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Magnetohydrodynamic flow and heat transfer of a hybrid nanofluid over a rotating disk by considering Arrhenius energy
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M Gnaneswara Reddy,Naveen Kumar R,B C Prasannakumara,N G Rudraswamy,K Ganesh Kumar
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Table 2. Numerical values of ${{Re}}^{\tfrac{1}{2}}{C}_{{\rm{fx}}}$ for different physical parameter values.
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| | | | ${{Re}}^{\tfrac{1}{2}}{C}_{{\rm{fx}}}$ |
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$M$ | $\lambda $ | ${\varnothing }_{1}$ | ${\varnothing }_{2}$ | Nanofluid | Hybrid nanofluid |
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0.5 | | | | −1.127 498 | −1.106 825 | 1.0 | | | | −1.177 467 | −1.153 211 | 1.5 | | | | −1.192 089 | −1.192 160 | | 0.1 | | | 0.977 902 | −1.094 206 | | 0.2 | | | −−1.084 503 | −1.145 167 | | 0.3 | | | −1.144 617 | −1.199 912 | | | 0.1 | | −0.137 800 | −0.184 883 | | | 0.2 | | −0.122 279 | −0.164 147 | | | 0.3 | | −0.106 240 | −0.142 617 | | | | 0.1 | −0.144 872 | −0.157 821 | | | | 0.2 | −0.125 478 | −0.148 756 | | | | 0.3 | −0.104 887 | −0.954 71 |
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