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Risk Equations and Formulas Calculator
Toxicology and Risk Assessment

Solving for fugitive dust intake dose exposure duration

Inputs:
 intake dose (II) milligram/kilogram-day body weight (BW) kilogram grain gram milligram pound slug ton long ton metric ton short averaging time (AT) second century day decade hour millisecond minute week year exposure point concentration (C) kilogram/meter^3 gram/centimeter^3 gram/meter^3 milligram/liter pound/foot^3 contact rate (CR) meter^3/second cc/hour centimeter^3/second centimeter^3/hour deciliter/minute foot^3/minute foot^3/second gallon/minute liter/day liter/minute liter/second meter^3/day meter^3/minute milliliter/hour milliliter/minute exposure frequency (EF) day/year retention rate (RR) bloodstream absorption (ABS)

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Conversions:
 intake dose (II) = 0 = 0 milligram/kilogram-day body weight (BW) = 0 = 0 kilogram averaging time (AT) = 0 = 0 day exposure point concentration (C) = 0 = 0 milligram/liter contact rate (CR) = 0 = 0 liter/day exposure frequency (EF) = 0 = 0 day/year retention rate (RR) = 0 = 0 bloodstream absorption (ABS) = 0 = 0

Solution:
 exposure duration (ED) = HAS NOT BEEN CALCULATED

Other Units:

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 probability adverse health effects number individuals in the population number

 standard mortality ratio or relative risk probability of fatal cancer cases of individuals exposed to carcinogen probability of fatal cancer cases of individuals not exposed to carcinogen

 standard mortality ratio or relative risk number of cancer cases in individuals exposed to carcinogen total number of individuals not exposed to carcinogen number of cancer cases in individuals not exposed to carcinogen total number of individuals exposed to carcinogen

 standard mortality ratio or relative risk number of cancer deaths in a population from exposure to carcinogen number of cancer deaths in a same size population not exposed to carcinogen

 carcinogenic risk chronic daily intake carcinogen slope factor

 hazard index chronic daily intake reference dose

 administered dose exposure point concentration contact rate exposure frequency exposure duration body weight averaging time

fugitive dust inhalation pathway
 intake dose exposure point concentration contact rate exposure frequency exposure duration retention rate bloodstream absorption body weight averaging time

References - Books:

1) P. Aarne Vesilind, J. Jeffrey Peirce and Ruth F. Weiner. 1994. Environmental Engineering. Butterworth Heinemann. 3rd ed.
2) Michael D. LaGrega, Phillip L. Buckingham and Jeffery C. Evan. 1994. Hazardous Waste Management. McGraw Hill, Inc.
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