The energy-level diagram in Figure 9.36 shows that the sideways overlap of a pair of p orbitals produces two molecular orbitals, one bonding and one antbonding. In ethylene there is a pair of electrons in the bonding n orbital between the two carbons. Absorption of a photon of the appropriate wavelength can result in promotion Of one Of the bonding electrons from the r2p to the Ir. molecular orbital. a. Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the HOMO in ethylene? b Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the LUMO in ethylene? c. Is the bond in ethylene stronger or weaker in the excited State than the ground state? d. Is the C-C bond in ethylene easier to twist in the ground state or in the excited state?
The energy-level diagram in Figure 9.36 shows that the sideways overlap of a pair of p orbitals produces two molecular orbitals, one bonding and one antbonding. In ethylene there is a pair of electrons in the bonding n orbital between the two carbons. Absorption of a photon of the appropriate wavelength can result in promotion Of one Of the bonding electrons from the r2p to the Ir. molecular orbital. a. Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the HOMO in ethylene? b Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the LUMO in ethylene? c. Is the bond in ethylene stronger or weaker in the excited State than the ground state? d. Is the C-C bond in ethylene easier to twist in the ground state or in the excited state?
The energy-level diagram in Figure 9.36 shows that the sideways overlap of a pair of p orbitals produces two molecular orbitals, one bonding and one antbonding. In ethylene there is a pair of electrons in the bonding n orbital between the two carbons. Absorption of a photon of the appropriate wavelength can result in promotion Of one Of the bonding electrons from the r2p to the Ir. molecular orbital. a. Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the HOMO in ethylene? b Assuming this electronic transition corresponds to the HOMO-LUMO transition, what is the LUMO in ethylene? c. Is the bond in ethylene stronger or weaker in the excited State than the ground state? d. Is the C-C bond in ethylene easier to twist in the ground state or in the excited state?
Please correct answer and don't use hand rating and don't use Ai solution
Please correct answer and don't used hand raiting
14. Draw all of the products expected for the following reaction. Circle the products expected to
predominate when the reaction is heated to 40 °C. EXPLAIN your choice. (12 points)
HBr
?
Br
-11
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell