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12 matching references were found.
Flesch, G.D.; Svec, H.J., The mass spectra of chromyl chloride, chromyl chlorofluoride and chromyl fluoride, J. Am. Chem. Soc., 1959, 81, 1787. [all data]
Svec, H.J.; Flesch, G.D., Thermochemical properties of xenon difluoride and xenon tetrafluoride from massspectra, Science, 1963, 142, 954. [all data]
Flesch, G.D.; White, R.M.; Svec, H.J., The positive and negative ion mass spectra of chromyl chloride and chromyl fluoride, Intern. J. Mass Spectrom. Ion Phys., 1969, 3, 339. [all data]
Flesch, G.D.; Junk, G.A.; Svec, H.J., Ionization efficiency data and fragmentation mechanisms for ferrocene, nickelocene, and ruthenocene, J. Chem. Soc. Dalton Trans., 1972, 1102. [all data]
Flesch, G.D.; Svec, H.J., Fragmentation reactions in the mass spectrometer for C2-C5 alkanes, J. Chem. Soc. Faraday Trans. 2, 1973, 69, 1187. [all data]
Flesch, G.D.; Svec, H.J., Thermochemistry of vanadium oxytrichloride and vanadium oxytrifluoride by mass spectrometry, Inorg. Chem., 1975, 14, 1817. [all data]
Reeher, J.R.; Flesch, G.D.; Svec, H.J., The mass spectra and ionization potentials of the neutral fragments produced during the electron bombardment of aromatic compounds, Org. Mass Spectrom., 1976, 11, 154. [all data]
Michels, G.D.; Flesch, G.D.; Svec, H.J., Comparative mass spectrometry of the group 6B hexacarbonyls and pentacarbonyl thiocarbonyls, Inorg. Chem., 1980, 19, 479. [all data]
Olivares, J.A.; Flesch, G.D.; Svec, H.J., Mass spectrometry of five ketene dimers, Int. J. Mass Spectrom. Ion Processes, 1984, 56, 293. [all data]
Norwood, K.; Ali, A.; Flesch, G.D.; Ng, C.Y., A photoelectron-photoion coincidence study of Fe(CO)5, J. Am. Chem. Soc., 1990, 112, 7502. [all data]
Flesch, G.D.; White, R.M.; Svec, H.J., The Positive and Negative Ion Mass Spectra of Chromyl Chloride and Chromyl Fluoride, Int. J. Mass Spectrom. Ion Phys., 1969, 3, 5, 239, https://doi.org/10.1016/0020-7381(69)80079-3 . [all data]
Shao, J.-D.; Li, Y.-G.; Flesch, G.D.; Ng, C.Y., Absolute state-to-state total cross sections for the reactions N2+(X«tilde»,υ' = 0-2) + Ar(1S0) → N2(X,υ) + Ar+(2P3/2,1/2), J. Chem. Phys., 1987, 86, 170-175. [all data]
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