Rem is 0.01 sievert.
Rem to Decagray
Convert Rem (rem) to Decagray (daGy) instantly. Free online radiation converter with formulas, tables and examples.
Reserved for a responsive leaderboard above the conversion details.
Professional calculator style
World-scale conversion engine
Converter
Radiation Converter
Convert radioactivity, absorbed dose, and equivalent dose units by compatible radiation family.
Decagray is 10 gray units.
daGy = rem × 0.001
Results update instantly for Rem to Decagray conversions.
Reserved above the conversion cards and below the converter.
Formula
1 Rem = 0.001 Decagray
daGy = rem × 0.001
rem = daGy ÷ 0.001
Conversion table
| 1 rem | 0.001 daGy |
| 2 rem | 0.002 daGy |
| 5 rem | 0.005 daGy |
| 10 rem | 0.01 daGy |
| 20 rem | 0.02 daGy |
| 50 rem | 0.05 daGy |
| 100 rem | 0.1 daGy |
Related conversions
Reserved between the cards and the FAQ so the page stays balanced.
Frequently asked questions
How many Decagrays are in one Rem?
One Rem equals 0.001 Decagrays.
How do I convert Rem to Decagray?
Multiply the number of Rems by 0.001 to get Decagrays. To go the other way, multiply Decagrays by 1000 (or divide by 0.001) to get Rems.
Is this conversion exact?
Yes. This conversion uses the exact defined relationship between Rem and Decagray, so the result shown is mathematically precise (rounded only for display).
When is Rem to Decagray conversion commonly used?
It is commonly used in nuclear medicine, radiation safety, health physics, and scientific research involving radioactivity and radiation dose.
Reserved between the FAQ and the article so the page stays balanced.
About this conversion
Rem and Decagray are units used in the radiation family of measurements. Rem measures equivalent radiation dose (biological risk-weighted dose), while Decagray measures absorbed radiation dose (energy deposited per unit mass). This page provides the direct numeric ratio between the two units. This converter uses the precise relationship 1 Rem = 0.001 Decagrays (equivalently 1 Decagray = 1000 Rems), so results stay accurate for nuclear medicine, radiation safety, health physics, and scientific research.