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महाराष्ट्र राज्य शिक्षण मंडळएचएससी विज्ञान (सामान्य) इयत्ता १२ वी

Define molecularity. - Chemistry

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प्रश्न

Define molecularity.

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उत्तर

The molecularity of an elementary reaction refers to how many reactant molecules are involved in reactions.

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Molecularity of Elementary Reactions
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पाठ 6: Chemical Kinetics - Short answer questions (Type- II)

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एससीईआरटी महाराष्ट्र Chemistry [English] 12 Standard HSC
पाठ 6 Chemical Kinetics
Short answer questions (Type- II) | Q 2.1

संबंधित प्रश्‍न

Distinguish between Order and Molecularity of reaction.


Answer the following in one or two sentences.

What is the rate-determining step?


A reaction takes place in two steps:

  1. \[\ce{NO_{(g)} + Cl2_{(g)} -> NOCl2_{(g)}}\]
  2. \[\ce{NOCl2_{(g)} + NO_{(g)} -> 2NOCl_{(g)}}\]
  1. Write the overall reaction.
  2. Identify the reaction intermediate.
  3. What is the molecularity of each step?

Identify molecularity of following reaction:

\[\ce{C2H5I_{(g)} -> C2H_{4(g)} + HI_{(g)}}\]


Name the slowest step that determines the rate in a complex reaction.


Why is molecularity applicable for only elementary reactions whereas order of a reaction is applicable for elementary and complex reactions? Explain with suitable examples.


For a zero-order reaction, molecularity can never be equal to zero. Explain.


The rate determining step of a reaction is the step ____________.


For the elementary reaction, \[\ce{3H2_{(g)} + N2_{(g)} -> 2NH3_{(g)}}\] identify the correct relation among the following relations.


For the reaction \[\ce{2NO2 + F2 -> 2NO2F}\], following mechanism has been provided:

\[\ce{NO2 + F2 ->[slow] NO2F + F}\]

\[\ce{NO2 + F ->[fast] NO2F}\]

The rate expression of the above reaction can be written as:


The reaction \[\ce{2NO2Cl_{(g)} -> 2NO2_{(g)} + Cl2_{(g)}}\] takes place in two steps as

(i) \[\ce{NO2Cl_{(g)} -> NO2_{(g)} + Cl_{(g)}}\]

(ii) \[\ce{NO2Cl_{(g)} + Cl_{(g)} -> NO2_{(g)} + Cl2_{(g)}}\]

Identify the reaction intermediate.


A chemical species that is formed in one elementary step in the mechanism of complex reaction and consumed in the subsequent step is called ____________.


Consider the following elementary reaction;

\[\ce{2AB_{(g)} -> A2_{(g)} + B2_{(g)}}\]

The molecularity of the reaction is ____________.


A reaction involving two different reactants can never be a ______


Identify the molecularity of following elementary reaction:

NO(g) + O3(g) → NO3(g) + O(g)


The reaction takes place in two steps as

(i) \[\ce{NO2Cl(g) ->[k1] NO2(g) + Cl(g)}\]

(ii) \[\ce{NO2Cl(g) + Cl(g) ->[k2] NO2(g) + Cl2(g)}\]

Identify the reaction intermediate.


A certain reaction occurs in two steps as

(i) \[\ce{2SO2(g) + 2NO2(g) -> 2SO3(g) + 2NO(g)}\]

(ii) \[\ce{2NO(g) + O2(g) -> 2NO2(g)}\]

In the reaction:


What is an elementary reaction?


How does a catalyst differ from reaction intermediate?


Find out the reaction intermediate and molecularity of the following reactions.
\[\ce{NO_{(g)} + Cl2_{(g)} -> NOCl_{2(g)}}\]

\[\ce{NOCl_{2(g)} + NO_{(g)} -> 2NOCl_{(g)}}\]

Draw the structure of BrF5 and HOCl.


A complex chemical reaction takes place in two steps.

Step I: NO(g) + O3(g) → NO3(g) + O(g)

Step II: NO3(g) + O(g) → NO2(g) + O2(g)

The predicted rate law is rate = k[NO][O3]

  1. Identify the rate determining step.
  2. Name the reaction intermediate/s. Why is/are it/these intermediate/s?

Define molecularity of reaction.


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