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Based on that the nanofluid engineering parameters can be arranged by the decreasing importance for the heat transfer performance: particle concentration > base fluid > nanoparticle size > nanoparticle material ≈ surface charge > temperature ≈ particle shape > additives > Kapitza resistance.
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On the basis of the estimated intervals, the engineering structure parameters can be applied into engineering design.
In the context of mechanical engineering, conventional parameters can be adopted for the description of braided-textile machine elements, such as break load and elongation, which are determined in the tensile test.
It has been applied widely in electrical engineering for its simplicity as the parameters can be accurately identify.
Where these parameters can be chosen in engineering as follows: frac{1}{T_{c1}kern1.5em_{c1}kern1.5em beta =8sim 10.
Subsequently, the ACC with modified strength parameters can be applied in building engineering for construction and modernization of structures.
These parameters can be used in models for designing and optimizing hydrolysis processes and also to guide protein engineering programs.
The parameters can be identified from measurements or the recommended parameters for modelling of typical wheel rail contact conditions in engineering applications can be used.
Any of the parameters can be changed above.
Moreover, this parameter can be further extended even towards acceptance of mono-, di-, and trichloro-substituted substrates by enzyme engineering (Banas et al., [2006], Pavlova et al., [2009]).
That parameter can be set to "users" or "followings".
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