330237 The anodic half-cell of lead-acid battery is recharged using electricity of 0.05 Faraday. The amount of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}\) electrolyzed in g during the process is [Molar mass of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}{\rm{ = 303}}\,\,{\rm{g}}\,\,{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)]
330237 The anodic half-cell of lead-acid battery is recharged using electricity of 0.05 Faraday. The amount of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}\) electrolyzed in g during the process is [Molar mass of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}{\rm{ = 303}}\,\,{\rm{g}}\,\,{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)]
330237 The anodic half-cell of lead-acid battery is recharged using electricity of 0.05 Faraday. The amount of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}\) electrolyzed in g during the process is [Molar mass of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}{\rm{ = 303}}\,\,{\rm{g}}\,\,{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)]
330237 The anodic half-cell of lead-acid battery is recharged using electricity of 0.05 Faraday. The amount of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}\) electrolyzed in g during the process is [Molar mass of \({\rm{PbS}}{{\rm{O}}_{\rm{4}}}{\rm{ = 303}}\,\,{\rm{g}}\,\,{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)]