诱拐 发表于 2025-3-28 17:42:34
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F. Engelmann,A. Mayerws for major cancer types.Explains how low-dose radiation ca.Current radiation protection standards are based upon the application of the linear no-threshold (LNT) assumption, which considers that even very low doses of ionizing radiation can cause cancer. The radiation hormesis hypothesis, by contrformula 发表于 2025-3-28 23:32:52
F. Engelmann,A. Mayerws for major cancer types.Explains how low-dose radiation ca.Current radiation protection standards are based upon the application of the linear no-threshold (LNT) assumption, which considers that even very low doses of ionizing radiation can cause cancer. The radiation hormesis hypothesis, by contrinfantile 发表于 2025-3-29 06:27:07
F. Engelmann,A. Mayerflash model is able to account for a wide variety of observed burst phenomena. However, a number of theoretical and observational problems persist. Foremost among these are related to the existence of apparent luminosities in excess of the Eddington limit in many observed bursts. Under circumstancesImmunization 发表于 2025-3-29 08:46:14
F. Engelmann,A. Mayerluminosity is close to the Eddington-limit. The subsequent decline illustrates the interaction between radiation and matter in a wind which gradually thins as the mass loss rate falls at an approximately constant Eddington-limit luminosity. As the wind thins so the effective photosphere shrinks back滴注 发表于 2025-3-29 14:08:37
luminosity is close to the Eddington-limit. The subsequent decline illustrates the interaction between radiation and matter in a wind which gradually thins as the mass loss rate falls at an approximately constant Eddington-limit luminosity. As the wind thins so the effective photosphere shrinks back摄取 发表于 2025-3-29 16:37:00
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F. Engelmann,A. Mayer research when using the LNT assumption. The author shows how proponents of the LNT assumption consistently reject, manipulate, and deliberately ignore an overwhelming abundance of published data and falsely claim that no reliable data are available at doses of less than 100 mSv..978-3-642-42566-0978-3-642-03720-7