मराठी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान 2nd PUC Class 12

Time required to decompose SO2Cl2 to half of its initial amount is 60 minutes. If the decomposition is a first order reaction, calculate the rate constant of the reaction. - Chemistry

Advertisements
Advertisements

प्रश्न

Time required to decompose SO2Cl2 to half of its initial amount is 60 minutes. If the decomposition is a first order reaction, calculate the rate constant of the reaction.

संख्यात्मक
Advertisements

उत्तर

We know that for a first-order reaction,

k = `0.693/(t_(1//2))`

= `0.693/(60 min)`

 = 1.155 × 10−2 min−1

or, k = `0.693/(60 xx 60 s)`

= 1.925 × 104 s−1

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 3: Chemical Kinetics - Intext Questions [पृष्ठ ७८]

APPEARS IN

एनसीईआरटी Chemistry Part 1 and 2 [English] Class 12
पाठ 3 Chemical Kinetics
Intext Questions | Q 3.6 | पृष्ठ ७८
नूतन Chemistry Part 1 and 2 [English] Class 12 ISC
पाठ 4 Chemical Kinetics
REVIEW EXERCISES | Q 4.44 | पृष्ठ २३७

संबंधित प्रश्‍न

A first order reaction has a rate constant 1.15 × 10−3 s1. How long will 5 g of this reactant take to reduce to 3 g?


The following data were obtained during the first order thermal decomposition of SO2Cl2 at a constant volume.

\[\ce{SO2Cl2_{(g)} -> SO2_{(g)} + Cl2_{(g)}}\]

Experiment Time/s–1 Total pressure/atm
1 0 0.5
2 100 0.6

Calculate the rate of the reaction when total pressure is 0.65 atm.


For the decomposition of azoisopropane to hexane and nitrogen at 543 K, the following data are obtained.

t (sec) P(mm of Hg)
0 35.0
360 54.0
720 63.0

Calculate the rate constant.


The time required for 10% completion of a first order reaction at 298 K is equal to that required for its 25% completion at 308 K. If the value of A is 4 × 1010 s−1. Calculate k at 318 K and Ea.


Following data are obtained for reaction :

N2O5 → 2NO2 + 1/2O2

t/s 0 300 600
[N2O5]/mol L–1 1.6 × 10-2 0.8 × 10–2 0.4 × 10–2

1) Show that it follows first order reaction.

2) Calculate the half-life.

(Given log 2 = 0.3010, log 4 = 0.6021)


Define order of reaction. How does order of a reaction differ from molecularity for a complex reaction? 


 A first order reaction is 50% complete in 25 minutes. Calculate the time for 80% completion of the reaction.


Show that the time required for 99.9% completion of a first-order reaction is three times the time required for 90% completion.


State a condition under which a bimolecular reaction is kinetically first order reaction.


A first order reaction is 50% complete in 20 minute What is rate constant?


In the first order reaction, half of the reaction is complete in 100 seconds. The time for 99% of the reaction to occurs will be


Gaseous cyclobutene isomerizes to butadiene in a first order process which has a 'k' value of 3.3 × 10−4 s−1 at 153°C. The time in minutes it takes for the isomerization to proceed 40% to completion at this temperature is ______. (Rounded-off to the nearest integer)


What is the rate constant?


Slove: \[\ce{2NOBr -> 2NO_{2(g)} + Br_{2(g)}}\]

For the above reaction, the rate law is rate = k[NOBr]2. If the rate of reaction is 6.5 × 10−6 mol L−1 s−1 at 2 × 10−3 mol L−1 concentration of NOBr, calculate the rate constant k for the reaction.


Write the equation for integrated rate law for a first order reaction.


Show that `t_(1/2)= 0.693/k` for first reaction.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×