E Understanding the qualitative predictions of the Arrhenius.... A certain reaction is known to have an activation energy E-69.0 kJ/mol. Furthermore, the rate of this reaction is measured at 281. K and found to 1.5×10 M/s. Use this information to answer the questions in the table below. Suppose the concentrations of all reactants is kept the same, but the temperature is raised by 5% from 281. K to 295. K. How will the rate of the reaction change? Suppose the concentrations of all reactants is kept the same, but the catalyst is added, which has the effect of lowering the activation energy by 10%, from 69.0 kJ/mol to 62.1 kl/mol. The rate will choose one The rate will choose one

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KINETICS AND EQUILIRIOM
Understanding the qualitative predictions of the Arrhenius...
A certain reaction is known to have an activation energy E-69.0 kJ/mol. Furthermore, the rate of this reaction is measured at 281. K and found to be
1.5×10 M/s. Use this information to answer the questions in the table below.
Suppose the concentrations of all reactants is
kept the same, but the temperature is raised by
5% from 281. K to 295. K.
How will the rate of the reaction change?
Suppose the concentrations of all reactants is
kept the same, but the catalyst is added, which
has the effect of lowering the activation energy
by 10%, from 69.0 kJ/mol to 62.1 kl/mol.
How will the rate of the reaction change?
The rate will
choose one
The rate will choose one
X
S
Transcribed Image Text:KINETICS AND EQUILIRIOM Understanding the qualitative predictions of the Arrhenius... A certain reaction is known to have an activation energy E-69.0 kJ/mol. Furthermore, the rate of this reaction is measured at 281. K and found to be 1.5×10 M/s. Use this information to answer the questions in the table below. Suppose the concentrations of all reactants is kept the same, but the temperature is raised by 5% from 281. K to 295. K. How will the rate of the reaction change? Suppose the concentrations of all reactants is kept the same, but the catalyst is added, which has the effect of lowering the activation energy by 10%, from 69.0 kJ/mol to 62.1 kl/mol. How will the rate of the reaction change? The rate will choose one The rate will choose one X S
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