Results for 'bit and qubit'

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  1. Both Classical & Quantum Information; Both Bit & Qubit: Both Physical & Transcendental Time.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (22):1-24.
    Information can be considered as the most fundamental, philosophical, physical and mathematical concept originating from the totality by means of physical and mathematical transcendentalism (the counterpart of philosophical transcendentalism). Classical and quantum information, particularly by their units, bit and qubit, correspond and unify the finite and infinite. As classical information is relevant to finite series and sets, as quantum information, to infinite ones. A fundamental joint relativity of the finite and infinite, of the external and internal is to be (...)
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  2. Open-Mindedness and Aesthetic Consciousness in Cross-Cultural Understanding.P. F. Bitting - 2003 - Journal of Thought 38 (2):49-62.
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  3. The problem of good and evil.Ralph Moriarity De Bit - 1952 - San Marcos, Calif.,: School of the Natural Order.
     
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  4.  3
    Eamonn Callan's Creating Citizens: Political Education and Liberal Democracy.Paul F. Bitting - 2000 - Paideusis: Journal of the Canadian Philosophy of Education Society 13 (1):49-54.
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    Qānūn-i shāhanshāhī.İdrîs Bitlîsî - 2008 - Tihrān: Markaz-i Pazhūhishī-i Mīrās̲-i Maktūb. Edited by Masʻūdī Ārānī & ʻAbd Allāh.
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  6. Sefer ʻEzrat avot: ḳovets dinim ṿa-halikhot be-ʻinyene ʻovdim zarim ha-meṭaplim bi-zeḳenim u-ḳeshishim.Eliyahu Biṭon - 2008 - Biryah: Eliyahu Biṭon. Edited by Eliyahu Biṭon.
     
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  7. Literatura kak forma sot︠s︡ialʹnogo poznanii︠a︡.Ivan Bit︠s︡adze - 1977 - Edited by PanaĭOt Atanasov[From Old Catalog] Gindev.
     
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  8. “Two bits less” after quantum-information conservation and their interpretation as “distinguishability / indistinguishability” and “classical / quantum”.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (46):1-7.
    The paper investigates the understanding of quantum indistinguishability after quantum information in comparison with the “classical” quantum mechanics based on the separable complex Hilbert space. The two oppositions, correspondingly “distinguishability / indistinguishability” and “classical / quantum”, available implicitly in the concept of quantum indistinguishability can be interpreted as two “missing” bits of classical information, which are to be added after teleportation of quantum information to be restored the initial state unambiguously. That new understanding of quantum indistinguishability is linked to the (...)
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    Two-Qubit Operators in No-Splitting Theorems.B. Shravan Kumar & S. Balakrishnan - 2022 - Foundations of Physics 52 (3):1-14.
    Applications of quantum mechanics in the computational and information processing tasks is a recent research interest among the researchers. Certain operations which are impossible to achieve in the description of quantum mechanics are known as no-go theorems. One such theorem is no-splitting theorem of quantum states. The no-splitting theorem states that the information in an unknown quantum bit is an inseparable entity and cannot be split into two complementary qubits. In this work, we try to find out the class of (...)
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  10. It from qubit.David Deutsch - unknown
    Of John Wheeler’s ‘Really Big Questions’, the one on which the most progress has been made is It From Bit? – does information play a significant role at the foundations of physics? It is perhaps less ambitious than some of the other Questions, such as How Come Existence?, because it does not necessarily require a metaphysical answer. And unlike, say, Why The Quantum?, it does not require the discovery of new laws of nature: there was room for hope that it (...)
     
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  11. The Quantity of Quantum Information and Its Metaphysics.Vasil Penchev - 2020 - Information Theory and Research eJournal (Elsevier: SSRN) 1 (18):1-6.
    The quantum information introduced by quantum mechanics is equivalent to that generalization of the classical information from finite to infinite series or collections. The quantity of information is the quantity of choices measured in the units of elementary choice. The qubit can be interpreted as that generalization of bit, which is a choice among a continuum of alternatives. The axiom of choice is necessary for quantum information. The coherent state is transformed into a well-ordered series of results in time (...)
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  12. Matter as Information. Quantum Information as Matter.Vasil Penchev - 2016 - Nodi. Collana di Storia Della Filosofia 2016 (2):127-138.
    Quantum information is discussed as the universal substance of the world. It is interpreted as that generalization of classical information, which includes both finite and transfinite ordinal numbers. On the other hand, any wave function and thus any state of any quantum system is just one value of quantum information. Information and its generalization as quantum information are considered as quantities of elementary choices. Their units are correspondingly a bit and a qubit. The course of time is what generates (...)
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  13. A Mathematical Model of Quantum Computer by Both Arithmetic and Set Theory.Vasil Penchev - 2020 - Information Theory and Research eJournal 1 (15):1-13.
    A practical viewpoint links reality, representation, and language to calculation by the concept of Turing (1936) machine being the mathematical model of our computers. After the Gödel incompleteness theorems (1931) or the insolvability of the so-called halting problem (Turing 1936; Church 1936) as to a classical machine of Turing, one of the simplest hypotheses is completeness to be suggested for two ones. That is consistent with the provability of completeness by means of two independent Peano arithmetics discussed in Section I. (...)
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  14. God, Logic, and Quantum Information.Vasil Penchev - 2020 - Information Theory and Research eJournal (Elsevier: SSRN) 1 (20):1-10.
    Quantum information is discussed as the universal substance of the world. It is interpreted as that generalization of classical information, which includes both finite and transfinite ordinal numbers. On the other hand, any wave function and thus any state of any quantum system is just one value of quantum information. Information and its generalization as quantum information are considered as quantities of elementary choices. Their units are correspondingly a bit and a qubit. The course of time is what generates (...)
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  15. What Is Quantum Information? Information Symmetry and Mechanical Motion.Vasil Penchev - 2020 - Information Theory and Research eJournal (Elsevier: SSRN) 1 (20):1-7.
    The concept of quantum information is introduced as both normed superposition of two orthogonal sub-spaces of the separable complex Hilbert space and in-variance of Hamilton and Lagrange representation of any mechanical system. The base is the isomorphism of the standard introduction and the representation of a qubit to a 3D unit ball, in which two points are chosen. The separable complex Hilbert space is considered as the free variable of quantum information and any point in it (a wave function (...)
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  16. Selling bits and pieces of humans to make babies: The gift of the magi revisited.Cynthia B. Cohen - 1999 - Journal of Medicine and Philosophy 24 (3):288 – 306.
    Reproductive medicine, a sector of a health care system increasingly captured by the demands of the marketplace, is enmeshed in a drive to sell certain human bits and pieces, such as gametes, cells, fetal eggs, and fetal ovaries, for reproductive purposes. The ethical objection raised by Kant and Radin to the sale of human organs -that this is incompatible with human dignity and worth - also applies to these sales. Moreover, such sales nullify the reproductive paradigm, irretrievably replacing it with (...)
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  17. The Bit (and Three Other Abstractions) Define the Borderline Between Hardware and Software.Russ Abbott - 2019 - Minds and Machines 29 (2):239-285.
    Modern computing is generally taken to consist primarily of symbol manipulation. But symbols are abstract, and computers are physical. How can a physical device manipulate abstract symbols? Neither Church nor Turing considered this question. My answer is that the bit, as a hardware-implemented abstract data type, serves as a bridge between materiality and abstraction. Computing also relies on three other primitive—but more straightforward—abstractions: Sequentiality, State, and Transition. These physically-implemented abstractions define the borderline between hardware and software and between physicality and (...)
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  18.  44
    Some bits and pieces.Robert X. Ware - 1975 - Synthese 31 (3-4):379 - 393.
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  19. Bits and Pieces of Hannibal: A Case Study for Masculine Nurturing.Ryan Wasser - manuscript
    There is a famous and important dictum reminiscent of the medieval age posited by Carl Jung in Alchemical Studies, the thirteenth volume of his collected works: in sterquiliniis invenitur—in filth it shall be found (35). Translated for modern society this might be better understood as “that which is most valuable will be found in the place you least want to look.” If there is one source in the corpus of popular culture that best typifies “the last place we would want (...)
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  20. The Symmetries of Quantum and Classical Information. The Ressurrected “Ether" of Quantum Information.Vasil Penchev - 2021 - Philosophy of Science eJournal (Elsevier: SSRN) 14 (41):1-36.
    The paper considers the symmetries of a bit of information corresponding to one, two or three qubits of quantum information and identifiable as the three basic symmetries of the Standard model, U(1), SU(2), and SU(3) accordingly. They refer to “empty qubits” (or the free variable of quantum information), i.e. those in which no point is chosen (recorded). The choice of a certain point violates those symmetries. It can be represented furthermore as the choice of a privileged reference frame (e.g. that (...)
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  21.  5
    Bits and Pieces.Lai Yunmin - 2002 - Chinese Studies in History 36 (2):63-72.
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  22.  48
    On Bits and Quanta.Jean-Michel Delhôtel - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (1):143-150.
  23.  97
    Bits and pieces of fiction.Peter Lamarque - 1984 - British Journal of Aesthetics 24 (1):53-58.
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  24. Of Bits and Logic: Cortical Columns in Learning and Memory.Robert Moss - 2006 - Journal of Mind and Behavior 27 (3-4).
    Despite the growing research and theoretical formulations tied to memory storage within the brain, the role of cortical columns has received relatively little attention. The current paper presents a theoretical formulation based on cortical columns as the binary units that contain all cortical information, and how memory and learning may occur based on the interaction patterns of columns. The described model is an extension of Lurian views, and suggests higher functions to result from the interaction of five systems. Specific mechanisms (...)
     
