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A molecule with two bond groups and two lone pairs would have a bent or angular shape. This arrangement is due to the repulsion between the lone pairs, which pushes the bonded atoms closer together. According to the VSEPR theory, the ideal bond angle would be less than 109.5 degrees, typically around 104.5 degrees, as seen in water (H₂O).

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3d ago

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Related Questions

What shape would a molecule two bound groups and two lone pairs have?

The correct answer is: Bent.


What shape would a molecule with two bound groups and two lone pairs have?

The correct answer is: Bent.


What shape would a molecule with two bounds groups and two lone pairs have?

The correct answer is: Bent.


What shape would a molecule with two bound groups and two lone pair have?

A molecule with two bound groups and two lone pairs would have a bent or V-shape molecular geometry. This arrangement results in a bond angle less than 180 degrees between the two bound groups. An example of such a molecule is water (H2O).


When shape would a molecule with two bound groups and two lone pairs have?

A molecule with two bound groups and two lone pairs would have a bent or angular shape. This geometry arises from the repulsion between the lone pairs, which occupy more space than the bonding pairs, resulting in a bond angle that is typically less than 109.5 degrees. An example of such a molecule is water (H₂O), where the two hydrogen atoms are bonded to the oxygen atom while the two lone pairs influence the overall shape.


What shape would a molecule with two bound groups and two lone pairs have apex?

A molecule with two bonded groups and two lone pairs will have a bent or V-shaped geometry. The apex of the molecule will be where the two bonded groups meet, causing the lone pairs to be directed away from each other. This geometry is characteristic of molecules with a steric number of four and a tetrahedral electron geometry.


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