Advertisements
Advertisements
प्रश्न
A first order reaction takes 10 minutes for 25% decomposition. Calculate t1/2 for the reaction.
(Given : log 2 = 0.3010, log 3 = 0.4771, log 4 = 0.6021)
Advertisements
उत्तर
The rate constant k for a first-order reaction is given by
\[k = \frac{2 . 303}{t}\log\frac{\left[ R \right]_o}{\left[ R \right]}\]
\[where\]
\[ \left[ R \right]_o = \text{Initial concentration of reactant}\]
\[\left[ R \right] = \text{Final concentration of reactant}\]
\[At t = 10 \min, \]
\[k = \frac{2 . 303}{10}\log\frac{100}{100 - 25} = \frac{2 . 303}{10}\log\frac{4}{3}\]
\[ \Rightarrow k = \frac{2 . 303}{10}\left( \log 4 - \log 3 \right) = \frac{2 . 303}{10}\left( 0 . 6021 - 0 . 4771 \right)\]
\[ \Rightarrow k = 2 . 88 \times {10}^{- 2} \min^{- 1}\]
For a first order reaction, half-life and rate constant are related as
\[t_{1/2} = \frac{0 . 693}{k}\]
\[ \Rightarrow t_{1/2} = \frac{0 . 693}{2 . 88 \times {10}^{- 2}} = 24 . 06 \min\]
Hence, the t1/2 for the reaction is 24.06 minutes.
APPEARS IN
संबंधित प्रश्न
The integrated rate equation for first order reaction is A → products
Derive the relation between half life and rate constant for a first order reaction
A first order reaction takes 40 minutes for 30% decomposition. Calculate t1/2 for this reaction. (Given log 1.428 = 0.1548)
Calculate the half-life of a first order reaction from the rate constant given below:
200 s−1
Define half life of a reaction.
The amount of C-14 isotope in a piece of wood is found to be 1/16th of its amount present in a fresh piece of wood. The age of wood, half-life period of C-14 is 5770 years, is ______ years.
A reaction has a half-life of 1 min. The time required for 99.9% completion of the reaction is ______ min.
(Round off to the nearest integer).
[Use: In 2 = 0.69; In 10 = 2.3]
Obtain a relation, `k_2/k_1 = ((t_(1/2))_2)/((t_(1/2))_1)`, where k1 and k2 are rate constants while (t1/2)1 and (t1/2)2 are half-life periods of the first order reaction at temperatures T1 and T2 respectively. Write the relation for activation energy.
The half-lives of a first-order reaction are 1.19s at 313 K and 15.45s at 293 K. Calculate the energy of activation.
The unit of rate constant of zero order reaction is ______.
