answersLogoWhite

0


Best Answer

It takes up space like an "invisible" atom.

User Avatar

Eino Rolfson

Lvl 13
2y ago
This answer is:
User Avatar

Add your answer:

Earn +20 pts
Q: How does a lone pair contribute a molecular shape?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

How does a lone pair contribute to a molecular shape?

It takes up space like an "invisible" atom.


How does a lone pair contribute to the molecular shape?

Lone pairs do not affect the shape of diatomic molecules, and Lone pairs are electrons that are not in bonds. Lone pairs do not affect the shape if they are not on the central atom.


How does a lone pair disort the molecular shape?

The lone pair forces bonding atoms away from itself


What does a lone electron pair have on molecular shape?

The lone pair pushes bonding electron pairs away.


What effect does a lone electron pair have a molecular shape?

The lone pair pushes bonding electron pairs away.


What effect does a lone electron pair on molecular shape?

The lone pair pushes bonding electron pairs away.


What is the ammonia molecular shape?

The shape would be pyramidal because of the lone pair nitrogen has


What effect does a lone electron have on a molecular shape?

The lone pair pushes bonding electron pairs away.


How does the lone pair contributes to molecular shape?

The lone pair repels the electrons of the adjacent bonds more so than does a bonding pair of electrons, so thus alters the molecular geometry of the molecule.


What effect does a lone electron pair have on molecular shape?

The lone pair pushes bonding electron pairs away.


What effect does lone pair electrons have on molecular shape?

The lone pair pushes bonding electron pairs away.


How does a lone pair distort the molecular shape?

A lone pair of electrons takes up space despite being very small. Lone pairs have a greater repulsive effect than bonding pairs. This is because there are already other forces needing to be taken into consideration with bond pairs. So to summarize: Lone pair-lone pair repulsion > lone pair-bond pair repulsion > bond pair-bond pair repulsion. This makes the molecular geometry different.