10-2. From the data shown in Fig. 10.6, calculate the net attractive force produced by the two electrons in the neutral H, molecule. H2 R R E, = 2.7 eV E, = 4.7 ev - Ro 0.108 nm - Ro- 0.076 nm Figure 10.6. Energy vs. separation curves for H and H2. The single bond (two bonding electrons) of H2 is shorter, stiffer, and stronger than the half-bond (only one electron) of H*.

Chemistry: The Molecular Science
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Chapter6: Covalent Bonding
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10-2. From the data shown in Fig. 10.6, calculate the net attractive force produced
by the two electrons in the neutral H, molecule.
H2
R
R
E, = 2.7 eV
E, = 4.7 ev
- Ro
0.108 nm
- Ro
0.076 nm
Figure 10.6. Energy vs. separation curves for H and H2. The
single bond (two bonding electrons) of H2 is shorter, stiffer, and
stronger than the half-bond (only one electron) of H.
Transcribed Image Text:10-2. From the data shown in Fig. 10.6, calculate the net attractive force produced by the two electrons in the neutral H, molecule. H2 R R E, = 2.7 eV E, = 4.7 ev - Ro 0.108 nm - Ro 0.076 nm Figure 10.6. Energy vs. separation curves for H and H2. The single bond (two bonding electrons) of H2 is shorter, stiffer, and stronger than the half-bond (only one electron) of H.
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