Prof. Dragoslav Nikezic
University of
Kragujevac, Serbia
E-mail: nikezic@kg.ac.yu
Qualifications
1988 Ph.D., Korea Advanced Institute of Science and Technology
(KAIST), South Korea
1986 M.Sc., Korea Advanced Institute of Science and Technology
(KAIST), South Korea
1982 B.Sc., Seoul National University, South Korea
Publications (Selected)
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Nikezic, D.,
Markovic, P. and Dj. Bek Uzarov. Calculating the calibration coefficient for
radon measurements with the bare LR-115 detector. Health Physics 62, 239-244
(1992)
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Nikezic, D.,
Markovic, P. and Dj. Bek Uzarov.Determination of calibration coefficient for
radon measurements using a track detector. Health Physics 64, 628 -632
(1993)
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Nikezic, D.
and Velickovic D. Calibration coefficient for radon measurements with LR-115
track detector in different types of diffusion chambers. Radiation Measurements
23, 219-223 (1994)
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Nikezic, D. Determination
of detection efficiency for radon and radon daughters with CR 39 track detector
- a Monte Carlo study. Nuclear Instruments & Methods in Physics Research,
Section A: Accelerators, Spectrometers, Detectors and Associated
Equipment, 344, 406-414 (1994)
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Nikezic, D.,
Kostic, D., Krstic, D., Savovic, S. Sensitivity of radon Measurements with
CR-39 track etch detector - a Monte Carlo study, Radiation Measurements, 25,
647-648 (1995)
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Nikezic, D.
and Baixeras, C. Analysis of sensitivity of LR 115 II in cylindrical
diffusion chambers for radon concentration determination, Nuclear Instruments
& Methods in Physics Research, Section A: Accelerators, Spectrometers,
Detectors and Associated Equipment, 364, 531-536
(1995)
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Nikezic, D.
and Krstic D. A study of amplifying the response of an LR115 solid
state track detector by combining it with electret, Health Physics, 69, 944-948
(1995)
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Nikezic, D.,
Baixeras, C. and Kostic, D. Sensitivity determination and
optimization of a cylindrical diffusion chamber, for radon measurements, with a
CR39 detector, Nuclear Instruments & Methods in Physics Research, Section
A: Accelerators, Spectrometers, Detectors and Associated Equipment, 373,
290-298 (1996)
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Nikezic, D.
and Baixeras C. Radon, radon progeny and equilibrium
factor determination using an LR115 detector, Radiation Measurements, 26,
203-213
(1996)
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D. Nikezic and
D. Kostic. Simulation of the track growth and determining the track parameters.
Radiation Measurements, 28, 185-190
(1997).
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D. Kostic, D.
Nikezic and Dj. Bek-Uzarov. Effective Dose Estimation for the Population
in Kragujevac due to the Chernobyl Accident, Journal of Environmental
Radioactivity, 34, 253-266 (1997).
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Nikezic, D.
and Urosevic V. A theoretical study of radon measurement with activated
charcoal. Nuclear Instruments and Methods in Physics Research Section A:
Accelerators, Spectrometers, Detectors and Associated Equipment, 406, 486-498
(1998).
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D. Nikezic and
K.N.Yu. The influence of thoron and its progeny on radon
measurements with CR39 detector in diffusion chamber. Nuclear Instruments and
Methods in Physics Research- A, 419, 175-180,(1998).
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D. Nikezic and
K.N.Yu. Modelling radon progeny behaviour on surfaces and note on
radon retrospective dosimetry. Radiation Protection Dosimetry, 82,
141-146, (1999).
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D. Nikezic and
K.N.Yu. Relationship between the Activity of 210Po incorporated in the
surface of an object and potential a - energy concentration. Journal
of Environmental Radioactivity, 47, 45-55,(1999)
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V. Urosevic, D.
Nikezic, S. Vulovic i M. Kojic. Optimization of radon measurements with active
charcoal. Health Physics, 76, 687-691, (1999).
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D.Nikezic, and
K.N.Yu. Determination of deposition behaviour of 218Po from track density
distribution on SSNTD in diffusion chamber. Nuclear Instruments And Methods. A
437, 531-537 (1999)
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D. Nikezic, K.N.Yu, T.T.K.Cheung, A.K.M.M.Haque
and D. Vucic. Effects of different lung morphometry
models on the calculated lung dose from radon progeny. Journal of Environmental
Radioactivity, 47, 263-277, (2000).
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D. Nikezic and
K. N. Yu. Monte сarlo calculations of LR115 detector response to 222Rn
in the presence of 220Rn. Health Physics, 78, 414-419,
(2000)
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D. Nikezic Three
dimensional analytical determination of the track parameters.