Results for 'ionizing radiation'

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  1.  9
    Does Low Dose Ionizing Radiation Cause Cancer? The Interplay of Epistemology and Ethics in Radiation Protection.Bjørn M. Hofmann - 2018 - Axiomathes 28 (6):695-708.
    In order to investigate the relationship between scientific evidence and social commitments this article addresses three questions: does low dose ionizing radiation cause cancer? Is the answer to this question different in a social setting than in a scientific context? What are the consequences of the answers of 1 and 2 for the relationship between epistemology and ethics as played out in radiation protection? Conceptual analysis with basis in the philosophy of science, in particular traditional theories of (...)
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  2.  35
    Trading jobs for health: Ionizing radiation, occupational ethics, and the welfare argument.Kristin Shrader-Frechette - 2002 - Science and Engineering Ethics 8 (2):139-154.
    Blue-collar workers throughout the world generally face higher levels of pollution than the public and are unable to control many health risks that employers impose on them. Economists tend to justify these risky workplaces on the grounds of the compensating wage differential (CWD). The CWD, or hazard-pay premium, is the alleged increment in wages, all things being equal, that workers in hazardous environments receive. According to this theory, employees trade safety for money on the job market, even though they realize (...)
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  3.  7
    The use of ionizing radiation as a motivating stimulus.J. Garcia, D. J. Kimeldorf & E. L. Hunt - 1961 - Psychological Review 68 (6):383-395.
  4.  12
    Low level exposure to ionizing radiation: do ecological and evolutionary considerations imply phantom risks?Peter A. Parsons - 1999 - Perspectives in Biology and Medicine 43 (1):57.
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  5.  6
    XShields: Cross-platform Application for the Design of Shields against Ionizing Radiation.Aleksandra Kawala-Sterniuk, Stepan Ozana, Magda Zolubak, Katarzyna Cichoń & Wojciech Chlewicki - 2019 - Studies in Logic, Grammar and Rhetoric 60 (1):75-84.
    In many cases medical diagnosis is based on information obtained through a process involving the emission of different forms of ionizing radiation. The safety of the medical staff and patients exposed to ionizing radiation is highly dependent on the proper design of the shielding used in the laboratory. Therefore, the authors propose a multi-platform application supporting such a design through the computation of the critical parameters of shielding. The specific requirements for shielding are defined by government (...)
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  6.  28
    Enhanced frequency of chromosomal aberration in workers occupationally exposed to ionizing radiation.Jasminka Batanjac - 2000 - Facta Universitatis, Series: Linguistics and Literature 7:46-48.
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  7. Perceived incidence and importance of lay‐ideas on ionizing radiation: Results of a delphi‐study among radiation‐experts.H. M. C. Eijkelhof, Cwjm Klaassen, P. L. Lijnse & R. L. J. Scholte - 1990 - Science Education 74 (2):183-195.
     
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  8. Biologic Effects of Non-Ionizing Electromagnetic Radiations.A. W. Richardson - 1968 - Scientia 62 (3):447.
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  9.  30
    Radiation‐induced chromosome aberrations: Insights gained from biophysical modeling.Lynn Hlatky, Rainer K. Sachs, Mariel Vazquez & Michael N. Cornforth - 2002 - Bioessays 24 (8):714-723.
    Enzymatic misrepair of ionizingradiation‐induced DNA damage can produce large‐scale rearrangements of the genome, such as translocations and dicentrics. These and other chromosome exchange aberrations can cause major phenotypic alterations, including cell death, mutation and neoplasia. Exchange formation requires that two (or more) genomic loci come together spatially. Consequently, the surprisingly rich aberration spectra uncovered by recently developed techniques, when combined with biophysically based computer modeling, help characterize large‐scale chromatin architecture in the interphase nucleus. Most results are consistent with (...)
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  10.  25
    Radiation Protection—Sorting Out the Arguments.Sven Ove Hansson - 2011 - Philosophy and Technology 24 (3):363-368.
