Examples of 'higher reaction' in a sentence
Meaning of "higher reaction"
higher reaction - This phrase is often used in chemistry or physics to describe a more intense or increased response to a stimulus. It signifies a more pronounced reaction compared to a lower or standard reaction
How to use "higher reaction" in a sentence
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higher reaction
Larger surface areas lead to higher reaction rates.
A higher reaction rate is preferred.
This will allow maintenance of a higher reaction temperature.
Higher reaction temperatures permit faster epoxide feed rates.
A process resulting in even higher reaction rates is therefore desirable.
Higher reaction temperatures will drive the reaction to carboxylic acids.
This allows for a constant current and higher reaction rate.
At higher reaction temperatures the reaction towards magnetite may be induced by altered kinetics.
Higher boiling solvents can be employed if higher reaction temperatures are desirable.
A higher reaction temperature generally produces a less crystalline polymer having a lower melting point.
The advantage of this method is that higher reaction temperatures can be reached.
Higher reaction temperatures naturally reduce the required reaction time for any particular system of reactants.
The use of cyclic ethers makes it possible higher reaction speeds to be obtained.
Higher reaction temperature gave more evaporation of water and higher sulphate and dry matter concentrations.
Hydrogen iodides and hydrogen bromides are preferred promoters at the higher reaction temperatures.
See also
Terephthalic acid also requires a higher reaction temperature compared to the other carboxylic acids.
The desired imidization occurs more readily when using higher reaction temperatures.
The reaction is then adjusted to a higher reaction temperature and for a specified reaction period.
Methylene bridge links are preferably formed under acidic conditions and higher reaction temperatures.
Higher reaction temperatures generally reduce the required reaction time for any particular system of reactants.
Only nickel and Raney nickel provide higher reaction activity to the hydrogenation.
Create content to capitalize on times when you are likely to attract higher Reaction rates.
Higher reaction temperatures produce larger PCC crystals.
At higher pressures, higher reaction temperatures may be used.
Generally, higher pressures provide for a higher reaction rate.
LiCo has higher reaction energy during thermal runaway than IMO.
Therefore, a higher temperature often results in a higher reaction rate.
On the contrary, a higher reaction temperature gives a higher reaction rate.
Long reaction times generally favor by-product formation, as do higher reaction temperatures.
In this case, a higher reaction temperature will automatically result in a higher pressure.
In this preferred temperature range, a higher reaction rate tends to be attained.
Unfortunately, higher reaction temperatures inevitably produce resins with high color.
At greater than atmospheric pressure, higher reaction temperatures can be used.
Higher reaction temperatures during cross-linking may inactivate the enzyme.
For example, a less active catalyst will require a higher reaction temperature.
Higher reaction temperatures will reduce time for conversion to the desired product ( s ).
On the other hand, additional oxygen is required to achieve a higher reaction yield.
For example, higher reaction temperatures will typically increase the rate of fragmentation.
As a result, higher capital productivity and potentially higher reaction yields would be achieved.
Generally, higher reaction temperatures and a higher catalyst charge promote faster reaction rates.
Furthermore, the dynamics are also increased because a higher reaction rate can be achieved.
In addition, the higher reaction temperatures produces higher product yield at a faster rate of reaction.
Comp Example 6 This is an example of the CSTR operated at a higher reaction temperature.
Higher temperature leads to higher reaction rate and shorter reaction time, which is preferred.
Higher reaction accuracies could be obtained using more computationally-demanding techniques such as coupled clusters.
Typically, higher temperatures produce a higher reaction rate, and lower temperatures produce a lower reaction rate.
Higher reaction temperatures gave higher reinforcement - indicative of more complete reaction or higher molecular weight.
For any given MN, a higher reaction temperature may be employed.
Higher reaction temperatures decreased the Mw values ( measured by GPC ) with a concurrent increase in polydispersity.
By suppressing the rate of crystallization, higher reaction rates are possible as seen in Table 4.
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It would give its reaction at a later date
Quick reaction times in case of delay s or malfunctioning
I am having a physical reaction to how bad this is