Reaction Rates, Activation Energy, and Catalysts Base your answers to practice questions 9 through 12 on the information below. An investigation was conducted to study the effect of the concentration of a reactant on the total time needed to complete a chemical reaction. Four trials of the same reaction were performed. In each trial the initial concentration of the reactant was different. The time needed for the chemical reaction to be completed was measured. The data for each of the four trials are shown in the data table below. Reaction Time Versus Initial Concentration Reactant Concentration and Reaction Time Initial Concentration Reaction Time Trial (M) (s) 0.020 11 0.015 14 0.010 23 0.005 58 0.000 0.005 0.010 0.015 0.020 0.025 Initial Concentration (M) 9. On the grid, mark an appropriate scale on the axis labeled "Reaction Time(s)." An appropriate scale is one that allows a trend to be seen. 10. On the same grid, plot the data from the table. Circle and connect the points. 11. State the effect of the concentration of the reactant on the rate of the chemical reaction. Reaction Time (s)
Reaction Rates, Activation Energy, and Catalysts Base your answers to practice questions 9 through 12 on the information below. An investigation was conducted to study the effect of the concentration of a reactant on the total time needed to complete a chemical reaction. Four trials of the same reaction were performed. In each trial the initial concentration of the reactant was different. The time needed for the chemical reaction to be completed was measured. The data for each of the four trials are shown in the data table below. Reaction Time Versus Initial Concentration Reactant Concentration and Reaction Time Initial Concentration Reaction Time Trial (M) (s) 0.020 11 0.015 14 0.010 23 0.005 58 0.000 0.005 0.010 0.015 0.020 0.025 Initial Concentration (M) 9. On the grid, mark an appropriate scale on the axis labeled "Reaction Time(s)." An appropriate scale is one that allows a trend to be seen. 10. On the same grid, plot the data from the table. Circle and connect the points. 11. State the effect of the concentration of the reactant on the rate of the chemical reaction. Reaction Time (s)
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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FYI: 9-12 is like a),b),c) and d)
This is not a writing assignment or essay.

Transcribed Image Text:Reaction Rates, Activation Energy, and Catalysts
Base your answers to practice questions 9 through 12 on the information below.
An investigation was conducted to study the effect of the concentration of a reactant on the
total time needed to complete a chemical reaction. Four trials of the same reaction were
performed. In each trial the initial concentration of the reactant was different. The time needed for
the chemical reaction to be completed was measured. The data for each of the four trials are
shown in the data table below.
Reaction Time Versus Initial Concentration
Reactant Concentration and Reaction Time
Initial Concentration
Reaction Time
Trial
(M)
(s)
1
0.020
11
0.015
14
0.010
23
4.
0.005
58
0.000
0.005
0.010
0.015
0.020
0.025
Initial Concentration (M)
9. On the grid, mark an appropriate scale on the axis labeled "Reaction Time(s)."
An appropriate scale is one that allows a trend to be seen.
10. On the same grid, plot the data from the table. Circle and connect the points.
11. State the effect of the concentration of the reactant on the rate of the chemical reaction.
12. In a different experiment involving the same reaction, it was found that an increase in
temperature increased the rate of the reaction. Explain this result in terms of collision theory.
Reaction Time (s)
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