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- The B2 molecule is paramagnetic; show how this indicates that the energy ordering of the orbitals in this molecule is given by Figure 6.18a rather than 6.18b.The MO of the ground state of a heteronuclear diatomicmoleculeAB is mol=CAA+CBB If a bonding electron spends 90% of its time in an orbital A on atom A and 10% of its time in B on atom B, what are the values of CA and CB ? (Neglect the overlap of the two orbitals.)Consider a ring system made up of 8 atoms (each one contributing a p atomic orbital to make 8 pi molecular orbitals). If the system is filled with 6 orbitals containing single, electrons, there will 6 orbitals containing pairs of electrons and 1 unpaired electrons. Hint: Use a Frost Circle. Use numbers rather than text for your answers.
- Predict what type (if any) of molecular orbital would result from adding the wave functions so each pair of orbitals shown overlap. The orbitals are all similar in energy.Construct the (generic) molecular orbital diagram for homonuclear diatomic molecules for elements up to the second period in the periodic table [Write the generic wave functions of the molecular orbitals]Huckel theory: All atomic orbital coefficients in the lowest energy MO (Ψ1) should have the same value – explain why?
- 2. What's the bond order of the diatomic molecule Ne,? Is your result consistent with the fact that Ne is a monatomic molecule in nature? Explain. 3. How many unpaired electrons doe the ion N have? Is your result consistent with the fact that N* is attracted by magnet? Explain.Consider a 2s orbital and a 2p orbital that come hybridize to form two sp orbitals. Which of the following statements is true?2. What’s the bond order of the diatomic molecule Ne2? Is your result consistent with the fact that Ne is a monatomic molecule in nature? Explain. 3. How many unpaired electrons doe the ion have? Is your result consistent with the fact that is attracted by magnet? Explain
- 2. What's the bond order of the diatomic molecule Ne2? Is your result consistent with the fact that Ne is a monatomic molecule in nature? Explain. 3. How many unpaired electrons doe the ion N have? Is your result consistent with the fact that N is attracted by magnet? Explain.Draw an MO diagram to explain the existence of the trihydrogen cation (H3+). Hint: it forms a cyclic structure. Use individual 1s orbitals from H atoms to form your molecular orbitals (don’t worry about forming LGOs; determine the symmetries of the MOs using the projection operator method and sketch approximate wavefunctions for each). How many electrons are present in this molecule? What is the bond order? What type of bonding is this?An energy level scheme for the orbitals of second row diatomic molecules O, through Nez, lists the molecular orbitals in the following order of increasing energy Based on this energy level scheme, how many electrons are there in all of the antibonding molecular orbitals of the F2" lon in its ground state?