. Comput. Model. 52(5-6): 654-666 (2010) - [j48]Vikas Gupta, Mohan K. Kadalbajoo:
Numerical approximation of modified burgers' equation via hybrid finite difference scheme on layer-adaptive mesh. Neural Parallel Sci. Comput. 18(2): 167-194 (2010) - [j47]Mohan K. Kadalbajoo, Kailash C. Patidar:
Variable mesh spline approximation method for solving singularly perturbed turning point problems having interior layer. Neural Parallel Sci. Comput. 18(2): 207-220 (2010) - [j46]Mohan K. Kadalbajoo, Vikas Gupta:
Hybrid finite difference methods for solving modified burgers and Burgers-Huxley equations. Neural Parallel Sci. Comput. 18(3-4): 409-422 (2010)
2000 – 2009
- 2009
- [j45]Mohan K. Kadalbajoo, Puneet Arora:
B-spline collocation method for the singular-perturbation problem using artificial viscosity. Comput. Math. Appl. 57(4): 650-663 (2009) - [j44]Mohan K. Kadalbajoo, Devendra Kumar:
Initial value technique for singularly perturbed two point boundary value problems using an exponentially fitted finite difference scheme. Comput. Math. Appl. 57(7): 1147-1156 (2009) - [j43]V. P. Ramesh, Mohan K. Kadalbajoo:
Parameter uniform numerical schemes for second order singularly perturbed differential difference equations with layer behavior. Neural Parallel Sci. Comput. 17(2): 101-122 (2009) - 2008
- [j42]Ritesh Kumar, Mohan K. Kadalbajoo:
A class of high resolution shock capturing schemes for hyperbolic conservation laws. Appl. Math. Comput. 195(1): 110-126 (2008) - [j41]Mohan K. Kadalbajoo, Kapil K. Sharma:
A numerical method based on finite difference for boundary value problems for singularly perturbed delay differential equations. Appl. Math. Comput. 197(2): 692-707 (2008) - [j40]Mohan K. Kadalbajoo, Arjun Singh Yadaw:
B-Spline collocation method for a two-parameter singularly perturbed convection-diffusion boundary value problems. Appl. Math. Comput. 201(1-2): 504-513 (2008) - [j39]V. P. Ramesh, Mohan K. Kadalbajoo:
Upwind and midpoint upwind difference methods for time-dependent differential difference equations with layer behavior. Appl. Math. Comput. 202(2): 453-471 (2008) - [j38]Mohan K. Kadalbajoo, Devendra Kumar:
A non-linear single step explicit scheme for non-linear two-point singularly perturbed boundary value problems via initial value technique. Appl. Math. Comput. 202(2): 738-746 (2008) - [j37]Mohan K. Kadalbajoo, Devendra Kumar:
Fitted mesh B-spline collocation method for singularly perturbed differential-difference equations with small delay. Appl. Math. Comput. 204(1): 90-98 (2008) - [j36]Mohan K. Kadalbajoo, Arjun Singh Yadaw, Devendra Kumar:
Comparative study of singularly perturbed two-point BVPs via: Fitted-mesh finite difference method, B-spline collocation method and finite element method. Appl. Math. Comput. 204(2): 713-725 (2008) - [j35]Mohan K. Kadalbajoo, Ashish Awasthi:
Crank-Nicolson finite difference method based on a midpoint upwind scheme on a non-uniform mesh for time-dependent singularly perturbed convection-diffusion equations. Int. J. Comput. Math. 85(5): 771-790 (2008) - [j34]Mohan K. Kadalbajoo, Ashish Awasthi:
Uniformly convergent numerical method for solving modified Burgers' equations on a non-uniform mesh. J. Num. Math. 16(3): 217-235 (2008) - 2007
- [j33]Mohan K. Kadalbajoo, V. P. Ramesh:
Hybrid method for numerical solution of singularly perturbed delay differential equations. Appl. Math. Comput. 187(2): 797-814 (2007) - [j32]Mohan K. Kadalbajoo, V. P. Ramesh:
Numerical methods on Shishkin mesh for singularly perturbed delay differential equations with a grid adaptation strategy. Appl. Math. Comput. 188(2): 1816-1831 (2007) - [j31]Mohan K. Kadalbajoo, Vivek Kumar:
B-spline method for a class of singular two-point boundary value problems using optimal grid. Appl. Math. Comput. 188(2): 1856-1869 (2007) - [j30]Mohan K. Kadalbajoo, Devendra Kumar:
Geometric mesh FDM for self-adjoint singular perturbation boundary value problems. Appl. Math. Comput. 190(2): 1646-1656 (2007) - 2006
- [j29]Mohan K. Kadalbajoo, Ritesh Kumar:
A high resolution total variation diminishing scheme for hyperbolic conservation law and related problems. Appl. Math. Comput. 175(2): 1556-1573 (2006) - [j28]Mohan K. Kadalbajoo, Kailash C. Patidar:
epsilon-Uniformly convergent fitted mesh finite difference methods for general singular perturbation problems. Appl. Math. Comput. 179(1): 248-266 (2006) - [j27]Mohan K. Kadalbajoo, Kailash C. Patidar, Kapil K. Sharma:
epsilon-Uniformly convergent fitted methods for the numerical solution of the problems arising from singularly perturbed general DDEs. Appl. Math. Comput. 182(1): 119-139 (2006) - [j26]Mohan K. Kadalbajoo, Ashish Awasthi:
A numerical method based on Crank-Nicolson scheme for Burgers' equation. Appl. Math. Comput. 182(2): 1430-1442 (2006) - [j25]Mohan K. Kadalbajoo, Ashish Awasthi:
