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All results from a given calculation for C3H4N2 (1H-Pyrazole)

using model chemistry: B3LYP/STO-3G

19 10 17 12 22

States and conformations

State Conformation minimum conformation conformer description state description
1 1 yes CS 1A'
Energy calculated at B3LYP/STO-3G
 hartrees
Energy at 0K-223.328160
Energy at 298.15K-223.333739
Nuclear repulsion energy158.477351
The energy at 298.15K was derived from the energy at 0K and an integrated heat capacity that used the calculated vibrational frequencies.
Vibrational Frequencies calculated at B3LYP/STO-3G
Mode Number Symmetry Frequency
(cm-1)
Scaled Frequency
(cm-1)
IR Intensities
(km mol-1)
Raman Act
4/u)
Dep P Dep U
1 A' 3761 3356 63.48      
2 A' 3531 3151 15.25      
3 A' 3499 3122 24.76      
4 A' 3491 3115 0.01      
5 A' 1654 1476 12.13      
6 A' 1548 1381 10.97      
7 A' 1485 1325 14.48      
8 A' 1420 1267 3.04      
9 A' 1273 1136 1.86      
10 A' 1196 1067 5.31      
11 A' 1156 1032 5.37      
12 A' 1106 987 2.98      
13 A' 1051 938 15.51      
14 A' 935 834 1.62      
15 A' 929 829 8.07      
16 A" 924 825 0.13      
17 A" 874 780 6.09      
18 A" 778 695 36.53      
19 A" 659 588 18.18      
20 A" 640 571 3.39      
21 A" 411 367 57.36      

Unscaled Zero Point Vibrational Energy (zpe) 16160.2 cm-1
Scaled (by 0.8924) Zero Point Vibrational Energy (zpe) 14421.3 cm-1
See section III.C.1 List or set vibrational scaling factors to change the scale factors used here.
See section III.C.2 Calculate a vibrational scaling factor for a given set of molecules to determine the least squares best scaling factor.
Rotational Constants (cm-1) from geometry optimized at B3LYP/STO-3G
ABC
0.30768 0.29443 0.15046

See section I.F.4 to change rotational constant units
Geometric Data calculated at B3LYP/STO-3G

Point Group is Cs

Cartesians (Å)
Atom x (Å) y (Å) z (Å)
H1 2.149 0.745 0.000
C2 1.142 0.312 0.000
H3 1.302 -1.906 0.000
C4 0.689 -1.002 0.000
H5 -1.453 -1.754 0.000
C6 -0.737 -0.924 0.000
N7 -1.219 0.373 0.000
H8 -0.036 2.163 0.000
N9 0.000 1.118 0.000

Atom - Atom Distances (Å)
  H1 C2 H3 C4 H5 C6 N7 H8 N9
H11.09562.78252.27644.38343.33333.38782.60472.1810
C21.09562.22331.38993.31692.24912.36182.19471.3983
H32.78252.22331.09202.75922.26313.39834.28353.2923
C42.27641.38991.09202.27001.42812.35183.24742.2293
H54.38343.31692.75922.27001.09612.13994.16553.2183
C63.33332.24912.26311.42811.09611.38383.16582.1707
N73.38782.36183.39832.35182.13991.38382.14551.4281
H82.60472.19474.28353.24744.16553.16582.14551.0460
N92.18101.39833.29232.22933.21832.17071.42811.0460

picture of 1H-Pyrazole state 1 conformation 1
More geometry information
Calculated Bond Angles
atom1 atom2 atom3 angle atom1 atom2 atom3 angle
H1 C2 C4 132.317 H1 C2 N9 121.507
C2 C4 H3 126.814 C2 C4 C6 105.893
C2 N9 N7 113.361 C2 N9 H8 127.170
H3 C4 C6 127.293 C4 C2 N9 106.176
C4 C6 H5 127.648 C4 C6 N7 113.516
H5 C6 N7 118.837 C6 N7 N9 101.055
N7 N9 H8 119.470
Electronic energy levels
Charges, Dipole, Quadrupole and Polarizability
Charges from optimized geometry at B3LYP/STO-3G Charges (e)
Number Element Mulliken CHELPG AIM ESP
1 H 0.096      
2 C -0.009      
3 H 0.085      
4 C -0.118      
5 H 0.088      
6 C -0.031      
7 N -0.150      
8 H 0.236      
9 N -0.196      


Electric dipole moments
Electric dipole components in Debye
(What's a Debye? See section VII.A.3)
  x y z Total
  1.886 1.008 0.000 2.138
CHELPG        
AIM        
ESP        


Electric Quadrupole moment
Quadrupole components in D Å
Primitive
 xyz
x -27.959 2.092 0.000
y 2.092 -21.160 0.000
z 0.000 0.000 -28.500
Traceless
 xyz
x -3.129 2.092 0.000
y 2.092 7.069 0.000
z 0.000 0.000 -3.940
Polar
3z2-r2-7.880
x2-y2-6.799
xy2.092
xz0.000
yz0.000


Polarizabilities
Components of the polarizability tensor.
Units are Å3 (Angstrom cubed)
Change units.
  x y z
x 4.387 0.305 0.000
y 0.305 4.988 0.000
z 0.000 0.000 0.793


<r2> (average value of r2) Å2
<r2> 82.314
(<r2>)1/2 9.073