
(a)
Interpretation:
Electron-group arrangement, molecularshape, and ideal bond angle for
Concept introduction:
The steps to determine the molecular shape and electron-group arrangement of the given molecule are as follows:
Step 1: Write the Lewis structure of the given formula.
Step 2: Count all electron groups including bonding and non-bonding pairs around the central atom and use it to assign one of the five electron-group arrangement.
Step 3: Write the ideal bond angle related to the electron-group arrangement and the ideal angles can be predicted by using VSEPR.
Step 4: Count the bonding and non-bonding electron groups and draw the molecular shape accordingly.
(b)
Interpretation:
Electron-group arrangement, molecularshape, and ideal bond angle for
Concept introduction:
The steps to determine the molecular shape and electron-group arrangement of the given molecule are as follows:
Step 1: Write the Lewis structure of the given formula and place the atoms.
Step 2: Count all electron groups including bonding and non-bonding pairs around the central atom and use it to assign one of the five electron-group arrangement.
Step 3: Write the ideal bond angle related to the electron-group arrangement and the ideal angles can be predicted by using VSEPR.
Step 4: Count the bonding and non-bonding electron groups and draw the molecular shape accordingly.
(c)
Interpretation:
Electron-group arrangement, molecularshape, and ideal bond angle for
Concept introduction:
The steps to determine the molecular shape and electron-group arrangement of the given molecule are as follows:
Step 1: Write the Lewis structure of the given formula and place the atoms.
Step 2: Count all electron groups including bonding and non-bonding pairs around the central atom and use it to assign one of the five electron-group arrangement.
Step 3: Write the ideal bond angle related to the electron-group arrangement and the effect of any deviation can be predicted by using VSEPR.
Step 4: Count the bonding and non-bonding electron groups and draw the molecular shape accordingly.

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Chapter 10 Solutions
Chemistry: The Molecular Nature of Matter and Change
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