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The reaction rate increases with decreasing temperature.
The reaction rate increases exponentially with relative humidity.
Batch experiments showed that reaction rate increases with temperature.
Reaction rate increases when temperature increases, when concentration increases, and when solid reactants have more surface area available (e.g., when the reactants are in smaller pieces).
The reaction rate increases due to the temperature rise, causing a further increase in reaction rate and temperature.
As the ratio of oxygen concentration to phenol concentration increases, the reaction rate increases asymptotically.
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The reaction rate increased with increasing temperature up to 650°C.
The reaction rate increased with the hydrogen partial pressure.
These may include optimizing the reaction rate, increasing the yield, increasing selectivity, and increasing the ease of workup.
The effective reaction rate increased with increasing the intensity of convective fluxes within the porous pellets.
The results showed that the reaction rate increased with disk angular velocity in accordance with a saturation-type dependency.
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