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Electron probe X-ray microanalysis for the assessment of homogeneity of candidate reference materials at the nanogram level”. Hoornaert S, Treiger B, Van Grieken R, Valkovic V page 29 (1996).
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Structural heterogeneity within airborne particles”. Injuk J, de Bock L, Van Grieken R page 173 (1998).
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Sample preparation for X-ray fluorescence analysis”. Injuk J, Van Grieken R page 13338 (2000).
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Specimen preparation”. Injuk J, Van Grieken R, Blank A, Eksperiandova L, Buhrke V page 411 (2006).
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Sample preparation for XRF”. Injuk J, Van Grieken RE page 657 (1992).
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X-ray fluorescence”. Injuk J, Van Grieken RE page 151 (2001).
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Study of the heavy metal concentration, deposition and sources of the North Sea aerosols using X-ray emission techniques”. Injuk J, van Malderen H, Van Grieken R page 793 (1993).
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Glow discharges in emission and mass spectrometry”. Jakubowski N, Bogaerts A, Hoffmann V Blackwell, Sheffield (2003).
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Environmental problems”. Jambers W, Van Grieken RE page 803 (1997).
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Quantitative surface analysis of silver halide microcrystals using scanning ion microprobe and scanning Auger microprobe”. Janssens G, Geuens I, de Keyzer R, van Espen P, Gijbels R, Hubin A, Terryn H, Vereecken J Wiley, Chichester, page 161 (1996).
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Comparison with other microanalytical techniques”. Janssens K page 211 (2000).
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Methods 4: elemental analysis (AAS/AES/X-ray fluorescence)”. Janssens K (2003).
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A survey of the recent use of x-ray beam methods for non-destructive investigations in the cultural heritage sector”. Janssens K page 265 (2005).
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X-ray based methods of analysis”. Janssens K page 129 (2004).
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X-ray fluorescence analysis”. Janssens K (2003).
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Applications in art and archaeology”. Janssens K, Adams F page 290 (2000).
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Overview”. Janssens K, Adams F page 1 (2000).
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Confocal micro-XRF study of element distribution of a uranium enriched tertiary sediment”. Janssens K, Denecke M, Rothe J, Simon R page 13 (2005).
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In-vivo 3D mapping and local speciation of Se compounds in roots and leaves of Allium Cepa”. Janssens K, Proost K, Wysocka A, Bulska E, Wierzbicka M (2005).
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Introduction and overview”. Janssens K, Van Grieken R page 1 (2004).
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Preface”. Janssens K, Van Grieken R page xxvii-xxviii (2004).
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Estimation of relative Fe2+ and Fe3+ contents of original manuscript fragments by means of μ-XANES and Mössbauer spectrometry”. Janssens K, Vekemans B, Rouchon-Quillet V (2005).
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Evaluation and calibration of micro-XRF data”. Janssens K, Vincze L, Vekemans B page 155 (2000).
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Feasibility of (trace-level) micro-XANES at Beamline L”. Janssens K, Vincze L, Wei F, Proost K, Vekemans B, Vittiglio G, Yan Y, Falkenberg G (1999).
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Combined use of μ-XRF and μ-XRD for characterization of radioactive particle clusters released during the Chernobyl reactor incident”. Jaroszewicz J, de Nolf W, Janssens K, Claussen-Kjerre L, Lind OC, Salbu B, Falkenberg G (2007).
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Combined use of μ-XRF and μ-XRD to determine the heterogeneity, the chemical and phase composition of Ti-B-C ceramics prepared by the pulse plasma sintering (PPS) method”. Jaroszewicz J, de Nolf W, Janssens K, Michalski A, Falkenberg G (2007).
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Multielementmassenspektrometrie (MMS)”. Jochum KP, Gijbels R, Adriaens A Schweizerbart, Stuttgart, page 188 (2000).
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Interpretation of aerosol trace metal particle size distributions”. Johansson TB, Van Grieken RE, Winchester JW page 356 (1975).
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Study of microgeometry of porous materials using synchrotron computed microtomography”. Jones KW, Feng H, Lindquist WB, Adler PM, Thover JF, Vekemans B, Vincze L, Szalóki I, Van Grieken R, Adams F, Riekel C page 39 (2003).
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The use of synchrotron micro-XRF for characterisation of the micro-heterogeneity of low-Z reference materials containing heavy metals”. Kempenaers L, Vincze L, Janssens K (1999).
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