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  25. General Relativity and Quantum Gravity in Terms of Quantum Measure: A philosophical comment.Vasil Penchev - 2020 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 12 (17):1-37.
    The paper discusses the philosophical conclusions, which the interrelation between quantum mechanics and general relativity implies by quantum measure. Quantum measure is three-dimensional, both universal as the Borel measure and complete as the Lebesgue one. Its unit is a quantum bit (qubit) and can be considered as a generalization of the unit of classical information, a bit. It allows quantum mechanics to be interpreted in terms of quantum information, and all physical processes to be seen as informational in a (...)
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  26. Choice, Infinity, and Negation: Both Set-Theory and Quantum-Information Viewpoints to Negation.Vasil Penchev - 2020 - Logic and Philosophy of Mathematics eJournal 12 (14):1-3.
    The concepts of choice, negation, and infinity are considered jointly. The link is the quantity of information interpreted as the quantity of choices measured in units of elementary choice: a bit is an elementary choice between two equally probable alternatives. “Negation” supposes a choice between it and confirmation. Thus quantity of information can be also interpreted as quantity of negations. The disjunctive choice between confirmation and negation as to infinity can be chosen or not in turn: This corresponds to set-theory (...)
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  27. Is Mass at Rest One and the Same? A Philosophical Comment: on the Quantum Information Theory of Mass in General Relativity and the Standard Model.Vasil Penchev - 2014 - Journal of SibFU. Humanities and Social Sciences 7 (4):704-720.
    The way, in which quantum information can unify quantum mechanics (and therefore the standard model) and general relativity, is investigated. Quantum information is defined as the generalization of the concept of information as to the choice among infinite sets of alternatives. Relevantly, the axiom of choice is necessary in general. The unit of quantum information, a qubit is interpreted as a relevant elementary choice among an infinite set of alternatives generalizing that of a bit. The invariance to the axiom (...)
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  28.  9
    Information in bits and bytes. Reply to Lifson's review of ‘information theory and molecular biology’.Hubert P. Yockey - 1995 - Bioessays 17 (1):85-88.
  29. On bits and quanta - hoi-kwong lo, Sandu Popescu and Tim Spiller (eds), introduction to quantum computation and information (singapore: World scientific, 1998), XI+348 pp., ISBN 981-02-3399-X, £35, US$52. [REVIEW]M. J. - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (1):143-150.
     
