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The occurrence of nanoparticle fraction and heat transfer was found.
The pool boiling heat transfer was found to be maximum for the horizontal inclination.
However, no significant charge transfer was found between Cr and Ni.
The heat transfer was found to be maximum for α = 90° and minimum for α = 15°.
The enhancement in heat transfer was found to be lesser in the turbulent flow regime than in the laminar regime.
Mass transfer was found to be dependent on various particle characteristics.
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The prediction of the hydrodynamics without mass transfer is found to be accurate.
No appreciable differences in the boiling heat transfer were found for the heat flux less than the CHF.
Chemical kinetics and mass transfer were found to affect the product yield and selectivity.
The maximum overall heat transfer is found to occur when the vertical walls of the cavity are kept isothermally hot.
After validation, contribution of convection and radiation to the total heat transfer are found out using CFD.
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