    This is a response to an article by Wade Allison in which he argues that we should accept drastically higher doses of ionizing radiation than what we currently do. He employs four arguments in defence of his position: comparisons with background radiation, the positive experiences of radiotherapy, the presence of biological defence mechanisms against radiation, and a concession by Swedish authorities that their approach to reindeer meat after the Chernobyl fallout was unnecessarily strict. It is shown (...)
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  11.  8
    Disproportionate Impacts of Radiation Exposure on Women, Children, and Pregnancy: Taking Back our Narrative.Cynthia Folkers - 2021 - Journal of the History of Biology 54 (1):31-66.
    Narratives surrounding ionizing radiation have often minimized radioactivity’s impact on the health of human and non-human animals and the natural environment. Many Cold War research policies, practices, and interpretations drove nuclear technology forward by institutionally obscuring empirical evidence of radiation’s disproportionate and low-dose harm—a legacy we still confront. Women, children, and pregnancy development are particularly sensitive to exposure from radioactivity, suffering more damage per dose than adult males, even down to small doses, making low doses a cornerstone (...)
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  12.  14
    Balancing the physics of radiation: Challenges to the system of quantities and units in radiological protection.Mariano Gazineu David, Mônica Ferreira Corrêa & Antonio Augusto Passos Videira - 2019 - Philosophy Compass 14 (3):e12568.
    Ionizing radiation is present in various situations in the contemporary world. Defining the quantities and units for this field is a complex scientific task, especially the quantities used in radiological protection (RP) to estimate the damage caused to individuals exposed to radiation (detriment). This article highlights the lack of consensus in the scientific RP community regarding the quantities and units employed in practice from the perspective of the philosophy of science. The basic concepts related to the system (...)
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  13.  30
    Fallout from Government-Sponsored Radiation Research.Carol Mason Spicer - 1994 - Kennedy Institute of Ethics Journal 4 (2):147-154.
    In lieu of an abstract, here is a brief excerpt of the content:Fallout from Government-Sponsored Radiation ResearchCarol Mason Spicer (bio)On December 28, 1993, Energy Secretary Hazel R. O'Leary publicly appealed to both the executive and legislative branches of the United States Government to consider compensation for individuals who were harmed by their exposure to ionizing radiation while enrolled in government-sponsored studies conducted between 1940 and the early 1970s.1 The call for compensation was issued three weeks after Secretary (...)
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  14.  12
    Teaching & learning guide for: Balancing the physics of radiation: Challenges to the system of quantities and units in radiological protection.Mariano Gazineu David, Mônica Ferreira Corrêa & Antônio Augusto Passos Videira - 2019 - Philosophy Compass 14 (3):e12570.
    Ionizing radiation is present in various situations in the contemporary world. Defining the quantities and units for this field is a complex scientific task, especially the quantities used in radiological protection (RP) to estimate the damage caused to individuals exposed to radiation (detriment). This article highlights the lack of consensus in the scientific RP community regarding the quantities and units employed in practice from the perspective of the philosophy of science. The basic concepts related to the system (...)
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  15.  8
    Human Functions and Human Nature: Radiation Life-Threat.Renat Apkin - 2015 - Dialogue and Universalism 25 (2):281-288.
    Radioactivity accompanied by ionizing radiation has always existed on the Earth, as well as in space, and so in every living tissue there are traces of radioactivity. With the discovery of the said radiation and identifying its effects on the human body, the fear of this phenomenon appeared. At high doses radiation causes serious tissue damages, while at small doses it can cause cancer and induce genetic defects. The best antidote for fear is knowledge. It is (...)
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  16.  55
    Classical Zero-Point Radiation and Relativity: The Problem of Atomic Collapse Revisited.Timothy H. Boyer - 2016 - Foundations of Physics 46 (7):880-890.
