1
JEE Main 2025 (Online) 29th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

The standard reduction potential values of some of the p-block ions are given below. Predict the one with the strongest oxidising capacity.

A

$E^o_{\text{Sn}^{4+}/\text{Sn}^{2+}} = +1.15 \text{ V}$

B

$E^o_{\text{Al}^{3+}/\text{Al}} = -1.66 \text{ V}$

C

$E^o_{\text{Pb}^{4+}/\text{Pb}^{2+}} = +1.67 \text{ V}$

D

$E^o_{\text{Tl}^{3+}/\text{Tl}} = +1.26 \text{ V}$

2
JEE Main 2025 (Online) 29th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

Choose the correct statements.

(A) Weight of a substance is the amount of matter present in it.

(B) Mass is the force exerted by gravity on an object.

(C) Volume is the amount of space occupied by a substance.

(D) Temperatures below 0°C are possible in Celsius scale, but in Kelvin scale negative temperature is not possible.

(E) Precision refers to the closeness of various measurements for the same quantity.

Choose the correct answer from the options given below :

A

(B), (C) and (D) Only

B

(A), (B) and (C) Only

C

(C), (D) and (E) Only

D

(A), (D) and (E) Only

3
JEE Main 2025 (Online) 29th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

In the following substitution reaction :

JEE Main 2025 (Online) 29th January Morning Shift Chemistry - Compounds Containing Nitrogen Question 5 English

Product 'P' formed is :

A
JEE Main 2025 (Online) 29th January Morning Shift Chemistry - Compounds Containing Nitrogen Question 5 English Option 1
B
JEE Main 2025 (Online) 29th January Morning Shift Chemistry - Compounds Containing Nitrogen Question 5 English Option 2
C
JEE Main 2025 (Online) 29th January Morning Shift Chemistry - Compounds Containing Nitrogen Question 5 English Option 3
D
JEE Main 2025 (Online) 29th January Morning Shift Chemistry - Compounds Containing Nitrogen Question 5 English Option 4
4
JEE Main 2025 (Online) 29th January Morning Shift
MCQ (Single Correct Answer)
+4
-1
Change Language

At temperature T, compound $AB_{2(g)}$ dissociates as $AB_{2(g)} \rightleftharpoons AB_{(g)} + \frac{1}{2} B_{2(g)}$ having degree of dissociation $ x $ (small compared to unity). The correct expression for $ x $ in terms of $ K_p $ and $ p $ is:

A

$ \sqrt{K_p} $

B
$\sqrt[3]{\frac{2 K_{\mathrm{p}}^2}{\mathrm{p}}}$
C
$\sqrt[3]{\frac{2 K_p}{p}}$
D
$\sqrt[4]{\frac{2 K_p}{p}}$
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