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 . After the lapse of time t, the total pressure of the system increased by X units and became . The rate constant k for the reaction is:
1. | 2. | ||
3. | 4. |
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
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. |
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)
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) |