The photoelectron spectra of the 2p electrons of Ne and Ar are shown below. Intensity 100 Choose 1 answer: Peak X 10 1 Binding energy (MJ/mol) 0 Which of the following correctly identifies the element associated wit Peak X and provides the best justification? Ne, because the 2p electrons in Ne are less shielded than the 2 electrons in Ar are Ne, because the 2p electrons in Ne experience fewer electron- electron repulsions than the 2p electrons in Ar do Ar, because the 2p electrons in Ar experience a greater nuclea charge than the 2p electrons in Ne do Ar, because the 2p electrons in Ar are, on average, farther from the nucleus than the 2p electrons in Ne are

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Chapter1: Chemical Foundations
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The photoelectron spectra of the 2p electrons of Ne and Ar are shown
below.
Intensity
Choose 1 answer:
A
B
100
Peak X
10
1
Which of the following correctly identifies the element associated with
Peak X and provides the best justification?
Binding energy (MJ/mol)
0
Ne, because the 2p electrons in Ne are less shielded than the 2p
electrons in Ar are
Ne, because the 2p electrons in Ne experience fewer electron-
electron repulsions than the 2p electrons in Ar do
Ar, because the 2p electrons in Ar experience a greater nuclear
charge than the 2p electrons in Ne do
Ar, because the 2p electrons in Ar are, on average, farther from
the nucleus than the 2p electrons in Ne are
Transcribed Image Text:The photoelectron spectra of the 2p electrons of Ne and Ar are shown below. Intensity Choose 1 answer: A B 100 Peak X 10 1 Which of the following correctly identifies the element associated with Peak X and provides the best justification? Binding energy (MJ/mol) 0 Ne, because the 2p electrons in Ne are less shielded than the 2p electrons in Ar are Ne, because the 2p electrons in Ne experience fewer electron- electron repulsions than the 2p electrons in Ar do Ar, because the 2p electrons in Ar experience a greater nuclear charge than the 2p electrons in Ne do Ar, because the 2p electrons in Ar are, on average, farther from the nucleus than the 2p electrons in Ne are
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