Results for 'fourth law of thermodynamics'

976 found
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  1.  96
    An algorithmic information theory challenge to intelligent design.Sean Devine - 2014 - Zygon 49 (1):42-65.
    William Dembski claims to have established a decision process to determine when highly unlikely events observed in the natural world are due to Intelligent Design. This article argues that, as no implementable randomness test is superior to a universal Martin-Löf test, this test should be used to replace Dembski's decision process. Furthermore, Dembski's decision process is flawed, as natural explanations are eliminated before chance. Dembski also introduces a fourth law of thermodynamics, his “law of conservation of information,” to (...)
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  2.  33
    The Second Law of Thermodynamics at the Microscopic Scale.Thibaut Josset - 2017 - Foundations of Physics 47 (9):1185-1190.
    In quantum statistical mechanics, equilibrium states have been shown to be the typical states for a system that is entangled with its environment, suggesting a possible identification between thermodynamic and von Neumann entropies. In this paper, we investigate how the relaxation toward equilibrium is made possible through interactions that do not lead to significant exchange of energy, and argue for the validity of the second law of thermodynamics at the microscopic scale.
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  3.  69
    In Search of the Holy Grail: How to Reduce the Second Law of Thermodynamics.Katie Robertson - 2022 - British Journal for the Philosophy of Science 73 (4):987-1020.
    The search for the statistical mechanical underpinning of thermodynamic irreversibility has so far focussed on the spontaneous approach to equilibrium. But this is the search for the underpinning of what Brown and Uffink have dubbed the ‘minus first law’ of thermodynamics. In contrast, the second law tells us that certain interventions on equilibrium states render the initial state ‘irrecoverable’. In this article, I discuss the unusual nature of processes in thermodynamics, and the type of irreversibility that the second (...)
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  4.  85
    Leibniz and the First Law of Thermodynamics.Kateřina Lochmanová - 2024 - Teorie Vědy / Theory of Science 46 (1):89-114.
    The article presents the German philosopher G. W. Leibniz as a key precursor of the First Law of Thermodynamics. In this way, Leibniz tried to oppose Newton, who seems to have completely rejected the First Law of Thermodynamics, while at the same time remarkably anticipating the Second. Based on his polemics not only with Newton, from whose Laws of Motion thermodynamics originates, and with his advocate Samuel Clarke, but also with René Descartes, whose conception Leibniz partially followed, (...)
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  5. The Second Law of Thermodynamics and the Psychological Arrow of Time.Meir Hemmo & Orly Shenker - 2019 - British Journal for the Philosophy of Science 73 (1):85-107.
    Can the second law of thermodynamics explain our mental experience of the direction of time? According to an influential approach, the past hypothesis of universal low entropy also explains how the psychological arrow comes about. We argue that although this approach has many attractive features, it cannot explain the psychological arrow after all. In particular, we show that the past hypothesis is neither necessary nor sufficient to explain the psychological arrow on the basis of current physics. We propose two (...)
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  6. Kuhn’s ‘5th Law of Thermodynamics’: Measurement, Data, and Anomalies.Alisa Bokulich & Federica Bocchi - 2024 - In K. Brad Wray (ed.), Kuhn's The Structure of Scientific Revolutions at 60. Cambridge University Press.
    We reconstruct Kuhn’s philosophy of measurement and data paying special attention to what he calls the “fifth law of thermodynamics”. According to this "law," there will always be discrepancies between experimental results and scientists’ prior expectations. The history of experiments to determine the values of the fundamental constants offers a striking illustration of Kuhn’s fifth law of thermodynamics, with no experiment giving quite the expected result. We highlight the synergy between Kuhn’s view and the systematic project of iteratively (...)
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  7.  26
    A Physical Basis for the Second Law of Thermodynamics: Quantum Nonunitarity.Ruth Kastner - unknown
    It is argued that if the non-unitary measurement transition, as codified by Von Neumann, is a real physical process, then the ‘probability assumption’ needed to derive the Second Law of Thermodynamics naturally enters at that point. The existence of a real, indeterministic physical process underlying the measurement transition would therefore provide an ontological basis for Boltzmann’s Stosszahlansatz and thereby explain the unidirectional increase of entropy against a backdrop of otherwise time-reversible laws. It is noted that the Transactional Interpretation of (...)
