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Sandile Sydney Motsa
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- affiliation: University of KwaZulu-Natal, Pietermaritzburg, South Africa
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2020 – today
- 2022
- [j46]Sandile Sydney Motsa:
Overlapping Grid-Based Optimized Single-Step Hybrid Block Method for Solving First-Order Initial Value Problems. Algorithms 15(11): 427 (2022) - [j45]Joseph Malinzi, Simanga Gwebu, Sandile Sydney Motsa:
Determining COVID-19 Dynamics Using Physics Informed Neural Networks. Axioms 11(3): 121 (2022) - 2020
- [j44]Vusi Mpendulo Magagula, Sandile Sydney Motsa, Precious Sibanda:
Multidomain bivariate pseudo-spectral quasilinearization method for systems of nonlinear partial differential equations. Comput. Math. Methods 2(4) (2020) - [j43]Vusi Mpendulo Magagula, Sandile Sydney Motsa, Precious Sibanda:
A comparison of bivariate pseudospectral methods for nonlinear systems of steady nonsimilar boundary layer partial differential equations. Comput. Math. Methods 2(6) (2020)
2010 – 2019
- 2019
- [j42]Samuel Felix Mutua, Sandile Sydney Motsa:
A highly accurate trivariate spectral collocation method of solution for two-dimensional nonlinear initial-boundary value problems. Appl. Math. Comput. 360: 221-235 (2019) - [j41]Ramandeep Behl, Sergio Amat, Ángel Alberto Magreñán, Sandile Sydney Motsa:
An efficient optimal family of sixteenth order methods for nonlinear models. J. Comput. Appl. Math. 354: 271-285 (2019) - [j40]Mlamuli Dhlamini, Peri K. Kameswaran, Precious Sibanda, Sandile Sydney Motsa, Hiranmoy Mondal:
Activation energy and binary chemical reaction effects in mixed convective nanofluid flow with convective boundary conditions. J. Comput. Des. Eng. 6(2): 149-158 (2019) - 2018
- [j39]Hloniphile Sithole, Hiranmoy Mondal, Sicelo Goqo, Precious Sibanda, Sandile Sydney Motsa:
Numerical simulation of couple stress nanofluid flow in magneto-porous medium with thermal radiation and a chemical reaction. Appl. Math. Comput. 339: 820-836 (2018) - [j38]Sandile Sydney Motsa, Isaac Lare Animasaun:
Bivariate spectral quasi-linearisation exploration of heat transfer in the boundary layer flow of micropolar fluid with strongly concentrated particles over a surface at absolute zero due to impulsive. Int. J. Comput. Sci. Math. 9(5): 455-473 (2018) - [j37]Ramandeep Behl, D. González, Prashanth Maroju, Sandile Sydney Motsa:
An optimal and efficient general eighth-order derivative free scheme for simple roots. J. Comput. Appl. Math. 330: 666-675 (2018) - [j36]Abhimanyu Kumar, Prashanth Maroju, Ramandeep Behl, Dharmendra Kumar Gupta, Sandile Sydney Motsa:
A family of higher order iterations free from second derivative for nonlinear equations in ℝ. J. Comput. Appl. Math. 330: 676-694 (2018) - [j35]Ramandeep Behl, Alicia Cordero, Sandile Sydney Motsa, Juan R. Torregrosa:
An eighth-order family of optimal multiple root finders and its dynamics. Numer. Algorithms 77(4): 1249-1272 (2018) - 2017
- [j34]Ramandeep Behl, Alicia Cordero, Sandile Sydney Motsa, Juan R. Torregrosa:
Stable high-order iterative methods for solving nonlinear models. Appl. Math. Comput. 303: 70-88 (2017) - [j33]Sandile Sydney Motsa, Ch. RamReddy, Ch. Venkata Rao:
