The ionization energy of the F 2 − ion has been given. The various satted questions are to be answered using this given value. Concept introduction: Bond energy is defined as the amount of energy required to break a chemical bond . It can be determined by the addition of the ionization energy, bond dissociation energy and the electron affinity values. The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as, Bond order = [ ( Electrons in bonding orbitals ) − ( Electrons in anti-bonding orbitals ) ] 2 To determine: The bond energy of F 2 − .
The ionization energy of the F 2 − ion has been given. The various satted questions are to be answered using this given value. Concept introduction: Bond energy is defined as the amount of energy required to break a chemical bond . It can be determined by the addition of the ionization energy, bond dissociation energy and the electron affinity values. The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as, Bond order = [ ( Electrons in bonding orbitals ) − ( Electrons in anti-bonding orbitals ) ] 2 To determine: The bond energy of F 2 − .
Solution Summary: The author explains the ionization energy of the F_2- molecule. The bond order is calculated by the difference between the anti-bonding electrons and the bonding
Formula Formula Bond dissociation energy (BDE) is the energy required to break a bond, making it an endothermic process. BDE is calculated for a particular bond and therefore consists of fragments such as radicals since it undergoes homolytic bond cleavage. For the homolysis of a X-Y molecule, the energy of bond dissociation is calculated as the difference in the total enthalpy of formation for the reactants and products. X-Y → X + Y BDE = Δ H f X + Δ H f Y – Δ H f X-Y where, ΔHf is the heat of formation.
Chapter 4, Problem 122CP
(a)
Interpretation Introduction
Interpretation: The ionization energy of the F2− ion has been given. The various satted questions are to be answered using this given value.
Concept introduction: Bond energy is defined as the amount of energy required to break a chemical bond. It can be determined by the addition of the ionization energy, bond dissociation energy and the electron affinity values.
The bond order is calculated by difference between the anti-bonding electrons and the bonding electrons by two. This can be stated as,
You are trying to decide if there is a single reagent you can add that will make the following synthesis possible without any other major side products:
xi
1. ☑
2. H₂O
хе
i
Draw the missing reagent X you think will make this synthesis work in the drawing area below.
If there is no reagent that will make your desired product in good yield or without complications, just check the box under the drawing area and leave it blank.
Click and drag to start drawing a
structure.
There is no reagent that will make this synthesis work without complications.
: ☐
S
☐
Predict the major products of this organic reaction:
H
OH
1. LiAlH4
2. H₂O
?
Note: be sure you use dash and wedge bonds when necessary, for example to distinguish between major products with different stereochemistry.
Click and drag to start drawing a
structure.
G
C
टे
For each reaction below, decide if the first stable organic product that forms in solution will create a new C-C bond, and check the appropriate box.
Next, for each reaction to which you answered "Yes" to in the table, draw this product in the drawing area below.
Note for advanced students: for this problem, don't worry if you think this product will continue to react under the current conditions - just focus on the first
stable product you expect to form in solution.
NH2
CI
MgCl
?
Will the first product that forms in this reaction
create a new CC bond?
Yes
No
MgBr
?
Will the first product that forms in this reaction
create a new CC bond?
Yes
No
G
टे
Chapter 4 Solutions
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