हिंदी

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
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?

संख्यात्मक
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: 

  1. `"t"_(1/2) = 0.693/"k"`
  2. `"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.

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 6: Chemical Kinetics - Long answer questions

संबंधित प्रश्न

What are pseudo-first-order reactions?


Answer the following in brief.

What is a zeroth-order reaction?


Answer the following in brief.

Give one example and explain why it is pseudo-first-order.


For first order reaction, the rate constant for the decomposition of N2O5 is 6 × 10–4 s –1. The half-life period for decomposition in seconds is ______.


Explain with the help of a potential energy diagram that the catalyst increases the rate of the reaction.


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?


For a first order reaction \[\ce{A ->Product}\] with initial concentration x mol L−1, has a half life period of 2.5 hours. For the same reaction with initial concentration `("x"/2)` mol L−1 the half life is


In a first order reaction \[\ce{x -> y}\]; if k is the rate constant and the initial concentration of the reactant x is 0.1 M, then, the half life is


Describe the graphical representation of first order reaction.


Give two examples for zero order reaction.


The time of completion of 90% of a first order reaction is approximately ____________.


Which among the following reaction is an example of a zero order reaction?


The activation energy of a reaction is zero. Its rate constant at 280 K is 1.6 × 10-6 s-1, the rate constant at 300 K is ______.


What is the order of reaction if the unit of rate constant (k) is mol dm−3 s−1?


The integrated rate equation for first-order reaction, A → product, is ______.


Which of the following represents the expression for `(3/4)^"th"` life of 1st order reaction?


In the reaction \[\ce{2SO2 + O2 -> 2SO3}\] the rate of appearance of SO3 is 4 × 10−4 M/s, the rate of disappearance of O2 is ____________.


The initial concentration of reactant (A) is 2 mol dm−3 for a zero order reaction \[\ce{A -> B}\]. The rate constant (k) is related to its half-life `("t"_(1//2))` by the equation:


Which among the following is an example of pseudo first order reaction?


Half-life of first order reaction is 20 minutes. What is the time taken to reduce the initial concentration of the reactant to `1/10`th?


What is the unit of rate constant for the zero order reaction?


Obtain the expression for half-life and rate constant of the first-order reaction.


Define the half-life of a first-order reaction.


The rate constant for a first order reaction is 7.0 × 10-4 s-1. If initial concentration of reactant is 0.080 M, what is the half-life of reaction?


What is the rate constant of a first order reaction if 0.08 mole of reactant reduces to 0.02 mole in 23.03 minutes?


Which of the following correctly represents integrated rate law equation for a first order reaction in a gas phase?


Calculate half life of reaction if rate constant of first order reaction is 0.0178 minute−1.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×