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100. J. Conde, Consejo de Seguridad Nuclear, Justo Dorado, 11, 28040 Madrid, Spain D. R. O. Box 79, West Mifflin, PA 15122 M. S. Department of Energy, M-261 Quince Orchard, Washington, DC 20585-0002 P. J. O. Box 5800, Albuquerque, NM 87185-0716 W. Davidson, Los Alamos National Laboratory, Group A4, MSF-611, Los Alamos, NM 87845 F. J. O. Box 5800, Div. 6302, MS 1333, Albuquerque, NM 87185-0716 D. , Hawthorne, NY 10532-2120 T. W. O. Box 98608, 101 Convention Center Drive, Las Vegas, NV 89109 R. , 1010 S.
Pace 24-28. 29. 30. 31. 32. 33. 34. 35. 36. 37. 38. 39-40. 41. 42. 43. 44. C. V. Parks L. M. Petrie R. T. -P. Renier J. W. Roddy R. W. Roussin J. C. Ryman C. H. Shappert R. M. Westfall B. A. Worley R. Q. Wright Laboratory Records Dept. Laboratory Records, ORNL-RC Document Reference Section ORNL Y-12 Research Library Central Research Library ORNL Patent Section EXTERNAL DISTRIBUTION 45. R. , Columbia, SC 29210 46. M. G. S. Nuclear Regulatory Commission, MS TWFN 8F5, Washington, DC 20555 47. L. S.
The solid line is a linear fit to the experiment-based results and shows a positive bias in keff with AEG. ] Figure 6 shows the same information for reactor critical results plotted with the results of critical experiment-based UO2 calculations. Note that the results of the reactor critical calculations in this study are more consistent with the trend of the results of the MOX criticals; this behavior is expected. The isotopic content of the MOX criticals, although not prototypic, more closely resembles the plutonium-bearing spent fuel assemblies of the reactor criticals than do the fresh fuel UO2 criticals.