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Symp. Mumbai, 2001), Bhabha Atomic Research Centre, Mumbai (2001) 307. , Investigation of the 48 Ti(n, g)49Ti reaction, Nucl. Phys. A 407 (1983) 60–76. 39 CHAPTER 3. , Measurement of k0factors in prompt gamma-ray neutron activation analysis, J. Radioanal. Nucl. Chem. 250 (2001) 303–307. , “Determination of prompt k0-factors in PGNAA”, Development of a Database for Prompt g-Ray Neutron Activation Analysis, Summary Report on 2nd Research Coordination Mtg 2001, Rep. INDC(NDS)-424, International Atomic Energy Agency, Vienna (2001) 39–50.
83E+16 at. 83E+16 at. 3. 3. ANALYSIS OF THE UNKNOWN SAMPLES thermal cross-section of carbon. These materials were as follows: Three participants reported measurements of the composition of the unknown mixture of silicate and graphite. Some adjustment was necessary to compare results because the Budapest measurements were forced to add up to 100% and the BARC measurements were normalized to an assumed (and incorrect) iron concentration. 35%. 2 summarizes the comparisons. Eight to ten elements were reported: about half of the elements of known concentrations in the mixture (not hydrogen or boron) were measured correctly to within ±25%.
SUM and MEAN: Standard programs for activation analysis, Biol. Trace Elem. Res. 43–45 (1994) 597–603. , Effects of target temperature on analytical sensitivities of cold neutron capture prompt gamma-ray activation analysis, Biol. Trace Elem. Res. 43–45 (1994) 103–108. , Cold neutron PGAA facility at Budapest, Nucl. Instrum. Methods Phys. Res. B 213 (2004) 385–388. , “The new Budapest capture gamma-ray facility”, Capture Gamma-ray Spectroscopy and Related Topics (Proc. 9th Int. Symp. , Eds), Springer Hungarica, Budapest (1997) 826–837.