Issue |
Section |
Title |
File |
Vol 10, No 1 (2016) |
Chemical Physics of Atmospheric Phenomena |
Fundamentals of radio-chemical physics of the Earth’s atmosphere |
|
Vol 10, No 2 (2016) |
Kinetics and Mechanism of Chemical Reactions. Catalysis |
Structure and catalytic properties of MoSex thin films containing Mo nanoparticles in electrochemical production of hydrogen in solution |
|
Vol 11, No 1 (2017) |
Structure of Chemical Compounds. Spectroscopy |
Potential energy surface of the Rydberg states of the NO molecule in an intense IR radiation field |
|
Vol 11, No 6 (2017) |
Elementary Physicochemical Processes |
Potential Energies of the Orbitally Degenerate Atmospheric Rydberg Complexes |
|
Vol 11, No 6 (2017) |
Elementary Physicochemical Processes |
Rydberg Atoms: From Determinism to Chaos |
|
Vol 12, No 1 (2018) |
Chemical Physics of Atmospheric Phenomena |
Air Plasma Parameters in Normal and Seismic Conditions |
|
Vol 12, No 3 (2018) |
Chemical Physics of Atmospheric Phenomena |
Introduction to the Quantum Theory of Distortion and Delay Satellite Radio Signals |
|
Vol 12, No 4 (2018) |
Elementary Physicochemical Processes |
Ab Initio Calculation of the Lowest Singlet and Triplet Excited States of the N2 Molecule |
|
Vol 12, No 4 (2018) |
Chemical Physics of Atmospheric Phenomena |
Effects of the Interaction of Microwave Radiation with the Atmosphere on the Passive Remote Sensing of the Earth’s Surface: Problems and Solutions (Review) |
|
Vol 12, No 4 (2018) |
Chemical Physics of Atmospheric Phenomena |
Influence of Thunderstorm Activity on the Parameters of Air Plasma in the Ionosphere |
|
Vol 12, No 4 (2018) |
Chemical Physics of Atmospheric Phenomena |
Air Plasma Parameters of the Lower Ionosphere under Normal Conditions |
|
Vol 12, No 5 (2018) |
Structure of Chemical Compounds. Spectroscopy |
Use of IR Absorption Laser Spectroscopy at Nuclear Fuel Cycle Plants: Problems and Prospects (Review) |
|
Vol 12, No 6 (2018) |
Structure of Chemical Compounds. Spectroscopy |
Ab initio Calculation of the Dipole Moment Function of the OH Radical Ground State |
|