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Give the number of total electron groups, the number of bonding groups, and the number of lone pairs for (a) geometry.

Express your answers as an integer. Enter your answers in ascending order separated by commas.

Give the number of total electron groups, the number of bonding groups, and the number of lone pairs for (b) geometry.

Express your answers as an integer. Enter your answers in ascending order separated by commas.

Give the number of total electron groups, the number of bonding groups, and the number of lone pairs for (c) geometry.

Express your answers as an integer. Enter your answers in ascending order separated by commas.

Give the number of total electron groups the number of bonding groups and the number of lone pairs for a geometry Express your answers as

Answer :

For a, there are six bond pairs and no lone pairs. The molecular geometry is octahedral

For b, there are four bond pairs and no lone pairs, the molecular geometry is square planar

For c, there are two lone pairs and two bond pairs, the molecular geometry is bent.

What is molecular geometry?

We know that that the shape of molecule can be obtained by the valence shell electron pair repulsion theory. If we look at the structures that are shown, we can see that there are bond pairs and there are lone pairs in the structure.

Given that the lone pairs take up more space than the bond pairs that can be found in a molecule, the lone pairs make the structure to become a bit frozen and then deviate from the ideal bond angles and geometry that is predicted by the valence shell electron pair repulsion theory.

Learn more about shapes of molecules:https://brainly.com/question/29591951

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