no
Sulfur does not conduct electricity in aqueous solution. This is because sulfur in its elemental form is a non-metal and is a poor conductor of electricity. In aqueous solution, sulfur does not exist as an ionic or free electron-carrying species that would allow it to conduct electricity.
if The solutions conduct electricity! They are called ELECTROLYTES
Hydrogen iodide is dissociated in water.
Ionic compounds, such as salts, acids, and bases, conduct electricity when dissolved in water because their ions are free to move and carry an electric charge. Covalent compounds do not typically conduct electricity in aqueous solutions because they do not dissociate into ions.
Aqueous sodium chloride contains dissociated ions which are free to move and conduct electricity. Dry sodium chloride does not conduct electricity because the ions are not free to move in a solid state.
Yes, sodium chloride (table salt) conducts electricity when it is dissolved in water. This is because it dissociates into ions (sodium and chloride ions) in solution, which are able to carry electrical charge and allow the flow of electricity.
Ionic compounds dissociate in water to form positive and negative ions in aqueous solution. Such solutions can conduct electricity.
Form an aqueous solution
It is not an electrolyte as such. It needs to have salts in it that conduct electricity in order to be a complete electrolyte.
Potassium Bromide or KBr is not able to conduct electricity in solid state. It is an ionic compound and its ions are not free to move in the solid state, hence they are not able to conduct electricity. But when they are in aqueous state, they are free to move and thus become able to conduct electricity.
Aqueous copper sulfate solution contains free ions (Cu2+ and SO4 2-) that can carry electrical charge and allow the solution to conduct electricity. In contrast, solid copper sulfate does not contain free ions and is unable to conduct electricity because the ions are locked in a fixed position within the solid lattice.
Molar mass of CaO2H2 is74.0932 ± 0.0001 g/mol