21. For the following cell,
$$Zn\left( s \right)\left| {ZnS{O_4}\left( {aq} \right)} \right|\left| {CuS{O_4}\left( {aq} \right)} \right|Cu\left( s \right)$$
when the concentration of $$Z{n^{2 + }}$$ is 10 times the concentration of $$C{u^{2 + }},$$  the expression for $$\Delta G\left( {{\text{in J mo}}{{\text{l}}^{ - 1}}} \right)$$    is [ $$F$$ is Faraday constant; $$R$$ is gas constant; $$T$$ is temperature; $${E^0}$$ (cell) = $$1.1 V$$ ]

A $$1.1 F$$
B $$2.303 RT - 2.2 F$$
C $$2.303 RT + 1.1 F$$
D $$- 2.2 F$$
Answer :   $$2.303 RT - 2.2 F$$
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22. Resistance of a conductivity cell filled with a solution of an electrolyte of concentration $$0.1\,M$$  is $$100\,\Omega .$$  The conductivity of this solution is $$1.29\,S\,{m^{ - 1}}.$$   Resistance of the same cell when filled with $$0.02\,M$$  of the same solution is $$520\,\Omega .$$  The molar conductivity of $$0.02\,M$$  solution of electrolyte will be

A $$1.24 \times {10^{ - 4}}S\,{m^2}mo{l^{ - 1}}$$
B $$12.4 \times {10^{ - 4}}\,S\,{m^2}\,mo{l^{ - 1}}$$
C $$124 \times {10^{ - 4}}S\,{m^2}\,mo{l^{ - 1}}$$
D $$1240 \times {10^{ - 4}}S\,{m^2}\,mo{l^{ - 1}}$$
Answer :   $$1.24 \times {10^{ - 4}}S\,{m^2}mo{l^{ - 1}}$$
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23. Which colourless gas evolves, when $$N{H_4}Cl$$   reacts with zinc in a dry cell battery

A $$N{H_4}$$
B $${N_2}$$
C $${H_2}$$
D $$C{l_2}$$
Answer :   $${H_2}$$
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24. In the electrolysis of water, one faraday of electrical energy would liberate

A one mole of oxygen
B one gram atom of oxygen
C $$8\,g$$  oxygen
D $$22.4\,lit.$$  of oxygen
Answer :   $$8\,g$$  oxygen
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25. Given :
$${E^ \circ }_{\frac{1}{2}\,\frac{{C{l_2}}}{{C{l^ - }}}} = 1.36\,V,$$    $${E^ \circ }_{\frac{{C{r^{3 + }}}}{{Cr}}} = - 0.74\,V,$$    $${E^ \circ }_{\frac{{C{r_2}O_7^{2 - }}}{{C{r^{3 + }}}}} = 1.33\,V,$$    $${E^ \circ }_{\frac{{MnO_4^ - }}{{M{n^{2 + }}}}} = 1.51\,V$$
The correct order of reducing power of the species $$\left( {Cr,C{r^{3 + }},M{n^{2 + }}\,{\text{and}}\,C{l^ - }} \right)$$     will be :

A $$M{n^{2 + }} < C{l^ - } < C{r^{3 + }} < Cr$$
B $$M{n^{2 + }} < C{r^{3 + }} < C{l^ - } < Cr$$
C $$C{r^{3 + }} < C{l^ - } < M{n^{2 + }} < Cr$$
D $$C{r^{3 + }} < C{l^ - } < Cr < M{n^{2 + }}$$
Answer :   $$M{n^{2 + }} < C{l^ - } < C{r^{3 + }} < Cr$$
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26. $$A{l_2}{O_3}$$  is reduced by electrolysis at low potentials and high currents. If $$4.0 \times {10^4}$$   amperes of current is passed through molten $$A{l_2}{O_3}$$  for 6 hours, what mass of aluminium is produced ?( Assume $$100\% $$  current efficiency. $$At.\,mass\,{\text{of}}\,Al = 27\,g\,mo{l^{ - 1}}$$      )

A $$8.1 \times {10^4}g$$
B $$2.4 \times {10^5}g$$
C $$1.3 \times {10^4}g$$
D $$9.0 \times {10^3}g$$
Answer :   $$8.1 \times {10^4}g$$
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27. The quantity of charge required to obtain one mole of aluminium from $$A{l_2}{O_3}$$  is __________.

A 1 $$F$$
B 6 $$F$$
C 3 $$F$$
D 2 $$F$$
Answer :   3 $$F$$
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28. Which of the following reactions cannot be a basis for electrochemical cell ?

A $${H_2} + {O_2} \to {H_2}O$$
B $$AgN{O_3} + Zn \to Zn{\left( {N{O_3}} \right)_2} + Ag$$
C $$AgN{O_3} + NaCl \to $$    $$AgCl \downarrow + NaN{O_3}$$
D $$KMn{O_4} + FeS{O_4} + {H_2}S{O_4} \to $$       $${K_2}S{O_4} + F{e_2}{\left( {S{O_4}} \right)_3} + MnS{O_4} + {H_2}O$$
Answer :   $$KMn{O_4} + FeS{O_4} + {H_2}S{O_4} \to $$       $${K_2}S{O_4} + F{e_2}{\left( {S{O_4}} \right)_3} + MnS{O_4} + {H_2}O$$
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29. A cell reaction would be spontaneous if the cell potential and $${\Delta _r}G$$  are respectively :

A positive and negative
B negative, negative
C zero, zero
D positive, zero
Answer :   positive and negative
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30. For the cell prepared from electrodes $$A$$ and $$B;$$
$$\eqalign{ & {\text{Electrode}}\,A:\frac{{C{r_2}O_7^{2 - }}}{{C{r^{3 + }}}},E_{{\text{red}}}^ \circ = 1.33\,V \cr & {\text{Electrode}}\,B:\frac{{F{e^{3 + }}}}{{F{e^{2 + }}}},E_{{\text{red}}}^ \circ = 0.77\,V \cr} $$
Which of the following statements is correct?

A The electrons will flow from $$B$$ to $$A$$ when connections are made.
B The standard $$EMF$$  of the cell will be 0.56 $$V.$$
C A will be a positive electrode.
D All of these
Answer :   All of these
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