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The chemical lengths and critical diameters of one- or two-dimensional detonations thus prove to be very sensitive to the transfer hypothesis – specifically much larger with the fastest – as well as to small variations of constitutive parameters.
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Sensitivity analysis showed that the model was highly sensitive to the mass transfer coefficient of the surrounding air inside the microwave oven while intrinsic permeability did not affect moisture loss from the material.
Besides these findings, it indicates that the clearance is very sensitive to the heat transfer performance.
In addition, the long-time dispersion coefficient is shown to be sensitive to the mass transfer rate.
Summarily, the four criteria assessed are whether the inequity measure captures either inter-group or inter-individual differences or both; reflects health differences in relation to socioeconomic position; is sensitive to the absolute transfer of measures of health or income/wealth between groups; and able to capture health differences in relation to other population groupings.
In contrast, the model results for pH and Fe(II) were sensitive to the CO2 mass transfer rate constant (kL,CO2a).
It was found that the calculated smoke and shaft wall temperatures seem not quite sensitive to the radiation heat transfer in the case being studied.
It is also confirmed by the present work that the frequency response is very sensitive to the nature of the transfer mechanisms, making it theoretically feasible to discriminate between surface barrier control and intraparticle diffusion.
Since it is the integral in eqs 2 and 3 that is mostly sensitive to the mass of the transferred particle (i.e., the KIE), the KIE expression is the same for either TST (electronically adiabatic) or Marcus-like (electronically nonadiabatic) models: 4where P DAD l and P DAD h are the transfer probabilities for the light and heavy isotopes, respectively.
The simulations are shown to be sensitive to the treatment of heat transfer to the bluff-body face, with better agreement in the temperature profiles achieved with the addition of a Dirichlet temperature boundary condition.
The simulations of residence time distribution coupled to transient hydrodynamics are shown to be very sensitive to the modeling of interfacial transfer of momentum from the bubbles to the liquid in terms of drag and added mass, including the effect of bubble deformation.
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