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The dissociation products formed by bombarding nitrogen and carbon monoxide with electrons of a definite velocity have been studied with a mass spectrograph. Nitrogen. ---N₂^_^+ and N^+ ions appear at 15. 80. 1 and 24. 50. 1 volts respectively. The N^+ ion has kinetic energy and is attributed to N₂N^++N+e. Increases in the efficiency of production of the N^+ ion appear at 40. 01. 0 and 47. 01. 0 volts. The largest percentage of the total positive ion current carried by kinetic energy ions is approximately 28 percent at 140-160 volts. Efficiency curves of total ionization and of N₂^_^+ exhibit maxima at 100. 05. 0 and 60. 05. 0 volts respectively. Carbon monoxide. ---CO^+, C^+ and CO^++ ions appear at 13. 90. 2, 22. 50. 2, and 43. 01. 0 volts respectively. Maximum numbers of CO^+, C^+, and CO^++ ions formed per electron per cm path per mm pressure at 0^ are 10. 13, 0. 50, and 0. 14 at 102, 105, and 125 volts respectively. The C^+ ion possesses kinetic energy and is probably due to COC^++O+e. Assuming that the CO^++ ion would dissociate into C^+++O the energy of dissociation cannot be less than from 2 to 3 volts. O^- ions are formed between 9. 51. 0 and 16. 51. 0 volts, and again beginning at 22. 51. 0 volts and reach a maximum at 33 volts. The first group is evidently due to the attachment of an electron to the CO molecule followed by a dissociation CO^-+O^-. The second group may be due to COC^++O^-. O^- ions are only 2. 7 percent as numerous as C^+ ions at 30 volts.
Alfred L. Vaughan (1931) studied this question.
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