Table 5 The values of \(\frac{{Nu_{x} }}{{\sqrt {Re_{x} } }}\), for increasing \(Le, {K}_{1}\) and \({\alpha }_{1}\) when \(n = 0.2,\beta = 0.3, M=0.2, \varepsilon = 0.2,Rd = 0.5, Pr= 0.71,{N}_{b}= 0.1 {N}_{t} = 0.1,N = 0.1,\lambda = 0.1,Ec = 0.1, E=2,\) \(\delta = 0.5,m = 0.5,B{i}_{1}= 0.1,B{i}_{2}= 0.1,{B}_{r} = 0.5,{\lambda }_{1} = 2,\chi = 2.\)

From: Partial differential equations modeling of thermal transportation in Casson nanofluid flow with arrhenius activation energy and irreversibility processes

\(Le\)

\({k}_{1}\)

\({\alpha }_{1}\)

\(S{h}_{x}/\sqrt{R{e}_{x}}\)

0.4

0.1

0.1

0.076369

0.6

  

0.076656

0.8

  

0.076903

 

0.3

 

0.07797

 

0.5

 

0.079098

 

0.1

0.3

0.076203

  

0.5

0.074869