28. The three bonds arranged in a trigonal plane are referred to the positions.

Chemistry
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Can someone please help me with number 28? It’s driving me nuts?
Sure! Here is a transcription suitable for an educational context:

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1. In the Valence Shell Electron Pair Repulsion (VSEPR) Theory, ___ electron domains result in an octahedral geometry around the central atom.

2. When the molecular geometry is ___ planar, the bond angle is 120°.

3. ___ bonds are formed from the overlap of atomic orbitals.

4. In the Valence Shell Electron Pair Repulsion Theory, ___ electron domains result in a tetrahedral geometry around the central atom.

5. The basis of the VSEPR model is that electrons ___ each other.

6. In the Valence Shell Electron Pair Repulsion Theory, ___ electron domains result in a linear geometry around the central atom.

7. According to the ___ bond theory, atoms share electrons when atomic orbitals overlap.

8. The three bonds arranged in a trigonal plane are referred to the ___ positions.

9. In Molecular Orbital Theory, species that contain one or more unpaired electrons are ___ magnetic.

10. The ___ moment is a measure of the separation of charge in a bond or molecule.

11. When determining molecular polarity, think of each bond dipole as a ___.

12. The atomic symbol for lanthanum is ___.

13. Molecular shape can be predicted by using the valence-shell electron-pair repulsion model abbreviated: ___.

14. ___ or mixing of atomic orbitals can account for observed bond angles in molecules that could not be described by the direct overlap of atomic orbitals.

15. In Molecular Orbital Theory, ___ magnetic species are weakly repelled by magnetic fields.

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Note: There are no graphs or diagrams included in the image; it is a list of statements and fill-in-the-blank questions related to molecular geometry and theory.
Transcribed Image Text:Sure! Here is a transcription suitable for an educational context: --- 1. In the Valence Shell Electron Pair Repulsion (VSEPR) Theory, ___ electron domains result in an octahedral geometry around the central atom. 2. When the molecular geometry is ___ planar, the bond angle is 120°. 3. ___ bonds are formed from the overlap of atomic orbitals. 4. In the Valence Shell Electron Pair Repulsion Theory, ___ electron domains result in a tetrahedral geometry around the central atom. 5. The basis of the VSEPR model is that electrons ___ each other. 6. In the Valence Shell Electron Pair Repulsion Theory, ___ electron domains result in a linear geometry around the central atom. 7. According to the ___ bond theory, atoms share electrons when atomic orbitals overlap. 8. The three bonds arranged in a trigonal plane are referred to the ___ positions. 9. In Molecular Orbital Theory, species that contain one or more unpaired electrons are ___ magnetic. 10. The ___ moment is a measure of the separation of charge in a bond or molecule. 11. When determining molecular polarity, think of each bond dipole as a ___. 12. The atomic symbol for lanthanum is ___. 13. Molecular shape can be predicted by using the valence-shell electron-pair repulsion model abbreviated: ___. 14. ___ or mixing of atomic orbitals can account for observed bond angles in molecules that could not be described by the direct overlap of atomic orbitals. 15. In Molecular Orbital Theory, ___ magnetic species are weakly repelled by magnetic fields. --- Note: There are no graphs or diagrams included in the image; it is a list of statements and fill-in-the-blank questions related to molecular geometry and theory.
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