lead is malleable, so it can be pounded into flat sheets without breaking. how does the bonding within lead…

lead is malleable, so it can be pounded into flat sheets without breaking. how does the bonding within lead help to explain this property?\n\nmetallic bonds involve valence electrons that are removed from one atom and given to another, so the pounding helps the electrons move.\n\ncovalent bonds involve valence electrons that are shared between two metal atoms, so the bonds are strong enough to resist the pounding.\n\nmetallic bonds involve many valence electrons shared by many atoms, so the bonds can move around as the metal is pounded.\n\ncovalent bonds involve valence electrons that are removed from one atom and given to another, so the pounding helps the electrons move.
Answer
Answer:
C. Metallic bonds involve many valence electrons shared by many atoms, so the bonds can move around as the metal is pounded.
Brief Explanations:
Lead is a metal. Metallic bonding has a sea - of - electrons model where valence electrons are delocalized and shared among many atoms. This allows the metal to be deformed (malleable) without breaking the bonds as the electrons and ions can adjust during pounding. Covalent bonds are not present in metals like lead, and the description of electron transfer in the first option is incorrect for metallic bonds.