    The physicists of the early twentieth century were unaware of two aspects which are vital to understanding some aspects of modern physics within classical theory. The two aspects are: the presence of classical electromagnetic zero-point radiation, and the importance of special relativity. In classes in modern physics today, the problem of atomic collapse is still mentioned in the historical context of the early twentieth century. However, the classical problem of atomic collapse is currently being treated in the presence of (...)
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  17.  48
    James V. Neel and Yuri E. Dubrova: Cold War Debates and the Genetic Effects of Low-Dose Radiation.Magdalena E. Stawkowski & Donna M. Goldstein - 2015 - Journal of the History of Biology 48 (1):67-98.
    This article traces disagreements about the genetic effects of low-dose radiation exposure as waged by James Neel, a central figure in radiation studies of Japanese populations after World War II, and Yuri Dubrova, who analyzed the 1986 Chernobyl nuclear power plant accident. In a 1996 article in Nature, Dubrova reported a statistically significant increase in the minisatellite DNA mutation rate in the children of parents who received a high dose of radiation from the Chernobyl accident, contradicting studies (...)
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  18.  16
    Chair's perspective on the work of the advisory committee on human radiation experiments.Ruth R. Faden - 1996 - Kennedy Institute of Ethics Journal 6 (3):215-221.
    In lieu of an abstract, here is a brief excerpt of the content:Chair’s Perspective on the Work of the Advisory Committee on Human Radiation ExperimentsRuth Faden (bio)On January 15, 1994, President Clinton created the Advisory Committee on Human Radiation Experiments in response to his concern about the increasing number of reports describing alleged unethical conduct of the U.S. Government, and institutions funded by the government, in the use of, or exposure to, ionizing radiation in human beings (...)
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  19.  10
    Science and Environmental Health. Case of Radon Radiation.Renat Apkin - 2017 - Dialogue and Universalism 27 (4):37-42.
    This paper offers a contribution to ecophilosophy from the perspective of the scientific research of the environment. The problem considered in the paper deals with a specific issue of environmental risk, namely, the problem of radon ionizing radiation and the highest permissible security norms of it. This problem, now rarely discussed in ecological communities, is one of more important for humankind’s health and safe existence. The awareness of harmful and beneficial biological effects of various environmental factors is a (...)
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  20.  84
    A model for repair of radiation‐induced DNA double‐strand breaks in the extreme radiophile Deinococcus radiodurans.Kenneth W. Minton & Michael J. Daly - 1995 - Bioessays 17 (5):457-464.
    The bacterium Deinococcus (formerly Micrococcus) radiodurans and other members of the eubacterial family Deinococaceae are extremely resistant to ionizing radiation and many other agents that damage DNA. Stationary phase D. radiodurans exposed to 1.0‐1.5 Mrad γ‐irradiation sustains >120 DNA double‐strand breaks (dsbs) per chromosome; these dsbs are mended over a period of hours with 100% survival and virtually no mutagenesis. This contrasts with nearly all other organisms in which just a few ionizing radiation induced‐dsbs per chromosome (...)
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  21.  14
    The role of DNA double strand breaks in lonizing radiation‐induced killing of eukaryotic cells.George Lliakis - 1991 - Bioessays 13 (12):641-648.
    A widely accepted assumption in radiobiology is that ionizing radiation kills cells by inducing forms of damage in DNA structures that lead to the formation of lethal chromosome aberrations. One goal of radiation biology research is the identification of these forms of DNA damage, the characterization of the mechanisms involved in their repair and the elucidation of the processes involved in their transformation to chromosome damage, In recent years, evidence has accumulated implicating DNA double stranded breaks as (...)
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  22.  14
    Securing genome stability by orchestrating DNA repair: removal of radiation‐induced clustered lesions in DNA.Grigory L. Dianov, Peter O'Neill & Dudley T. Goodhead - 2001 - Bioessays 23 (8):745-749.
