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AbstractAbstract
[en] Up to the present, radon and its short-lived decay products in air are usually monitored by means of a detection. But radon progeny, including RaB (214Pb) and RaC (214Bi) which are β and γ emitters, contribute about 90% to the equilibrium equivalent radon concentration (EECRn). Therefore, this paper introduces a new three-count technique by a β detector in the light of radioactive decay law and its boundary conditions during sampling and counting times to solve the Bateman equation. β (even low level β) instruments have been fairly popularized domestically and internationally. It can be used not only as an instrument for radon and its daughters in air, but also as a monitor for β airborne activity in the environment. This new method taps further the latent power of the present instrument and realizes various uses for a unit. (author)
Source
Katase, Akira (Tohwa Univ., Fukuoka (Japan)); Shimo, Michikuni (eds.); 594 p; ISBN 981-02-3443-0; ; 1998; p. 96-100; 7. Tohwa University international symposium; Fukuoka (Japan); 23-25 Oct 1997
Record Type
Book
Literature Type
Conference
Country of publication
ALPHA DECAY RADIOISOTOPES, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BISMUTH ISOTOPES, CHARGED PARTICLE DETECTION, DETECTION, ELEMENTS, EVEN-EVEN NUCLEI, FLUIDS, GASES, HEAVY NUCLEI, HOURS LIVING RADIOISOTOPES, ISOTOPES, LEAD ISOTOPES, MINUTES LIVING RADIOISOTOPES, NONMETALS, NUCLEI, ODD-ODD NUCLEI, RADIATION DETECTION, RADIOISOTOPES, RADON ISOTOPES, RARE GASES, SECONDS LIVING RADIOISOTOPES
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