Results for 'E. A. Maxwell'

946 found
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  1. A Multi-scale View of the Emergent Complexity of Life: A Free-energy Proposal.Casper Hesp, Maxwell Ramstead, Axel Constant, Paul Badcock, Michael David Kirchhoff & Karl Friston - forthcoming - In Michael Price & John Campbell (eds.), Evolution, Development, and Complexity: Multiscale Models in Complex Adaptive Systems.
    We review some of the main implications of the free-energy principle (FEP) for the study of the self-organization of living systems – and how the FEP can help us to understand (and model) biotic self-organization across the many temporal and spatial scales over which life exists. In order to maintain its integrity as a bounded system, any biological system - from single cells to complex organisms and societies - has to limit the disorder or dispersion (i.e., the long-run entropy) of (...)
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  2. (2 other versions)Has Science Established that the Cosmos is Physically Comprehensible?Nicholas Maxwell - 2013 - In Recent Advances in Cosmology. Nova Science Publishers. pp. 1-56.
    Most scientists would hold that science has not established that the cosmos is physically comprehensible – i.e. such that there is some as-yet undiscovered true physical theory of everything that is unified. This is an empirically untestable, or metaphysical thesis. It thus lies beyond the scope of science. Only when physics has formulated a testable unified theory of everything which has been amply corroborated empirically will science be in a position to declare that it has established that the cosmos is (...)
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  3. A Review of Two Derivations of Maxwell-Dirac Isomorphism and a Few Plausible Extensions.Florentin Smarandache - manuscript
    The problem of the formal connection between electrodynamics and wave mechanics has attracted the attention of a number of authors, especially there are some existing proofs on Maxwell-Dirac isomorphism. Here the author will review two derivations of Maxwell-Dirac isomorphism i.e. by Hans Sallhofer and Volodimir Simulik. A few plausible extensions will be discussed too.
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  4. Newton, Ampère, Maxwell, Einstein: sulla deduzione dei fenomeni.Salvo D.’Agostino - 2012 - In Vincenzo Fano, Enrico Giannetto, Giulia Giannini & Pierluigi Graziani (eds.), Complessità e Riduzionismo. ISONOMIA - Epistemologica Series Editor. pp. 54-64.
    Il tema della complessità della scienza è stato da qualche decennio oggetto di una vasta letteratura sia sul versante più strettamente scientifico, sia sul piano filosofico. Un argomento emerso con notevole interesse ha riguardato un aspetto della complessità inteso come rinuncia a una generalizzazione dei procedimenti assiomatico-deduttivi come metodo generale della ricerca scientifica. È stata espressa la convinzione che la fisica pre-relativistica sia stata fondata prevalentemente sul trionfo di questo metodo, sulla scia, fra l’altro, della gloriosa tradizione dei Principia newtoniani. (...)
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  5. Complessità e Riduzionismo.Vincenzo Fano, Enrico Giannetto, Giulia Giannini & Pierluigi Graziani - 2012 - ISONOMIA - Epistemologica Series Editor.
    The enormous increasing of connections between people and the noteworthy enlargement of domains and methods in sciences have augmented extraordinarily the cardinality of the set of meaningful human symbols. We know that complexity is always on the way to become complication, i.e. a non-tractable topic. For this reason scholars engage themselves more and more in attempting to tame plurality and chaos. In this book distinguished scientists, philosophers and historians of science reflect on the topic from a multidisciplinary point of view. (...)
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  6. A Remark on how a Consciousness Model and Entanglement can lead us to Quantum Communication.Victor Christianto, Robert N. Boyd & Florentin Smarandache - manuscript
    In a recent paper, we describe how a model of quantum communication based on combining consciousness experiment and entanglement can serve as impetus to stop 5G-caused diseases. Therefore, in this paper we will discuss how entanglement can be explained in terms of quantum theory. This short review may be considered as an effort to bring QM into real problem solving, i.e. telecommunication.
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  7. How Many Points are there in a Line Segment? – A new answer from Discrete-Cellular Space viewpoint.Victor Christianto & Florentin Smarandache - manuscript
    While it is known that Euclid’s five axioms include a proposition that a line consists at least of two points, modern geometry avoid consistently any discussion on the precise definition of point, line, etc. It is our aim to clarify one of notorious question in Euclidean geometry: how many points are there in a line segment? – from discrete-cellular space (DCS) viewpoint. In retrospect, it may offer an alternative of quantum gravity, i.e. by exploring discrete gravitational theories. To elucidate our (...)
