1
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

In the following question a statement of Assertion (A) followed by a statement of Reason (R) is given. Choose the correct option out of the choices given below.

Assertion (A): van't Hoff factor for a solution of benzoic acid in benzene is less than one.

Reason(R): Benzoic acid undergoes dissociation in benzene and its calculated molecular mass using colligative properties is lower than its actual molecular mass.

A
Assertion (A) and Reason (R) are correct
B
Assertion (A) and incorrect and Reason (R) is correct
C
Assertion (A) is correct but Reason (R) is incorrect
D
Both Assertion (A) and Reason (R) are incorrect
2
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

In the following question a statement of Assertion (A) followed by a statement of Reason (R) is given. Choose the correct option out of the choices given below.

Assertion (A): A molecule of $$\mathrm{SF}_4$$ is see-saw shaped, while that of $$\mathrm{CIF}_3$$ is T-shaped.

Reason(R): SF$$_4$$ has two lone pair of electrons. But CIF$$_3$$ has one pair of electrons.

A
Assertion (A) is incorrect but Reason (R) is correct
B
Assertion (A) and Reason (R) are correct
C
Both Assertion (A) and Reason (R) are incorrect
D
Assertion (A) is correct but Reason (R) is incorrect
3
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

The rate of appearance of bromine is related to the disappearance of bromide ion in the equation given below is:

$$\mathrm{BrO}_3^{-} \text {(aq) }+5 \mathrm{Br}^{-} \text {(aq) }+6 \mathrm{H}^{+} \rightarrow 3 \mathrm{Br}_2(\mathrm{l})+3 \mathrm{H}_2 \mathrm{O}(\mathrm{l})$$

A
$$ \frac{\mathrm{d}\left[\mathrm{Br}_2\right]}{\mathrm{dt}}=\frac{5}{3} \frac{\mathrm{d}\left[\mathrm{Br}^{-}\right]}{\mathrm{dt}} $$
B
$$ \frac{\mathrm{d}\left[\mathrm{Br}_2\right]}{\mathrm{dt}}=-\frac{1}{5} \frac{\mathrm{d}\left[\mathrm{Br}^{-}\right]}{\mathrm{dt}} $$
C
$$ \frac{\mathrm{d}\left[\mathrm{Br}_2\right]}{\mathrm{dt}}=\frac{3}{5} \frac{\mathrm{d}\left[\mathrm{Br}^{-}\right]}{\mathrm{dt}} $$
D
$$ \frac{\mathrm{d}\left[\mathrm{Br}_2\right]}{\mathrm{dt}}=-\frac{3}{5} \frac{\mathrm{d}\left[\mathrm{Br}^{-}\right]}{\mathrm{dt}} $$
4
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

When 1 mole of $$\mathrm{O}_2$$ and 1 mole of ammonia are made to react in the reaction,

$$4 \mathrm{NH}_3(\mathrm{~g})+5 \mathrm{O}_2(\mathrm{~g}) \rightarrow 4 \mathrm{NO}(\mathrm{g})+6 \mathrm{H}_2 \mathrm{O}(\mathrm{g})$$

A
$$ \mathrm{NH}_3 \text { is the limiting reagent } $$
B
$$ 1.0 \text { mole of NO will be produced } $$
C
$$ 6 \text { moles of } \mathrm{H}_2 \mathrm{O} \text { will be produced } $$
D
$$ \text { Oxygen is the limiting reagent } $$
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