    In addition to double‐ and single‐strand DNA breaks and isolated base modifications, ionizing radiation induces clustered DNA damage, which contains two or more lesions closely spaced within about two helical turns on opposite DNA strands. Post‐irradiation repair of single‐base lesions is routinely performed by base excision repair and a DNA strand break is involved as an intermediate. Simultaneous processing of lesions on opposite DNA strands may generate double‐strand DNA breaks and enhance nonhomologous end joining, which frequently results in (...)
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  23.  17
    Ethical Theory versus Unethical Practice: Radiation Protection and Future Generations.Kristin Shrader-Frechette - 1998 - Ethics and the Environment 3 (2):177 - 195.
    The main international standard-setting agencies for ionizing radiation, the International Atomic Energy Agency (IAEA) and the International Commission on Radiological Protection (ICRP) both subscribe to principles which (they claim) lead to equitable protection for all generations exposed to radioactive pollution. Yet, when one examines the practices both groups support, it is clear that these practices discriminate against future generations with respect to radioactive pollution. After showing (I) that the IAEA and ICRP rhetoric of equity does not match their (...)
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  24.  21
    Dosimetry, personal monitoring film.Tim Stephens & Keith Pantridge - 2011 - Philosophy of Photography 2 (1):153-158.
    The article focuses on radiation dosimetry, which made use of the photographic film known as Type 2 Monitoring Film (Kodak) to detect and measure harmful ionizing radiation. It explores the implications of the demise of this technology in relation to Henri Van Lier's critique of photographic indexicality in his paper "Towards a Philosophy Instigated by Photography". It notes that the demise of indexical theories of photographic film can be aligned to the demise of the personal monitoring film. (...)
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  25.  23
    Duty to Inform and Informed Consent in Diagnostic Radiology: How Ethics and Law can Better Guide Practice.Victoria Doudenkova & Jean-Christophe Bélisle Pipon - 2016 - HEC Forum 28 (1):75-94.
    Although there is consensus on the fact that ionizing radiation used in radiological examinations can affect health, the stochastic nature of risk makes it difficult to anticipate and assess specific health implications for patients. The issue of radiation protection is peculiar as any dosage received in life is cumulative, the sensitivity to radiation is highly variable from one person to another, and between 20 % and 50 % of radiological examinations appear not to be necessary. In (...)
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  26.  8
    Lay Discourses of Science: Science-in-General, Science-in-Particular, and Self.Mike Michael - 1992 - Science, Technology and Human Values 17 (3):313-333.
    The understanding of science by members of the public has been of increasing concern to social scientists. This article argues that such understanding, or the ostensible lack of it, is structured by discourses that address science both as an abstract entity or principle and as an activity directed at specific phenomena or problems. Drawing upon a wide range of interviews about various sources of ionizing radiation, it is suggested that understanding is tied to questions of social identity that (...)
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  27.  6
    Protein kinase cascades activated by stress and inflammatory cytokines.John M. Kyriakis & Joseph Avruch - 1996 - Bioessays 18 (7):567-577.
    Signal transduction pathways constructed around a core module of three consecutive protein kinases, the most distal being a member of the extracellular signal‐regulated kinase (ERK) family, are ubiquitous among eukaryotes. Recent work has defined two cascades activated preferentially by the inflammatory cytokines TNF‐α and IL‐1‐β, as well as by a wide variety of cellular stresses such as UV and ionizing radiation, hyperosmolarity, heat stress, oxidative stress, etc. One pathway converges on the ERK subfamily known as the ‘stress activated’ (...)
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  28.  11
    Incidental Findings in Magnetic Resonance Imaging (MRI) Brain Research.Charles A. Nelson - 2008 - Journal of Law, Medicine and Ethics 36 (2):315-319.
    Magnetic resonance imaging is a noninvasive imaging tool that utilizes a strong magnetic field and radio frequency waves to visualize in great detail organs, soft tissue, and bone. Unlike conventional x-rays, there is no exposure to ionizing radiation and at most field strengths the procedure is considered safe for nearly every age group. Because it is non-invasive and possesses excellent spatial resolution, the use of MRI as a research tool has increased exponentially over the past decade. Uses have (...)
