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14 matching references were found.
Wang, R.-G.; Dillon, M.A.; Spence, D., Electron spectroscopy of hydrogen chloride from 5 to 19 eV, J. Chem. Phys., 1984, 80, 63. [all data]
Spence, D.; Schulz, G.J., Vibrational excitation and compound states in NO, Phys. Rev. A: Gen. Phys., 1971, 3, 1968. [all data]
Spence, D., Systematics of Feshbach resonances in the molecular halogens, Phys. Rev. A: Gen. Phys., 1974, 10, 1045. [all data]
Spence, D., Core-excited resonances in hydrogen, J. Phys. B:, 1974, 7, 87. [all data]
Spence, D.; Noguchi, T., Feshbach resonances associated with Rydberg states of the hydrogen halides, J. Chem. Phys., 1975, 63, 505. [all data]
Spence, D.; Burrow, P.D., Resonant dissociation of N2 by electron impact, J. Phys. B:, 1979, 12, 179-184. [all data]
Dillon, M.A.; Spence, D., A new, optically forbidden Rydberg series in O2 converging to the O2+ c4Σu- limit, J. Chem. Phys., 1981, 74, 6070-6074. [all data]
Spence, D., On resonances in HF, J. Phys. B:, 1981, 14, 107-114. [all data]
Spence, D., Studies of the O2 3Πg(V) valence states and 3Πg(R) Rydberg state in the Schumann-Runge continuum from ejected and scattered electron spectra, J. Chem. Phys., 1981, 74, 3898-3904. [all data]
Spence, D.; Huebner, R.H.; Tanaka, H.; Dillon, M.A.; Wang, R.-G., Electronic structure of Cl2 from 5 to 15 eV by electron energy loss spectroscopy, J. Chem. Phys., 1984, 80, 2989-2996. [all data]
Wang, R.-G.; Dillon, M.A.; Spence, D., Electron spectroscopy of hydrogen chloride from 5 to 19 eV, J. Chem. Phys., 1984, 80, 63-69. [all data]
Wang, R.-G.; Wang, Z.-W.; Dillon, M.A.; Spence, D., Electron energy loss spectroscopy of molecular fluorine, J. Chem. Phys., 1984, 80, 3574-3579. [all data]
Spence, D.; Tanaka, H.; Dillon, M.A.; Lanik, K., Direct observation of 157 nm laser photons from the f3Πg state of F2 by high-resolution electron impact, J. Phys. B:, 1986, 19, 569-573. [all data]
Spence, D.; Dillon, M.A., Dynamics of electron impact dissociative excitation of XeF2: production of XeF (B, v', N'), J. Chem. Phys., 1988, 89, 3596-3601. [all data]