A study of the energy dependence of the mean, truncated mean, and most probable energy deposition of high-energy muons in sampling calorimeters
β Scribed by P.S. Auchincloss; P. de Barbaro; A. Bodek; H. Budd; M. Pillai; F. Qun; W.K. Sakumoto; F.S. Merritt; M.J. Oreglia; B. Schumm; T. Bolton; C. Arroyo; K.T. Bachmann; A.O. Bazarko; R.E. Blair; C. Foudas; B.J. King; W.C. Lefmann; W.C. Leung; S.R. Mishra; E. Oltman; P.Z. Quintas; S.A. Rabinowitz; F. Sciulli; W.G. Seligman; M.H. Shaevitz; R.H. Bernstein; F. Borcherding; H.E. Fisk; M. Lamm; W. Marsh; K.W.B. Merritt; H. Schellman; D. Yovanovitch; T.S. Kinnel; P. Sandler; W.H. Smith
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 586 KB
- Volume
- 343
- Category
- Article
- ISSN
- 0168-9002
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π SIMILAR VOLUMES
## Abstract A magnetic field which is contained in a turbulent, electrically conducting fluid is supposed to decay. The decay time of the mean energy of the fluctuating part of the magnetic field β in contrast with the energy of the mean field β is shown to be determined by the molecular magnetic d
A simple calorimeter with a totally-absorbing graphite body was designed and tested at a 400-keV electron accelerator. For a given conveyor speed and beam current, the calorimetric measurements are expressed as a quantity F (J 'cm-')-the absorbed energy per unit surface area-which is found to be in