Results for 'Radiation '

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  1.  53
    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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  2. 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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  3. 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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  4.  4
    Radiation and Revolution.Sabu Kohso - 2020 - Duke University Press.
    In _Radiation and Revolution_ political theorist and anticapitalist activist Sabu Kohso uses the 2011 Fukushima nuclear disaster to illuminate the relationship between nuclear power, capitalism, and the nation-state. Combining an activist's commitment to changing the world with a theorist's determination to grasp the world in its complexity, Kohso outlines how the disaster is not just a pivotal event in postwar Japan; it represents the epitome of the capitalist-state mode of development that continues to devastate the planet's environment. Throughout, he captures (...)
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  5.  69
    Blackbody Radiation and the Scaling Symmetry of Relativistic Classical Electron Theory with Classical Electromagnetic Zero-Point Radiation.Timothy H. Boyer - 2010 - Foundations of Physics 40 (8):1102-1116.
    It is pointed out that relativistic classical electron theory with classical electromagnetic zero-point radiation has a scaling symmetry which is suitable for understanding the equilibrium behavior of classical thermal radiation at a spectrum other than the Rayleigh-Jeans spectrum. In relativistic classical electron theory, the masses of the particles are the only scale-giving parameters associated with mechanics while the action-angle variables are scale invariant. The theory thus separates the interaction of the action variables of matter and radiation from (...)
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  6.  42
    Radiation Reaction of a Nonrelativistic Quantum Charged Particle.J. A. E. Roa-Neri & J. L. Jiménez - 2004 - Foundations of Physics 34 (4):547-580.
    An alternative approach to analyze the nonrelativistic quantum dynamics of a rigid and extended charged particle taking into account the radiation reaction is discussed with detail. Interpretation of the field operators as annihilation and creation ones, theory of perturbations and renormalization are not used. The analysis is carried out in the Heisenberg picture with the electromagnetic field expanded in a complete orthogonal basis set of functions which allows the electromagnetic field to satisfy arbitrary boundary conditions. The corresponding coefficients are (...)
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  7. Electromagnetic Radiation, a Living Cell and the Soul: A Collated Hypothesis.Contzen Pereira - 2015 - Neuroquantology 13 (4).
    The soul is believed to be an immortal essence of living things in scores of philosophical and religious traditions but sparsely understood by science. The word ‘soul’ does not have a scientific definition but through this paper is hypothesized to be an indefinite, non-structured, massless energy made up of electromagnetic radiations that is confined in the cytoskeletal network of the biological cell. Electromagnetic radiations continually interact with the biological cell and propagate within the cell; by a pathway known as ‘Cell-Soul (...)
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  8. Vacuum Radiation, Entropy, and Molecular Chaos.Jean E. Burns - 2007 - Foundations of Physics 37 (12):1727-1737.
    Vacuum radiation causes a particle to make a random walk about its dynamical trajectory. In this random walk the root mean square change in spatial coordinate is proportional to t 1/2, and the fractional changes in momentum and energy are proportional to t −1/2, where t is time. Thus the exchange of energy and momentum between a particle and the vacuum tends to zero over time. At the end of a mean free path the fractional change in momentum of (...)
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  9.  9
    Radiation in an emergency situation: attempting to respect the patient’s beliefs as reported by a minor.Atsunori Nakao, Hiromichi Naito, Kohei Tsukahara, Takafumi Obara, Yasuhiro Koide, Takashi Hongo & Tetsuya Yumoto - 2023 - BMC Medical Ethics 24 (1):1-4.
    BackgroundEach individual’s unique health-related beliefs can greatly impact the patient-clinician relationship. When there is a conflict between the patient’s preferences and recommended medical care, it can create a serious ethical dilemma, especially in an emergency setting, and dramatically alter this important relationship.Case presentationA 56-year-old man, who remained comatose after out-of-hospital cardiac arrest, was rushed to our hospital. The patient was scheduled for emergency coronary angiography when his adolescent daughter reported that she and her father held sincere beliefs against radiation (...)
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  10. Radiation Brain Moms and Citizen Scientists: The Gender Politics of Food Contamination after Fukushima.[author unknown] - 2016
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  11.  97
    Radiation From an Electric Charge.Amos Harpaz & Noam Soker - 2001 - Foundations of Physics 31 (6):935-949.
    The conditions in which electromagnetic radiation is formed are discussed. It is found that the main condition for the emission of radiation by an electric charge is the existence of a relative acceleration between the charge and its electric field. Such a situation exists both for a charge accelerated in a free space, and for a charge supported at rest in a gravitational field. Hence, in such situations, the charges radiate. It is also shown that relating radiation (...)
