Any other nonmetal.
He, helium, is an element. It is a noble gas and it does not form any chemical compounds.
CI2 is a covalent molecule. It consists of two chlorine atoms sharing a pair of electrons between them to form a single covalent bond.
SO3 forms a covalent bond because it is made up of nonmetals (Sulfur and Oxygen). In this compound, the sulfur atom shares electron pairs with the oxygen atoms to form covalent bonds.
Hydrogen can form a covalent bond with nitrogen to create ammonia (NH3).
Yes, elements k and h can form an ionic bond. Element k (potassium) can donate an electron to element h (hydrogen) to form an ionic bond. The resulting ion pair would be K+ and H-.
He, helium, is an element. It is a noble gas and it does not form any chemical compounds.
Covalent. There is no electronegativity difference between two atoms of the same element.
All of the metallic elements will form an ionic bond with fluorine.
CI2 is a covalent molecule. It consists of two chlorine atoms sharing a pair of electrons between them to form a single covalent bond.
SO3 forms a covalent bond because it is made up of nonmetals (Sulfur and Oxygen). In this compound, the sulfur atom shares electron pairs with the oxygen atoms to form covalent bonds.
Hydrogen can form a covalent bond with nitrogen to create ammonia (NH3).
narcissistium
Yes, elements k and h can form an ionic bond. Element k (potassium) can donate an electron to element h (hydrogen) to form an ionic bond. The resulting ion pair would be K+ and H-.
An element like sodium (Na) or calcium (Ca) will likely form an ionic bond with phosphorus. These elements typically have one or two electrons to lose, which can be transferred to phosphorus to form a stable ionic bond.
Every halogen can form their molecules by a single covalent bond.
Convalent bonds (atoms all sharing their electrons), metallic bonds (a rigid crystal lattice bond), and ionic bonds (opposite electric charges-cation=+ anion=--that bond).
sulfur