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a molecule with two bound atoms and one lone electron pair -apex

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12y ago
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6d ago

A molecule with two bonded atoms and two lone pairs on the central atom would form a bent molecular shape.

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Q: Which of the following configurations would form a bent molecule?
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Related questions

Which configurations would form a bent molecule?

A molecule with two bound atoms and one line electron pair


What configurations would form a bent molecule?

Any linear molecule in which the central atom has one or more lone pairs on it. Oxygen is the best example. The large negative charge on the lone pairs will force the electrons in the sigma bonds between the atoms away from itself, bending the structure.


What shape would a molecule of hydrogen sulfide have?

A hydrogen sulfide molecule, H2S, has a bent shape, similar to that of a water molecule.


Does the water molecule have a bent or straight shape?

bent


What is the molecule geometry of SeO2?

Selenium dioxide has a bent molecule.


What molecule or ions has a bent shape?

OF2 has a bent shape.


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

The correct answer is: Bent.


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 is the shape of an ammonia molecule?

An ammonia molecule has a trigonal pyramidal shape, with the nitrogen atom at the center and three hydrogen atoms bonded to it. The lone pair of electrons on the nitrogen atom causes the molecule to be slightly asymmetrical.


What is the shape of a H20 molecule and a carbon tetrachloride molecule?

A water (H2O) molecule has a bent shape due to the arrangement of the two hydrogen atoms around the oxygen atom. A carbon tetrachloride (CCl4) molecule has a tetrahedral shape with the carbon atom in the center and four chlorine atoms at the corners of the tetrahedron.