Yes, because sodium chloride solution is an electrolyte; this solution contain cations of sodium (Na+) and anions of chlorine (Cl-).
Sodium chloride in solution or melted is a good conductor of electricity; but sodium chloride doesn't produce electricity.
In solution.
Yes, the solution of sodium chloride is conductive.
Sodium Chloride solution (dissolved in water) conducts electricity, and molten Sodium Chloride conducts electricty, but dry crystal Sodium Chloride does not conduct electricity.
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.
Sodium chloride conduct electricity only when is as an electrolyte: in water solution or melted.
Sodium chloride solution conducts electricity through its bulk by motion of the oppositely charged sodium and chloride ions in it in opposite directions. At the electrodes used to measure conductivity, these ions interchange their electrons with the electrodes.
Sodium chloride solution conducts electricity through its bulk by motion of the oppositely charged sodium and chloride ions in it in opposite directions. At the electrodes used to measure conductivity, these ions interchange their electrons with the electrodes.
Yes, an electric current can be conducted by a solution of sodium chloride because it dissociates into ions in water. The positively charged sodium ions (Na+) and negatively charged chloride ions (Cl-) allow the flow of electricity through the solution.
Because in water solution or in the liquid state sodium chloride is dissociated in ions.
When sodium chloride is dissolved in water, the resulting solution is classified as an electrolyte solution. This means that it conducts electricity due to the presence of ions in the solution. Sodium chloride dissociates into sodium ions and chloride ions when dissolved in water.
A water solution of sodium chloride is electrically conductive.