1
MHT CET 2025 19th April Evening Shift
MCQ (Single Correct Answer)
+1
-0

What is the number of faraday required to form $1 \mathrm{~mol} \mathrm{H}_2$ by reduction of $\mathrm{H}^{+}$ions?

A
4
B
2
C
0.5
D
1
2
MHT CET 2025 19th April Evening Shift
MCQ (Single Correct Answer)
+1
-0

For the cell,

${ }^{\ominus} \mathrm{Zn}_{(\mathrm{s})}\left|\mathrm{Zn}^{+2}(1 \mathrm{M})\right|\left|\mathrm{Ag}^{+1}(1 \mathrm{M})\right| \mathrm{Ag}_{(\mathrm{s})}{ }^{\oplus}$

If concentration of $\mathrm{Zn}^{+2}$ decreases to 0.1 M at 298 K , then emf of cell

A
increase by 0.0592 V
B
decrease by 0.0592 V
C
increase by 0.0296 V
D
decrease by 0.0296 V
3
MHT CET 2025 19th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
 

For the cell reaction,

$$\mathrm{Zn}_{(\mathrm{s})}+2 \mathrm{Ag}_{(\mathrm{aq})}^{+} \longrightarrow \mathrm{Zn}_{(\mathrm{aq})}^{+2}+2 \mathrm{Ag}_{(\mathrm{s})}$$

Cell potential is less than $\mathrm{E}_{\text {cell }}^{\circ}$ by 0.0592 V at 298 K when

A
$\left[\mathrm{Zn}^{+2}\right]=1 \mathrm{M}$ and $\left[\mathrm{Ag}^{+}\right]=0.1 \mathrm{M}$
B
$\left[\mathrm{Zn}^{+2}\right]=1 \mathrm{M}$ and $\left[\mathrm{Ag}^{+}\right]=0.01 \mathrm{M}$
C
$\left[\mathrm{Zn}^{+2}\right]=0.1 \mathrm{M}$ and $\left[\mathrm{Ag}^{+}\right]=1 \mathrm{M}$
D
$\left[\mathrm{Zn}^{+2}\right]=0.01 \mathrm{M}$ and $\left[\mathrm{Ag}^{+}\right]=1 \mathrm{M}$

4
MHT CET 2025 19th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
Which from following is the correct relationship between molar conductivity $(\Lambda)$, conductivity $(\mathrm{k})$ and molarity (M) of solution for electrolyte?
A
$\mathrm{k}=\frac{\wedge \times \mathrm{C}}{1000}$
B
$\wedge=\frac{100 \times \mathrm{k}}{\mathrm{C}}$
C
$\wedge=\frac{\mathrm{k} \times \mathrm{C}}{1000}$
D
$\mathrm{k}=\frac{1000 \times \mathrm{C}}{\wedge}$
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