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EGG=(#lone pair electrons)+(# of bond pair electrons)

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Q: Determining the Electron group geometry of a central atom?
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Related questions

What The three-dimensional arrangement of electron groups around the central atom is called what?

three dimensional arrangement of atoms electron-group geometry


What is the spatial arrangement of lone pairs and bonded pairs around the central atom?

electron-group geometry Apex!


What is the electron-group geometry of SeCl2?

The electron-group geometry of SeCl2 is tetrahedral. Its molecular geometry is bent. SeCl2 has one selenium atom and two chlorine atoms.


The spatial arrangement of electrons groups around the central atom is called?

electron-group geometry


What determines the electron-group geometry of a molecule?

The number of bonding groups and lone pairs around the central atom determine the electron-group geometry of a molecule. This geometry is based on the arrangement that minimizes electron repulsion.


What is the electron group geometry of CCL4?

tetrahdral


What is the Electron group arrangement for CH4?

The electron group arrangement for CH4 is tetrahedral. This means that the four hydrogen atoms in methane are arranged in a three-dimensional shape with bond angles of approximately 109.5 degrees around the central carbon atom.


What determine the electron group geometry of a molecule?

the thing that determines it is the type of molecules that are in the substance


What is the molecular geometry of a molecule with 5 outer atoms and 1 lone pair on the central atom?

Anything with six electron groups, keep in mind an electron group is a bonded atom or an electron pair, is an octahedral. Anything in an octahedral and a lone pair is the square pyramidal geometry. So all angles between the atoms are a little less than 90 degrees and the angle of the electron pair is greater than 90.


The electron-group geometry is equal to the number of the bonding pairs of electrons in a covalent bond?

False


What is the molecular geometry of ICl5?

The molecular shape is square pyramidal because it has five ligands and one lone pair and the bond angle are 90,<120. Also, it has no dipole moment and the electron group geometry is octahedral.


If there were only three electron groups around an atom how would they be arranged?

They would be arranged in a trigonal planar orientation.