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  8. The Second Law of Thermodynamics: Foundations and Status. [REVIEW]D. P. Sheehan - 2007 - Foundations of Physics 37 (12):1653-1658.
    Over the last 10–15 years the second law of thermodynamics has undergone unprecedented scrutiny, particularly with respect to its universal status. This brief article introduces the proceedings of a recent symposium devoted to this topic, The second law of thermodynamics: Foundations and Status, held at University of San Diego as part of the 87th Annual Meeting of the Pacific Division of the AAAS (June 19–22, 2006). The papers are introduced under three themes: ideal gases, quantum perspectives, and interpretation. (...)
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  9.  65
    A fourth law of robotics? Copyright and the law and ethics of machine co-production.Burkhard Schafer, David Komuves, Jesus Manuel Niebla Zatarain & Laurence Diver - 2015 - Artificial Intelligence and Law 23 (3):217-240.
    Jon Bing was not only a pioneer in the field of artificial intelligence and law and the legal regulation of technology. He was also an accomplished author of fiction, with an oeuvre spanning from short stories and novels to theatre plays and even an opera. As reality catches up with the imagination of science fiction writers who have anticipated a world shared by humans and non-human intelligences of their creation, some of the copyright issues he has discussed in his academic (...)
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  10.  29
    Henry Adams, the Second Law of Thermodynamics, and the Course of History.Keith R. Burich - 1987 - Journal of the History of Ideas 48 (3):467.
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  11.  32
    Conceptual polymorphism of entropy into the history: extensions of the second law of thermodynamics towards statistical physics and chemistry during nineteenth–twentieth centuries.Raffaele Pisano, Emilio Marco Pellegrino, Abdelkader Anakkar & Maxime Nagels - 2021 - Foundations of Chemistry 23 (3):337-378.
    After the birth of thermodynamics’ second principle—outlined in Carnot's Réflexions sur la puissance motrice du feu —several studies provided new arguments in the field. Mainly, they concerned the thermodynamics’ first principle—including energy conceptualisation—, the analytical aspects of the heat propagation, the statistical aspects of the mechanical theory of heat. In other words, the second half of nineteenth century was marked by an intense interdisciplinary research activity between physics and chemistry: new disciplines applied to the heat developed in the (...)
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  12.  22
    Antimatter and the Second Law of Thermodynamics.Gábor Etesi - 2020 - Foundations of Science 26 (2):217-224.
    In this short paper we make a proposal that the second law of thermodynamics holds true for a closed physical system consisting of pure antimatter in the thermodynamical limit, but in a reversed form. We give two plausible arguments in favour to this proposal: one refers to the CPT theorem of relativistic quantum field theories while the other one is based on general thermodynamical arguments. However in our understanding the ultimate validity or invalidity of this idea can be decided (...)
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  13.  23
    The Zeroth Law of Thermodynamics in Special Relativity.L. Gavassino - 2020 - Foundations of Physics 50 (11):1554-1586.
    We critically revisit the definition of thermal equilibrium, in its operational formulation, provided by standard thermodynamics. We show that it refers to experimental conditions which break the covariance of the theory at a fundamental level and that, therefore, it cannot be applied to the case of moving bodies. We propose an extension of this definition which is manifestly covariant and can be applied to the study of isolated systems in special relativity. The zeroth law of thermodynamics is, then, (...)
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  14.  80
    Complexity Theory.Michael Strevens - 2014 - In Paul Humphreys (ed.), The Oxford Handbook of Philosophy of Science. New York, NY, USA: Oxford University Press.
    Complexity theory attempts to explain, at the most general possible level, the interesting behaviors of complex systems. Two such behaviors are the emergence of simple or stable high-level behavior from relatively complex low-level behavior, and the emergence of sophisticated high-level behavior from relatively simple low-level behavior; they are often found nested in the same system. Concerning the emergence of simplicity, this essay examines Herbert Simon's explanation from near-decomposability and a stochastic explanation that generalizes the approach of statistical physics. A more (...)
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  15. Insights into the Second Law of Thermodynamics from Anisotropic Gas-Surface Interactions.S. L. Miller - 2007 - Foundations of Physics 37 (12):1660-1684.
