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Ch.9 - Molecular Geometry and Bonding Theories
Brown - Chemistry: The Central Science 14th Edition
Brown14th EditionChemistry: The Central ScienceISBN: 9780134414232당신이 사용하는 게 아니라요?교과서 변경
9장, 문제 28a3

The figure that follows contains ball-and-stick drawings of three possible shapes of an AF4 molecule. (a) For each shape, give the electron-domain geometry on which the molecular geometry is based. iii.
Ball-and-stick model of an AF4 molecule showing one of its possible molecular geometries.

검증된 단계별 안내
1
Identify the central atom (A) and the surrounding atoms (F) in the AF4 molecule.
Determine the number of electron domains around the central atom. In this case, there are 5 electron domains (4 bonding pairs and 1 lone pair).
Recognize that the electron-domain geometry for 5 electron domains is trigonal bipyramidal.
Understand that the molecular geometry is derived from the electron-domain geometry by considering only the positions of the atoms. With one lone pair, the molecular geometry is seesaw.
Conclude that the electron-domain geometry for the given AF4 molecule shape is trigonal bipyramidal, and the molecular geometry is seesaw.

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1m

주요 개념

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Electron-Domain Geometry

Electron-domain geometry refers to the spatial arrangement of all electron domains (bonding and lone pairs) around a central atom in a molecule. It helps predict the overall shape of the molecule based on the number of electron domains. For example, a central atom with four electron domains will have a tetrahedral electron-domain geometry.
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가이드 코스
04:44
Electron Geometry

Molecular Geometry

Molecular geometry describes the three-dimensional arrangement of the atoms in a molecule, which is influenced by the electron-domain geometry. While electron domains include lone pairs, molecular geometry focuses solely on the positions of the atoms. For instance, a tetrahedral electron-domain geometry can lead to different molecular geometries, such as tetrahedral or trigonal pyramidal, depending on the presence of lone pairs.
추천 영상:
가이드 코스
01:33
Molecular Geometry with Two Electron Groups

VSEPR Theory

Valence Shell Electron Pair Repulsion (VSEPR) theory is a model used to predict the shape of molecules based on the repulsion between electron pairs around a central atom. According to VSEPR, electron pairs will arrange themselves to minimize repulsion, leading to specific molecular geometries. This theory is essential for understanding how the shapes of molecules, like AF4, are determined by their electron-domain arrangements.
추천 영상:
가이드 코스
02:13
Molecular Shapes and VSEPR