105 CMR 120.014
Units of Exposure and Dose
(A) As used in 105 CMR 120.000, the unit of Exposure is the coulomb per kilogram (C/kg) of
air. One roentgen is equal to 2.58 x 10 coulomb per kilogram of air.
-4
(B) As used in 105 CMR 120.000, the units of dose are:
Rad is the special unit of absorbed dose. One rad is equal to an absorbed dose of 100 ergs
per gram or 0.01 joule per kilogram (0.01 gray).
Gray (Gy) is the SI unit of absorbed dose. One gray is equal to an absorbed dose of 1 joule
per kilogram (100 rads).
Rem is the special unit of any of the quantities expressed as dose equivalent. The dose
equivalent in rem is equal to the absorbed dose in rad multiplied by the quality factor (1 rem =
0.01 sievert).
Sievert is the SI unit of any of the quantities expressed as dose equivalent. The dose
equivalent in sievert is equal to the absorbed dose in gray multiplied by the quality factor
(1 sievert = 100 rems).
Absorbed dose in gray equal to 1 Sv or the absorbed dose in rad equal to 1 rem.
*
(C) As used in 105 CMR 120.000, the quality factors for converting absorbed dose to dose
equivalent are shown in Table I.
TABLE I
QUALITY FACTORS AND ABSORBED DOSE EQUIVALENCIES
Quality Factor
Absorbed Dose
Equal to
TYPE OF RADIATION
(Q)
a Unit Dose
Equivalent*
X, gamma, or beta radiation and
high-speed electrons
Alpha particles, multiple-charged
particles, fission fragments and
heavy particles of unknown charge
0.05
Neutrons of unknown energy
0.1
High-energy protons
0.1
(D) If it is more convenient to measure the neutron fluence rate than to determine the neutron
dose equivalent rate in sievert per hour or rem per hour, as provided in 105 CMR 120.014(C),
0.01 Sv (1 rem) of neutron radiation of unknown energies may, for purposes of 105 CMR
120.000, be assumed to result from a total fluence of 25 million neutrons per square centimeter
incident upon the body. If sufficient information exists to estimate the approximate energy
distribution of the neutrons, the licensee or registrant may use the fluence rate per unit dose
equivalent or the appropriate Q value from Table II to convert a measured tissue dose in gray
or rad to dose equivalent in sievert or rem.
Value of quality factor (Q) at the point where the dose equivalent is maximum in a 30-
*
centimeter diameter cylinder tissue-equivalent phantom.
Monoenergetic neutrons incident normally on a 30-centimeter diameter cylinder tissue-
**
equivalent phantom.
TABLE II
MEAN QUALITY FACT0RS, Q, AND FLUENCE PER UNIT DOSE
EQUIVALENT FOR MONOENERGETIC NEUTRONS
Neutron
Quality
Fluence per Unit
Fluence per Unit
Energy
Factor
Dose Equivalent
Dose Equivalent
*
**
**
(MeV)
(Q)
(neutrons
(neutrons
cm rem )
cm Sv )
-2
-1
-2
-1
1.0 x 10
980 x 10
980 x 10
-7
1.0 x 10
810 x 10
810 x 10
-6
1.0 x 10
810 x 10
810 x 10
-5
1.0 x 10
840 x 10
840 x 10
-4
1.0 x 10
980 x 10
980 x 10
-3
1.0 x 10
2.5
1010 x 10
1010 x 10
-2
1.0 x 10
7.5
170 x 10
170 x 10
-1
5.0 x 10
39 x 10
39 x 10
-1
27 x 10
27 x 10
2.5
29 x 10
29 x 10
23 x 10
23 x 10
24 x 10
24 x 10
6.5
24 x 10
24 x 10
7.5
17 x 10
17 x 10
16 x 10
16 x 10
14 x 10
14 x 10
5.5
16 x 10
16 x 10
1.0 x 10
20 x 10
20 x 10
2.0 x 10
3.5
19 x 10
19 x 10
3.0 x 10
3.5
16 x 10
16 x 10
4.0 x 10
3.5
14 x 10
14 x 10