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Rate of Reaction – Grade 11 Quiz

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Test your understanding of reaction rates.

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Rate of Reaction – Grade 11 Quiz
 

Rate of Reaction – Grade 11 QuizOnline version

Test your understanding of reaction rates.

by science rania
1

The rate constant k depends on temperature (as described by the Arrhenius equation).

2

The rate of reaction can be negative.

3

A catalyst increases the rate by providing an alternative pathway with lower activation energy.

4

Doubling the concentration of a reactant always doubles the rate regardless of reaction order.

5

The rate of reaction increases with higher temperature due to more effective collisions.

6

Catalysts are consumed during the reaction.

7

For a first-order reaction in A, doubling the concentration of A doubles the rate.

8

Increasing temperature leads to a lower rate of reaction.

9

The rate of reaction is the change in concentration of reactants or products per unit time.

10

The rate constant k has the same value for all reactions at a given temperature.

11

The Boltzmann factor e^(-Ea/RT) represents the fraction of collisions with enough energy to overcome the activation energy.

12

The Arrhenius equation implies that the rate constant decreases exponentially with increasing temperature.

13

The Boltzmann distribution describes the fraction of molecules with kinetic energy above the activation energy at a given temperature.

14

A higher temperature shifts the Boltzmann distribution to the right, increasing the proportion of high-energy molecules.

15

The Boltzmann distribution predicts that all molecules have the same energy at a given temperature.

16

A catalyst changes the Boltzmann distribution of reactant energies at a fixed temperature.

17

Activation energy Ea is the same as the overall enthalpy change ΔH of the reaction.

18

The Arrhenius equation k = A e^(-Ea/RT) relates the rate constant to activation energy and temperature.

19

Increasing pressure alone always increases the reaction rate regardless of the mechanism.

20

The rate of a reaction increases with temperature because more molecules have energy above the activation energy.

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