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Eds), Handbook of X-Ray Spectrometry, Dekker, New York (2002). Part II 40 Advanced X ray fluorescence techniques Si(Li) detector CCD camera and microscope SDD detector Sample Motorized scanning stage Focusing glass capillary X ray tube FIG. 1. Schematic view of the microbeam XRF system. FIG. 2. Uranium rich and iron rich particles. Part II 41 Wegrzynek et al. FIG. 3. In situ element determination in soil by XRF spectrometry. FIG. 4. Pigment analysis with portable XRF spectrometer. Part II 42 Advanced X ray fluorescence techniques 100 Certified/recommended values Information values Given concentration (mass fraction) 10-1 10-2 10-3 10-4 10-5 10-6 10-6 10-5 10-4 10-3 10-2 10-1 100 Determined concentration (mass fraction) FIG.

45 (2001) 289–301. Part I 23 Study of the migration behaviour of uranium in reactive barriers C. SEGEBADE, Bundesanstalt für Materialforschung und -prüfung, Berlin, Germany Problem A radioindicator technique was used to investigate the migration behaviour of uranyl ions in layers containing adsorptive agents mixed with sand. A solution of uranyl nitrate prepared from natural uranium was doped with uranium ions activated by photonuclear reaction and was allowed to pass through columns containing different sorbents mixed with coarse grain sand.

The similar abundances of noble gases and their isotope composition, the very long exposure ages (60–70 million years) of both meteorites, and the similarities of their exteriors, petrological properties and dates of fall (25 and 21 August, respectively) suggested that both meteorites might Part I 20 Common origin of two meteorites have been members of a meteoroid stream and were ejected from the same source region of their parent body. On the other hand, although both meteorites were given a preliminary classification as L chondrites, some peculiar features in their structure might indicate an origin and cosmic history different from those of the other known and described chondrites of this group.

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