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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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https://doi.org/10.1007/978-3-658-17580-1meters on .(.) and .(.), skin friction coefficient, and rate of heat transfer is discussed graphically. It is observed that the heat transfer rate reduces and skin friction coefficient increases for the rise of .. and ..
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https://doi.org/10.1007/978-3-322-85570-1y is graphically presented. Tables demonstrate the significant impact of sundry parameters on skin friction factor and heat and mass transfer rates. It is observed that the electrical field parameter has high influences on the fluid flow and heat transfer characteristics.
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Möglichkeiten der Systemimplementierungnhances by raising the values of non-linear thermal radiation. The skin friction coefficient along x- and y-axis, local Nusselt number and Sherwood number are plotted for important parameter involved in the study, and the results are discussed in detail.
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Entwicklungsgrundlagen für den EUS-Einsatzes of surface shear stress, rate of heat, and mass transfers are presented through tables. Results enable us to state that larger electrical field decelerates the Casson fluid flow. Influence of the magnetic field on mean surface shear stress is more significant in the flow on a plate than that of cone.
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https://doi.org/10.1007/978-3-658-00155-1 of Brinkman-Bénard convection in a porous enclosure using single-phase model. The effect of nanoparticles is to advance onset of convection and enhance heat transfer, whereas porous medium facilitates delayed onset and retainment of heat energy in the system. The present study shows good agreement with those of previous works.
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