A parameter uniform difference scheme for singularly perturbed parabolic problem in one space dimension. Appl. Math. Comput. 183(1): 42-60 (2006) - [j24]Mohan K. Kadalbajoo, Kapil K. Sharma:
An ε-uniform convergent method for a general boundary-value problem for singularly perturbed differential-difference equations: Small shifts of mixed type with layer behavior. J. Comput. Methods Sci. Eng. 6(1-4): 39-55 (2006) - 2005
- [j23]Mohan K. Kadalbajoo, Vivek K. Aggarwal:
Numerical solution of singular boundary value problems via Chebyshev polynomial and B-spline. Appl. Math. Comput. 160(3): 851-863 (2005) - [j22]Mohan K. Kadalbajoo, Vivek K. Aggarwal:
Fitted mesh B-spline collocation method for solving self-adjoint singularly perturbed boundary value problems. Appl. Math. Comput. 161(3): 973-987 (2005) - [j21]Mohan K. Kadalbajoo, Kapil K. Sharma, Ashish Awasthi:
A parameter-uniform implicit difference scheme for solving time-dependent Burgers' equations. Appl. Math. Comput. 170(2): 1365-1393 (2005) - [j20]Mohan K. Kadalbajoo, Vivek K. Aggarwal:
Fitted mesh B-spline method for solving a class of singular singularly perturbed boundary value problems. Int. J. Comput. Math. 82(1): 67-76 (2005) - 2004
- [j19]Mohan K. Kadalbajoo, Vivek K. Aggarwal:
Cubic spline for solving singular two-point boundary value problems. Appl. Math. Comput. 156(1): 249-259 (2004) - [j18]Mohan K. Kadalbajoo, Kapil K. Sharma:
Numerical analysis of singularly perturbed delay differential equations with layer behavior. Appl. Math. Comput. 157(1): 11-28 (2004) - [j17]Mohan K. Kadalbajoo, Kapil K. Sharma:
l-Uniform fitted mesh method for singularly perturbed differential-difference equations: mixed type of shifts with layer behavior. Int. J. Comput. Math. 81(1): 49-62 (2004) - [j16]Mohan K. Kadalbajoo, Kapil K. Sharma:
Parameter uniform numerical method for a boundary-value problem for singularly perturbed nonlinear delay different equation of neutral type. Int. J. Comput. Math. 81(7): 845-862 (2004) - 2003
- [j15]Mohan K. Kadalbajoo, Kailash C. Patidar:
Singularly perturbed problems in partial differential equations: a survey. Appl. Math. Comput. 134(2-3): 371-429 (2003) - [j14]Mohan K. Kadalbajoo, Kailash C. Patidar:
Variable Mesh Spline in Compression for the Numerical Solution of Singular Perturbation Problems. Int. J. Comput. Math. 80(1): 83-93 (2003) - [j13]Mohan K. Kadalbajoo, Kapil K. Sharma:
An l-uniform fitted operator method for solving boundary-value problems for singularly perturbed delay differential equations: Layer behavior. Int. J. Comput. Math. 80(10): 1261-1276 (2003) - 2002
- [j12]Mohan K. Kadalbajoo, Kailash C. Patidar:
A survey of numerical techniques for solving singularly perturbed ordinary differential equations. Appl. Math. Comput. 130(2-3): 457-510 (2002) - [j11]Mohan K. Kadalbajoo, Kailash C. Patidar:
Numerical solution of singularly perturbed two-point boundary value problems by spline in tension. Appl. Math. Comput. 131(2-3): 299-320 (2002) - [j10]Mohan K. Kadalbajoo, Kailash C. Patidar:
Numerical Solution of Singularly Perturbed Non-Linear Two Point Boundary Value Problems by Spline in Compression. Int. J. Comput. Math. 79(2): 271-288 (2002) - [j9]Mohan K. Kadalbajoo, Kailash C. Patidar:
Tension Spline for the Solution of Self-adjoint Singular Perturbation Problems. Int. J. Comput. Math. 79(7): 849-865 (2002) - 2001
- [j8]Mohan K. Kadalbajoo, Kailash C. Patidar:
Numerical solution of singularly perturbed two point boundary value problems by spline in compression. Int. J. Comput. Math. 77(2): 263-283 (2001) - 2000
- [j7]Mohan K. Kadalbajoo, A. Appaji Rao:
Parallel group explicit algorithms for nonlinear singular perturbation problems with variable mesh. Neural Parallel Sci. Comput. 8(1): 1-14 (2000) - [j6]S. Chandra Sekhara Rao, Pravir K. Dutt, Mohan K. Kadalbajoo:
A Parallel Algorithm for Banded Linear System. Parallel Algorithms Appl. 14(3): 235-252 (2000)
1990 – 1999
- 1998
- [j5]Mohan K. Kadalbajoo, A. Appaji Rao:
Parallel discrete invariant embedding algorithm for singular pertubation problems. Int. J. Comput. Math. 66(1-2): 149-161 (1998) - 1997
- [j4]Mohan K. Kadalbajoo, A. Appaji Rao:
Performance Analysis of Age Algorithm for Singular Perturbation Problems. Parallel Algorithms Appl. 10(3-4): 315-318 (1997) - [j3]Mohan K. Kadalbajoo, A. Appaji Rao:
Parallel Group Explicit Method for Two-Dimensianal Parabolic Equations. Parallel Comput. 23(6): 649-666 (1997) - 1996
- [j2]Mohan K. Kadalbajoo, A. Appaji Rao:
Parallel Age Algorithm for Parabolic Equations with a Small Parameter. Parallel Algorithms Appl. 8(2): 155-168 (1996) - 1995
- [j1]Mohan K. Kadalbajoo, A. Appaji Rao:
Parallel Method for Solving Singularly Perturbed Boundary Value Problems. Parallel Algorithms Appl. 7(1-2): 121-131 (1995)
Coauthor Index
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