    Thermodynamic implications of anisotropic gas-surface interactions in a closed molecular flow cavity are examined. Anisotropy at the microscopic scale, such as might be caused by reduced-dimensionality surfaces, is shown to lead to reversibility at the macroscopic scale. The possibility of a self-sustaining nonequilibrium stationary state induced by surface anisotropy is demonstrated that simultaneously satisfies flux balance, conservation of momentum, and conservation of energy. Conversely, it is also shown that the second law of thermodynamics prohibits anisotropic gas-surface interactions in “equilibrium”, (...)
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  16.  17
    R.G. Collingwood & Second Law of Thermodynamics.S. Helgeby - 2017 - Collingwood and British Idealism Studies 23 (2):225-245.
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  17. Everettian Formulation of the Second Law of Thermodynamics.Yu Feng - manuscript
    The second law of thermodynamics is traditionally interpreted as a coarse-grained result of classical mechanics. Recently its relation with quantum mechanical processes such as decoherence and measurement has been revealed in literature. In this paper we will formulate the second law and the associated time irreversibility following Everett’s idea: systems entangled with an object getting to know the branch in which they live. Accounting for this self-locating knowledge, we get two forms of entropy: objective entropy measuring the uncertainty of (...)
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  18. A unified quantum theory of mechanics and thermodynamics. Part I. Postulates.George N. Hatsopoulos & Elias P. Gyftopoulos - 1976 - Foundations of Physics 6 (1):15-31.
    A unified axiomatic theory that embraces both mechanics and thermodynamics is presented in three parts. It is based on four postulates; three are taken from quantum mechanics, and the fourth is the new disclosure of the existence of quantum states that are stable (Part I). For nonequilibrium and equilibrium states, the theory provides general original results, such as the relation between irreducible density operators and the maximum work that can be extracted adiabatically (Part IIa). For stable equilibrium states, (...)
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  19. The Spin-Echo Experiments and the Second Law of Thermodynamics.T. M. Ridderbos & M. L. G. Redhead - 1998 - Foundations of Physics 28 (8):1237-1270.
    We introduce a simple model for so-called spin-echo experiments. We show that the model is a mincing system. On the basis of this model we study fine-grained entropy and coarse-grained entropy descriptions of these experiments. The coarse-grained description is shown to be unable to provide an explanation of the echo signals, as a result of the way in which it ignores dynamically generated correlations. This conclusion is extended to the general debate on the foundations of statistical mechanics. We emphasize the (...)
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  20.  89
    The mind body problem and the second law of thermodynamics.Harold J. Morowitz - 1987 - Biology and Philosophy 2 (3):271-275.
    Cartesian mind body dualism and modern versions of this viewpoint posit a mind thermodynamically unrelated to the body but informationally interactive. The relation between information and entropy developed by Leon Brillouin demonstrates that any information about the state of a system has entropic consequences. It is therefore impossible to dissociate the mind's information from the body's entropy. Knowledge of that state of the system without an energetically significant measurement would lead to a violation of the second law of thermodynamics.
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  21. Bluff Your Way in the Second Law of Thermodynamics.Jos Uffink - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (3):305-394.
    The aim of this article is to analyse the relation between the second law of thermodynamics and the so-called arrow of time. For this purpose, a number of different aspects in this arrow of time are distinguished, in particular those of time-reversal (non-)invariance and of (ir)reversibility. Next I review versions of the second law in the work of Carnot, Clausius, Kelvin, Planck, Gibbs, Caratheodory and Lieb and Yngvason, and investigate their connection with these aspects of the arrow of time. (...)
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  22. Validity of the Generalized Second Law of Thermodynamics in the Logamediate and Intermediate Scenarios of the Universe.Arundhati Das, Surajit Chattopadhyay & Ujjal Debnath - 2012 - Foundations of Physics 42 (2):266-283.
    In this work, we have investigated the validity of the generalized second law of thermodynamics in logamediate and intermediate scenarios of the universe bounded by the Hubble, apparent, particle and event horizons using and without using first law of thermodynamics. We have observed that the GSL is valid for Hubble, apparent, particle and event horizons of the universe in the logamediate scenario of the universe using first law and without using first law. Similarly the GSL is valid for (...)
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  23. Instructionism is impossible due to the second law of thermodynamics.Halvor Naess - 2003 - Journal of Mind and Behavior 24 (1):57-66.
