Zinc sulfide is an ionic compound, as it is made up of a metal cation (Zn2+) and a non-metal anion (S2-). These ions are held together by strong electrostatic forces of attraction.
The ionic compound ZnS is zinc sulfide.
Zinc sulphide is actually an ionic compound.
Zinc oxide is an ionic compound because it is made up of zinc cations (Zn2+) and oxide anions (O2-), which are held together by ionic bonds.
Silver sulfide is an ionic compound, consisting of silver cations (Ag+) and sulfide anions (S2-). It is formed by the transfer of electrons from silver to sulfur, resulting in the formation of an ionic bond.
Zinc (Zn) is an elemental metal and is not considered molecular or ionic. It exists as individual atoms in its solid metallic form.
Zinc sulfide forms an ionic bond, where zinc cations (Zn2+) attract sulfide anions (S2-) due to their opposite charges. This results in the formation of a crystalline lattice structure in which the zinc and sulfide ions are held together by electrostatic forces.
The molecular formula for Zinc Sulfide is ZnS.
The ionic compound ZnS is zinc sulfide.
No. It is ionic. That means that Zn has given off to of its electrons to Oxygen and because of the difference in electrical charge between the to they form a binding.
Zinc sulphide is actually an ionic compound.
Yes, it is the chemical formula of zinc sulfide.
Zinc oxide is an ionic compound because it is made up of zinc cations (Zn2+) and oxide anions (O2-), which are held together by ionic bonds.
Zinc sulfide is a covalent compound.
Silver sulfide is an ionic compound, consisting of silver cations (Ag+) and sulfide anions (S2-). It is formed by the transfer of electrons from silver to sulfur, resulting in the formation of an ionic bond.
Zinc (Zn) is an elemental metal and is not considered molecular or ionic. It exists as individual atoms in its solid metallic form.
Copper(II) sulfide is an ionic compound.
FeS is an ionic compound consisting of iron (Fe) cations and sulfide (S) anions. The bond between Fe and S is predominantly ionic, with Fe donating electrons to S to form ionic bonds.