Indicated table should be completed with appropriate choices between K and Cs ,between Te and Br , between Ge and Se for more favorable electron affinity that is exothermic, for more exothermic electron affinity, higher ionization energy, and larger atomic size. K and Cs Te and Br Ge and Se More favorable electron affinity Higher ionization energy Larger size Concept introduction: In order to remove the electron situated in outermost shell certain minimum energy must be imparted so as to convert an atom to gaseous species. The energy thus imparted represents ionization energy. The magnitude of ionization energy is determined by how effectively valence electron is held by the nucleus. If the outermost shell has, for instance, one or two electronsthat require very minimum ionization energy because they can attain the noble gas configuration upon loss of those electrons. As one moves from top to bottom the shells expands and size increases, while it decreases as one move along the period.
Indicated table should be completed with appropriate choices between K and Cs ,between Te and Br , between Ge and Se for more favorable electron affinity that is exothermic, for more exothermic electron affinity, higher ionization energy, and larger atomic size. K and Cs Te and Br Ge and Se More favorable electron affinity Higher ionization energy Larger size Concept introduction: In order to remove the electron situated in outermost shell certain minimum energy must be imparted so as to convert an atom to gaseous species. The energy thus imparted represents ionization energy. The magnitude of ionization energy is determined by how effectively valence electron is held by the nucleus. If the outermost shell has, for instance, one or two electronsthat require very minimum ionization energy because they can attain the noble gas configuration upon loss of those electrons. As one moves from top to bottom the shells expands and size increases, while it decreases as one move along the period.
Solution Summary: The author explains that in order to remove the electron situated in outermost shell certain minimum energy must be imparted so as to convert an atom to gaseous species.
Interpretation:Indicated table should be completed with appropriate choices between K and Cs ,between Te and Br , between Ge and Se for more favorable electron affinity that is exothermic, for more exothermic electron affinity, higher ionization energy, and larger atomic size.
K and CsTe and BrGe and SeMore favorable electron affinityHigher ionization energyLarger size
Concept introduction:In order to remove the electron situated in outermost shell certain minimum energy must be imparted so as to convert an atom to gaseous species. The energy thus imparted represents ionization energy.
The magnitude of ionization energy is determined by how effectively valence electron is held by the nucleus. If the outermost shell has, for instance, one or two electronsthat require very minimum ionization energy because they can attain the noble gas configuration upon loss of those electrons.
As one moves from top to bottom the shells expands and size increases, while it decreases as one move along the period.
3.
a.
Use the MS to propose at least two possible molecular formulas.
For an unknown compound:
101.
27.0
29.0
41.0
50.0
52.0
55.0
57.0
100
57.5
58.0
58.5
62.0
63.0
64.0
65.0
74.0
40
75.0
76.0
20
20
40
60
80
100
120
140
160
180
200 220
m/z
99.5
68564810898409581251883040
115.0
116.0
77404799
17417M
117.0
12.9
118.0
33.5
119.0
36
133 0
1.2
157.0
2.1
159.0
16
169.0
219
170.0
17
171.0
21.6
172.0
17
181.0
1.3
183.0
197.0
100.0
198.0
200.
784
Relative Intensity
2
2
8
ō (ppm)
6
2
Solve the structure and assign each of the following spectra (IR and C-NMR)
1.
For an unknown compound with a molecular formula of C8H100:
a.
What is the DU? (show your work)
b.
Solve the structure and assign each of the following spectra.
8
6
2
ō (ppm)
4
2
0
200
150
100
50
ō (ppm)
LOD
D
4000
3000
2000
1500
1000
500
HAVENUMBERI -11
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