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[1]. Y. F. Bai, E. Mauerhofer, D. Z. Wang, R. Odoj (2009), An improved method for the non- destructive characterization of the radioactive waste by gamma scanning, Applied Radiation and Isotopes 67, 1897-1903 | Khác | |
[2]. Thomas Krings, Eric Mauerhofer (2011), Reconstruction of the activity of point sources for the accurate characterization of nuclear waste drums by segmented gamma scanning, Applied Radiation and Isotopes 69, 880-889 | Khác | |
[3]. Thomas Krings, Eric Mauerhofer (2012), Reconstruction of the isotope activity content of heterogeneous nuclear waste drums, Applied Radiation and Isotopes 70, 1100-1103 | Khác | |
[4]. Thomas Krings, Christoph Genreith, Eric Mauerhofer, Matthias Rossbach (2013), A numerical method to improve the reconstruction of the activity content in homogeneous radioactive waste drums, Nuclear Instruments and Methods in Physics Research A 701, 262- 267 | Khác | |
[5]. P. Filò (1995), Relation between the activity of a high density waste drums and its gamma count rate measured with an unshielded Ge detector, Applied Radiation and Isotopes 46, 805- 812 | Khác | |
[6]. L. Dinescu, I. Vata, I. L. Cazan, R. Macrin, Gh. Caragheorgheopol, Gh. Rotarescu (2002), On the efficiency calibration of a drum waste assay system, Nuclear Instruments and Methods in Physics Research A 487, 661-666 | Khác | |
[7]. M. Toma, O. Sima, C. Olteanu (2007), Experimental and simulated studies for the calibration of a radioactive waste assay system, Nuclear Instruments and Methods in Physics Research A 580, 391-395 | Khác | |
[8]. D. Stanga, D. Radu, O. Sima (2010), A new model calculation of the peak efficiency for HPGe detectors used in assays of radioactive waste drums, Applied Radiation and Isotopes 68, 1418-1422 | Khác | |
[9]. Daniela Gurau, Octavian Sima (2012), Simulation studies of the response function of a radioactive waste assay system, Applied Radiation and Isotopes 70, 305-308 | Khác | |
[10]. D. Stanga, D. Gurau (2012), A new approach in gamma ray scanning of rotating drums containing radioactive waste, Applied Radiation and Isotopes 70, 2149-2153 | Khác | |
[11]. Tran Quoc Dung (1997), Calculation of the systematic error and correction factors, Annals of Nuclear Energy 24, 33-47 | Khác | |
[12]. Tran Quoc Dung (1998), New measuring technique for assay of radioactive materials in waste drums, Progress in Nuclear Energy 33, 403-420 | Khác | |
[13]. Tran Quoc Dung (1998), Some theoretical results of gamma techniques for measuring large samples, Nuclear Instruments and Methods in Physics Research A 416, 505-515 | Khác | |
[14]. Tran Ha Anh, Nguyen Duc Thanh, Tran Quoc Dung (2005), Evaluation of performance of a new gamma technique for assay of radioacitve waste, Annals of Nuclear Energy 32, 1516- 1532 | Khác | |
[15]. Tran Quoc Dung (1997), Modification to technique using two detectors for assay of radioactive waste drums, Annals of Nuclear Energy 24, 645-657 | Khác | |
[16]. Tran Ha Anh, Tran Quoc Dung (2001), Evaluation of performance of gamma tomographic technique for correcting lump effect in radioactive waste assay, Annals of Nuclear Energy 28, 265-273 | Khác | |
[17]. Tran Quoc Dung, Nguyen Duc Thanh, Luu Anh Tuyen, Lo Thai Son, Phan Trong Phuc (2009), Evaluation of a gamma technique for the assay of radioactive waste drums using two measurements from opposing directions, Applied Radiation and Isotopes 67, 164-169 | Khác | |
[18]. Tran Quoc Dung, Phan Trong Phuc, Truong Truong Son, Le Anh Duc (2012), Evaluation of combination of different methods for determination of activity of radioactive waste in sealed drum, Tạp chí Khoa học ĐHSP TPHCM 36, 96-102 | Khác | |
[19]. Tran Quoc Dung, Truong Truong Son (2012), Limitation of the segmented gamma scanning technique and an additional method for assay of radioactive waste drums, Tạp chí Khoa học ĐHSP TPHCM 33, 70-77 | Khác |
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