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  8.  93
    Bản tin giáo dục đại học năm 2020.V. H. E. A. R. Team - 2020 - Nghiên Cứu Đề Xuất Các Giải Pháp Nâng Cao Chất Lượng Nguồn Nhân Lực Việt Nam Trong Cơ Chế Thị Trường.
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  9. Brief Account of How Nicholas Maxwell Came to Argue for the Urgent Need for a Revolution in Universities.Nicholas Maxwell - manuscript
    We need urgently to bring about a revolution in universities around the world, wherever possible, so that they take their fundamental task to be, not to acquire and apply knowledge, but rather to help humanity learn how to resolve conflicts and problems of living in increasingly cooperatively rational ways, so that we may make progress towards a good, genuinely civilized, wise world. The pursuit of knowledge would be a vital but subsidiary task. I have argued for the urgent need for (...)
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  10. Method of informational risk range evaluation in decision making.Zinchenko A. O., Korolyuk N. O., Korshets E. A. & Nevhad S. S. - 2020 - Artificial Intelligence Scientific Journal 25 (3):38-44.
    Looks into evaluation of information provision probability from different sources, based on use of linguistic variables. Formation of functions appurtenant for its unclear variables provides for adoption of decisions by the decision maker, in conditions of nonprobabilistic equivocation. The development of market relations in Ukraine increases the independence and responsibility of enterprises in justifying and making management decisions that ensure their effective, competitive activities. As a result of the analysis, it is determined that the condition of economic facilities can be (...)
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  11. Teoria specială a relativității.Nicolae Sfetcu - 2018 - Drobeta Turnu Severin: MultiMedia Publishing.
    Teoria relativității speciale a fost propusă în 1905 de Albert Einstein în articolul său "Despre electrodinamica corpurilor în mișcare". Titlul articolului se referă la faptul că relativitatea rezolvă o neconcordanță între ecuațiile lui Maxwell și mecanica clasică. Teoria se bazează pe două postulate: (1) că formele matematice ale legilor fizicii sunt invariabile în toate sistemele inerțiale; și (2) că viteza luminii în vid este constantă și independentă de sursă sau observator. Reconcilierea cele două postulate necesită o unificare a spațiului (...)
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  12. Our Fundamental Problem: A Revolutionary Approach to Philosophy.Nicholas Maxwell - 2020 - Montreal, Canada: McGill-Queen's University Press.
    How can the world we live in and see, touch, hear, and smell, the world of living things, people, consciousness, free will, meaning, and value - how can all of this exist and flourish embedded as it is in the physical universe, made up of nothing but physical entities such as electrons and quarks? How can anything be of value if everything in the universe is, ultimately, just physics? In Our Fundamental Problem Nicholas Maxwell argues that this problem of (...)
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  13. What Lakatos Overlooked: A Metaphysical “Hard Core” of Unity for Science.Nicholas Maxwell - unknown
    Lakatos held that science proceeds by means of competing research programme, each with its own “hard core” or paradigm. He intended this view to reconcile the competing views of Kuhn and Popper. But what Lakatos overlooked is that science needs to be construed to be one gigantic research programme with, as its “hard core”, a metaphysical thesis that asserts that the universe is such that there is an inherent unity in the laws that govern the way physical phenomena occur. The (...)
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  14. Plasma Brain Dynamics (PBD): A Mechanism for EEG Waves Under Human Consciousness.Z. G. ma - 2017 - Cosmos and History 13 (2):185-203.
    EEG signals are records of nonlinear solitary waves in human brains. The waves have several types (e.g., α, β, γ, θ, δ) in response to different levels of consciousness. They are classified into two groups: Group-1 consists of complex storm-like waves (α, β, and γ); Group-2 is composed of simple quasilinear waves (θ and δ). In order to elucidate the mechanism of EEG wave formation and propagation, this paper extends the Vlasov-Maxwell equations of Plasma Brain Dynamics (PBD) to a (...)
