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Analytical Sciences : the International Journal of the Japan Society for Analytical Chemistry|June 10, 2025
Identification and structure elucidation by NMR spectroscopy of an impurity in flame retardants preparationDomenico C M Albanese, Irene Gado, Francesca VasileEvaluation & the Health Professions|February 9, 1986
The attending round observation systemD Weinholtz, G Everett, M Albanese, et al.Radiation Protection Dosimetry|April 29, 2006
Track structure approach to the calculation of peak 5a to peak 5 (TLD-100) relative intensities following heavy charged particle irradiationY S Horowitz, D Satinger, O AvilaRadiation Protection Dosimetry|July 10, 2007
The thermoluminescence dose-response and other characteristics of the high-temperature TL in LiF:Mg,Ti (TLD-100)Y S Horowitz, L Oster, H DatzPhysics in Medicine and Biology|July 1, 1983
Modified general cavity theory applied to the calculation of gamma dose in 60Co thermoluminescence dosimetryY S Horowitz, M Moscovitch, A DubiRadiation Protection Dosimetry|April 29, 2006
Theoretical and experimental investigation of the f(D)max-(S/S0)max anomaly in LiF:Mg,TiS Biderman, L Oster, Y S HorowitzRadiation Protection Dosimetry|April 6, 2006
Theories of TL systems: failures, successes, conflicts, trends: insights into possible future materials and techniquesY S Horowitz, Y Belaish, L OsterRadiation Protection Dosimetry|May 16, 2006
Modelling the dose response of peaks 4, 5 and 5b, in TLD-100, as a function of recombination temperatureS Biderman, L Oster, Y S HorowitzRadiation Protection Dosimetry|October 18, 2002
Theory of heavy charged particle thermoluminescence response: the extended track interaction modelY S Horowitz, D Satinger, O AvilaRadiation Protection Dosimetry|October 18, 2002
Optical absorption and sensitisation dose response in LiF:Mg,Ti: application to the unified interaction model predictions of thermoluminescence dose responseN Issa, L Oster, Y S HorowitzPageof 67