Organic Chemistry
Some Basic Concepts of Organic Chemistry
MCQ (Single Correct Answer)MCQ (Multiple Correct Answer)
Alcohol, Phenols and Ethers
MCQ (Single Correct Answer)
Aldehydes, Ketones and Carboxylic Acids
MCQ (Single Correct Answer)MCQ (Multiple Correct Answer)
Organic Compounds Containing Nitrogen
MCQ (Single Correct Answer)
Chemistry in Everyday Life
MCQ (Single Correct Answer)
1
NEET 2022 Phase 2
MCQ (Single Correct Answer)
+4
-1

Two half cell reactions are given below.

$$C{o^{3 + }} + {e^ - } \to C{o^{2 + }},\,\,\,\,\,\,\,\,\,E_{C{o^{2 + }}/C{o^{3 + }}}^0 = - 1.81\,V$$

$$2A{l^{3 + }} + 6{e^ - } \to 2Al(s),\,\,\,E_{Al/A{l^{3 + }}}^0 = + 1.66\,V$$

The standard EMF of a cell with feasible redox reaction will be :

A
$$-$$3.47 V
B
+7.09 V
C
+0.15 V
D
+3.47 V
2
NEET 2022 Phase 2
MCQ (Single Correct Answer)
+4
-1

Standard electrode potential for the cell with cell reaction

Zn(s) + Cu2+(aq) $$\to$$ Zn2+(aq) + Cu(s)

is 1.1 V. Calculate the standard Gibbs energy change for the cell reaction. (Given F = 96487 C mol$$-$$1)

A
$$-$$200.27 J mol$$-$$1
B
$$-$$200.27 kJ mol$$-$$1
C
$$-$$212.27 kJ mol$$-$$1
D
$$-$$212.27 J mol$$-$$1
3
NEET 2022 Phase 1
MCQ (Single Correct Answer)
+4
-1

At 298 K, the standard electrode potentials of Cu2+ / Cu, Zn2+ / Zn, Fe2+ / Fe and Ag+ / Ag are 0.34 V, $$-$$0.76 V, $$-$$0.44 V V and 0.80 V, respectively.

On the basis of standard electrode potential, predict which of the following reaction cannot occur?

A
CuSO4(aq) + Zn(s) $$\to$$ ZnSO4(aq) + Cu(s)
B
CuSO4(aq) + Fe(s) $$\to$$ FeSO4(aq) + Cu(s)
C
FeSO4(aq) + Zn(s) $$\to$$ ZnSO4(aq) + Fe(s)
D
2CuSO4(aq) + 2Ag(s) $$\to$$ 2Cu(s) + Ag2SO4(aq)
4
NEET 2022 Phase 1
MCQ (Single Correct Answer)
+4
-1

Given below are half cell reactions:

$$MnO_4^ - + 8{H^ + } + 5{e^ - } \to M{n^{2 + }} + 4{H_2}O$$,

$$E_{M{n^{2 + }}/MnO_4^ - }^o = - 1.510\,V$$

$${1 \over 2}{O_2} + 2{H^ + } + 2{e^ - } \to {H_2}O$$

$$E_{{O_2}/{H_2}O}^o = + 1.223\,V$$

Will the permanganate ion, $$MnO_4^ - $$ liberate O2 from water in the presence of an acid?

A
Yes, because $$E_{cell}^o$$ = + 0.287 V
B
No, because $$E_{cell}^o$$ = $$-$$0.287 V
C
Yes, because $$E_{cell}^o$$ = + 2.733 V
D
No, because $$E_{cell}^o$$ = $$-$$ 2.733 V
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