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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.

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Q: What is the molecular geometry of a molecule with 5 outer atoms and 1 lone pair on the central atom?
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What is the molecular geometry of a molecule with 2 outer atoms and 1 lone pair on the central atom?

The molecular geometry of this molecule is bent. Click on the related link for a Wikipedia article that contains a VSEPR table.


How do you determine the molecular geometry of a molecule?

The molecular geometry of a molecule can be determined using the VSEPR theory. VSEPR (Valence Shell Electron Pair Repulsion) Theory: The basic premise of this simple theory is that electron pairs (bonding and nonbonding) repel one another; so the electron pairs will adopt a geometry about an atom that minimizes these repulsions. Use the method below to determine the molecular geometry about an atom. Write the Lewis dot structure for the molecule. Count the number of things (atoms, groups of atoms, and lone pairs of electrons) that are directly attached to the central atom (the atom of interest) to determine the overall (electronic) geometry of the molecule. Now ignore the lone pairs of electrons to get the molecular geometry of the molecule. The molecular geometry describes the arrangement of the atoms only and not the lone pairs of electrons. If there are no lone pairs in the molecule, then the overall geometry and the molecular geometry are the same. If the overall geometry is tetrahedral, then there are three possibilities for the molecular geometry; if it is trigonal planar, there are two possibilities; and if it is linear, the molecular geometry must also be linear. The diagram below illustrates the relationship between overall (electronic) and molecular geometries. To view the geometry in greater detail, simply click on that geometry in the graphic below. Although there are many, many different geometries that molecules adopt, we are only concerned with the five shown below.


How many atoms are bonded to the central atom when the molecular geometry is T-shaped?

3


What is the molecular geometry of a molecule with 2 outer atoms and 2 lone pairs?

Bent, like water.


What is the molecule geometry for HF?

since it has a total of two atoms , its molecular shape is linear with bond angles of 180 degree.

Related questions

What is the molecular geometry of a molecule with 2 outer atoms and 1 lone pair on the central atom?

The molecular geometry of this molecule is bent. Click on the related link for a Wikipedia article that contains a VSEPR table.


What is the molecular geometry of a molecule with 4 outer atoms and 2 lone pairs on the central atom?

square planar


What is the molecular geometry of a molecule with 3 outer atoms and 2 lone pair on the central atom?

trigonal planar


What is the Molecular geometry of CO?

This is a linear molecule.


What is the molecular geometry of C-O bond?

As with all molecule consisting of only two atoms the geometry is linear.


Molecular geometry of sif4?

Silicon Tetrafluoride has a tetrahedral molecular geometry. That means there are 4 F atoms around the central atom Si.


How do you determine the molecular geometry of a molecule?

The molecular geometry of a molecule can be determined using the VSEPR theory. VSEPR (Valence Shell Electron Pair Repulsion) Theory: The basic premise of this simple theory is that electron pairs (bonding and nonbonding) repel one another; so the electron pairs will adopt a geometry about an atom that minimizes these repulsions. Use the method below to determine the molecular geometry about an atom. Write the Lewis dot structure for the molecule. Count the number of things (atoms, groups of atoms, and lone pairs of electrons) that are directly attached to the central atom (the atom of interest) to determine the overall (electronic) geometry of the molecule. Now ignore the lone pairs of electrons to get the molecular geometry of the molecule. The molecular geometry describes the arrangement of the atoms only and not the lone pairs of electrons. If there are no lone pairs in the molecule, then the overall geometry and the molecular geometry are the same. If the overall geometry is tetrahedral, then there are three possibilities for the molecular geometry; if it is trigonal planar, there are two possibilities; and if it is linear, the molecular geometry must also be linear. The diagram below illustrates the relationship between overall (electronic) and molecular geometries. To view the geometry in greater detail, simply click on that geometry in the graphic below. Although there are many, many different geometries that molecules adopt, we are only concerned with the five shown below.


How many atoms are bonded to the central atom when the molecular geometry is T-shaped?

3


What is the molecular geometry of a molecule with 2 outer atoms and 2 lone pairs?

Bent, like water.


What are the molecular geometry around central atoms for CH4?

Carbon has four Hydrogen atoms around it.It is in tetrahedral shape


What molecular geometry exists when a central carbon atom bonds to four other atoms?

tetrahedral


How do you define bond length?

In molecular geometry, bond length refers to the distance separating nuclei of bonded atoms in a single molecule.