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A quasiclassical trajectory study of the H
2
+
+ H
2
→ H
3
+
+ H reaction
Charles W. Eaker,
George C Schatz
*
*
Corresponding author for this work
Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Scopus citations
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2
+
+ H
2
→ H
3
+
+ H reaction'. Together they form a unique fingerprint.
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INIS
energy
87%
distribution
75%
reagents
62%
rotation
50%
cross sections
37%
surfaces
25%
atoms
25%
comparative evaluations
25%
dynamics
25%
protons
25%
trajectories
25%
increasing
25%
quantum numbers
25%
molecules
12%
orientation
12%
values
12%
excitation
12%
coupling
12%
peaks
12%
asymmetry
12%
symmetry
12%
probability
12%
potential energy
12%
quantum states
12%
degrees of freedom
12%
stripping
12%
ground states
12%
angular distribution
12%
fourier transformation
12%
reaction mechanisms
12%
angular momentum
12%
Chemistry
Chemical Reaction Product
100%
Chemical Reaction Reagent
62%
Chemical Reaction
62%
Translational Energy
50%
Rotation
50%
Energy
37%
Vibration
37%
Vibrational Energy
25%
Quantum Number
25%
Atom
25%
Trajectory
25%
Coupling Constant
25%
Ground State
12%
Asymmetry
12%
Proton
12%
Potential Energy Surface
12%
Fourier Transform Method
12%
Proton Transfer
12%
Angular Momentum
12%
Procedure
12%
Surface
12%
Molecule
12%
Time
12%
Amount
12%
Diatomics
12%