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"The sievert is the special name for the SI unit of equivalent dose, effective dose, and operational dose quantities. The unit is joule per kilogram." The sievert is used for a number of dose quantities which are described in this article and are part of the international radiological protection system devised and defined by the ICRP and ICRU.
Recognized effects of higher acute radiation doses are described in more detail in the article on radiation poisoning.Although the International System of Units (SI) defines the sievert (Sv) as the unit of radiation dose equivalent, chronic radiation levels and standards are still often given in units of millirems (mrem), where 1 mrem equals 1/1,000 of a rem and 1 rem equals 0.01 Sv.
Equivalent dose is a dose quantity H representing the stochastic health effects of low levels of ... The SI unit of measure for equivalent dose is the sievert, ...
The deterministic effects that can lead to acute radiation syndrome only occur in the case of high doses (> ~10 rad or > 0.1 Gy) and high dose rates (> ~10 rad/h or > 0.1 Gy/h). A model of deterministic risk would require different weighting factors (not yet established) than are used in the calculation of equivalent and effective dose.
The International Committee for Weights and Measures states: "In order to avoid any risk of confusion between the absorbed dose D and the dose equivalent H, the special names for the respective units should be used, that is, the name gray should be used instead of joules per kilogram for the unit of absorbed dose D and the name sievert instead ...
Equivalent dose (H) sievert: Sv J⋅kg −1 × W R: 1977 SI unit röntgen equivalent man: rem 100 erg⋅g −1 × W R: 1971 0.010 Sv Effective dose (E) sievert: Sv
To represent stochastic risk the dose quantities equivalent dose H T and effective dose E are used, and appropriate dose factors and coefficients are used to calculate these from the absorbed dose. [8] Equivalent and effective dose quantities are expressed in units of the sievert or rem which implies that biological effects have been taken into ...
dose equivalent: H: Product of D, Q and N, at the point of interest in tissue, where D is the absorbed dose, Q is the quality factor and N is the product of any other modifying factors H = D · Q · N For Q and N, see CIPM, 1984, Recommendation 1 and ICRU Report 33 (1980) sievert: Sv: 1 Sv = 1 J/kg