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  15. Movimentos e mobilizações sociais: originalidade e desafios.A. Duque, E. & Calheiros - 2017 - População E Sociedade 27:170-186.
    Resumo: A crise na União Europeia e os programas de austeridade subsequentes fizeram emergir uma miríade de movimentos sociais, diversos na sua natureza e nos seus propósitos. O que se pretende aferir neste artigo é a relação e a conexão existentes entre o Estado, o poder económico, a sociedade civil e os movimentos sociais neste contexto específico de crise. Procuraremos, nesta breve abordagem, explanar alguns elementos de originalidade intrínsecos aos movimentos sociais hodiernos, patentes na sua forma de participação e organização, (...)
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  16. The Need for a Revolution in the Philosophy of Science.Nicholas Maxwell - 2002 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 33 (2):381-408.
    There is a need to bring about a revolution in the philosophy of science, interpreted to be both the academic discipline, and the official view of the aims and methods of science upheld by the scientific community. At present both are dominated by the view that in science theories are chosen on the basis of empirical considerations alone, nothing being permanently accepted as a part of scientific knowledge independently of evidence. Biasing choice of theory in the direction of simplicity, unity (...)
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  17. Our Fundamental Problem: A Revolution for Philosophy and the World.Nicholas Maxwell - 2021 - Humanities, Arts, and Society Magazine 3.
    How can our human world – the world we experience and live in – exist and best flourish embedded as it is in the physical universe? That is Our Fundamental Problem. It encompasses all others of science, thought and life. It is the proper task of philosophy to try to improve our conjectures as to how aspects of Our Fundamental Problem are to be solved, and to encourage everyone to think, imaginatively and critically, now and again, about the problem. We (...)
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  18. Instead of Particles and Fields: A Micro Realistic Quantum "Smearon" Theory.Nicholas Maxwell - 1982 - Foundatioins of Physics 12 (6):607-631.
    A fully micro realistic, propensity version of quantum theory is proposed, according to which fundamental physical entities - neither particles nor fields - have physical characteristics which determine probabilistically how they interact with one another . The version of quantum "smearon" theory proposed here does not modify the equations of orthodox quantum theory: rather, it gives a radically new interpretation to these equations. It is argued that there are strong general reasons for preferring quantum "smearon" theory to orthodox quantum theory; (...)
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  19. The importance of getting the ethics right in a pandemic treaty.G. Owen Schaefer, Caesar A. Atuire, Sharon Kaur, Michael Parker, Govind Persad, Maxwell J. Smith, Ross Upshur & Ezekiel Emanuel - 2023 - The Lancet Infectious Diseases 23 (11):e489 - e496.
    The COVID-19 pandemic revealed numerous weaknesses in pandemic preparedness and response, including underfunding, inadequate surveillance, and inequitable distribution of countermeasures. To overcome these weaknesses for future pandemics, WHO released a zero draft of a pandemic treaty in February, 2023, and subsequently a revised bureau's text in May, 2023. COVID-19 made clear that pandemic prevention, preparedness, and response reflect choices and value judgements. These decisions are therefore not a purely scientific or technical exercise, but are fundamentally grounded in ethics. The latest (...)
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  20. Cutting God in Half - And Putting the Pieces Together Again: A New Approach to Philosophy.Nicholas Maxwell - 2010 - Pentire Press.
    Cutting God in Half argues that, in order to tackle climate change, world poverty, extinction of species and our other global problems rather better than we are doing at present we need to bring about a revolution in science, and in academia more generally. We need to put our problems of living – personal, social, global – at the heart of the academic enterprise. How our human world, imbued with meaning and value, can exist and best flourish embedded in the (...)
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  21. A mug's game? Solving the problem of induction with metaphysical presuppositions.Nicholas Maxwell - 2017 - In Karl Popper, Science and Enlightenment. London: UCL Press.
    This paper argues that a view of science, expounded and defended elsewhere, solves the problem of induction. The view holds that we need to see science as accepting a hierarchy of metaphysical theses concerning the comprehensibility and knowability of the universe, these theses asserting less and less as we go up the hierarchy. It may seem that this view must suffer from vicious circularity, in so far as accepting physical theories is justified by an appeal to metaphysical theses in turn (...)
