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Trade-off contour diagrams between investigated mixture constituents and the modeled responses were illustrated.
However, C2HF3Cl2 reduced the flame speeds for all of the investigated mixture conditions.
The WMA mixtures prepared with 75% RAP and Advera® WMA have produced the lowest CO2 emissions among the investigated mixture types.
In every investigated mixture, mole fraction of Tween 80 varies from 0.05 to 0.5 of the total surfactant concentration.
Microgravity experiments at a = 2.7 3.2 showedowed that transitions from planar flames to ball-like flames occurred near extinction for the investigated mixture.
Equilibrium adsorption experiments were performed with different initial concentrations of benzene solutions (0.036 0.74 g L−1) with the same air-dried weighted amounts (0.01 0.02 g) of each silica in the air-tight vials with 12 ml of investigated mixture.
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Variable antiproliferative activity was revealed with the investigated mixtures M1-M22 and the individual compounds 1-11 A-K).
However, all field investigated mixtures exhibited similar long-term deformation patterns and magnitudes.
Washout loss of investigated mixtures was evaluated using the CRD C61 test method.
The values of K for the investigated mixtures were evaluated using the experimentally reported ∆η and (V_{text{m}}^{text{E}}) data [12] (Table 1).
Two types of mixtures were investigated: mixtures diluted in Ar (97.15 97.5% dilution) to isolate the chemistry from gas dynamic effects and air/fuel mixtures to represent realistic conditions.
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