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Polar covalent bonds:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
Ionic
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
The lowest potential energy:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
Covalent:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
The electro-negativity of sulfur is:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
Most atoms have lower potential energy when:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
Bonding electrons will be more strongly attracted to atoms of:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
Nonpolar covalent bonds:
Higher electro-negativity
2.5
usually creates the most stability
Electrons are transferred
Electrons are shared
Bond which bonding electrons are shared equally by bonded atoms resulting in balanced distribution of electric charge.Nopoles
Bond which the bonded atoms have an unequal attraction for the shared electrons.Positive and negative poles form on molecule
they are bonded to other atoms than they have as they are independent particles.
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