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Titlebook: Applied Mathematics and Scientific Computing; International Confer B. Rushi Kumar,R. Sivaraj,A. Subramanyam Reddy Conference proceedings 20

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An Adaptive Mesh Selection Strategy for Solving Singularly Perturbed Parabolic Partial Differential ic partial differential equations with a small delay. Similar problems are associated with a furnace used to process a metal sheet in control theory. The beauty of the method is, unlike the popular adaptive meshes (Bakhvalov and Shishkin), prior information of the width and position of the layers ar
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Steady Finite-Amplitude Rayleigh-Bénard-Taylor Convection of Newtonian Nanoliquid in a High-Porosityigid isothermal boundary condition. The nanoliquid is assumed to conform to a single-phase description and occupies a loosely packed porous medium. Critical Rayleigh number and Nusselt number as functions of various parameters are analyzed, and this is depicted graphically. A non-zero Taylor number
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Effect of Electromagnetohydrodynamic on Chemically Reacting Nanofluid Flow over a Cone and Platelly reacting nanofluid with two types of geometries. Simulations have been done to investigate the controlling equations by utilizing Crank-Nicolson scheme. Influence of embedded parameters such as Hartman number, heat source/sink, Brownian diffusion, chemical reaction, and thermophoretic diffusivit
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Chemical Reaction and Nonuniform Heat Source/Sink Effects on Casson Fluid Flow over a Vertical Cone reacting Casson fluid with two types of geometries. Formulations consist of salient features of radiative heat transfer, Lorentz force, and chemical reaction. This model is constituted with governing equations which are solved numerically by an efficient finite difference scheme of Crank-Nicolson t
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An Analytic Solution of the Unsteady Flow Between Two Coaxial Rotating Diskste dimensions, using the homotopy analysis method (HAM). Using similar variables, we first simplify the exact Navier–Stokes equation to highly coupled nonlinear partial differential equations. Upon application of the HAM these equations are replaced by a system of linear and uncoupled ordinary diffe
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Cross Diffusion Effects on MHD Convection of Casson-Williamson Fluid over a Stretching Surface with urface are examined in the presence of uniform external magnetic field. The thermal radiation and chemical reaction effects are included in the study. This physical model is mathematically modelled by a set of nonlinear partial differential equations with boundary conditions. The governing system of
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Study of Steady, Two-Dimensional, Unicellular Convection in a Water-Copper Nanoliquid-Saturated Porowalls being isothermal for two velocity boundary combinations, namely, free-free (FF) and rigid-rigid (RR). Brinkman model has been modified in the present study to account for added nanoparticles. Thermophysical properties of nanoliquid in a saturated porous medium as a function of corresponding pr
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