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  22. Odera Oruka in the Twenty-first Century.Reginald M. J. Oduor, Oriare Nyarwath & Francis E. A. Owakah (eds.) - 2017 - Washington, DC: The Council for Research in Values and Philosophy.
    The late Kenyan Prof. H. Odera Oruka (1944-1995), from his base in the Department of Philosophy and Religious Studies at the University of Nairobi, contributed significantly to the growth of contemporary African philosophy, and helped locate African philosophy within the global philosophical discourse. His work in areas such as normative and applied ethics, political philosophy, epistemology, and, most notably, philosophic sagacity, continues to play a pivotal role in the current discourse on African philosophy. Prof. Oruka was also one of the (...)
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  23. Why did life emerge?Arto Annila & Annila E. Annila A. - 2008 - International Journal of Astrobiology 7 (3-4):293–300.
    Many mechanisms, functions and structures of life have been unraveled. However, the fundamental driving force that propelled chemical evolution and led to life has remained obscure. The second law of thermodynamics, written as an equation of motion, reveals that elemental abiotic matter evolves from the equilibrium via chemical reactions that couple to external energy towards complex biotic non-equilibrium systems. Each time a new mechanism of energy transduction emerges, e.g., by random variation in syntheses, evolution prompts by punctuation and settles to (...)
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  24. A comparative analysis of biomedical research ethics regulation systems in Europe and Latin America with regard to the protection of human subjects.E. Lamas, M. Ferrer, A. Molina, R. Salinas, A. Hevia, A. Bota, D. Feinholz, M. Fuchs, R. Schramm, J. -C. Tealdi & S. Zorrilla - 2010 - Journal of Medical Ethics 36 (12):750-753.
    The European project European and Latin American Systems of Ethics Regulation of Biomedical Research Project (EULABOR) has carried out the first comparative analysis of ethics regulation systems for biomedical research in seven countries in Europe and Latin America, evaluating their roles in the protection of human subjects. We developed a conceptual and methodological framework defining ‘ethics regulation system for biomedical research’ as a set of actors, institutions, codes and laws involved in overseeing the ethics of biomedical research on humans. This (...)
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  25. A graph-theoretic account of logics.A. Sernadas, C. Sernadas, J. Rasga & Marcelo E. Coniglio - 2009 - Journal of Logic and Computation 19 (6):1281-1320.
    A graph-theoretic account of logics is explored based on the general notion of m-graph (that is, a graph where each edge can have a finite sequence of nodes as source). Signatures, interpretation structures and deduction systems are seen as m-graphs. After defining a category freely generated by a m-graph, formulas and expressions in general can be seen as morphisms. Moreover, derivations involving rule instantiation are also morphisms. Soundness and completeness theorems are proved. As a consequence of the generality of the (...)
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  26. Steven Pinker defends a damagingly irrational conception of reason: Steven, Pinker. 2021. Rationality: What it is, why it seems scarce, why it matters. London: Allen Lane, 2021, xvii + 412pp, £25 HB, ISBN: 978-0-241-38027-7.Nicholas Maxwell - 2022 - Metascience 31 (1):49-52.
    In the Preface to Rationality, Steven Pinker remarks that “we are smart enough to have … articulated the rules of reason that we so often flout” (p. xiv). Unfortunately, Pinker does not get the rules of reason right in this book. Pinker defends a damagingly irrational conception of reason. But despite this rather drastic failure, there is much of interest in this book, even if at a rather elementary level.
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  27. Can Scientific Method Help Us Create a Wiser World?Nicholas Maxwell - 2016 - In Nikunj Dalal, Ali Intezari & Marty Heitz (eds.), Practical wisdom in the age of technology: insights, issues, and questions for a new millennium. New York: Routledge, Taylor & Francis Group. pp. 147-161.
    Two great problems of learning confront humanity: (1) learning about the universe, and about ourselves as a part of the universe, and (2) learning how to make progress towards as good a world as possible. We solved the first problem when we created modern science in the 17th century, but we have not yet solved the second problem. This puts us in a situation of unprecedented danger. Modern science and technology enormously increase our power to act, but not our power (...)
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  28. a variational approach to niche construction.Axel Constant, Maxwell Ramstead, Samuel Veissière, John Campbell & Karl Friston - 2018 - Journals of the Royal Society Interface 15:1-14.
