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An ionic compound can conduct electric current when it is dissolved in water or molten (liquid) form, allowing the ions to move freely and carry charge. In solid form, ionic compounds are not conductive because the ions are held in a fixed position in the crystal lattice.

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Q: When can an ionic compound conduct electric current?
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Why can ionic compounds in solution conduct electric current?

Ionic compounds in solution can conduct electric current because the ions are free to move and carry electric charge. When an ionic compound dissolves in water, it dissociates into its constituent ions, which are then able to move and carry the electric current.


Why is a melted ionic compound a good conductor of electric current but the a solid ionic compound is a poor conductor of electric current?

In a melted ionic compound, the ions are free to move and carry electric charge, allowing the compound to conduct electricity. In a solid ionic compound, the ions are fixed in position and cannot move freely, so they are unable to carry electric charge and conduct electricity effectively.


When can an a ionic compound conduct electricity?

An ionic compound can conduct electricity when it is in a molten state or when it is dissolved in water, allowing the ions to move freely and carry an electric charge. In these states, the ions are able to flow and transmit electric current.


Why do ionic compounds conduct electricity when dissolved in water?

Ionic compounds conduct electricity when dissolved in water because the ions within the compound become free to move and carry electric charge. These ions can move and carry electric current through the water, allowing it to conduct electricity.


Why do ionic bonds allow for good conductivity?

Ionic bonds involve the transfer of electrons between atoms to create ions. These ions are free to move within the material, which allows for the transfer of electrical charge through the material, resulting in good conductivity.