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  12.  42
    The Radiation Reaction Problem in a Simple Coupled Model.Armando Bernui - 2000 - Foundations of Physics 30 (1):121-138.
    The complete description of the interaction between an external electromagnetic field and a charged particle causing it to radiate is one of the most fundamental problems in classical electrodynamics. Here we provide a simple coupled model that describes via the Lagrangian of the physical system the full radiation reaction process resulting from the particle–field interactions which simulate the electromagnetic ones. The particle and field evolution equations obtained from the Lagrangian are studied as an initial value problem giving rise to (...)
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  13.  26
    Quantum radiation theory in a diffusion model version.Leon Bess - 1981 - Foundations of Physics 11 (11-12):949-966.
    Using the diffusion model associated by the author with the wave equations, a part of current quantum radiation theory is reformulated so that the characteristic divergences in the associated calculations no longer arise. The reformulation does this by stipulating, on purely physical grounds, that a transition involving a “virtual” quantum must include a high frequency “cutoff” factor in its interaction Hamiltonian. For a transition involving a “real” quantum, the stipulation is that the “cutoff” factor is not to be included.
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  14.  9
    Radiation Processes in Astrophysics.Wallace H. Tucker - 1975 - MIT Press.
    A brief, simple introduction to the theory of radiation and its application in astrophysics and a manual for researchers. The purpose of this book is twofold: to provide a brief, simple introduction to the theory of radiation and its applcation in astrophysics and to serve as a refernce manual for researchers. The first part of the book consists of a dicussion of the basic formulas and concepts that underlie the classical and quantum descriptions of radiation processes. The (...)
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  15.  57
    Radiation from a Uniformly Accelerated Charge and the Equivalence Principle.Stephen Parrott - 2002 - Foundations of Physics 32 (3):407-440.
    We argue that purely local experiments can distinguish a stationary charged particle in a static gravitational field from an accelerated particle in (gravity-free) Minkowski space. Some common arguments to the contrary are analyzed and found to rest on a misidentification of “energy.”.
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  16.  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 that (...)
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  17.  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 ionizing‐radiation‐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 a (...)
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  18.  40
    Radiation before the bomb: Matthew Lavine: The first atomic age: Scientists, radiations, and the American Public, 1895–1945. Palgrave studies in the history of science and technology. New York: Palgrave Macmillan, 2013, 260pp, $95.00 HB.Audra J. Wolfe - 2014 - Metascience 24 (2):237-238.
    Matthew Lavine’s The First Atomic Age is intended as a corrective to what has by now become a familiar story of postwar US nuclear culture. The popular enthusiasm for and fear of all things nuclear, as described in such works as Paul Boyer’s By the Bomb’s Early Light , was not in fact a new development but rather a repeat of a phenomenon that first manifested half a century earlier. Working with newspapers, magazines, trade journals, advertisements, product labels, pulp fiction, (...)
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  19.  17
    Radiation-induced glide motion of interstitial clusters in concentrated alloys.Y. Satoh, H. Abe & T. Matsunaga - 2014 - Philosophical Magazine 94 (19):2170-2187.
  20. Radiation Theory and the Quantum Revolution.J. Agassi & S. F. Mason - 1994 - Annals of Science 51 (6):677-677.
  21.  10
    Radiation Risk in Cold War Mexico: Local and Global Networks.Ana Barahona - 2022 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 30 (2):245-270.
    After WWII, global concerns about the uses of nuclear energy and radiation sources in agriculture, medicine, and industry brought about calls for radiation protection. At the beginning of the 1960s radiation protection involved the identification and measurement of all sources of radiation to which a population was exposed, and the evaluation and assessment of populations in terms of the biological hazard their exposure posed. Mexico was not an exception to this international trend. This paper goes back (...)
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  22.  50
    Gravitational radiation reaction on the motion of particles in general relativity.P. A. Hogan & I. Robinson - 1986 - Foundations of Physics 16 (5):455-464.
    We examine the problem of deducing the geodesic motion of test particles from Einstein's vacuum field equations and its extension to include gravitational radiation reaction. In the latter case we obtain an equation of motion for a particle which incorporates radiation reaction of the electrodynamical type, but due to shearing radiation, together with a mass-loss formula of the Bondi-Sachs type.
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  23.  35
    Gravitational radiation, source behavior, and the method of matched asymptotic expansions.James L. Anderson - 1985 - Foundations of Physics 15 (4):411-418.
