Ionic because it is made of a metal and a non-metal bonded.
Iron bromide is an ionic compound. Iron typically forms ionic compounds with nonmetals like bromine by transferring electrons to achieve a stable configuration.
It is ionic
No, iron and oxygen typically do not form a covalent bond. Instead, they usually form an ionic bond in compounds such as iron oxide (Fe2O3) or iron(II) oxide (FeO).
Iron II chloride is an ionic compound where the bond between iron and chloride ions is ionic. Iron(II) cation (Fe2+) and chloride anion (Cl-) have opposite charges, which result in an electrostatic attraction known as an ionic bond.
The ionic compound name for FeBr2 is iron(II) bromide.
Ionic bond. The metal (iron) gives up electrons to the non-metal (bromine.)
Ionic
Iron bromide is an ionic compound. Iron typically forms ionic compounds with nonmetals like bromine by transferring electrons to achieve a stable configuration.
The bond is ionic.
It is ionic
It is an ionic compound.
No, iron and oxygen typically do not form a covalent bond. Instead, they usually form an ionic bond in compounds such as iron oxide (Fe2O3) or iron(II) oxide (FeO).
Iron II chloride is an ionic compound where the bond between iron and chloride ions is ionic. Iron(II) cation (Fe2+) and chloride anion (Cl-) have opposite charges, which result in an electrostatic attraction known as an ionic bond.
The ionic compound name for FeBr2 is iron(II) bromide.
No, FrBr does not represent a covalent bond. FrBr is the chemical formula for the compound francium bromide, which is an ionic compound formed by the transfer of electrons between francium and bromine atoms.
Iron and oxygen will form an ionic bond, specifically iron oxide (Fe2O3), where iron will donate electrons to oxygen to form positively and negatively charged ions that attract each other.
The bond between oxygen and iron in compounds such as iron oxide is considered to be predominantly ionic. Oxygen tends to gain electrons to form oxide ions, which then attract the positively charged iron ions. This results in a bond where electrons are transferred from iron to oxygen, creating an ionic bond.