Convert millirad [mrd] to joule/gram [J/g] Online | Free radiation-absorbed-dose Converter
Millirad [mrd]: A Subunit of Radiation Absorbed Dose
The millirad (mrd) is a unit of absorbed radiation dose equal to one-thousandth of a rad. The rad (radiation absorbed dose) is an older, non-SI unit that was commonly used before the gray (Gy) became the standard.
1 rad = 0.01 gray (Gy)
Therefore, 1 millirad = 0.001 rad = 0.00001 Gy (10β»β΅ Gy)
The millirad was used to measure the amount of energy absorbed from ionizing radiation per unit mass, primarily in radiation protection and medical contexts.
Though the rad and its subunits like the millirad have largely been replaced by the gray and its subunits (milligray, microgray, etc.), they may still be encountered in older literature or certain regions.
In summary, the millirad is a very small dose unit equal to one-thousandth of a rad, useful historically for quantifying low-level radiation exposures before the universal adoption of the gray.
Joule per Gram [J/g]: A Measure of Energy Absorbed per Mass
The joule per gram (J/g) is a unit that measures how much energy is absorbed or delivered per gram of material. It expresses energy density on a mass basis, indicating the amount of energy deposited in each gram of a substance.
In radiation physics, the standard unit of absorbed dose is the gray (Gy), defined as 1 joule per kilogram (J/kg). Since 1 gram equals 0.001 kilograms, 1 J/g corresponds to:
1 J/g = 1 joule per 0.001 kg = 1,000 J/kg = 1,000 grays (Gy).
This means that 1 J/g equals an extremely high radiation doseβmuch higher than doses used in medical or environmental contexts.
While joule per gram is not a common unit for radiation dose measurement, it might be used in specialized fields such as materials science, chemistry, or high-energy physics, where energy deposition in small masses is studied.
In summary, joule per gram quantifies energy absorbed per gram of material, representing a large energy density compared to the standard gray.
No conversions available for radiation-absorbed-dose.