    It is conjectured that a suitably modified Bondi-type expansion of the gravitational field in the radiation zone is a rapidly convergent series. It is also conjectured that the source behavior in the inner zone is insensitive to the initial conditions imposed on the gravitational field in solving the initial-value problem in this zone. Consequences of these conjectures for the problem of relating source motion to the Bondi news function are discussed.
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  24.  43
    Evolutionary radiation and the spectrum of consciousness.Robert G. Wallace & Rodrick Wallace - 2009 - Consciousness and Cognition 18 (1):160-167.
    Evolution is littered with polyphyletic parallelism: many roads lead to functional Romes. We propose consciousness embodies one such example, and represent it here with an equivalence class structure that factors the broad realm of necessary conditions information theoretic realizations of Baars’ global workspace model. The construction suggests many different physiological systems can support rapidly shifting, highly tunable, and even simultaneous temporary assemblages of interacting unconscious cognitive modules. The discovery implies various animal taxa exhibiting behaviors we broadly recognize as conscious are, (...)
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  25.  16
    Radiation-induced coherency loss in a Cu–Co alloy.L. M. Brown, G. R. Woolhouse & U. Valdrè - 1968 - Philosophical Magazine 17 (148):781-789.
  26.  73
    Precaution and Solar Radiation Management.Lauren Hartzell-Nichols - 2012 - Ethics, Policy and Environment 15 (2):158 - 171.
    Solar radiation management is a form of geoengineering that involves the intentional manipulation of solar radiation with the aim of reducing global average temperature. This paper explores what precaution implies about the status of solar radiation management. It is argued that any form of solar radiation management that poses threats of catastrophe cannot constitute an appropriate precautionary measure against another threat of catastrophe, namely climate change. Research of solar radiation management is appropriate on a precautionary (...)
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  27.  51
    Radiation Reaction of the Classical Off-Shell Relativistic Charged Particle.O. Oron & L. P. Horwitz - 2001 - Foundations of Physics 31 (6):951-966.
    It has been shown by Gupta and Padmanabhan that the radiation reaction force of the Abraham–Lorentz–Dirac equation can be obtained by a coordinate transformation from the inertial frame of an accelerating charged particle to that of the laboratory. We show that the problem may be formulated in a flat space of five dimensions, with five corresponding gauge fields in the framework of the classical version of a fully gauge covariant form of the Stueckelberg–Feynman–Schwinger covariant mechanics (the zero mode fields (...)
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  28. Solar Radiation Management and Comparative Climate Justice.Toby Svoboda - 2016 - In Christopher Preston (ed.), Climate Justice and Geoengineering: Ethics and Policy in the Atmospheric Anthropocene. pp. 3-14.
    In line with Christopher Preston’s argument in the introduction to this volume, I argue here that, although it is helpful to identify potential injustices associated with SRM, it is also crucial both to evaluate how SRM compares to other available options and to consider empirical conditions under which deployment might occur. In arguing for this view, I rely on a distinction between two types of question: (1) whether SRM would produce just or unjust outcomes in some case and (2) whether (...)
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  29. Have underground radiation measurements refuted the Orch OR theory?Kelvin J. McQueen - forthcoming - Physics of Life Reviews.
    In [1] it is claimed that, based on radiation emission measurements described in [2], a certain “variant” of the Orch OR theory has been refuted. I agree with this claim. However, the significance of this result for Orch OR per se is unclear. After all, the refuted “variant” was never advocated by anyone, and it contradicts the views of Hameroff and Penrose (hereafter: HP) who invented Orch OR [3]. My aim is to get clear on this situation. I argue (...)
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  30. The radiation temperature of the universe.W. Nernst - 1995 - Apeiron 2:86-87.
  31. Visualizing radiation : the photographs of Henri Becquerel.Kelley Wilder - 2011 - In Lorraine Daston & Elizabeth Lunbeck (eds.), Histories of Scientific Observation. University of Chicago Press.
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  32.  12
    Neutron radiation damage in tungsten single crystals.K. Lacefield, J. Moteff & J. P. Smith - 1966 - Philosophical Magazine 13 (125):1079-1081.
  33.  10
    Radiation-induced diffusion of point-defects during low-temperature electron irradiation.K. Urban & A. Seeger - 1974 - Philosophical Magazine 30 (6):1395-1418.
  34. Towards a Just Solar Radiation Management Compensation System: A Defense of the Polluter Pays Principle.Robert K. Garcia - 2014 - Ethics, Policy and Environment 17 (2):178-182.
    In their ‘Ethical and Technical Challenges in Compensating for Harm Due to Solar Radiation Management Geoengineering’ (2014), Toby Svoboda and Peter Irvine (S&I) argue that there are significant technical and ethical challenges that stand in the way of crafting a just solar radiation management (SRM) compensation system. My aim in this article is to contribute to the project of addressing these problems. I do so by focusing on one of S&I’s important ethical challenges, their claim that the polluter (...)
