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Titlebook: Advances in Fluid Dynamics; Selected Proceedings B. Rushi Kumar,R. Sivaraj,J. Prakash Conference proceedings 2021 Springer Nature Singapore

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Chemisch-technische Untersuchungsmethodenan infinite vertical permeable plate with Ohmic heating in aspect of soret as well as chemical reaction has been presented. The modelling equations are transformed into dimensionless equations and then solved analytically through multiple regular perturbation law. Computations were carried out graph
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Chemisch-technische Untersuchungsmethodenbounded micropolar elastic solid with a fluid-loaded spherical cavity. The micropolar elastic solid is homogeneous and isotropic, but the loaded fluid is homogenous, isotropic, and in viscid. Dispersion relation for radial vibrations of macro-displacements is derived and which is influenced by the l
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Untersuchung der Schmiermittel,ture are investigated. The Keller-Box technique is utilized to solve the transformed conservation equations subject to physically appropriate boundary conditions. The variations of different emerging dimensionless parameters on ., . profiles are presented.
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Chemisch-technische Untersuchungsmethodenat/mass at the juncture of two fluids. The multiple timescale expansion method is utilized to study various modes of instability. The stability of arrangement is finally governed by a partial differential equation which is nonlinear in nature. The stable/unstable zones are represented graphically sh
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Chemisch-technische Untersuchungsmethodenas well as a chemical reacting fluid past an accelerated affecting vertical porous plate with ramped temperature and Dufour effect. The modelling equations are reformed into dimensionless equations, further illuminated systematically by multiple standard perturbation law. Appraisals were operational
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Chemisch-technische Untersuchungsmethodenor the first time. The surface tension is required to change directly with temperature. Titanium dioxide/ethylene glycol dusty nanofluid has been enlisted for the improvement of heat transfer rate. By using appropriate similarity transformation for dusty nanoliquid, dimensionless non-linear ordinary
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https://doi.org/10.1007/978-981-15-4308-1Computational Fluid Dynamics; Mathematical Modeling; Thermal Engineering; Aerospace Dynamics; Design Eng
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978-981-15-4310-4Springer Nature Singapore Pte Ltd. 2021
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