276011
When a quantity of electricity is passed through $\mathrm{CuSO}_{4}$ solution, $0.16 \mathrm{~g}$ of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of $\mathrm{H}_{2}$ liberated at $\mathrm{STP}$ will be
$\text { (Given : At. wt. of } \mathrm{Cu}=64 \text { ) }$
276011
When a quantity of electricity is passed through $\mathrm{CuSO}_{4}$ solution, $0.16 \mathrm{~g}$ of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of $\mathrm{H}_{2}$ liberated at $\mathrm{STP}$ will be
$\text { (Given : At. wt. of } \mathrm{Cu}=64 \text { ) }$
276011
When a quantity of electricity is passed through $\mathrm{CuSO}_{4}$ solution, $0.16 \mathrm{~g}$ of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of $\mathrm{H}_{2}$ liberated at $\mathrm{STP}$ will be
$\text { (Given : At. wt. of } \mathrm{Cu}=64 \text { ) }$
276011
When a quantity of electricity is passed through $\mathrm{CuSO}_{4}$ solution, $0.16 \mathrm{~g}$ of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of $\mathrm{H}_{2}$ liberated at $\mathrm{STP}$ will be
$\text { (Given : At. wt. of } \mathrm{Cu}=64 \text { ) }$