toggle visibility
Search within Results:
Display Options:
Number of records found: 2109

Select All    Deselect All
 | 
Citations
 | 
   print
X-ray micro-analysis of aluminium in pumpkinseed gills”. Eeckhaoudt S, Jacob W, Witters H, Van Grieken R, European journal of morphology 31, 42 (1993)
toggle visibility
X-ray micro-analysis of aluminium in pumpkinseed gills”. Eeckhaoudt S, Jacob W, Witters H, Van Grieken R, European journal of morphology 30, 296 (1992)
toggle visibility
X-ray spectrometry”. Szalóki I, Osán J, Van Grieken RE, Analytical chemistry 78, 4069 (2006). http://doi.org/10.1021/AC060688J
toggle visibility
X-ray spectrometry”. Szalóki I, Osán J, Van Grieken RE, Analytical chemistry 76, 3445 (2004). http://doi.org/10.1021/AC0400820
toggle visibility
X-ray spectrometry”. Szalóki I, Török SB, Injuk J, Van Grieken RE, Analytical chemistry 74, 2895 (2002). http://doi.org/10.1021/AC020241K
toggle visibility
X-ray spectrometry”. Szalóki I, Török SB, Ro C-U, Injuk J, Van Grieken RE, Analytical chemistry 72, 211 (2000). http://doi.org/10.1021/A1000018H
toggle visibility
X-ray spectrometry”. Van Grieken RE page 13269 (2000).
toggle visibility
X-ray spectrometry”. Török S, Labar J, Schmeling M, Van Grieken R, Analytical chemistry 70, 495r (1998)
toggle visibility
X-ray spectrometry”. Török SB, Labar J, Injuk J, Van Grieken RE, Analytical chemistry R68, 467 (1996)
toggle visibility
X-ray spectrometry”. Török SB, Van Grieken RE, Analytical chemistry 64r, 180 (1992)
toggle visibility
X-ray spectrometry”. Markowicz AA, Van Grieken RE, Analytical chemistry 62, 101r (1990). http://doi.org/10.1021/AC00211A001
toggle visibility
X-ray spectrometry”. Markowicz AA, Van Grieken RE, Analytical chemistry 60, 28r (1988). http://doi.org/10.1021/AC00163A002
toggle visibility
X-ray spectrometry”. Markowicz AA, Van Grieken RE, Analytical chemistry 58, 279r (1986). http://doi.org/10.1021/AC00296A019
toggle visibility
X-ray spectrometry”. Markowicz AA, Van Grieken RE, Reviews in analytical chemistry 56, 241r (1984)
toggle visibility
X-ray spectrometry for air pollution and cultural heritage research”. Van Grieken R, Delalieux F, (2004)
toggle visibility
X-ray spectrometry for analysis of atmospheric particulate matter: detection limits versus legal levels”. Van Grieken R, Makarovska Y, van Meel K, Worobiec A page 153 (2007).
toggle visibility
X-ray spectrometry for preventive conservation of cultural heritage”. Van Grieken R, Worobiec A, Pramåna: a journal of physics 72, 191 (2011). http://doi.org/10.1007/S12043-011-0041-3
toggle visibility
Tsuji K, Injuk J, Van Grieken R (2004) X-ray spectrometry: recent technological advances. 616 p
toggle visibility
Zware metalen in Noordzee- en Schelde-sedimenten”. Van Alsenoy W, Bernard P, Van Grieken R, Wtare 5, 113 (1990)
toggle visibility
Mendonç,a Verbinnen CD (2022) Development of semiconductor-based photoelectrochemical sensing strategies for phenolic compounds in natural and supply water. 152 p
toggle visibility
Vizarim NP (2023) Dynamic behavior of Skyrmions under the influence of periodic pinning in chiral magnetic infinite thin films. 212 p
toggle visibility
Hassani H (2023) First-principles study of polarons in WO₃. 181 p
toggle visibility
Wittner N (2023) Improving and characterising solid-state fungal pretreatment by Phanerochaete chrysosporium for sugar production from poplar wood. 206 p
toggle visibility
Van Putte N (2023) Improving groundwater dynamics : a key factor for successful tidal marsh restoration. 166 p
toggle visibility
Dră,gan A-M (2023) Investigation of the electrochemical behaviour of illicit substances and their redox pathways in the development of nanomaterial-modified platforms for decentralized analysis. 169 p
toggle visibility
De Meyer S (2023) Macroscopic X-ray powder diffraction in reflection mode : a new technique for chemical imaging of artworks. 285 p
toggle visibility
Ysebaert T (2023) Modelling and experimental validation of deposition on vegetation to facilitate urban particulate matter mitigation. xxvi, 234 p
toggle visibility
Friedrich T (2023) Quantifying atomic structures using neural networks from 4D scanning transmission electron microscopy (STEM) datasets. 127 p
toggle visibility
Zhang K (2023) Revealing the correlation between titania support properties and propylphosphonic acid modification by in-depth characterization. XVI, 262 p
toggle visibility
Derks K (2023) Scanning Michael Sweerts and Michaelina Wautier : uncovering the working methods of 17th-century Brussels artists by means of MA-XRF examination. 634 p
toggle visibility
Select All    Deselect All
 | 
Citations
 | 
   print

Save Citations:
Export Records: