1. To complete the following table: a. Determine the initial concentrations (molarity) of S2032 and H* using the equation below. (Note: these values will be exactly the same for your experimental data.) ture 1 -234 5 Mstock Vstock -Minital Vtotal The Mstock and Vstock for each reagent are given in problem 1 (for example, for $2032-, the Mstock is 0.10 M and Vstock is 0.5 mL for mixture 1). The total volume is 0.6 ml. for each mixture. b. Calculate the relative rate of the reaction using the equation (note: these rates may differ slightly from the data collected during your experiment) Average Reaction t Time, s (S) 53.5 64.5 89.5 64.5 175 Relative reaction rate, s-1 0155 0112 0155 0057 0.0187 relative rate= 1 Reactant Concentration, S203²- (M) 0.0833 Reactant Concentration, H (M) 0.167

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Chapter1: Chemical Foundations
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1. To complete the following table:
a. Determine the initial concentrations (molarity) of S2032 and H* using the equation below. (Note: these values will be exactly
the same for your experimental data.)
xture
1
-234
5
Mstock Vstock -Minital Vtotal
The Mstock and Vstock for each reagent are given in problem 1 (for example, for $2032-, the Mstock is 0.10 M and Vstock
is 0.5 mL for mixture 1). The total volume is 0.6 ml. for each mixture.
b. Calculate the relative rate of the reaction using the equation (note: these rates may differ slightly from the data collected during
your experiment)
Average Reaction
Time, s
(S)
53.5
64.5
89.5
64.5
175
Relative reaction rate, s-1
0155
0112
0155
0057
0.0187
relative rate=
1
Reactant Concentration,
$203²-
(M)
0.0833
Reactant Concentration, H
(M)
0.167
Transcribed Image Text:1. To complete the following table: a. Determine the initial concentrations (molarity) of S2032 and H* using the equation below. (Note: these values will be exactly the same for your experimental data.) xture 1 -234 5 Mstock Vstock -Minital Vtotal The Mstock and Vstock for each reagent are given in problem 1 (for example, for $2032-, the Mstock is 0.10 M and Vstock is 0.5 mL for mixture 1). The total volume is 0.6 ml. for each mixture. b. Calculate the relative rate of the reaction using the equation (note: these rates may differ slightly from the data collected during your experiment) Average Reaction Time, s (S) 53.5 64.5 89.5 64.5 175 Relative reaction rate, s-1 0155 0112 0155 0057 0.0187 relative rate= 1 Reactant Concentration, $203²- (M) 0.0833 Reactant Concentration, H (M) 0.167
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