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Provide the π molecular orbitals for 1,3-butadiene. Give them in order of highest energy (top) to lowest energy (bottom). Label each π molecular orbital (π1, etc.) appropriately. Show how many electrons exist in each π molecular orbital in the ground state of 1,3-butadiene; use arrows appropriately to represent the electrons.
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Our tutors have indicated that to solve this problem you will need to apply the Thermal Cycloaddition Reactions concept. You can view video lessons to learn Thermal Cycloaddition Reactions. Or if you need more Thermal Cycloaddition Reactions practice, you can also practice Thermal Cycloaddition Reactions practice problems.
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Based on our data, we think this problem is relevant for Professor Krahn's class at ASU.