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Influence of the choice of kinetic mechanism on predicted structure of lean hydrogen–air flames
Tereza A.M., Agafonov G.L., Anderzhanov E.K., Betev A.S., Khomik S.V., Cherepanova T.T., Cherepanov A.A., Medvedev S.P.
Erratum to: "Collision efficiency in autoignition of hydrogen–air mixtures" (Russian Journal of Physical Chemistry B: Focus on Physics. 2024. V. 43. № 7. P. 73–82; DOI: 10.31857/S0207401X24070071)
Tereza A.M., Agafonov G.L., Anderzhanov E.K., Betev A.S., Medvedev S.P., Mikhalkin V.N., Khomik S.V., Cherepanova T.T.
Reaction of atomic fluorine with benzene
Adamson S.O., Kharlampidi D.D., Shtyrkova A.S., Umanskii S.Y., Dyakov Y.A., Morozov I.I., Stepanov I.G., Golubkov M.G.
Kinetics and mechanism of decomposition of dibenzoylfuroxane
Nazin G.M., Kazakov A.I., Nabatova A.V., Shilov G.V., Fershtat L.L., Larin A.A.
The role of third-body collision efficiency in autoignition of hydrogen–air mixtures
Tereza A.M., Agafonov G.L., Anderzhanov E.K., Betev A.S., Medvedev S.P., Mikhalkin V.N., Khomik S.V., Cherepanova T.T.
Effect of Impurities on Lean Laminar Hydrogen–air Flames
Terezaa A.M., Agafonova G.L., Anderzhanov E.K., Betev A.S., Medvedev S.P., Mikhalkin V.N., Khomik S.V., Cherepanova T.T.
Kinetics of Thermal Decomposition of 1,1-Bis(Methoxy-NNO-Azoxy)-3-Nitro-3-Azabutane
Zakharov V.V., Zyuzin I.N., Korsunskiy B.L., Larikova T.S., Chukanov N.V.
Comparative Analysis of the Kinetics and Mechanism of the Destruction of Phenoxy Radicals of 2,6-Diisobornyl-4- Methylphenol and 2,6-Ditret-Butyl-4-Methylphenol
Sadykov R.A., Khursan S.L., Sukhanov A.A., Kuchin A.V.
Luminescence as a Method for Studying the Mechanisms of Photochemical Reactions
Razumov V.F.
Dependence of the decomposition rate of furoxanes on the polarity of the solvent
Nazin G.M., Kazakov A.I., Nabatova A.V., Fershtat L.L., Larin A.A.
Numerical Simulation of the Effect of Additives on Autoignition of Lean Hydrogen–Air Mixtures
Tereza A.M., Agafonov G.L., Anderzhanov E.K., Betev A.S., Medvedev S.P., Khomik S.V., Cherepanova T.T.
Parameters of decomposition and combustion of reed vegetation: 1. Mechanism and kinetics of thermo-oxidative decomposition and pyrolysis
Aseeva R.M., Kruglov E.Y., Kobelev A.A., Naganovsky Y.K., Serkov B.B.
Hot-Spot Mode Combustion of Double-Base Gunpowder
Marshakov V.N., Krupkin V.G.
Kinetics of decomposition of 1,1-diamino-2,2-dinitroethylene (fox-7). 5. Vapor pressure and reaction in the gas phase
Nazin G.M., Kazakov A.I., Larikova T.S., Nabatova A.V., Volkova N.N.
Hot-Spot Combustion of HMX
Marshakov V.N., Krupkin V.G.
Reaction mechanism of O₃ uptake on MgCl₂ · 6H₂O as a sea salt component
Zelenov V.V., Aparina E.V.
Structure of a Lean Laminar Hydrogen–Air Flame
Tereza A.M., Agafonov G.L., Anderzhanov E.K., Betev A.S., Medvedev S.P., Khomik S.V., Cherepanova T.T.
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