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Non-metals generally form covalent bonds when they combine with another non metals

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13y ago

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What type of bond form when elements share electrons?

covalent bonds


What type of bond will form in a molecule of iodine?

A covalent bond, as in all diatomic elements. To be specific, a nonpolar covalent bond, since the electronegativity values are identical


Which pair of elements will form a covalent bond?

Two nonmetals, such as carbon and oxygen, will typically form a covalent bond. This type of bond involves the sharing of electrons between the atoms to achieve a stable electron configuration.


What type of bond is C12H22O11?

C12H22O11 is a covalent bond because it consists of nonmetal elements (carbon, hydrogen, and oxygen) that share electrons to form molecules, suchjson as glucose.


What bond type will boron and sulfur form?

Boron and sulfur will form a covalent bond because both elements have similar electronegativities and tend to share electrons to achieve a stable octet.


What type of bond does a covalent bond form?

A chemical bond


What type of bond will form sodium?

covalent bond


What type of bond is NP?

The bond between nitrogen and phosphorus is typically a covalent bond, where they share electrons to form a stable molecule. This type of bonding is common between nonmetal elements.


What type of bond can form multiple bond?

Covalent bonds


Use the electronegativity chart to determine the type of bond that will form between this pair of elements.?

its polar found by smiley


What type of bond exists between nitrogen and phosphorus?

A covalent bond typically exists between nitrogen and phosphorus. Both elements are nonmetals and commonly form covalent compounds due to their electronegativity.


Why do elements form ionic and or covalent bonds?

Elements form ionic bonds when they transfer electrons to achieve a stable octet in their outermost energy level. Covalent bonds are formed when elements share electrons to achieve a complete outer energy level. The type of bond formed depends on the electronegativity difference between the atoms involved.