    Spiders’ nests, birds’ wings, airplanes, and scientific theories are all instances of adaptations. Instructionist theories implies that adaptive novelties are imposed directly on an entity by the environment while selectionist theories explains adaptive novelties to be the product of mechanisms including trial and error . This article argues that adaptive novelties are the result of selectionist mechanisms while instructionist production of adaptive novelties is impossible due to the second law of thermodynamics. Even long-term preservation of adaptive information is dependent (...)
     
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  24. Macroscopic Form of the First Law of Thermodynamics for an Adibatically Evolving Non-singular Self-gravitating Fluid.Abhas Mitra - 2011 - Foundations of Physics 41 (9):1454-1461.
    We emphasize that the pressure related work appearing in a general relativistic first law of thermodynamics should involve proper volume element rather than coordinate volume element. This point is highlighted by considering both local energy momentum conservation equation as well as particle number conservation equation. It is also emphasized that we are considering here a non-singular fluid governed by purely classical general relativity. Therefore, we are not considering here any semi-classical or quantum gravity which apparently suggests thermodynamical properties even (...)
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  25.  13
    The Second Law of Thermodynamics in the Context of Contemporary Physical Research.Ivan A. Karpenko - 2020 - Epistemology and Philosophy of Science 57 (3):142-159.
    The second law results in the growth of the entropy – in superficial interpretation this principle presumes that the sufficient energy inevitably turns into the substandard energy. Order turns into chaos over time; however, chaos also turns into order under certain circumstances. The first research objective is to establish the possible prescientific ideas about the phenomenon – some philosophical intuitions that have preceded the scientific discovery of the second law and have conformed to it in a certain sense. It is (...)
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  26. A challenge to the second law of thermodynamics from cognitive science and vice versa.Meir Hemmo & Orly Shenker - 2021 - Synthese 199 (1-2):4897-4927.
    We show that the so-called Multiple-Computations Theorem in cognitive science and philosophy of mind challenges Landauer’s Principle in physics. Since the orthodox wisdom in statistical physics is that Landauer’s Principle is implied by, or is the mechanical equivalent of, the Second Law of thermodynamics, our argument shows that the Multiple-Computations Theorem challenges the universal validity of the Second Law of thermodynamics itself. We construct two examples of computations carried out by one and the same dynamical process with respect (...)
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  27.  25
    Peirce's Cosmology and the Laws of Thermodynamics.Andrew Reynolds - 1996 - Transactions of the Charles S. Peirce Society 32 (3):403 - 423.
  28.  16
    Can one be a realist with respect to the laws of thermodynamics?Edgar Eduardo Rojas Durán - 2020 - Ideas Y Valores 69 (172):103-124.
    RESUMEN En el estudio de las teorías filosóficas sobre las leyes naturales, se ha prestado poca atención a las leyes de la termodinámica. El artículo busca aplicar los marcos conceptuales de tres teorías relevantes, la universalista, la disposicionalista y la contrafactualista, para reformular dichas leyes, y mostrar cómo los marcos conceptuales de las dos primeras no resultan adecuados para tal reformulación, pero sí lo es el de la tercera. Si esta teoría se considera realista, se puede ser realista en este (...)
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  29. On the statistical viewpoint concerning the 2nd law of thermodynamics - OR - a reminder on the ehrenfests' urm model.Domenico Giulini - unknown
    In statistical thermodynamics the 2nd law is properly spelled out in terms of conditioned probabilities. As such it makes the statement, that `entropy increases with time' without preferring a time direction. In this paper we try to explain this statement---which is well known since the time of the Ehrenfests---in some detail within a systematic Bayesian approach.
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  30. Introduction to the Philosophy of Statistical Mechanics: Can Probability Explain the Arrow of Time in the Second Law of Thermodynamics?Orly Shenker & Meir Hemmo - 2011 - Philosophy Compass 6 (9):640-651.
    The arrow of time is a familiar phenomenon we all know from our experience: we remember the past but not the future and control the future but not the past. However, it takes an effort to keep records of the past, and to affect the future. For example, it would take an immense effort to unmix coffee and milk, although we easily mix them. Such time directed phenomena are sub- sumed under the Second Law of Thermodynamics. This law characterizes (...)