    In evolutionary biology, niche construction is sometimes described as a genuine evolutionary process whereby organisms, through their activities and regulatory mechanisms, modify their environment such as to steer their own evolutionary trajectory, and that of other species. There is ongoing debate, however, on the extent to which niche construction ought to be considered a bona fide evolutionary force, on a par with natural selection. Recent formulations of the variational free-energy principle as applied to the life sciences describe the properties of (...)
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  29. How Wisdom Can Help Solve Global Problems.Nicholas Maxwell - 2019 - In R. Sternberg, H. Nusbaum & J. Glueck (eds.), Applying Wisdom to Contemporary World Problems. Palgrave Macmillan. pp. 337-380.
    Two great problems of learning confront humanity: learning about the nature of the universe and about ourselves and other living things as a part of the universe, and learning how to become civilized. The first problem was solved, in essence, in the 17th century, with the creation of modern science. But the second problem has not yet been solved. Solving the first problem without also solving the second puts us in a situation of great danger. All our current global problems (...)
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  30.  59
    A genealogical map of the concept of habit.Xabier E. Barandiaran & Ezequiel A. Di Paolo - 2014 - Frontiers in Human Neuroscience 8 (522):1--7.
    The notion of information processing has dominated the study of the mind for over six decades. However, before the advent of cognitivism, one of the most prominent theoretical ideas was that of Habit. This is a concept with a rich and complex history, which is again starting to awaken interest, following recent embodied, enactive critiques of computationalist frameworks. We offer here a very brief history of the concept of habit in the form of a genealogical network-map. This serves to provide (...)
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  31. A critique of Popper's views on scientific method.Nicholas Maxwell - 1972 - Philosophy of Science 39 (2):131-152.
    This paper considers objections to Popper's views on scientific method. It is argued that criticism of Popper's views, developed by Kuhn, Feyerabend, and Lakatos, are not too damaging, although they do require that Popper's views be modified somewhat. It is argued that a much more serious criticism is that Popper has failed to provide us with any reason for holding that the methodological rules he advocates give us a better hope of realizing the aims of science than any other set (...)
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  32. From knowledge to wisdom: a revolution in the aims and methods of science.Nicholas Maxwell - 1984 - Oxford: Blackwell.
    This book argues for the need to put into practice a profound and comprehensive intellectual revolution, affecting to a greater or lesser extent all branches of scientific and technological research, scholarship and education. This intellectual revolution differs, however, from the now familiar kind of scientific revolution described by Kuhn. It does not primarily involve a radical change in what we take to be knowledge about some aspect of the world, a change of paradigm. Rather it involves a radical change in (...)
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  33. The Comprehensibility of the Universe: A New Conception of Science.Nicholas Maxwell - 1998 - Oxford, GB: Oxford University Press UK.
    The Comprehensibility of the Universe puts forward a radically new conception of science. According to the orthodox conception, scientific theories are accepted and rejected impartially with respect to evidence, no permanent assumption being made about the world independently of the evidence. Nicholas Maxwell argues that this orthodox view is untenable. He urges that in its place a new orthodoxy is needed, which sees science as making a hierarchy of metaphysical assumptions about the comprehensibility and knowability of the universe, these (...)
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  34. Questioning the free will comprehension question.E. Cokely & A. Feltz - 2010 - In S. Ohlsson & R. Catrambone (eds.), Proceedings of the 32nd Annual Conference of the Cognitive Science Society. Cognitive Science Society. pp. 2440--2445.
    Understanding the folk notion of free will and moral responsibility is important for a host of applied and theoretical issues in psychology, philosophy, and ethics. The bulk of experimental research has focused on folk intuitions concerning determinism's relation to free will and moral responsibility. However, determinism is a difficult term for many folk to understand. Accordingly researchers often use comprehension questions to identify and exclude large proportions of participants who seem to struggle with relevant concepts. Here, we document some of (...)
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  35. (1 other version)How Can We Build a Better World?Nicholas Maxwell - 1991 - In Jürgen Mittelstrass (ed.), Einheit der Wissenschaften: Internationales Kolloquium der Akademie der Wissenschaften zu Berlin, 25-27 June 1990. New York: Walter de Gruyter.