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  35.  15
    Radiation damage near grain boundaries.M. Samaras, P. M. Derlet, H. Van Swygenhoven† & M. Victoria - 2003 - Philosophical Magazine 83 (31-34):3599-3607.
  36.  8
    Computers, radiation, and ethics.Bo Schenkman - 1996 - Ethics and Behavior 6 (2):125 – 139.
    The reduction of the levels of the electromagnetic fields surrounding and emanating from computer screens is discussed in relation to ethical issues of risk reduction, in particular where the factual basis for the actions taken is nonconclusive. The technicaland scientific background is reviewed briefly. Some empirical approaches for determining risks, for example, the method of contingent valuations, are reviewed, and their ethical implications are discussed. When both the risk level and the determination of the certainty of the risk level is (...)
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  37.  9
    Radiation damage of ordered V6C5by electron microscope beam bombardment.John D. Venables & R. G. Lye - 1969 - Philosophical Magazine 19 (159):565-582.
  38.  1
    Relict radiation of the “Philosophers’ steamboat”.A. N. Chumakov - forthcoming - Liberal Arts in Russia.
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  39.  16
    Mutual radiation reaction in spontaneous emission.Richard J. Cook - 1993 - In E. T. Jaynes, Walter T. Grandy & Peter W. Milonni (eds.), Physics and Probability: Essays in Honor of Edwin T. Jaynes. Cambridge University Press. pp. 127.
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  40.  8
    Electron radiation damage in a high voltage electron microscope.M. Iphoeski & M. S. Spring - 1969 - Philosophical Magazine 20 (167):937-941.
  41.  51
    Economics of Radiation Protection: Equity Considerations.Thierry Schneider, Caroline Schieber, Louis Eeckhoudt & Christian Gollier - 1997 - Theory and Decision 43 (3):241-251.
    In order to implement cost-benefit analysis of protective actions to reduce radiological exposures, one needs to attribute a monetary value to the avoided exposure. Recently, the International Commission on Radiological Protection has stressed the need to take into consideration not only the collective exposure to ionising radiation but also its dispersion in the population. In this paper, by using some well known and some recent results in the economics of uncertainty, we discuss how to integrate these recommendations in the (...)
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  42.  7
    Radiation damage in uranium dioxide.A. D. Whapham & B. E. Sheldon - 1965 - Philosophical Magazine 12 (120):1179-1192.
  43.  17
    Does Radiation Research in Healthy Children Pose Greater than Minimal Risk?Bonnie L. Specker & Eugene L. Saenger - 1994 - IRB: Ethics & Human Research 16 (5):5.
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  44. Radiation and Man.Pn Srivastava - 1993 - In S. Z. Qasim (ed.), Science and Quality of Life. Offsetters. pp. 301.
     
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  45. Radiation biological techniques in the study of thyroid function.P. N. Srivastava - 1968 - In Peter Koestenbaum (ed.), Proceedings. [San Jose? Calif.,: [San Jose? Calif.. pp. 36--82.
     
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  46.  18
    Radiation defects in graphite.R. H. Telling & M. I. Heggie - 2007 - Philosophical Magazine 87 (31):4797-4846.
  47.  13
    The radiation of electromagnetic waves and the instability of electrons moving at super-light velocity in a medium.V. L. Ginzburg, V. V. Zheleznyakov & V. Ya Eidman - 1962 - Philosophical Magazine 7 (75):451-458.
  48.  67
    The asymmetry of radiation: Reinterpreting the Wheeler-Feynman argument.Huw Price - 1991 - Foundations of Physics 21 (8):959-975.
    This paper suggests a novel reinterpretation of the mathematical core of Wheeler-Feynman absorber theory, and hence a new route to the conclusion that the temporal asymmetry of classical electromagnetic radiation has the same origin as that of thermodynamics. The argument begins (Sec. 2) with a careful analysis of what the apparent asymmetry of radiation actually involves. Two major flaws in the standard version of the Wheeler-Feynman treatment of radiative asymmetry are then identified (Secs. 4–5), and the proposed reinterpretation (...)
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  49. Nuclear radiation exposure and the epidemiology of violent death in America.Rj Pellegrini - 1988 - Bulletin of the Psychonomic Society 26 (6):499-499.
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  50.  5
    Radiators and big brains in walkie-talkie primates.Martin Pickford - 1991 - Behavioral and Brain Sciences 14 (3):528-529.
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