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  29.  27
    Muller’s nobel prize research and peer review.Edward J. Calabrese - 2018 - Philosophy, Ethics, and Humanities in Medicine 13 (1):6.
    This historical analysis indicates that it is highly unlikely that the Nobel Prize winning research of Hermann J. Muller was peer-reviewed. The published paper of Muller lacked a research methods section, cited no references, and failed to acknowledge and discuss the work of Gager and Blakeslee that claimed to have induced gene mutation via ionizing radiation six months prior to Muller’s non-data Science paper :84-87, 1927a). Despite being well acclimated into the scientific world of peer-review, Muller choose to (...)
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  30.  10
    Claustrophobia-Related Anxiety During MR Imaging Examinations.Casey Rentmeester - 2022 - Radiologic Technology 94 (1):53-57.
    Magnetic resonance (MR) imaging has proven to be a highly effective medical imaging technique that produces detailed cross-sectional images of organs, tissues, and skeletal structures. Because of its versatility, MR imaging has been called “one of the most powerful diagnostic tools in contemporary clinical medicine.”1 MR imaging is advantageous because it does not rely on potentially harmful ionizing radiation used in other imaging techniques; however, the MR imaging scanner can cause considerable anxiety for individuals with claustrophobia, a fear (...)
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  31.  5
    Challenges Working with Presidential Bioethics Commissions.Ruth Macklin - 2017 - Hastings Center Report 47 (S1):39-41.
    Presidential commissions come and go by design, and it is reasonable to wonder about the impact of their recommendations. I have been involved in the work of two presidential commissions: as a member of the Advisory Committee on Human Radiation Experiments (from 1994 to 1995) and as senior consultant to the National Bioethics Advisory Commission (from 1999 to 2000) for its report on multinational research. I continue to reflect on and look for the impact of both these commissions.ACHRE's charter (...)
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  32.  21
    Nuclear Power after Fukushima 2011: Buddhist and Promethean Perspectives.Graham Parkes - 2012 - Buddhist-Christian Studies 32:89-108.
    In lieu of an abstract, here is a brief excerpt of the content:Nuclear Power after Fukushima 2011:Buddhist and Promethean PerspectivesGraham ParkesDuring 2010 many environmentalists previously opposed to nuclear power were deciding, in the face of anthropogenic climate change from burning fossil fuels, that the only way to prevent runaway global warming would be to build more nuclear power plants after all.1 There are risks involved—though fewer than with carbon-based sources of energy.2 When one compares the detrimental effects of nuclear power (...)
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  33.  26
    Using metascience to improve dose‐response curves in biology: Better policy through better science.Kristin Shrader-Frechette - 2004 - Philosophy of Science 71 (5):1026-1037.
    Many people argue that uncertain science—or controversial policies based on science—can be clarified primarily by greater attention to social/political values influencing the science and by greater attention to the vested interests involved. This paper argues that while such clarification is necessary, it is not a sufficient condition for achieving better science and policy; indeed its importance may be overemphasized. Using a case study involving the current, highly politicized controversy over the shape of dose‐response curves for biological effects of ionizing (...)
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  34.  21
    Checkpoint signaling: Epigenetic events sound the DNA strand‐breaks alarm to the ATM protein kinase.Robert T. Abraham - 2003 - Bioessays 25 (7):627-630.
    The ATM protein kinase is centrally involved in the cellular response to ionizing radiation (IR) and other DNA double‐strand‐break‐inducing insults. Although it has been well established that IR exposure activates the ATM kinase domain, the actual mechanism by which ATM responds to damaged DNA has remained enigmatic. Now, a landmark paper provides strong evidence that DNA‐strand breaks trigger widespread activation of ATM through changes in chromatin structure.1 This review discusses a checkpoint activation model in which chromatin perturbations lead (...)
