Difference between revisions of "Committed equivalent dose"
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| − | The time integral of the equivalent dose rate in a particular tissue or organ that will be received by an individual following intake of radioactive material into the body by a Reference Person, where | + | The time integral of the equivalent dose rate in a particular tissue or organ that will be received by an individual following intake of radioactive material into the body by a Reference Person, where <math>τ</math> is the integration time in years. ([[ICRP Publication 103]], 2007) |
The committed equivalent dose (<math>H_T(τ)</math>) in a tissue or organ <math>T</math> is defined by: | The committed equivalent dose (<math>H_T(τ)</math>) in a tissue or organ <math>T</math> is defined by: | ||
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<div style='text-align: center;'> | <div style='text-align: center;'> | ||
<math> | <math> | ||
| − | + | H_t(τ)= \int\limits_{t_0}^{t_0+τ} H_t(t)dt | |
</math> | </math> | ||
</div> | </div> | ||
Revision as of 15:45, 2 September 2026
The time integral of the equivalent dose rate in a particular tissue or organ that will be received by an individual following intake of radioactive material into the body by a Reference Person, where [math]τ[/math] is the integration time in years. (ICRP Publication 103, 2007)
The committed equivalent dose ([math]H_T(τ)[/math]) in a tissue or organ [math]T[/math] is defined by:
[math] H_t(τ)= \int\limits_{t_0}^{t_0+τ} H_t(t)dt [/math]
ICRP Glossary entry - May 2019
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