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- W4381853670 abstract "Stretched flows past over a deformable surfaces has numerous applications. Utilization of Hall and Ion slip effects has been considered to model three-dimensional flow of Williamson nanofluid model. The phenomena if thermal and solutal transport have ben modeled by considering Buongiorno model, modified heat and man flux theory by considering Joule heating in certain coordinate system. The derived phenomena result in the form of coupled partial differential equation (PDEs) which is simplified by using principal of boundary layer theory. The derived PDEs are nonlinear and complex in nature and are converted into ordinary differential equation (ODEs) by engaging an appropriate transformation. Afterwards, convert ODEs are handled for the solution via optimal homotopy procedure.The authenticity of applied scheme is shown by listing the comparative study against different emerging parameters. Results are displayed through graphs and tables and which confirm the authenticity of used algorithm. From the performed analysis, it is recorded that hall and slip parameters escalated the velocity field and provided deceleration in temperature and concentration fields." @default.
- W4381853670 created "2023-06-25" @default.
- W4381853670 creator A5061509053 @default.
- W4381853670 creator A5071832221 @default.
- W4381853670 date "2023-06-22" @default.
- W4381853670 modified "2023-10-16" @default.
- W4381853670 title "Numerical computation of thermal and mass transportation in Williamson material utilizing modified fluxes via optimal homotopy analysis procedure" @default.
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- W4381853670 doi "https://doi.org/10.1080/17455030.2023.2226230" @default.
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