A Recoil Study Of The Reaction C12(p,pn)C11 [formula]

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Description

Recoil ranges of C11 from the reaction C12(p,pn)C11 are presented for incident proton energies from 0.25 to 6.2 Gev. From these data it is concluded that a neutron evaporation mechanism cannot be the major mechanism. The result for incident energies of 3 and 6.2 Gev are consistent with a fast reaction consisting of a single inelastic nucleon-nucleon collision. Assuming this mechanism, an average kinetic energy of 19 Mev can be deduced for the struck neutron (before the collision) in the C12 nucleus.

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29 pages : illustrations

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Singh, Sarjant & Alexander, John M. October 24, 1961.

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Recoil ranges of C11 from the reaction C12(p,pn)C11 are presented for incident proton energies from 0.25 to 6.2 Gev. From these data it is concluded that a neutron evaporation mechanism cannot be the major mechanism. The result for incident energies of 3 and 6.2 Gev are consistent with a fast reaction consisting of a single inelastic nucleon-nucleon collision. Assuming this mechanism, an average kinetic energy of 19 Mev can be deduced for the struck neutron (before the collision) in the C12 nucleus.

Physical Description

29 pages : illustrations

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Digitized from microopaque cards (2).

Includes bibliographic references (pages 28-29)

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  • SuDoc Number: Y 3.At 7:22/UCRL-9911
  • Report No.: UCRL-9911
  • Accession or Local Control No: metadc1254688
  • Archival Resource Key: ark:/67531/metadc1254688

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  • October 24, 1961

Added to The UNT Digital Library

  • Feb. 5, 2022, 9:50 a.m.

Description Last Updated

  • Jan. 11, 2023, 4:55 p.m.

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Singh, Sarjant & Alexander, John M. A Recoil Study Of The Reaction C12(p,pn)C11 [formula], report, October 24, 1961; Livermore, California. (https://digital.library.unt.edu/ark:/67531/metadc1254688/: accessed July 17, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.

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