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1
The LSC efficiency for low-Z electron-capture nuclides.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1446-53. doi: 10.1016/j.apradiso.2006.02.059. Epub 2006 Mar 24.
2
Mean values of the LMM Auger transition in a KLM model.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1485-91. doi: 10.1016/j.apradiso.2006.02.062. Epub 2006 Mar 29.
3
Absolute activity measurement of the electron-capture-based radionuclides 139Ce, 125I, 192Ir and 65Zn by liquid scintillation coincidence counting.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1454-8. doi: 10.1016/j.apradiso.2006.02.061. Epub 2006 Apr 11.
4
A new method for secondary standard measurements with the aid of liquid scintillation counting.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1459-64. doi: 10.1016/j.apradiso.2006.02.060. Epub 2006 Mar 22.
5
Comparison of calculated spectra for the interaction of photons in a liquid scintillator. Example of 54Mn 835 keV emission.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1471-80. doi: 10.1016/j.apradiso.2006.02.080. Epub 2006 Apr 5.
6
Direct activity determination of 54Mn and 65Zn by a non-extrapolation liquid scintillation method.
Appl Radiat Isot. 2004 Feb-Apr;60(2-4):475-9. doi: 10.1016/j.apradiso.2003.11.062.
7
Ionization quenching in LSC.
Appl Radiat Isot. 2004 Feb-Apr;60(2-4):447-51. doi: 10.1016/j.apradiso.2003.11.057.
8
Standardisation of 54Mn and 65Zn using a software coincidence counting system.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1215-9. doi: 10.1016/j.apradiso.2006.02.024. Epub 2006 Mar 23.
9
Computational aspects in modelling the interaction of low-energy X-rays with liquid scintillators.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1515-9. doi: 10.1016/j.apradiso.2006.02.066. Epub 2006 Mar 23.
10
LSC measurements of the half-life of 40K.
Appl Radiat Isot. 2004 Feb-Apr;60(2-4):459-64. doi: 10.1016/j.apradiso.2003.11.059.

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