English

The rate of reaction for certain reaction is expressed as: 13d[A]dt=-12d[B]dt=-d[C]dt The reaction is ______.

Advertisements
Advertisements

Question

The rate of reaction for certain reaction is expressed as:

`1/3(d[A])/dt=-1/2(d[B])/dt=-(d[C])/dt`

 The reaction is ______.

Options

  • 3A → 2B + C

  • 2B → 3A + C

  • 2B + C → 3A

  • 3A + 2B → C

MCQ
Fill in the Blanks
Advertisements

Solution

The rate of reaction for certain reaction is expressed as:

`1/3(d[A])/dt=-1/2(d[B])/dt=-(d[C])/dt`

 The reaction is 2B + C → 3A.

shaalaa.com
  Is there an error in this question or solution?
2013-2014 (March)

APPEARS IN

RELATED QUESTIONS

Choose the most correct option.

The rate law for the reaction aA + bB → P is rate = k[A] [B]. The rate of reaction doubles if _________.


Answer the following in one or two sentences.

For the reaction,

\[\ce{N2_{(g)} + 3H2_{(g)} -> 2NH3_{(g)}}\],

what is the relationship among `("d"["N"_2])/"dt"`, `("d"["H"_2])/"dt"` and `("d"["NH"_3])/"dt"`?


Rate constant for the reaction \[\ce{2N2O5 -> 4NO2 + O2}\] is 4.98 × 10–4 s–1. Find the order of reaction?


In a chemical reaction, \[\ce{2A + B -> C + D}\] Find the INCORRECT statement.


If concentration of reactant 'A' is increased by 10 times the rate of reaction becomes 100 times. What is the order of reaction, if rate law is, rate = k[A]x?


For the reaction \[\ce{H2_{(g)} + I2_{(g)} ⇌ 2HI_{(g)}}\], the average rate of reaction is expressed as ____________.


For the reaction \[\ce{A + 2B -> C}\], the instantaneous rate of reaction at a given instant can be represented by ____________.


In a reaction \[\ce{2A + P -> A2P}\], the reactant 'A' disappears at ____________.


Which of the following expressions is CORRECT for the rate of formation of Br2?

\[\ce{5Br^-_{( aq)} + BrO^-_{3(aq)} + 6H^+_{( aq)} -> 3Br2_{(aq)} + 3H2O_{(l)}}\]


What is the average rate of reaction when the change in concentration of product is 0.05 Min 20 seconds?


Average rate of reaction for the following reaction.

\[\ce{2SO2 (g) + O2(g) -> 2SO3 (g)}\] is written as ______.


For the reaction,

\[\ce{2NO(g) + O2(g) -> 2NO2(g) ->[d(NO2)][dt] = 0.052 mol dm^{-3} s^{-1}}\]

Calculate rate of consumption of NO (g).


In the reaction A + 3B → 2C, the rate of formation of C is ______.


For the reaction, \[\ce{3I^-(aq) + S2O^2-_8(aq) -> I^-_3(aq) + 2SO^2-_4(aq)}\]

`(d[SO_4^(2-)])/dt = 2.2 xx 10^(-2)` M/s at a particular time.

Calculate `(a) -(d[I^-])/dt   (b) -(d[S_2O_8^(2-)])/dt   (c) (d[I_3^-])/dt`


What is the rate law for reaction

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


The rate constant for a first order reaction is 0.58 s-1 at 300 K and 0.026 s-1 at 290 K. What is the energy of activation? (R = 8.314 J K-1 mol-1)


Which of the following equations is correct regarding rate of disappearance of reactant and appearance of product for

N2(g) + 3H2(g) → 2NH3(g)


What is the rate of formation of ‘C’ in the following reaction?

A + 2B → 2C


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×