The dissociation equilibrium of a gas AB2 can be represented as
The degree of dissociation is ‘x’ and is small compared to 1. The expression relating the degree of dissociation (x) with equilibrium constant KP and total pressure p is:
1. (2KP/p)
2. (2Kp /p)1/3
3. (2KP/p)1/2
4. (KP/P)
| 1. | Thyroxine | 2. | Oxypurin |
| 3. | Insulin | 4. | Progesterone |
Which one of the following statements is not true?
| 1. | In vulcanization, the formation of sulphur bridges between different chains makes rubber harder and stronger |
| 2. | The natural rubber has the trans-configuration at every double bond |
| 3. | Buna-S is a copolymer of butadiene and styrene |
| 4. | Buna-S is a copolymer of butadiene and styrene |
In the given hydrocarbon,

The type/state of hybridization of carbons 1, 3, and 5 respectively are:
1. sp2, sp, sp3
2. sp, sp3, sp2
3. sp, sp2, sp3
4. sp3, sp2, sp
The value of KP1 and Kp2 for the reactions
are in the ratio of 9 : 1. If the degree of dissociation of X and A is equal, then the total pressure at equilibrium(i) and (ii) are in the ratio:
1. 3 : 1
2. 1 : 9
3. 36 : 1
4. 1 : 1
In DNA, the complementary bases are:
1. Adenine and thymine; guanine and cytosine
2. Adenine and thymine; guanine and uracil
3. Adenine and guanine, thymine and cytosine
4. Uracil and adenine; cytosine and guanine
The bromination of acetone occurring in an acid solution is represented by the equation.
CH3COCH3(aq)+ Br2(aq) →
CH3COCH2Br(aq) + H+(aq) + Br-(aq)
The kinetic energy data were obtained for given reaction concentrations.
Initial concentrations, M
0.30 0.05 0.05
0.30 0.10 0.05
0.30 0.10 0.10
0.40 0.05 0.20
Initial rate, the disappearance of Br2, Ms-1
5.7 10-5
5.7 10-5
1.2 10-4
3.1 10-4
Based on the above data, the rate of the equation is:
1.
2.
3.
4.
Find the equilibrium constant for the reaction:
H₂(g) + I₂(g) ⇌ 2HI(g)
Given that:
HI(g) ⇌ ½H₂(g) + ½I₂(g) K = 8
| 1. | \(1 \over 16\) | 2. | \(1 \over 64\) |
| 3. | 16 | 4. | \(1 \over 8\) |
The CFSE (in an octahedral field) will be maximum in:
(Atomic number Co = 27)
1.
2.
3.
4.