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The electrostatic force in ionic compounds is:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
The electron configuration of aluminumAl is K2 L8M3. Aluminum attains a stability by:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
The bond between silicon Si(Z=14, A=28) and oxygen O(Z= 8, A=16) is:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
The type of bond between Mg(Z=12, A=23) and O(Z=8, A=16) is:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
X (Z=11, A=23) and Y(Z=12, A=23) are:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
Atoms undergo bonding in order to
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
The type of bond in water is:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
An atom differs from its ion in:
Single covalent bond.
Single Covalent.
Greater to that of molecular compounds.
Attain stability.
Double covalent
Losing 3 electrons.
Number of electrons.
Different Elemnts
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