    In order to make progress with solving our grave global problems we need to bring about a revolution in academia so that problems of living are given intellectual priority, and the basic intellectual aim becomes to seek and promote wisdom, and not just acquire knowledge.
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  36. Wanted: a new way of thinking.Nicholas Maxwell - 1987 - New Scientist (14 May 1987):63.
    Our world is beset with appalling problems. To solve these urgent, intractable global problems it is not new scientific knowledge and technology that we need so much as new actions: new policies, new international relations, new institutions and social arrangements, new ways of living. The mere provision of scientific know-ledge and technological know-how cannot help much: indeed, all too often it actually makes matters worse. The dreadful truth is that science has played a crucial role, often unwittingly, in the creation (...)
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  37. A Revolution in Universities.Nicholas Maxwell - 2012 - Bedales Association and Old Bedalian Newsletter:19.
    For much of my working life I have argued, in and out of print, that we need to bring about a revolution in the aims and methods of science – and of academic inquiry more generally. Instead of giving priority to the search for knowledge, universities need to devote themselves to seeking and promoting wisdom by rational means, wisdom being the capacity to realize what is of value in life, for oneself and others, wisdom thus including knowledge, understanding and technological (...)
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  38. How to Create a Better World: Bring about a Revolution in Universities.Nicholas Maxwell - 2013 - Discussion Blog.
    In order to create a better world we need to bring about a revolution in universities so that they become devoted to helping humanity learn how to make progress towards as good a world as possible.
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  39. Quantum propensiton theory: A testable resolution of the wave/particle dilemma.Nicholas Maxwell - 1988 - British Journal for the Philosophy of Science 39 (1):1-50.
    In this paper I put forward a new micro realistic, fundamentally probabilistic, propensiton version of quantum theory. According to this theory, the entities of the quantum domain - electrons, photons, atoms - are neither particles nor fields, but a new kind of fundamentally probabilistic entity, the propensiton - entities which interact with one another probabilistically. This version of quantum theory leaves the Schroedinger equation unchanged, but reinterprets it to specify how propensitons evolve when no probabilistic transitions occur. Probabilisitic transitions occur (...)
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  40. Can Humanity Learn to become Civilized? The Crisis of Science without Civilization.Nicholas Maxwell - 2000 - Journal of Applied Philosophy 17 (1):29-44.
    Two great problems of learning confront humanity: learning about the nature of the universe and our place in it, and learning how to become civilized. The first problem was solved, in essence, in the 17th century, with the creation of modern science. But the second problem has not yet been solved. Solving the first problem without also solving the second puts us in a situation of great danger. All our current global problems have arisen as a result. What we need (...)
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  41. A New Conception of Science.Nicholas Maxwell - 2000 - Physics World 13 (8):17-18.
    When scientists choose one theory over another, they reject out of hand all those that are not simple, unified or explanatory. Yet the orthodox view of science is that evidence alone should determine what can be accepted. Nicholas Maxwell thinks he has a way out of the dilemma.
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  42. (1 other version)A New Task for the Philosophy of Science.Nicholas Maxwell - 2019 - Metaphilosophy (3):316-338.
    We philosophers of science have before us an important new task that we need urgently to take up. It is to convince the scientific community to adopt and implement a new philosophy of science that does better justice to the deeply problematic basic intellectual aims of science than that which we have at present. Problematic aims evolve with evolving knowledge, that part of philosophy of science concerned with aims and methods thus becoming an integral part of science itself. The outcome (...)
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  43. A New Look at the Quantum Mechanical Problem of Measurement.Nicholas Maxwell - 1972 - American Journal of Physics 40:1431-5..
    According to orthodox quantum mechanics, state vectors change in two incompatible ways: "deterministically" in accordance with Schroedinger's time-dependent equation, and probabilistically if and only if a measurement is made. It is argued here that the problem of measurement arises because the precise mutually exclusive conditions for these two types of transitions to occur are not specified within orthodox quantum mechanics. Fundamentally, this is due to an inevitable ambiguity in the notion of "meawurement" itself. Hence, if the problem of measurement is (...)
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  44. In Praise of Natural Philosophy: A Revolution for Thought and Life.Nicholas Maxwell - 2017 - Montreal, Canada: McGill-Queen's University Press.
