100 50 -50 -100 3.0 4.0 5.0 6.0 7.0 8.0 R (Å) Given the interaction energy diagram for an argon dimer (Ar2) above, select the correct statement: Select one: a. Nucleus-nucleus repulsion causes the molecule to dissociate at long distance. O b. The average distance between the electrons and the nucleus of an argon atom is ~3.8-3.9 Å. O c. The bond length of this molecule is ~3.2 Å as the interaction energy is highest at this distance. O d. The most stable bond length is close to 3.8 Å, as the interaction energy is most negative at this distance. e. The most stable bond length is around 8 Å, where the interaction energy is flattest. Interaction energy (cm¯')

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I asked this question earlier but the answer is not b. Can you explain all options from a to e and why or why not for each with examples such as drawings and explanation?

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Given the interaction energy diagram for an argon dimer (Ar2) above, select the correct statement:
Select one:
O a. Nucleus-nucleus repulsion causes the molecule to dissociate at long distance.
O b. The average distance between the electrons and the nucleus of an argon atom is ~3.8-3.9 Å.
The bond length of this molecule is ~3.2 Å as the interaction energy is highest at this distance.
O C.
O d. The most stable bond length is close to 3.8 Å, as the interaction energy is most negative at this distance.
The most stable bond length is around 8 Å, where the interaction energy is flattest.
е.
Interaction energy (cm¯')
Transcribed Image Text:100 50 -50 -100 3.0 4.0 5.0 6.0 7.0 8.0 R (Å) Given the interaction energy diagram for an argon dimer (Ar2) above, select the correct statement: Select one: O a. Nucleus-nucleus repulsion causes the molecule to dissociate at long distance. O b. The average distance between the electrons and the nucleus of an argon atom is ~3.8-3.9 Å. The bond length of this molecule is ~3.2 Å as the interaction energy is highest at this distance. O C. O d. The most stable bond length is close to 3.8 Å, as the interaction energy is most negative at this distance. The most stable bond length is around 8 Å, where the interaction energy is flattest. е. Interaction energy (cm¯')
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