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  2. Beagle Club radiation experiments - Wikipedia

    en.wikipedia.org/wiki/Beagle_Club_radiation...

    Studies on the effect of radiation on rats and mice started during and immediately following World War II. [3] Although data from these early studies contributed to setting radiation exposure limits for humans, the small size and short life span of rodents made it difficult to confidently extrapolate what low-level exposure to radiation over ...

  3. Radioactivity in the life sciences - Wikipedia

    en.wikipedia.org/wiki/Radioactivity_in_the_life...

    It has the highest emission energy (1.7 MeV) of all common research radioisotopes. This is a major advantage in experiments for which sensitivity is a primary consideration, such as titrations of very strong interactions ( i.e. , very low dissociation constant ), footprinting experiments, and detection of low-abundance phosphorylated species.

  4. Human radiation experiments - Wikipedia

    en.wikipedia.org/wiki/Human_radiation_experiments

    Joseph G. Hamilton was the primary researcher for the human plutonium experiments done at U.C. San Francisco from 1944 to 1947. [1] Hamilton wrote a memo in 1950 discouraging further human experiments because the AEC would be left open "to considerable criticism," since the experiments as proposed had "a little of the Buchenwald touch."

  5. Commonly used gamma-emitting isotopes - Wikipedia

    en.wikipedia.org/wiki/Commonly_used_gamma...

    It has a half-life of 30 years, and decays by beta decay without gamma ray emission to a metastable state of barium-137 (137m Ba). Barium-137m has a half-life of a 2.6 minutes and is responsible for all of the gamma ray emission in this decay sequence. The ground state of barium-137 is stable. The photon energy (energy of a single gamma ray) of ...

  6. Radiation - Wikipedia

    en.wikipedia.org/wiki/Radiation

    Radiation and radioactive substances are used for diagnosis, treatment, and research. X-rays, for example, pass through muscles and other soft tissue but are stopped by dense materials. This property of X-rays enables doctors to find broken bones and to locate cancers that might be growing in the body. [7]

  7. Radiation damage - Wikipedia

    en.wikipedia.org/wiki/Radiation_damage

    Research in this area has focused on the three most common sources of radiation used for these applications, including gamma, electron beam, and x-ray radiation. [17] The mechanisms of radiation damage are different for polymers and metals, since dislocations and grain boundaries do not have real significance in a polymer.

  8. Radiobiology - Wikipedia

    en.wikipedia.org/wiki/Radiobiology

    Radiobiology (also known as radiation biology, and uncommonly as actinobiology) is a field of clinical and basic medical sciences that involves the study of the effects of ionizing radiation on living things, in particular health effects of radiation.

  9. Radioresistance - Wikipedia

    en.wikipedia.org/wiki/Radioresistance

    For example, the study of environment, animals and plants around the Chernobyl disaster area has revealed an unexpected survival of many species, despite the high radiation levels. A Brazilian study in a hill in the state of Minas Gerais which has high natural radiation levels from uranium deposits, has also shown many radioresistant insects ...