    The central thesis of this book is that we need to reform philosophy and join it to science to recreate a modern version of natural philosophy; we need to do this in the interests of rigour, intellectual honesty, and so that science may serve the best interests of humanity. Modern science began as natural philosophy. In the time of Newton, what we call science and philosophy today – the disparate endeavours – formed one mutually interacting, integrated endeavour of natural philosophy: (...)
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  45. The Moving Mirrors of Music.A. E. Denham - 1999 - Music & Letters 80 (3):411-432.
    'PERHAPS WHAT is inexpressible (what I find mysterious and am not able to express)', wrote Wittgenstein, 'is the background against which whatever I could express has its meaning'. Wittgenstein's remark is a useful reminder to all who attempt to write about the nature and the value of art, for there our powers of expression often seem inadequate to the phenomena we aim to describe. In such cases it is natural to direct attention to the 'background' of aesthetic experience itself. In (...)
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  46. Commentaries on David Hodgson's "a plain person's free will".Graham Cairns-Smith, Thomas W. Clark, Ravi Gomatam, Robert H. Kane, Nicholas Maxwell, J. J. C. Smart, Sean A. Spence & Henry P. Stapp - 2005 - Journal of Consciousness Studies 12 (1):20-75.
    REMARKS ON EVOLUTION AND TIME-SCALES, Graham Cairns-Smith; HODGSON'S BLACK BOX, Thomas Clark; DO HODGSON'S PROPOSITIONS UNIQUELY CHARACTERIZE FREE WILL?, Ravi Gomatam; WHAT SHOULD WE RETAIN FROM A PLAIN PERSON'S CONCEPT OF FREE WILL?, Gilberto Gomes; ISOLATING DISPARATE CHALLENGES TO HODGSON'S ACCOUNT OF FREE WILL, Liberty Jaswal; FREE AGENCY AND LAWS OF NATURE, Robert Kane; SCIENCE VERSUS REALIZATION OF VALUE, NOT DETERMINISM VERSUS CHOICE, Nicholas Maxwell; COMMENTS ON HODGSON, J.J.C. Smart; THE VIEW FROM WITHIN, Sean Spence; COMMENTARY ON HODGSON, Henry (...)
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  47. Physics and Common Sense: A Critique of Physicalism.Nicholas Maxwell - 1966 - British Journal for the Philosophy of Science 16 (February):295-311.
    In this paper I set out to solve the problem of how the world as we experience it, full of colours and other sensory qualities, and our inner experiences, can be reconciled with physics. I discuss and reject the views of J. J. C. Smart and Rom Harré. I argue that physics is concerned only to describe a selected aspect of all that there is – the causal aspect which determines how events evolve. Colours and other sensory qualities, lacking causal (...)
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  48. Towards a Micro Realistic Version of Quantum Mechanics, Part I.Nicholas Maxwell - 1976 - Foundations of Physics 6 (3):275-292.
    This paper investigates the possibiity of developing a fully micro realistic version of elementary quantum mechanics. I argue that it is highly desirable to develop such a version of quantum mechanics, and that the failure of all current versions and interpretations of quantum mechanics to constitute micro realistic theories is at the root of many of the interpretative problems associated with quantum mechanics, in particular the problem of measurement. I put forward a propensity micro realistic version of quantum mechanics, and (...)
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  49. The Metaphysics of Science and Aim-Oriented Empiricism: A Revolution for Science and Philosophy.Nicholas Maxwell - 2018 - Cham, Switzerland: Springer Nature.
    This book gives an account of work that I have done over a period of decades that sets out to solve two fundamental problems of philosophy: the mind-body problem and the problem of induction. Remarkably, these revolutionary contributions to philosophy turn out to have dramatic implications for a wide range of issues outside philosophy itself, most notably for the capacity of humanity to resolve current grave global problems and make progress towards a better, wiser world. A key element of the (...)
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  50. How universities can help create a wiser world.Nicholas Maxwell - 2014 - Times Higher Education , No. 21 P. 30 (2136):30.
    The crisis of our times is that we have science without wisdom. Modern science and technology lead to modern industry and agriculture which in turn lead to all the great benefits of the modern world and to the global crises we face, from population growth to climate change. The fault lies, not with science, but with science dissociated from a more fundamental concern with problems of living. We urgently need to bring about a revolution in academia so that the fundamental (...)
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