Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers

Chuklyaev SV, Vorontsov OM, Dikarev V, Pol'nikov EF (2009)
Atomic Energy 106(6): 437-439.

Journal Article | Published | English

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Chuklyaev SV, Vorontsov OM, Dikarev V, Pol'nikov EF. Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers. Atomic Energy. 2009;106(6):437-439.
Chuklyaev, S. V., Vorontsov, O. M., Dikarev, V., & Pol'nikov, E. F. (2009). Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers. Atomic Energy, 106(6), 437-439.
Chuklyaev, S. V., Vorontsov, O. M., Dikarev, V., and Pol'nikov, E. F. (2009). Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers. Atomic Energy 106, 437-439.
Chuklyaev, S.V., et al., 2009. Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers. Atomic Energy, 106(6), p 437-439.
S.V. Chuklyaev, et al., “Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers”, Atomic Energy, vol. 106, 2009, pp. 437-439.
Chuklyaev, S.V., Vorontsov, O.M., Dikarev, V., Pol'nikov, E.F.: Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers. Atomic Energy. 106, 437-439 (2009).
Chuklyaev, S. V., Vorontsov, O. M., Dikarev, Valery, and Pol'nikov, E. F. “Standard neutron source based on the F-1 reactor and standard calibration facility - effective tool for determining the sensitivity of gas-filled ionization chambers”. Atomic Energy 106.6 (2009): 437-439.
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