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Synonyms were used for: Atomphysik
Search without synonyms: keywords:(Atomphysik)
Used synonyms:
- atomforschung
- atomic physics
- atoms
-
Kinetic isotope effect of the 16O + 36O2 and 18O + 32O2 isotope exchange reactions: Dominant role of reactive resonances revealed by an accurate time-dependent quantum wavepacket study
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Calculated vibrational states of ozone up to dissociation
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
A permutationally invariant full-dimensional ab initio potential energy surface for the abstraction and exchange channels of the H + CH4 system
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Rotational mode specificity in the Cl + CHD3 → HCl + CD3 reaction
American Institute of Physics | 2014|Keywords: Atoms, Molecules, and Clusters -
State-to-state reaction dynamics of 18O+32O2 studied by a time-dependent quantum wavepacket method
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Infrared spectrum of the simplest Criegee intermediate CH2OO at resolution 0.25 cm−1 and new assignments of bands 2ν9 and ν5
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Quantum and quasi-classical dynamics of the OH + CO → H + CO2 reaction on a new permutationally invariant neural network potential energy surface
American Institute of Physics | 2014|Keywords: Atoms, Molecules, and Clusters -
State-to-state differential cross sections for D2 + OH → D + DOH reaction: Influence of vibrational excitation of OH reactant
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
State-to-state mode selectivity in the HD + OH reaction: Perspectives from two product channels
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
Final state-resolved mode specificity in HX + OH → X + H2O (X = F and Cl) reactions: A quasi-classical trajectory study
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Permutationally invariant fitting of intermolecular potential energy surfaces: A case study of the Ne-C2H2 system
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
A nine-dimensional ab initio global potential energy surface for the H2O+ + H2 → H3O+ + H reaction
American Institute of Physics | 2014|Keywords: Atoms, Molecules, and Clusters -
Effects of reactant rotation on the dynamics of the OH + CH4 → H2O + CH3 reaction: A six-dimensional study
American Institute of Physics | 2014|Keywords: Atoms, Molecules, and Clusters -
Mode specificity in the OH + CHD3 reaction: Reduced-dimensional quantum and quasi-classical studies on an ab initio based full-dimensional potential energy surface
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
New ab initio adiabatic potential energy surfaces and bound state calculations for the singlet ground and excited states of SO2
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
Imaging a multidimensional multichannel potential energy surface: Photodetachment of H−(NH3) and NH4−
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
A new set of potential energy surfaces for HCO: Influence of Renner-Teller coupling on the bound and resonance vibrational states
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters -
Toward spectroscopically accurate global ab initio potential energy surface for the acetylene-vinylidene isomerization
American Institute of Physics | 2014|Keywords: Atoms, Molecules, and Clusters -
Signatures of non-adiabatic dynamics in the fine-structure state distributions of the OH(/) products in the B-band photodissociation of H2O
American Institute of Physics | 2015|Keywords: Atoms, Molecules, and Clusters -
Two-center three-electron bonding in ClNH3 revealed via helium droplet infrared laser Stark spectroscopy: Entrance channel complex along the Cl + NH3 → ClNH2 + H reaction
American Institute of Physics | 2016|Keywords: Atoms, Molecules, and Clusters
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