In a reaction, A+B          Product, rate is doubled when the concentration of B is

doubled, and rate increases by a factor of 8 when the concentrations of both the

reactants (A and B) are doubled. Rate law for the reaction can be written as

1. Rate = k[A][B]2

2. Rate = k[A2][B2]

3. Rate = k[A][B]

4. Rate = k[A]2 [B]

Subtopic:  Order, Molecularity and Mechanism |
 71%
NEET - 2012
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In a zero order reaction for every 10° rise of temperature, the rate is doubled. If the

temperature is increased from 10°C to 100°C, the rate of the reaction will become

1. 256 times

2. 512 times

3. 64 times

4. 128 times

Subtopic:  Arrhenius Equation |
 86%
NEET - 2012
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Which one of the following statements for the order of a reaction is incorrect?

1. Order is not influenced by stiochiometric coefficient of the reactants.

2. Order of reaction is sum of power to the concentration terms of reactants to express the rate of reaction.

3. Order of reaction is always whole number.

4. Order can be determined only experimentally.

 

Subtopic:  Order, Molecularity and Mechanism |
 81%
From NCERT
NEET - 2011
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For the reaction,

N2O5(g) → 2NO2(g) + \(\frac{1}{2}\)O2(g)

the value of the rate of disappearance of N2O5 is given as 6.25 × 10-3 mol L-1s-1. The rate of formation of NO2 and O2 is given respectively as:

1. 6.25 x 10-3 mol L-1s-1 and 6.25 x 10-3 mol L-1s-1

2. 1.25 x 10-2 mol L-1s-1 and 3.125 x 10-3 mol L-1s-1

3. 6.25 x 10-3 mol L-1s-1 and 3.125 x 10-3 mol L-1s-1

4. 1.25 x 10-2 mol L-1s-1 and 6.25 x 10-3 mol L-1s-1

Subtopic:  Definition, Rate Constant, Rate Law |
 87%
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NEET - 2010
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For an endothermic reaction, energy of activation is Ea and enthalpy of reaction is H (both of these in kJ/mol). Minimum value of Ea will be

1. Less than H

2. Equal to H

3. More than H

4. Equal to zero

Subtopic:  Arrhenius Equation |
 68%
NEET - 2010
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During the kinetic study of the reaction, 2A + B → C + D, the following results were obtained:

Run [A]/mol L-1 [B]/mol L-1 Initial rate of formation of D/mol L-1 min-1
I 0.1 0.1 6.0x10-3
II 0.3 0.2 7.2x10-2
III 0.3 0.4 2.88x10-1
IV 0.4 0.1 2.40x10-2

Based on the above data, the correct rate law is:
1.  Rate=k[A]2[B]

2.  Rate=k[A][B]

3.  Rate=k[A]2[B]2

4.  Rate=k[A][B]2

Subtopic:  Order, Molecularity and Mechanism |
 78%
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NEET - 2010
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Half-life period of a first order reaction is 1386s. The specific rate constant of the reaction

is

1. 5.0 x 10-3s-1

2. 0.5 x 10-2s-1

3. 0.5 x 10-3s-1

4. 5.0 x 10-2s-1

Subtopic:  Definition, Rate Constant, Rate Law |
 82%
From NCERT
NEET - 2009
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For the reaction A+B products, it is observed that
 

(1) On doubling the initial concentration of A only, the rate of reaction is also doubled and
(2) On doubling the initial concentrations of both A and B, there is a change by a factor of 8 in that rate of the reaction

The rate of this reaction is, given by

1. rate = k[A]2[B]

2. rate = k[A][B]2

3. rate = k[A]2[B]2

4. rate = k[A][B]

Subtopic:  Order, Molecularity and Mechanism |
 83%
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NEET - 2009
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For the reaction, N2 + 3H2 2NH3, if d[NH3]/dt = 2x10-4 mol L-1s-1, the value of -

d[H2]/dt would be 

1. 3x10-4 mol L-1s-1

2. 4x10-4 mol L-1s-1

3. 6x10-4 mol L-1s-1

4. 1x10-4 mol L-1s-1

Subtopic:  Definition, Rate Constant, Rate Law |
 83%
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NEET - 2009
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In the reaction, BrO-3(aq) + 5Br-(aq) + 6H+ 3Br2(l) + 2H2O(l)

The rate of appearance of bromine (Br2) is related to rate of disappearance of bromide

ions as following 

1. d[Br2]/dt = -(3/5)d[Br-]/dt

2. d[Br2]/dt = (5/3)d[Br-]/dt

3. d[Br2]/dt = -(5/3)d[Br-]/dt

4. d[Br2]/dt = (3/5)d[Br-]/dt

Subtopic:  Definition, Rate Constant, Rate Law |
 81%
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NEET - 2009
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