329978
The e.m.f., of a Daniel cell at 298 K is \({{\rm{E}}_{\rm{1}}}\).
\(\left. {{\rm{Zn}}} \right \vert \left. {\mathop {{\rm{ZnS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{0}}{\rm{.001M}}} \right)} } \right\vert \left. {\mathop {{\rm{CuS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{1}}{\rm{.0M}}} \right)} } \right \vert {\rm{Cu}}\)
When the concentration of \({\rm{ZnS}}{{\rm{O}}_{\rm{4}}}\) is 1.0 M and that of \({\rm{CuS}}{{\rm{O}}_{\rm{4}}}\) is 0.01 M, the e.m.f., changed to \({{\rm{E}}_{\rm{2}}}\). What is the relationship between \({{\rm{E}}_{\rm{1}}}\,\,{\rm{and}}\,\,{{\rm{E}}_{\rm{2}}}\) ?
329978
The e.m.f., of a Daniel cell at 298 K is \({{\rm{E}}_{\rm{1}}}\).
\(\left. {{\rm{Zn}}} \right \vert \left. {\mathop {{\rm{ZnS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{0}}{\rm{.001M}}} \right)} } \right\vert \left. {\mathop {{\rm{CuS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{1}}{\rm{.0M}}} \right)} } \right \vert {\rm{Cu}}\)
When the concentration of \({\rm{ZnS}}{{\rm{O}}_{\rm{4}}}\) is 1.0 M and that of \({\rm{CuS}}{{\rm{O}}_{\rm{4}}}\) is 0.01 M, the e.m.f., changed to \({{\rm{E}}_{\rm{2}}}\). What is the relationship between \({{\rm{E}}_{\rm{1}}}\,\,{\rm{and}}\,\,{{\rm{E}}_{\rm{2}}}\) ?
329978
The e.m.f., of a Daniel cell at 298 K is \({{\rm{E}}_{\rm{1}}}\).
\(\left. {{\rm{Zn}}} \right \vert \left. {\mathop {{\rm{ZnS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{0}}{\rm{.001M}}} \right)} } \right\vert \left. {\mathop {{\rm{CuS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{1}}{\rm{.0M}}} \right)} } \right \vert {\rm{Cu}}\)
When the concentration of \({\rm{ZnS}}{{\rm{O}}_{\rm{4}}}\) is 1.0 M and that of \({\rm{CuS}}{{\rm{O}}_{\rm{4}}}\) is 0.01 M, the e.m.f., changed to \({{\rm{E}}_{\rm{2}}}\). What is the relationship between \({{\rm{E}}_{\rm{1}}}\,\,{\rm{and}}\,\,{{\rm{E}}_{\rm{2}}}\) ?
329978
The e.m.f., of a Daniel cell at 298 K is \({{\rm{E}}_{\rm{1}}}\).
\(\left. {{\rm{Zn}}} \right \vert \left. {\mathop {{\rm{ZnS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{0}}{\rm{.001M}}} \right)} } \right\vert \left. {\mathop {{\rm{CuS}}{{\rm{O}}_{\rm{4}}}}\limits_{\left( {{\rm{1}}{\rm{.0M}}} \right)} } \right \vert {\rm{Cu}}\)
When the concentration of \({\rm{ZnS}}{{\rm{O}}_{\rm{4}}}\) is 1.0 M and that of \({\rm{CuS}}{{\rm{O}}_{\rm{4}}}\) is 0.01 M, the e.m.f., changed to \({{\rm{E}}_{\rm{2}}}\). What is the relationship between \({{\rm{E}}_{\rm{1}}}\,\,{\rm{and}}\,\,{{\rm{E}}_{\rm{2}}}\) ?