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  35.  54
    Comparativist rationality and.Kristin Shrader-Frechette - 2004 - Topoi 23 (2):153-163.
    US testing of nuclear weapons has resulted in about 800,000 premature fatal cancers throughout the globe, and the nuclear tests of China, France, India, Russia, and the UK have added to this total. Surprisingly, however, these avoidable deaths have not received much attention, as compared, for example, to the smaller number of US fatalities on 9-11-01. This essay (1) surveys the methods and models used to assess effects of low-dose ionizing radiation from above-ground nuclear weapons tests and (2) (...)
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  36.  16
    Using A Thought Experiment To Clarify A Radiobiological Controversy.Kristan Shrader-Frechete - 2001 - Synthese 128 (3):319-342.
    Are philosophers of science limited to conducting autopsies on dead scientific theories, or might they also help resolve contemporary methodological disputes in science? This essay (1) gives an overview of thought experiments, especially in mathematics; (2) outlines three major positions on the current dose-response controversy for ionizing radiation; and (3) sketches an original mathematical thought experiment that might help resolve the low-dose radiation conflict. This thought experiment relies on the assumptions that radiation "hits'' are Poisson distributed (...)
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  37. Radiobiological Hormesis, Methodological Value Judgments, and Metascience.Kristin Shrader-Frechette - 2000 - Perspectives on Science 8 (4):367-379.
    Scientists are divided on the status of hypothesis H that low doses of ionizing radiation (under 20 rads) cause hormetic (or non-harmful) effects. Military and industrial scientist s tend to accept H, while medical and environmental scientists tend to reject it. Proponents of the strong programme claim this debate shows that uncertain science can be clari ed only by greater attention to the social values in uencing it. While they are in part correct, this paper argues that methodological (...)
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  38.  25
    Global peace as a professional concern, II.Gilles D. Hurteau - 1989 - Journal of Business Ethics 8 (2-3):173 - 175.
    Is the vision of global peace utopian, given that a record 22 wars killed an estimated 244 000 people in 1987 alone? This important issue is addressed from the perspective of a physician and medical educator. The paper focuses on the destructive powers of nuclear war and the biological, genetic and environmental consequences of ionizing radiation and the futility of the nuclear arms race. Priority is given to nuclear disarmament and the prevention of nuclear war. The effects of (...)
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  39.  34
    Using a thought experiment to clarify a radiobiological controversy.Kristan Shrader-Frechete - 2001 - Synthese 128 (3):319 - 342.
    Are philosophers of science limited to conducting autopsies on dead scientific theories, or might they also help resolve contemporary methodological disputes in science? This essay (1) gives an overview of thought experiments, especially in mathematics; (2) outlines three major positions on the current dose-response controversy for ionizing radiation; and (3) sketches an original mathematical thought experiment that might help resolve the low-dose radiation conflict. This thought experiment relies on the assumptions that radiation "hits'' are Poisson distributed (...)
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  40.  9
    Better policy through better science: Using metascience to improve dose-response curves in biology and in ICRP ecological risk assessment.Kristin Shrader-Frechette - unknown
    Many people argue that uncertain science -- or controversial policies based on science -- can be clarified primarily by greater attention to the social and ethical values influencing the science and the policy and by greater attention to the vested, economic interests involved. This paper argues that while such clarification is necessary, it is neither a sufficient condition, nor even the primary means, by which to achieve better science and better policy. Using a case study involving the current, highly politicized (...)
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  41. Radiobiogical hormesis, methodological value judgments, and metascience.Kristin Shrader-Frechette - 2000 - Perspectives on Science 8 (4):367-379.
    : Scientists are divided on the status of hypothesis H that low doses of ionizing radiation (under 20 rads) cause hormetic (or non-harmful) effects. Military and industrial scientists tend to accept H, while medical and environmental scientists tend to reject it. Proponents of the strong programme claim this debate shows that uncertain science can be clarified only by greater attention to the social values in(integral)uencing it. While they are in part correct, this paper argues that methodological analyses (not (...)