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  30.  30
    “It from Bit” and Quantum Mechanics.Ali Barzegar, Afshin Shafiee & Mostafa Taqavi - 2020 - Foundations of Science 25 (2):375-384.
    John Archibald Wheeler is one of the staunchest advocates of the idea that information is more fundamental than anything else in physics. In this paper, we examine the status of this idea summarized in Wheeler’s slogan ‘it from bit’ in the context of Bohmian Mechanics and spontaneous collapse models. We will argue that any question about the status of ‘it from bit’ crucially depends on the particular interpretation of these theories one favors.
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  31. Universal Logic in terms of Quantum Information.Vasil Penchev - 2020 - Metaphilosophy eJournal (Elsevier: SSRN) 12 (9):1-5.
    Any logic is represented as a certain collection of well-orderings admitting or not some algebraic structure such as a generalized lattice. Then universal logic should refer to the class of all subclasses of all well-orderings. One can construct a mapping between Hilbert space and the class of all logics. Thus there exists a correspondence between universal logic and the world if the latter is considered a collection of wave functions, as which the points in Hilbert space can be interpreted. The (...)
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  32. Free Will in Human Behavior and Physics.Vasil Penchev - 2020 - Labor and Social Relations 30 (6):185-196.
    If the concept of “free will” is reduced to that of “choice” all physical world shares the latter quality. Anyway the “free will” can be distinguished from the “choice”: The “free will” involves implicitly a certain goal, and the choice is only the mean, by which the aim can be achieved or not by the one who determines the target. Thus, for example, an electron has always a choice but not free will unlike a human possessing both. Consequently, and paradoxically, (...)
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  33. Schroedinger's Register: Foundational Issues and Physical Realization.Stephen Pink & Stanley Martens - manuscript
    This work-in-progress paper consists of four points which relate to the foundations and physical realization of quantum computing. The first point is that the qubit cannot be taken as the basic unit for quantum computing, because not every superposition of bit-strings of length n can be factored into a string of n-qubits. The second point is that the “No-cloning” theorem does not apply to the copying of one quantum register into another register, because the mathematical representation of this copying (...)
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  34. Quantum information as the information of infinite collections or series.Vasil Penchev - 2020 - Information Theory and Research eJournal (Elsevier: SSRN) 1 (14):1-8.
    The quantum information introduced by quantum mechanics is equivalent to a certain generalization of classical information: from finite to infinite series or collections. The quantity of information is the quantity of choices measured in the units of elementary choice. The “qubit”, can be interpreted as that generalization of “bit”, which is a choice among a continuum of alternatives. The axiom of choice is necessary for quantum information. The coherent state is transformed into a well-ordered series of results in time (...)
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  35. Natural Cybernetics of Time, or about the Half of any Whole.Vasil Penchev - 2021 - Information Systems eJournal (Elsevier: SSRN) 4 (28):1-55.
    Norbert Wiener’s idea of “cybernetics” is linked to temporality as in a physical as in a philosophical sense. “Time orders” can be the slogan of that natural cybernetics of time: time orders by itself in its “screen” in virtue of being a well-ordering valid until the present moment and dividing any totality into two parts: the well-ordered of the past and the yet unordered of the future therefore sharing the common boundary of the present between them when the ordering is (...)
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  36. The Kochen - Specker theorem in quantum mechanics: a philosophical comment (part 1).Vasil Penchev - 2013 - Philosophical Alternatives 22 (1):67-77.
    Non-commuting quantities and hidden parameters – Wave-corpuscular dualism and hidden parameters – Local or nonlocal hidden parameters – Phase space in quantum mechanics – Weyl, Wigner, and Moyal – Von Neumann’s theorem about the absence of hidden parameters in quantum mechanics and Hermann – Bell’s objection – Quantum-mechanical and mathematical incommeasurability – Kochen – Specker’s idea about their equivalence – The notion of partial algebra – Embeddability of a qubit into a bit – Quantum computer is not Turing machine (...)
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  37.  8
    Genocide Done By Armenians İn Bitlis And Role Of Western Countries On Genocide.Yılmaz Karadeni̇z - 2010 - Journal of Turkish Studies 6:1405-1420.
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  38.  10
    Constancy in short-term memory: Bits and chunks.Joel Kleinberg & Herbert Kaufman - 1971 - Journal of Experimental Psychology 90 (2):326.
  39.  36
    Compatibility of Subsystem States.Paul Butterley, Anthony Sudbery & Jason Szulc - 2006 - Foundations of Physics 36 (1):83-101.
    We examine the possible states of subsystems of a system of bits or qubits. In the classical case (bits), this means the possible marginal distributions of a probability distribution on a finite number of binary variables; we give necessary and sufficient conditions for a set of probability distributions on all proper subsets of the variables to be the marginals of a single distribution on the full set. In the quantum case (qubits), we consider mixed states of subsets of a set (...)
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  40. Decryption and Quantum Computing: Seven Qubits and Counting.John G. Cramer - unknown
    Alternate View Column AV-112 Keywords: quantum mechanics entangled states computer computing 7 qubits prime number factoring Schor algorithm NMR nuclear magnetic resonance fast parallel decryption coherence wave-function collapse many-worlds transactional interpretation Published in the June-2002 issue of Analog Science Fiction & Fact Magazine ; This column was written and submitted 12/19/2001 and is copyrighted ©2001 by John G. Cramer.
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  41.  26
    "Loose Bits of Paper" and "Uncorrect Thoughts": Hume's Early Memoranda in Context.Emilio Mazza & Gianluca Mori - 2019 - Hume Studies 42 (1):9-60.
    What are the Early Memoranda?1 When were they written? What are their sources? What is their purpose and their relation to Hume's works? These questions, usually addressed separately, are in fact tightly interwoven: they require an articulated response that embraces them all. Our response could be summarised as follows: far from being current reading notes, or even less the exhaustive diary of Hume's intellectual experience, the Early Memoranda are most likely second-tier texts, or—as James Harris recently conjectured—"notes taken from notes."2 (...)
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  42. Quantum read-out and fast initialization of nuclear spin qubits with electric currents.Noah Stemeroff - 2011 - Physical Review Letters 19 (107).
    Nuclear spin qubits have the longest coherence times in the solid state, but their quantum readout and initialization is a great challenge. We present a theory for the interaction of an electric current with the nuclear spins of donor impurities in semiconductors. The theory yields a sensitivity criterion for quantum detection of nuclear spin states using electrically detected magnetic resonance, as well as an all-electrical method for fast nuclear spin qubit initialization.
     
