20070 A solution containing one mole per litre of each \(Cu{(N{O_3})_2},\,\,AgN{O_3},\,\,H{g_2}{(N{O_3})_2}\) and \(Mg{(N{O_3})_2},\) is being electrolysed by using inert electrodes. The values of standard electrode potentials in volts (reduction potentials) are \(Ag/A{g^ + } = + 0.80,\,\,2Hg/Hg_2^{2 + } = + 0.79,\,\,Cu/C{u^{2 + }} = + 0.34,\)\(Mg/M{g^{2 + }} = - 2.37\)with increasing voltage, the sequence of deposition of metals on the cathode will be
20070 A solution containing one mole per litre of each \(Cu{(N{O_3})_2},\,\,AgN{O_3},\,\,H{g_2}{(N{O_3})_2}\) and \(Mg{(N{O_3})_2},\) is being electrolysed by using inert electrodes. The values of standard electrode potentials in volts (reduction potentials) are \(Ag/A{g^ + } = + 0.80,\,\,2Hg/Hg_2^{2 + } = + 0.79,\,\,Cu/C{u^{2 + }} = + 0.34,\)\(Mg/M{g^{2 + }} = - 2.37\)with increasing voltage, the sequence of deposition of metals on the cathode will be
20070 A solution containing one mole per litre of each \(Cu{(N{O_3})_2},\,\,AgN{O_3},\,\,H{g_2}{(N{O_3})_2}\) and \(Mg{(N{O_3})_2},\) is being electrolysed by using inert electrodes. The values of standard electrode potentials in volts (reduction potentials) are \(Ag/A{g^ + } = + 0.80,\,\,2Hg/Hg_2^{2 + } = + 0.79,\,\,Cu/C{u^{2 + }} = + 0.34,\)\(Mg/M{g^{2 + }} = - 2.37\)with increasing voltage, the sequence of deposition of metals on the cathode will be
20070 A solution containing one mole per litre of each \(Cu{(N{O_3})_2},\,\,AgN{O_3},\,\,H{g_2}{(N{O_3})_2}\) and \(Mg{(N{O_3})_2},\) is being electrolysed by using inert electrodes. The values of standard electrode potentials in volts (reduction potentials) are \(Ag/A{g^ + } = + 0.80,\,\,2Hg/Hg_2^{2 + } = + 0.79,\,\,Cu/C{u^{2 + }} = + 0.34,\)\(Mg/M{g^{2 + }} = - 2.37\)with increasing voltage, the sequence of deposition of metals on the cathode will be
20070 A solution containing one mole per litre of each \(Cu{(N{O_3})_2},\,\,AgN{O_3},\,\,H{g_2}{(N{O_3})_2}\) and \(Mg{(N{O_3})_2},\) is being electrolysed by using inert electrodes. The values of standard electrode potentials in volts (reduction potentials) are \(Ag/A{g^ + } = + 0.80,\,\,2Hg/Hg_2^{2 + } = + 0.79,\,\,Cu/C{u^{2 + }} = + 0.34,\)\(Mg/M{g^{2 + }} = - 2.37\)with increasing voltage, the sequence of deposition of metals on the cathode will be