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6) Use the D2h point group to construct the molecular orbital diagram for CO2
Construct a molecular orbital diagram and assign the point group for tetrahedral [BH4]–
Construct a molecular orbital diagram for carbon monoxide. Identify the relevant point group, include all of the appropriate symmetry labels and pictures, and fill in the electrons. Make sure to account for the difference in electronegativity between C and O. Hint: CO is substantially isoelectronic to N2.
Draw the molecular orbital diagram for: (indicate the point group symmetry and draw with bonding and non bonding labeled, SALCS, and connecting lines) 1. SCl4 2. CO2
construct molecular orbital energy diagram of clf4
17. (a) For the point group D2h construct a three-dimensional matrix representation using the set of three real p orbitals. (b) To what irreducible representations do these orbitals belong?
1. Use symmetry considerations to construct a qualitative molecular orbital energy level diagram for PFs - consider only s and p orbitals. 2, Give the point groups designations and show the symmetry elements used to establish that designation in the following.
Draw the molecular orbital diagram for: (indicate the point group symmetry and draw with bonding and non bonding labeled, SALCS, and connecting lines) 1. PF5 2. SCl4
Construct a molecular orbital energy-level diagram for H2S. Sketch the molecular orbital picture (schematic representation) for the LUMO of H2S (using orbital potential energies)
Construct the molecular orbital diagram of He2 using appropriate molecular orbital labels and arrows to represent electrons. a) Sketch each molecular orbital. Explain HOW you identify an antibonding orbital. b) Identify the linear combination of atomic orbitals for each molecular orbital. Explain WHY there are two molecular orbitals. Explain why the He2 molecule is NOT observed experimentally. c)
Draw the molecular orbital diagram for SCl4. PLEASE indicate the point group symmetry and draw with bonding and non bonding labeled, SALCS, and connecting lines!