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Tell me about the atomic charges, dipole moment,
bond lengths,
angles,
bond orders,
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1. A bonding orbital for O1-H2 with 1.0000 electrons
3. A lone pair orbital for O1 with 0.9998 electrons
4. A lone pair orbital for O1 with 0.9998 electrons
5. A lone pair orbital for O1 with 0.9998 electrons
-With core pairs on: O 1 -
1. A bonding orbital for O1-H2 with 1.0000 electrons
3. A lone pair orbital for O1 with 0.9998 electrons
-With core pairs on: O 1 -
Top of page.
9 ----- 0.598
Top of page.
Total electronic energy = -75.2771207135 Hartrees
molecular orbital energies,
or total energy.
Tell me about the best Lewis structure.
Atomic Charges and Dipole Moment
O1 charge= 0.473
H2 charge= 0.526
with a dipole moment of 2.18657 Debye
Bond Lengths:
between O1 and H2: distance=1.057 ang___
Bond Orders (Mulliken):
between O1 and H2: order=0.754___
Best Lewis Structure
The Lewis structure that is closest to your structure is determined.
The hybridization of the atoms in this idealized Lewis structure
is given in the table below.
The Lewis structure is built for the up and down electrons,
separately. Note that the up and down structures can be very
different.
Hybridization in the Best Lewis Structure
Down Electrons
__has 79.87% O 1 character in a s0.48 p3 hybrid
__has 20.13% H 2 character in a s orbital
__made from a sp0.16 hybrid
__made from a p-pi orbital ( 99.96% p)
__made from a p-pi orbital ( 99.96% p)
Up Electrons
__has 71.18% O 1 character in a s0.67 p3 hybrid
__has 28.82% H 2 character in a s orbital
__made from a sp0.22 hybrid
Molecular Orbital Energies
The orbital energies are given in eV, where 1 eV=96.49 kJ/mol.
Orbitals with very low energy are core 1s orbitals.
More antibonding orbitals than you might expect are sometimes
listed, because d orbitals are always included for heavy
atoms and p orbitals are included for H atoms.
Up spins are shown with a ^ and down spins are shown as v.
Only the spin up electron orbital energies are given.
8 ----- -0.545 7 ----- -0.545
6 ----- -9.670
5 -^--- -23.72 4 -^--- -23.72
3 -^-v- -24.83
2 -^-v- -39.31
1 -^-v- -524.9
Total Electronic Energy
The total electronic energy is a very large number, so by convention
the units are given in atomic units, that is Hartrees (H). One
Hartree is 2625.5 kJ/mol. The energy reference is for totally
dissociated atoms. In other words, the reference state is a gas
consisting of nuclei and electrons all at infinite distance from
each other. The electronic energy includes all electric
interactions and the kinetic energy of the electrons. This energy
does not include translation, rotation, or vibration of the
the molecule.