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  31. On the modeling of emergent interaction: Which will it be, the laws of thermodynamics or Sperry's "wheel" in the subcircuitry?Larry R. Vandervert - 1991 - Journal of Mind and Behavior 12 (4):535-39.
    Weaknesses in Roger Sperry's "Defense of Mentalism" that appeared in the Spring issue of JMB are described. Sperry's clarification of his mentalist position still appears to lack a plausible mechanism of interaction. The wheel rolling down hill analogy is described as "a ghost in the subcircuitry." Neurological Positivism's energetic mechanism of brain-mind interaction is summarized. The relatioship of systems theory to reductionism is described briefly in terms of NP.
     
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  32. Boltzmann's Approach to Statistical Mechanics.Sheldon Goldstein - unknown
    In the last quarter of the nineteenth century, Ludwig Boltzmann explained how irreversible macroscopic laws, in particular the second law of thermodynamics, originate in the time-reversible laws of microscopic physics. Boltzmann’s analysis, the essence of which I shall review here, is basically correct. The most famous criticisms of Boltzmann’s later work on the subject have little merit. Most twentieth century innovations – such as the identification of the state of a physical system with a probability distribution on its phase (...)
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  33.  72
    On the Fourth Law of Nature.Travis D. Smith - 2003 - Hobbes Studies 16 (1):84-94.
  34.  27
    An assessment of the fourth law of Kuryłowicz: does prototypicality of meaning affect language change?Isabeau De Smet - 2023 - Cognitive Linguistics 34 (2):261-296.
    According to the (in)famous fourth law of Kuryłowicz (K4), when a morphological doublet arises in a language, the newer form becomes associated with the prototypical, basic meaning, while the old form takes a secondary meaning. This paper takes a first attempt at a more thorough inquiry of K4 to assess whether prototypicality of meaning has an effect on morphological change. Three studies on historical Dutch are taken on: -enversus -splurals, the apocope of schwa and the apocope of -de.The effects (...)
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  35.  30
    Fermi’s Golden Rule and the Second Law of Thermodynamics.D. Braak & J. Mannhart - 2020 - Foundations of Physics 50 (11):1509-1540.
    We present a Gedankenexperiment that leads to a violation of detailed balance if quantum mechanical transition probabilities are treated in the usual way by applying Fermi’s “golden rule”. This Gedankenexperiment introduces a collection of two-level systems that absorb and emit radiation randomly through non-reciprocal coupling to a waveguide, as realized in specific chiral quantum optical systems. The non-reciprocal coupling is modeled by a hermitean Hamiltonian and is compatible with the time-reversal invariance of unitary quantum dynamics. Surprisingly, the combination of non-reciprocity (...)
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  36.  65
    Engines and Acolytes of Consumption: Black Male Bodies, Advertising and the Laws of Thermodynamics.Matthew Soar - 2001 - Body and Society 7 (4):37-55.
    An investigation into the historical development of Nike's award-winning advertising campaigns in the US reveals that, over the last decade or so, African-American athletes have become their almost exclusive focus. However, these ads have increasingly centered not on black personalities per se, but on the aesthetic, affective and visceral manifestations of skin, musculature and sweat. Black bodies in advertising are rarely to be seen at rest, unless in a state of exhaustion (from which the requisite product alone can provide relief). (...)
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  37. Van den Berg, JH (2004). The Two Principles Laws of Thermodynamics: A Cultural and Historical Exploration.C. Thiboutot - 2006 - Journal of Phenomenological Psychology 37 (2):288.
  38.  26
    (1 other version)Grüuneisen's law and the third law of thermodynamics.Martin J. Klein & Solomon J. Glass - 1958 - Philosophical Magazine 3 (29):538-539.
  39.  24
    The reversibility objection against the Second Law of thermodynamics viewed, and avoided, from a logical point of view.Thomas Müller - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 66:52-61.
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  40.  20
    The Laws of Image-Nation: Brazilian Racial Tropes and the Shadows of the Slave Quarters.Marcus Matos & Mauricio Lissovsky - 2018 - Law and Critique 29 (2):173-200.
