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  2. DART radiative transfer model - Wikipedia

    en.wikipedia.org/wiki/DART_radiative_transfer_model

    DART model simulates, simultaneously in several wavelengths of the optical domain (e.g., visible and thermal infrared), the radiative budget and remotely sensed images of any Earth scene (natural / urban with /without relief), for any sun direction, any atmosphere, any view direction and any sensor FTM.

  3. Template:Radiation protection - Wikipedia

    en.wikipedia.org/wiki/Template:Radiation_protection

    Template documentation Editors can experiment in this template's sandbox ( create | mirror ) and testcases ( create ) pages. Add categories to the /doc subpage.

  4. Radiation protection - Wikipedia

    en.wikipedia.org/wiki/Radiation_protection

    The application of radiation can aid the patient by providing doctors and other health care professionals with a medical diagnosis, but the exposure of the patient should be reasonably low enough to keep the statistical probability of cancers or sarcomas (stochastic effects) below an acceptable level, and to eliminate deterministic effects (e.g ...

  5. Schwarzschild's equation for radiative transfer - Wikipedia

    en.wikipedia.org/wiki/Schwarzschild's_equation...

    Once that happens, radiation can travel far enough that the local emission, B λ (T), can differ from the absorption of incoming I λ. The altitude where the transition to semi-transparency occurs is referred to as the "effective emission altitude" or "effective radiating level." Thermal radiation from this altitude is able to escape to space.

  6. Semiconductor detector - Wikipedia

    en.wikipedia.org/wiki/Semiconductor_detector

    In ionizing radiation detection physics, a semiconductor detector is a device that uses a semiconductor (usually silicon or germanium) to measure the effect of incident charged particles or photons. Semiconductor detectors find broad application for radiation protection, gamma and X-ray spectrometry, and as particle detectors.

  7. Neutron activation - Wikipedia

    en.wikipedia.org/wiki/Neutron_activation

    Neutron activation is the process in which neutron radiation induces radioactivity in materials, and occurs when atomic nuclei capture free neutrons, becoming heavier and entering excited states. The excited nucleus decays immediately by emitting gamma rays , or particles such as beta particles , alpha particles , fission products , and ...

  8. Neutron activation analysis - Wikipedia

    en.wikipedia.org/wiki/Neutron_activation_analysis

    Neutron activation analysis is a sensitive multi-element analytical technique used for both qualitative and quantitative analysis of major, minor, trace and rare elements.. NAA was discovered in 1936 by Hevesy and Levi, who found that samples containing certain rare-earth elements became highly radioactive after exposure to a source of neutrons

  9. Template:Radiation/doc - Wikipedia

    en.wikipedia.org/wiki/Template:Radiation/doc

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