Using the following atomic orbital pictures and radial probability distribution plots: a) Identify atomic orbital #1. Indicate the number of radial and angular nodes. b) Identify atomic orbital # 2. Indicate the number of radial and angular nodes. c) What type of molecular orbital (o, n, or no interaction) will be formed when these orbitals approach each other along the x axis? Describe the orbital overlap if applicable. Assume that the atomic orbitals are at appropriate energy levels to mix. Atomic Orbital #1 R 007 0.06 005 004 003 0.02 001 10 20 40 50 r (ao) Atomic Orbital #2 R 012 01 0.00 04 002 15 r (a.)

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Using the following atomic orbital pictures and radial probability distribution plots:
a) Identify atomic orbital #1. Indicate the number of radial and angular nodes.
b) Identify atomic orbital #2. Indicate the number of radial and angular nodes.
c) What type of molecular orbital (o, T, or no interaction) will be formed when these orbitals
approach each other along the x axis? Describe the orbital overlap if applicable. Assume that the
atomic orbitals are at appropriate energy levels to mix
Atomic Orbital #1
PR
007
0.06
05
004
03
0.02
0.01
10
20
30
r (ao)
Atomic Orbital #2
R
012
0.06
04
02
10
15
20
25
r (ao)
JSmol
Transcribed Image Text:Using the following atomic orbital pictures and radial probability distribution plots: a) Identify atomic orbital #1. Indicate the number of radial and angular nodes. b) Identify atomic orbital #2. Indicate the number of radial and angular nodes. c) What type of molecular orbital (o, T, or no interaction) will be formed when these orbitals approach each other along the x axis? Describe the orbital overlap if applicable. Assume that the atomic orbitals are at appropriate energy levels to mix Atomic Orbital #1 PR 007 0.06 05 004 03 0.02 0.01 10 20 30 r (ao) Atomic Orbital #2 R 012 0.06 04 02 10 15 20 25 r (ao) JSmol
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