    The commemorative edition of the 80th anniversary of Casa Grande & Senzala, the founding book of Brazilian modern sociology written by Gilberto Freyre and published in 2013, shows on its cover a glamorous ‘Casa Grande’, lit like an architectural landmark, ready to serve as the set for a film or a TV soap opera. What happened to the ‘Senzala’ that appeared on the covers of the dozens of previous editions? This paper investigates, following some changes in Brazilian Visual Culture in (...)
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  41.  24
    On Quantum Non-Unitarity as a Basis for the Second Law of Thermodynamics.Ruth Kastner - unknown
    It was first suggested by Albert that the existence of real, physical non-unitarity at the quantum level would yield a complete explanation for the increase of entropy over time in macroscopic systems. An alternative understanding of the source of non-unitarity is presented herein, in terms of the Transactional Interpretation. The present model provides a specific physical justification for Boltzmann’s Stosszahlansatz, thereby changing its status from an ad hoc postulate to a theoretically grounded result, without requiring any change to the basic (...)
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  42. Information Loss as a Foundational Principle for the Second Law of Thermodynamics.T. L. Duncan & J. S. Semura - 2007 - Foundations of Physics 37 (12):1767-1773.
    In a previous paper (Duncan, T.L., Semura, J.S. in Entropy 6:21, 2004) we considered the question, “What underlying property of nature is responsible for the second law?” A simple answer can be stated in terms of information: The fundamental loss of information gives rise to the second law. This line of thinking highlights the existence of two independent but coupled sets of laws: Information dynamics and energy dynamics. The distinction helps shed light on certain foundational questions in statistical mechanics. For (...)
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  43.  41
    Masanes and Oppenheim on the Third Law of Thermodynamics.Jos Uffink - 2017 - Foundations of Physics 47 (7):871-872.
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  44. Statistical mechanical proof of the second law of thermodynamics based on volume entropy.Michele Campisi - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (1):181-194.
    In a previous work (M. Campisi. Stud. Hist. Phil. M. P. 36 (2005) 275-290) we have addressed the mechanical foundations of equilibrium thermodynamics on the basis of the Generalized Helmholtz Theorem. It was found that the volume entropy provides a good mechanical analogue of thermodynamic entropy because it satisfies the heat theorem and it is an adiabatic invariant. This property explains the ``equal'' sign in Clausius principle ($S_f \geq S_i$) in a purely mechanical way and suggests that the volume (...)
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  45. Quantum Paradoxes, Time, and Derivation of Thermodynamic Law: Opportunities from Change of Energy Paradigm.Helmut Tributsch - 2006 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 37 (2):287-306.
    Well known quantum and time paradoxes, and the difficulty to derive the second law of thermodynamics, are proposed to be the result of our historically grown paradigm for energy: it is just there, the capacity to do work, not directly related to change. When the asymmetric nature of energy is considered, as well as the involvement of energy turnover in any change, so that energy can be understood as fundamentally "dynamic", and time-oriented, these paradoxes and problems dissolve. The most (...)
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  46. Planck, Ostwald, and the Second Law of Thermodynamics.Robert J. Deltete - 2012 - Hopos: The Journal of the International Society for the History of Philosophy of Science 2 (1):121-146.
  47.  24
    Mona Lisa and the second law of thermodynamics: The arts and sciences.Harold Morowitz - 2004 - Complexity 9 (6):13-14.
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  48. Entanglement theory and the second law of thermodynamics.Martin Plenio - unknown
    Entangled quantum systems can be harnessed to transmit, store, and manipulate information in a more efficient and secure way than possible in the realm of classical physics. Given this resource character of entanglement, it is an important problem to characterize ways to manipulate it and meaningful approaches to its quantification. This is the objective of entanglement theory.
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  49.  44
    Claudius' discovery of the first two laws of thermodynamics. A paradigm of reasoning from inconsistencies.Joke Meheus - 1999 - Philosophica 63 (1):89-117.
  50.  51
    The mereology of thermodynamic equilibrium.Michael te Vrugt - 2021 - Synthese 199 (5-6):12891-12921.
    The special composition question, which asks under which conditions objects compose a further object, establishes a central debate in modern metaphysics. Recent successes of inductive metaphysics, which studies the implications of the natural sciences for metaphysical problems, suggest that insights into the SCQ can be gained by investigating the physics of composite systems. In this work, I show that the minus first law of thermodynamics, which is concerned with the approach to equilibrium, leads to a new approach to the (...)
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