Question1. The net ionic equation for the reaction between sodium thiosulphate and hydrochloric acid is given as
To prove that this reaction follows first order kinetics, a student varied the concentration of while keeping that of constant of 2 M HCl and observed the rate of appearance of with time. Starting with 50 mL of , he generated the results shown in table 1 .
Table 1: Results for the clock reaction between and
\begin{tabular}{|l|l|l|l|l|}
\hline Beaker & Vol. & Vol. & {} & Time/s \\
\hline A & 50.0 & 0.0 & 0.15 & 22.5 \\
\hline B & 40.0 & 10.0 & & 27.3 \\
\hline C & 30.0 & 20.0 & & 35.1 \\
\hline D & 40.0 & 30.0 & & 60.0 \\
\hline E & 10.0 & 40.0 & & 159.1 \\
\hline
\end{tabular}
a) Copy and complete table 1.
b) Plot a graph of (M) against time (s).
Studdy Solution
Plot against time (s):
Calculate for each concentration:
\begin{align*}
\ln(0.15) & \approx -1.897, \\
\ln(0.12) & \approx -2.120, \\
\ln(0.09) & \approx -2.407, \\
\ln(0.06) & \approx -2.813, \\
\ln(0.03) & \approx -3.507. \\
\end{align*}
Plot these values against the corresponding times.
The plot should show a linear relationship, confirming first-order kinetics with respect to .
View Full Solution - FreeWas this helpful?