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Nuclear physics / Spectrometers / Photochemistry / Scintillator / Compton Gamma Ray Observatory / Gamma ray / Neutron / Monte Carlo N-Particle Transport Code / Sudbury Neutrino Observatory / Physics / Radioactivity / Particle detectors


OPTIMIZATION OF THE DETECTION SYSTEM FOR 16 N
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Document Date: 2013-06-19 10:36:00


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City

Kharkov / /

Company

M.E.Globus B.V. / MIRION TECHNOLOGIES / /

Country

Ukraine / /

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Facility

square cm / Kharkov Institute of Physics / Kharkov National University / Kharkiv National University / /

IndustryTerm

neutron energy / detection systems / high-energy gamma-rays / absorbed energy / track energy / activity measurement systems / activation products / low energy / austenitic steel / high-energy gamma rays / fuel fission products / energy range / maximum energy value / energy intervals / emitted energy / steel wall radiation spectral distribution / high-energy radiation registration / predetermined energy range / travel time / maximum energy / given energy / high-energy / neutron threshold energy / steel pipe / high-energy component / incident neutron energy / metal structures / Energy spectrum / erosion products / coolant travel time / cylinder accounting / high-energy part / fission products / steel walls / energy distribution / cylinder steel walls / steam-line steel walls / energy ranges / high-energy neutrons / energy / /

Organization

Kharkov National University / National Science Center / Kharkiv National University / Kharkov Institute of Physics and Technology / /

Person

S.A. Pis’meneckij / V.G. Rudychev / Dubna / /

Position

author / General / /

Product

sodium iodide / /

Technology

Radiation / ATM / simulation / /

URL

http /

SocialTag