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The concentration of H2SiF6 can be determined with a titration method for two equivalence points.
Two equivalence ratios (1.0 and 1.3) were investigated with a 78% argon dilution.
It follows from Definition 1 that (sim _{mathcal A}) and (sim _mathrm{r}) are two equivalence relations.
For two equivalence classes [a] and [b], the partial ordering [a] ≼ [b] implies a1 ≤ b1, ∀a1 ∈ [a], b1 ∈ [b].
Thus, we get exactly two equivalence classes of sentences, each being a hypostatized representative of one of two classical truth values.
In particular, we prove two equivalence theorems for homogeneous and composite (core shell structure) two-temperature spheres, which paradigmatically represent particles dispersed in standard particulate materials.
Similar(40)
The demonstration of these two equivalences, presented hereafter, is direct and can be done using the basic B abstract machine definitions.
In both experimental studies, three equivalence ratios, 0.5, 1, and 1.5, were investigated.
Jet stirred reactor experiments are reported at 5 atm and five equivalence ratios.
Rapid compression machine ignition delay data was obtained near 40 bar, for three equivalence ratios, and temperatures below 800 K.
CH4/air flame at three equivalence ratios (lean, stoichiometric and rich) and a stoichiometric iso-octane/air flame are tested.
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