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DALTON: set molecule/basis print level for moment of inertia tensor
This is the geometry from Gaussian09/irc_point.log, run with and without symmetry. The original Gaussian calculation was run without symmetry. With symmetry, DALTON automatically detects the largest Abelian subgroup as Cs, same as Gaussian with symmetry. Gaussian with `symm=loose` detects C3v.
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BASIS
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STO-3G
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---
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---
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Atomtypes=3 Angstrom Charge=0 Nosymmetry
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Charge=6.0 Atoms=1
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C 0.027792 0.024268 -0.042053
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Charge=1.0 Atoms=3
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H 0.464553 -0.923210 -0.237637
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H 0.464653 0.667602 0.680443
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H -0.915877 0.267248 -0.462975
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Charge=17.0 Atoms=2
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Cl 1.178751 1.029248 -1.783568
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Cl -1.188671 -1.037911 1.798579
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**DALTON INPUT
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.RUN WAVE FUNCTIONS
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*MOLBAS
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.PRINT
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5
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**WAVE FUNCTIONS
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.HF
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**END OF DALTON INPUT

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