Consider the first-order gas-phase decomposition reaction given below.

A(g) → B(g) + C(g)

The initial pressure of the system before the decomposition of A was Pi. After the lapse of time t, the total pressure of the system increased by X units and became Pt. The rate constant k for the reaction is:

1. k=2.303tlogPiPix 2. k=2.303tlogPi2PiPt
3. k=2.303tlogPi2Pi+Pt 4. k=2.303tlogPiPi+x
Subtopic:  First Order Reaction Kinetics |
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A first-order reaction is 50 % completed in 1.26 × 1014 s. The time required for 100 % completion of the reaction will be:

1. 1.26 × 1015 s

2. 2.52 × 1014 s

3. 2.52 × 1028 s

4. Infinite

Subtopic:  First Order Reaction Kinetics |
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Level 2: 60%+
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The value of the rate constant of a pseudo-first-order reaction:

1. Depends on the concentration of reactants present in a small amount.
2. Depends on the concentration of reactants present in excess.
3. Is independent of the concentration of reactants.
4. Depends only on temperature.

Subtopic:  First Order Reaction Kinetics |
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The correct statements among the following regarding a balanced chemical equation of an elementary reaction are-

a. Order is the same as molecularity.
b. Order is less than the molecularity.
c.  Order is greater than molecularity.
d.  Molecularity can never be zero.


1. (a, b)
2. (b, c)
3. (c, d)
4. (a, d)

Subtopic:  First Order Reaction Kinetics |
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The correct graphical representation of first-order reaction is:

(a)  (b)
(c) (d)

   

1. (a) and (b) 2. (b) and (c)
3. (c) and (d) 4. (a) and (d)
Subtopic:  First Order Reaction Kinetics |
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Level 1: 80%+
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