Liquid Scintillation Counting. Recent Development by Philip E. Stanley

By Philip E. Stanley

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Cross-contribution is 47 BARTON H. LANEY less at higher energies because both the triple anticoincidence and differential discrimination functions are more effective at higher energies. DISCUSSION Pile Up and Dead Time Potential errors in pulse height analysis, due to pulse pile up and dead time losses, are slightly more than in a single sample counter. The essential difference is that the activity of all three samples contribute to the error. Conventional pulse amplifier and linear gating techniques can virtually eliminate pulse pile up as a source of error.

2" ed. Crook, Johnson and Scales (London,Heyden) 1-21 1972 Radiation physics Ta5 Organic scintillators 24. Scintillations from naphthalene-anthracene crystals. Soc. A 63, 1044-6 1950 25. Scintillation efficiency of anthracene crystals. Soc. A 63, 1294-5 1950 26. A. Soc. A 64, 511-2 1951 27. Scintillation from organic crystals; specific fluorescence and relative response to different radiations. Soc. BIRKS 28. The specific fluorescence of anthracene and other organic materials. Rev. , 364-5 1951 29.

Excimers and exciplexes. Nature 214, 1187-9 1967 15. The fluorescence lifetimes of aromatic molecules (with I. H. Munro) Progress in Reaction Kinetics 4> 239-303 1967 16. Energy transfer, migration and diffusion in aromatic liquid solutions. (Portraeirion 1967) on "Energetics and mechanisms in radiation biol- 1968 ogy" ed. Phillips (London, Academic Press) 203-21 17. Energy transfer in organic scintillâtors. Nuclear Electronics and Radioprotection, Toulouse 1968 18. An introduction to liquid scintillation counting.

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