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  42.  23
    Rutherfords alpha-teilchen.Thaddeus J. Trenn - 1974 - Annals of Science 31 (1):49-72.
    It is with good reason that the name Rutherford is closely linked with the early history of the alpha particle. He discovered them, determined their nature, and from 1909 used them to probe the structure of the atom. From 1898 to 1902 Rutherford construed alpha radiation as a type of non-particulate Röntgen radiation. On his theory of the locomotion of radioactive particles Rutherford proposed that alpha radiation consisted of negatively charged particles. During 1902 he confirmed the particulate (...)
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  43.  9
    Brownian Motion and Molecular Reality.Raghav Seth & George E. Smith - 2020 - Oxford University Press.
    Between 1905 and 1913, French physicist Jean Perrin's experiments on Brownian motion ostensibly put a definitive end to the long debate regarding the real existence of molecules, proving the atomic theory of matter. While Perrin's results had a significant impact at the time, later examination of his experiments questioned whether he really gained experimental access to the molecular realm. The experiments were successful in determining the mean kinetic energy of the granules of Brownian motion; however, the values for molecular magnitudes (...)
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  44.  31
    Is a molecular orbital measurable by means of tomographic imaging?J. F. Ogilvie - 2011 - Foundations of Chemistry 13 (2):87-91.
    Interpretation of experiments involving use of vacuum ultraviolet radiation to effect ionization of N 2 in terms of measurements of a molecular orbital is erroneous.
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  45.  44
    Moral hazards and solar radiation management: Evidence from a large-scale online experiment.Philipp Schoenegger & Kian Mintz-Woo - 2024 - Journal of Environmental Psychology 95:102288.
    Solar radiation management (SRM) may help to reduce the negative outcomes of climate change by minimising or reversing global warming. However, many express the worry that SRM may pose a moral hazard, i.e., that information about SRM may lead to a reduction in climate change mitigation efforts. In this paper, we report a large-scale preregistered, money-incentivised, online experiment with a representative US sample (N = 2284). We compare actual behaviour (donations to climate change charities and clicks on climate change (...)
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  46. Hawking radiation and analogue experiments: A Bayesian analysis.Radin Dardashti, Stephan Hartmann, Karim P. Y. Thébault & Eric Winsberg - 2019 - Studies in History and Philosophy of Modern Physics 67:1-11.
    We present a Bayesian analysis of the epistemology of analogue experiments with particular reference to Hawking radiation. Provided such experiments can be externally validated via universality arguments, we prove that they are confirmatory in Bayesian terms. We then provide a formal model for the scaling behaviour of the confirmation measure for multiple distinct realisations of the analogue system and isolate a generic saturation feature. Finally, we demonstrate that different potential analogue realisations could provide different levels of confirmation. Our results (...)
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  47.  10
    Negative ionization: An investigation of behavioral effects.J. C. Wofford - 1966 - Journal of Experimental Psychology 71 (4):608.
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  48. Radiation reaction on an accelerating point charge.Jerrold Franklin - 2023 - International Journal of Modern Physics A 38 (01):2350005, 6 pages.
    A point charge accelerating under the influence of an external force emits electromagnetic radiation that reduces the increase in its mechanical energy. This causes a reduction in the particle's acceleration. We derive the decrease in acceleration due to radiation reaction for a particle accelerating parallel to its velocity, and show that it has a negligible effect.
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  49. Highly Ionized Gas in the Galactic Halo and its Implications on Galactic Evolutionary Models.Kyle Brian Neary - 2010 - Scientia: Undergraduate Research Journal for the Sciences University of Notre Dame 1 (1).
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  50. Highly Ionized Gas in the Galactic Halo.Kyle Neary - 2010 - Scientia: Undergraduate Research Journal for the Sciences University of Notre Dame 1 (1).
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