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  43.  25
    Schiz bits: Misses, mysteries and hits.J. A. Gray, D. R. Hemsley, J. Feldon, N. S. Gray & J. N. P. Rawlins - 1991 - Behavioral and Brain Sciences 14 (1):56-84.
  44.  18
    Quantum Bit Commitment and the Reality of the Quantum State.R. Srikanth - 2018 - Foundations of Physics 48 (1):92-109.
    Quantum bit commitment is insecure in the standard non-relativistic quantum cryptographic framework, essentially because Alice can exploit quantum steering to defer making her commitment. Two assumptions in this framework are that: Alice knows the ensembles of evidence E corresponding to either commitment; and system E is quantum rather than classical. Here, we show how relaxing assumption or can render her malicious steering operation indeterminable or inexistent, respectively. Finally, we present a secure protocol that relaxes both assumptions in a quantum teleportation (...)
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    Bit-string physics: a finite and discrete approach to natural philosophy.H. Pierre Noyes - 2001 - River Edge, N.J.: World Scientific. Edited by den Berg & C. J..
    Introduction Major scientific revolutions are rarely, if ever, started deliberately. They can be "in the air" for a long time before the first recognizable ...
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  46.  3
    ‘A bit of common ground’: personalisation and the use of shared knowledge in interactions between people with learning disabilities and their personal assistants.Philippa Rudge, Kerrie Ford, Lisa Ponting & Val Williams - 2009 - Discourse Studies 11 (5):607-624.
    Personalisation is the new mantra in social care; this article focuses on how personalisation can be achieved in practice, by presenting an analysis of data from people with learning disabilities and their personal assistants, where traditional care relationships have often been shown to be disempowering. The focus here is on the ways in which both parties use references to shared knowledge, joint experiences or personal-life information. These strategies can be used for various social goals, and instances are given where shared (...)
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  47. Have a bit of nous : revelation and the psychology of religion.Christopher Knight - 2018 - In Russell Re Manning (ed.), Mutual enrichment between psychology and theology. New York, NY: Routledge.
     
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  48.  12
    Bits, Bytes and Dinosaurs: using Levinas and Freire to address the concept of ‘twenty-first century learning’.Leon Benade - 2015 - Educational Philosophy and Theory 47 (9):935-948.
    The discourse of twenty-first century learning argues that education should prepare students for successful living in the twenty-first century workplace and society. It challenges all educators with the idea that contemporary education is unable to do so, as it is designed to replicate an industrial age model, essentially rear-focused, rather than future-focused. Future-focused preparation takes account of the startling effect on economy and society caused by rapid technological change, to the extent that the future cannot be accurately predicted. It is (...)
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  49.  2
    Localization And The Elements Of The Seventeenth-Century Social Life In S'bit’s Divan.Yunus Kaplan - 2009 - Journal of Turkish Studies 4:209-248.
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  50.  16
    “Shining Bits of Metal”: Money, Property, and the Imagination in Hume’s Political Economy.Timothy M. Costelloe - 2020 - Social Philosophy and Policy 37 (1):213-232.
    This essay examines Hume’s treatment of money in light of his view of the imagination. It begins with his claim that money is distinct from wealth, the latter arising, according to vulgar reasoning, from the power of acquisition that it represents, or, understood philosophically, from the labor that produces it. The salient features that Hume identifies with the imagination are then put forth, namely its power to combine ideas creatively and the principle of easy transition that characterizes its movement among (...)
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