Examples of 'arrhenius equation' in a sentence

Meaning of "arrhenius equation"

arrhenius equation: The Arrhenius equation is a mathematical formula that describes the temperature dependence of reaction rates in chemical reactions. It relates the rate constant of a reaction to the temperature at which the reaction occurs, based on the activation energy and the universal gas constant
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  • An equation which approximates the dependence of the rate of any chemical reaction on the temperature.

How to use "arrhenius equation" in a sentence

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arrhenius equation
This test is based on the Arrhenius equation.
The Arrhenius equation is used in many branches of chemistry.
This was accomplished by using the Arrhenius equation.
The Arrhenius equation can be used to determine the activation energy for a reaction.
Such phenomenon is based on the Arrhenius equation.
Arrhenius equation The Arrhenius equation is a formula for the temperature dependence of reaction rates.
The influence of temperature is described by the Arrhenius equation.
Arrhenius equation gives quantitative relationship between rate of reaction, temperature and activation energy.
The common use temperature is calculated by Arrhenius equation.
Therefore, the Arrhenius equation can be applied.
Integration of this expression leads to the Arrhenius equation.
And the Arrhenius equation was applied to describe temperature effect,.
This leads to an expression very similar to the Arrhenius equation.
This is calculated using an Arrhenius equation albeit with a pseudo-constant of value 1.
The data correlate well with the Arrhenius equation.

See also

It determines the preexponential factor A of the Arrhenius equation for temperature dependence of reaction rates.
The effect of temperature on reaction rate is described by the Arrhenius equation.
Carbon Dioxide solubility in Polyethylene - Using Arrhenius equation for calculating species solubility in polymers.
The rate of protein denaturation is temperature dependent as described by the Arrhenius equation.
The process may be expressed using a standard Arrhenius equation of the type,.
Different checkpoints for different temperatures can be calculated by using the Arrhenius equation.
This is consistent with the theoretical expectation from the Arrhenius equation referred to above.
Lowering the temperature of a substance reduces chemical activity by the Arrhenius equation.
The rate may thus be expressed in terms of the Arrhenius equation.
The product Zρ is equivalent to the preexponential factor of the Arrhenius equation.
As may be seen, the temperature dependence of the inactivation constant followed the Arrhenius equation.
This hardening follows the Williams-Landel-Ferry equation, not the Arrhenius equation.

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Arrhenius went on to write extensively about atmospheric electricity
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