Year |
Citation |
Score |
1995 |
Ford MJ, Doering JP, Moore JH, Coplan MA. Multiple detector triple coincidence spectrometer for (e,3e) electron impact double-ionization measurements Review of Scientific Instruments. 66: 3137-3143. DOI: 10.1063/1.1145542 |
0.32 |
|
1990 |
Doering JP, Coplan MA, Cooper JW, Moore JH. Electron correlation in an Auger process. Physical Review. A. 41: 535-538. PMID 9902904 DOI: 10.1103/Physreva.41.535 |
0.328 |
|
1986 |
DOERING JP, GEDANKEN A, HITCHCOCK AP, FISCHER P, MOORE J, OLTHOFF JK, TOSSELL J, RAGHAVACHARI K, ROBIN MB. ChemInform Abstract: Electronic Excitation and n-Electron Interaction in Borazine. Chemischer Informationsdienst. 17. DOI: 10.1002/Chin.198640004 |
0.322 |
|
1979 |
Doering JP. Electron impact study of the energy levels of trans‐1,3‐butadiene The Journal of Chemical Physics. 70: 3902-3909. DOI: 10.1063/1.437942 |
0.314 |
|
1979 |
DOERING JP. ChemInform Abstract: ELECTRON IMPACT STUDY OF THE ENERGY LEVELS OF TRANS-1,3-BUTADIENE Chemischer Informationsdienst. 10. DOI: 10.1002/CHIN.197937042 |
0.308 |
|
1977 |
Doering JP. Electronic energy levels of benzene below 7 eV The Journal of Chemical Physics. 67: 4065-4070. |
0.304 |
|
1976 |
Estler RC, Doering JP. High energy-resolution studies of electron impact optical excitation functions. II. The first positive system of N2 The Journal of Chemical Physics. 65: 1406-1413. |
0.59 |
|
1975 |
Feldman PD, Doering JP. Auroral electrons and the optical emissions of nitrogen Journal of Geophysical Research. 80: 2808-2812. DOI: 10.1029/Ja080I019P02808 |
0.348 |
|
1974 |
John IWMS, Estler RC, Doering JP. Low-energy electron impact study of acetone The Journal of Chemical Physics. 61: 763-767. DOI: 10.1002/Chin.197445094 |
0.576 |
|
1972 |
Finn TG, Aarts JFM, Doering JP. High energy-resolution studies of electron impact optical excitation functions. I. The second positive system of N2 The Journal of Chemical Physics. 56: 5632-5636. |
0.37 |
|
1969 |
Moore JH, Doering JP. Rotational temperature of the N2 + first negative system excited by low-energy electrons The Journal of Chemical Physics. 50: 1487-1488. |
0.336 |
|
1969 |
Williams AJ, Doering JP. Low-energy electron-impact study of the 12-14-eV transitions in nitrogen The Journal of Chemical Physics. 51: 2859-2865. |
0.321 |
|
1969 |
Doering JP. Low-energy electron-impact study of the first, second, and third triplet states of benzene The Journal of Chemical Physics. 51: 2866-2870. |
0.313 |
|
1967 |
Doering JP, Williams AJ. Low-energy, large-angle electron-impact spectra: Helium, nitrogen, ethylene, and benzene The Journal of Chemical Physics. 47: 4180-4185. |
0.337 |
|
1967 |
Doering JP. Low-energy, large-angle electron-impact spectrum of ethylene The Journal of Chemical Physics. 46: 1194-1196. |
0.313 |
|
1966 |
Doering JP. Low‐Energy Large‐Angle Electron Scattering Spectrum of Helium Journal of Chemical Physics. 45: 1065-1066. DOI: 10.1063/1.1727660 |
0.326 |
|
1962 |
Doering JP, Mahan BH. Erratum: Photoionization of Nitric Oxide The Journal of Chemical Physics. 37: 2724-2724. DOI: 10.1063/1.1733085 |
0.545 |
|
1962 |
Doering JP, Mahan BH. Photolysis of nitrous oxide. II. 1470 and 1830 A The Journal of Chemical Physics. 36: 1682-1687. DOI: 10.1063/1.1732798 |
0.593 |
|
1962 |
Doering JP, Mahan BH. Photoionization of nitric oxide The Journal of Chemical Physics. 36: 669-674. DOI: 10.1063/1.1732591 |
0.539 |
|
1961 |
Doering JP, Mahan BH. Photolysis of nitrous oxide. I. 1236 A The Journal of Chemical Physics. 34: 1617-1620. DOI: 10.1063/1.1701055 |
0.59 |
|
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