Non-similarity solution for Soret effect on natural convection over the vertical frustum of a cone in a nanofluid using new bivariate pseudo-spectral local linearisation method. Appl. Math. Comput. 314: 439-455 (2017) - [j32]Sandile Sydney Motsa, Zodwa G. Makukula:
On a Bivariate Spectral Homotopy Analysis Method for Unsteady Mixed Convection Boundary Layer Flow, Heat, and Mass Transfer due to a Stretching Surface in a Rotating Fluid. J. Appl. Math. 2017: 5962073:1-5962073:15 (2017) - [j31]Ramandeep Behl, Prashanth Maroju, Sandile Sydney Motsa:
A family of second derivative free fourth order continuation method for solving nonlinear equations. J. Comput. Appl. Math. 318: 38-46 (2017) - [j30]Prashanth Maroju, Ramandeep Behl, Sandile Sydney Motsa:
Some novel and optimal families of King's method with eighth and sixteenth-order of convergence. J. Comput. Appl. Math. 318: 136-148 (2017) - [j29]Young Ik Kim, Ramandeep Behl, Sandile Sydney Motsa:
An Optimal family of Eighth-order iterative Methods with an inverse interpolatory rational function error corrector for nonlinear equations. Math. Model. Anal. 22(3): 321-336 (2017) - 2016
- [j28]Ioannis K. Argyros, Ramandeep Behl, Sandile Sydney Motsa:
Local Convergence Analysis of an Eighth Order Scheme Using Hypothesis Only on the First Derivative. Algorithms 9(4): 65 (2016) - [j27]Young Ik Kim, Ramandeep Behl, Sandile Sydney Motsa:
Higher-order efficient class of Chebyshev-Halley type methods. Appl. Math. Comput. 273: 1148-1159 (2016) - [j26]Ramandeep Behl, Ioannis K. Argyros, Sandile Sydney Motsa:
A new highly efficient and optimal family of eighth-order methods for solving nonlinear equations. Appl. Math. Comput. 282: 175-186 (2016) - [j25]M. Prashanth, Dharmendra Kumar Gupta, Sandile Sydney Motsa:
Semilocal convergence of a continuation method under ω-differentiability condition. Int. J. Comput. Sci. Math. 7(5): 395-409 (2016) - [j24]Ioannis K. Argyros, Ramandeep Behl, Sandile Sydney Motsa:
Newton's method on generalized Banach spaces. J. Complex. 35: 16-28 (2016) - [j23]Ramandeep Behl, Alicia Cordero, Sandile Sydney Motsa, Juan R. Torregrosa, Vinay Kanwar:
An optimal fourth-order family of methods for multiple roots and its dynamics. Numer. Algorithms 71(4): 775-796 (2016) - 2015
- [j22]Ioannis K. Argyros, Ramandeep Behl, Sandile Sydney Motsa:
Local Convergence of an Optimal Eighth Order Method under Weak Conditions. Algorithms 8(3): 645-655 (2015) - [j21]Ioannis K. Argyros, Ramandeep Behl, Sandile Sydney Motsa:
Local Convergence of an Efficient High Convergence Order Method Using Hypothesis Only on the First Derivative. Algorithms 8(4): 1076-1087 (2015) - [j20]Ramandeep Behl, Alicia Cordero, Sandile Sydney Motsa, Juan R. Torregrosa:
On developing fourth-order optimal families of methods for multiple roots and their dynamics. Appl. Math. Comput. 265: 520-532 (2015) - [j19]Ch. RamReddy, P. A. Lakshmi Narayana, Sandile Sydney Motsa:
A spectral relaxation method for linear and non-linear stratification effects on mixed convection in a porous medium. Appl. Math. Comput. 268: 991-1000 (2015) - [j18]Ramandeep Behl, Alicia Cordero, Sandile Sydney Motsa, Juan R. Torregrosa:
Construction of fourth-order optimal families of iterative methods and their dynamics. Appl. Math. Comput. 271: 89-101 (2015) - 2014
- [j17]Sandile Sydney Motsa, Hassan Saberi Nik, Sohrab Effati, Jafar Saberi-Nadjafi:
On the piecewise-spectral homotopy analysis method and its convergence: solution of hyperchaotic Lü system. J. Num. Math. 22(4): 343-362 (2014) - [j16]Hassan Saberi Nik, Sohrab Effati, Sandile Sydney Motsa, Mohammad Shirazian:
Spectral homotopy analysis method and its convergence for solving a class of nonlinear optimal control problems. Numer. Algorithms 65(1): 171-194 (2014) - [j15]Stanford Shateyi, Sandile Sydney Motsa, Yasir Khan:
A new piecewise spectral homotopy analysisof the Michaelis-Menten enzymatic reactions model. Numer. Algorithms 66(3): 495-510 (2014) - [j14]Sandile Sydney Motsa:
On the practical use of the spectral homotopy analysis method and local linearisation method for unsteady boundary-layer flows caused by an impulsively stretching plate. Numer. Algorithms 66(4): 865-883 (2014) - 2013
- [j13]Sandile Sydney Motsa:
A New Spectral Local Linearization Method for Nonlinear Boundary Layer Flow Problems. J. Appl. Math. 2013: 423628:1-423628:15 (2013) - [j12]Sandile Sydney Motsa, Precious Sibanda:
On Extending the Quasilinearization Method to Higher Order Convergent Hybrid Schemes Using the Spectral Homotopy Analysis Method. J. Appl. Math. 2013: 879195:1-879195:9 (2013) - [j11]Sandile Sydney Motsa, Precious Sibanda:
Some modifications of the quasilinearization method with higher-order convergence for solving nonlinear BVPs. Numer. Algorithms 63(3): 399-417 (2013) - 2012
- [j10]Sandile Sydney Motsa, Precious Sibanda:
A linearisation method for non-linear singular boundary value problems. Comput. Math. Appl. 63(7): 1197-1203 (2012) - [j9]Sandile Sydney Motsa, Yasir Khan, Stanford Shateyi:
Application of Piecewise Successive Linearization Method for the Solutions of the Chen Chaotic System. J. Appl. Math. 2012: 258948:1-258948:12 (2012) - [j8]Fazlollah Soleymani, Diyashvir Kreetee Rajiv Babajee, Stanford Shateyi, Sandile Sydney Motsa:
Construction of Optimal Derivative-Free Techniques without Memory. J. Appl. Math. 2012: 497023:1-497023:24 (2012) - [j7]Sandile Sydney Motsa, Stanford Shateyi:
The Effects of Chemical Reaction, Hall, and Ion-Slip Currents on MHD Micropolar Fluid Flow with Thermal Diffusivity Using a Novel Numerical Technique. J. Appl. Math. 2012: 689015:1-689015:30 (2012) - [j6]Hengameh Montazeri, Fazlollah Soleymani, Stanford Shateyi, Sandile Sydney Motsa:
On a New Method for Computing the Numerical Solution of Systems of Nonlinear Equations. J. Appl. Math. 2012: 751975:1-751975:15 (2012) - [j5]Sandile Sydney Motsa, Stanford Shateyi, Gerald T. Marewo, Precious Sibanda:
An improved spectral homotopy analysis method for MHD flow in a semi-porous channel. Numer. Algorithms 60(3): 463-481 (2012) - [j4]Sandile Sydney Motsa, Precious Sibanda, Gerald T. Marewo:
On a new analytical method for flow between two inclined walls. Numer. Algorithms 61(3): 499-514 (2012) - 2011
- [j3]F. G. Awad, Precious Sibanda, Sandile Sydney Motsa, Oluwole Daniel Makinde:
Convection from an inverted cone in a porous medium with cross-diffusion effects. Comput. Math. Appl. 61(5): 1431-1441 (2011) - [j2]Sandile Sydney Motsa:
A New Algorithm for solving nonlinear boundary Value Problems arising in heat Transfer. Int. J. Model. Simul. Sci. Comput. 2(3) (2011)
2000 – 2009
- 2008
- [j1]Stanford Shateyi, Precious Sibanda, Sandile Sydney Motsa:
On the Asymptotic Approach to Thermosolutal Convection in Heated Slow Reactive Boundary Layer Flows. J. Appl. Math. 2008 (2008)
Coauthor Index
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