Home
Class 12
CHEMISTRY
Sucrose decomposes in acid solution to g...

Sucrose decomposes in acid solution to give glucose and fructose according to the first order rate law. The half life of the reaction 3 hours. Calculate fraction of sucrose which will remain after 8 hours.

Answer

Step by step text solution for Sucrose decomposes in acid solution to give glucose and fructose according to the first order rate law. The half life of the reaction 3 hours. Calculate fraction of sucrose which will remain after 8 hours. by CHEMISTRY experts to help you in doubts & scoring excellent marks in Class 12 exams.

Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • CHEMICAL KINETICS

    CHETANA PUBLICATION|Exercise EXERCISE|112 Videos
  • Biomolecules

    CHETANA PUBLICATION|Exercise EXERCISE|98 Videos
  • Chemical Thermodynamics

    CHETANA PUBLICATION|Exercise EXERCISE|95 Videos

Similar Questions

Explore conceptually related problems

Hydrolysis of cane sugar in presence of acid is a first order reaction with half life time of 4 hours what fraction of sucrose undergoes hydrolysis in 11 hrs ?

In a first order reaction 60% of the reactant decomposes in 45 minutes. Calculate the half life for the reaction.

In a first order reaction 60% of the reactant decomposes in 45 minutes. Calculate the half life for the reaction.

The rate law for the reaction Sucrose + Water overset([H^(+)]) to Glucose + Fructose is given by

In a first order reaction 60% of the reactant decomposes in 45minutes.Calculate the half life for the reaction.

The half life of a first order reaction is 1.7 hours. How long will it take for 20% of the reactant to react?

The half life of a first order reaction is 1.7 hours. How long will it take for 20% of the reactant to react?

Calculate the half life of a first order reaction from their rate constants given below:- 2 min^(-1)

Calculate the half life of a first order reaction from their rate constants given below:-4 year^(-1)

The half life of first order reaction is 990 s. If the initial concentration of the reactant is 0.08 mol dm^(-3) what concentration would remain after 35 minutes?