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The catalytic kinetics could be qualitatively and quantitatively analyzed in detail with these two formulas.
We also give the expressions of the remainders in these two formulas, using the surface integral on a sphere.
These two formulas were more accurate and valuable than the old ones and they were more useful to the engineers.
The comparison between these two formulas reveals significantly different predictions of the breakup phenomenon for particular conditions.
A combination of these two formulas provides estimates of the incipient breaking wave heights which are in good agreement with independent experimental data.
We found that the combination of these two formulas leads to better results.
Similar(46)
With the addition of these two formulae (written more formally in predicate logic), all the desired conclusions can be drawn.
These two formulae will be used later for establishing the link between PARATUCK‐(2,4) models and constrained PARAFAC‐4 models.
These two formulae are more useful/practical in the estimation of engineered wood composites like LVL according to grain direction deviation between veneers in the lay-up process.
(2) In our article formula (16) and formula (20) use the time integral of load change to determine the load frequency contribution factor, and these two formulae only consider the voltage characteristics of the load.
These two formulae (classical Moritz and planar) are hereafter referred to as the classical formulae and are given respectively as C = G ρ 0 R 2 2 ∬ σ H - H P 2 l o 3 d σ, (1).
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