Concept explainers
(a)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (a) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
(b)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (b) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
(c)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (c) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
(d)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (d) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
(e)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (e) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
(f)
Interpretation:
The electrons group arrangement and ideal bond angle around the central atom in structure (f) are to be determined. Also, the deviation from the ideal bond angle is to be explained.
Concept introduction:
The steps to determine the molecular shape of a 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.
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Chapter 10 Solutions
CHEM 212:STUDENT SOLUTION MANUAL
- Choose the best reagents to complete the following reaction. i H A B 1. CH3CH2Na 2. H3O+ 1. CH3CH2MgBr 2. H3O+ 1. CH3MgBr Q C 2. H3O+ 1. H3O+ D 2. CH3MgBr 00 OH Q E CH³MgBrarrow_forwardThe kinetics of a gas phase reaction of the form A → Products results in a rate constant of 0.00781 M/min. For this reaction, the initial concentration of A is 0.501 M. What is the half-life for this reaction?arrow_forwardChoose the best reagents to complete the following reaction. 1. PhNa A 2. H3O+ 1. PhCH2MgBr B 2. H3O+ хё 1. PhMgBr C 2. H3O+ 00 HO Q E D 1. H3O+ 2. PhMgBr PhMgBrarrow_forward
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- Provide the proper IUPAC name only for the following compound. Dashes, commas, and spaces must be used correctly, but do not use italics in Canvas.arrow_forwardThe kinetics of a gas phase reaction of the form A → Products results in a rate constant of 0.00781 M/min. For this reaction, the initial concentration of A is 0.501 M. How many minutes will it take for the concentration of A to reach 0.144 Marrow_forwardWhat is the rate for the second order reaction A → Products when [A] = 0.256 M? (k = 0.761 M⁻¹s⁻¹)arrow_forward
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