Advertisements
Advertisements
प्रश्न
The half-life period for the first order reaction is 1.7 hrs. How long will it take for 20% of the reactant to disappear?
Advertisements
उत्तर
Given: Half life (t1/2) = 1.7 hours, [A]0 = 100%, [A]t = 100 − 20 = 80%
To find: Time for 20% of reactant to react = t
Formulae:
- `"t"_(1/2) = 0.693/"k"`
- `"t" = 2.303/"K" log_10 ["A"]_0/["A"]_"t"`
Calculation: `"t"_(1/2) = 0.693/"k"`
k = `0.693/"t"_(1/2) = 0.693/(1.7 "h")` = 0.4076 h−1
t = `2.303/"k" log_10 ["A"]_0/["A"]_"t"`
= `2.303/(0.4076 "h"^-1) log 100/80`
t = `2.303/(0.4076 "h"^-1) xx 0.0969`
`= 0.5475 "h" xx (60 "min")/(1 "h")`
= 32.9 min
The time required for 20% of reaction to react is 0.5475 h or 32.9 min.
संबंधित प्रश्न
Answer the following in one or two sentences.
How do the half-lives of the first order and zero-order reactions change with the initial concentration of reactants?
Solve
The half-life of a first-order reaction is 1.7 hours. How long will it take for 20% of the reactant to react?
Answer the following in brief.
What are the units of the rate constant?
Derive an integrated rate law expression for first order reaction: A → B + C
The rate constant of the first order reaction is 1.386 min–1. Calculate the time required for 80% reactant to decompose?

This reaction follows first-order kinetics. The rate constant at particular temperature is 2.303 × 10−2 hour−1. The initial concentration of cyclopropane is 0.25 M. What will be the concentration of cyclopropane after 1806 minutes? (log 2 = 0.3010)
The rate constant of a reaction is 5.8 × 10−2 s−1. The order of the reaction is ____________.
If 75% of a first order reaction was completed in 60 minutes, 50% of the same reaction under the same conditions would be completed in ____________.
Describe the graphical representation of first order reaction.
Write the rate law for the following reaction.
A reaction that is second order in NO and first order in Br2.
Give two examples for zero order reaction.
Identify the order for the following reaction.
Radioactive disintegration of 92U238
A first order reaction is 40% complete in 50 minutes. Calculate the value of the rate constant. In what time will the reaction be 80% complete?
A first order reaction has rate constant 1 × 10−2 s−1. What time will, it take for 20 g or reactant to reduce to 5 g?
The rate constant of a reaction has same units as the rate of reaction. The reaction is of ____________.
For the first order reaction, plot of log10 [A]t against time 't' is a straight line with a negative slope equal to ____________.
For first order reaction the slope of the graph of log10 [A]t Vs. time is equal to ____________.
Which among the following is an example of zero order reaction?
0.0210 M solution of N2O5 is allowed to decompose at 43°C. How long will it take to reduce to 0.0150 M?
(Given k = 6.0 × 10−4 sec−1)
A first order reaction, A → B takes 100 minutes for it's 90% completion. What is the rate constant of reaction?
Which among the following reactions is an example of pseudo first order reaction?
Calculate half-life of a first order reaction in minute if the rate constant is 1 × 10-3 s-1.
Which is the relation between half life and rate constant for a zero order?
Consider the following reaction.
\[\ce{SO2(g) + 1/2 O2(g) <=>[K1] SO3(g)}\]
\[\ce{2SO3(g)<=>[K2] 2SO2(g) + O2(g)}\]
What is the relation between K1 and K2?
What are integrated rate laws?
