Academic literature on the topic 'Prigogine'

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Journal articles on the topic "Prigogine"

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Rice, Stuart A. "Ilya Prigogine." Physics Today 57, no. 4 (April 2004): 102–3. http://dx.doi.org/10.1063/1.1752434.

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Akhmediev, N., J. M. Soto-Crespo, Peter Vouzas, N. Devine, and Wonkeun Chang. "Dissipative solitons with extreme spikes in the normal and anomalous dispersion regimes." Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 376, no. 2124 (June 11, 2018): 20180023. http://dx.doi.org/10.1098/rsta.2018.0023.

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Prigogine’s ideas of systems far from equilibrium and self-organization (Prigogine & Lefever. 1968 J. Chem. Phys. 48 , 1695–1700 ( doi:10.1063/1.1668896 ); Glansdorff & Prigogine. 1971 Thermodynamic theory of structures, stability and fluctuations . New York, NY/London, UK: Wiley) deeply influenced physics, and soliton science in particular. These ideas allowed the notion of solitons to be extended from purely integrable cases to the concept of dissipative solitons. The latter are qualitatively different from the solitons in integrable and Hamiltonian systems. The variety in their forms is huge. In this paper, one recent example is considered—dissipative solitons with extreme spikes (DSESs). It was found that DSESs exist in large regions of the parameter space of the complex cubic–quintic Ginzburg–Landau equation. A continuous variation in any of its parameters results in a rich structure of bifurcations. This article is part of the theme issue ‘Dissipative structures in matter out of equilibrium: from chemistry, photonics and biology (part 1)’.
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Lombardi, Olimpia. "Prigogine: ciencia y realidad." Crítica (México D. F. En línea) 30, no. 90 (December 12, 1998): 47–75. http://dx.doi.org/10.22201/iifs.18704905e.1998.730.

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Balescu, Radu. "Ilya Prigogine (1917–2003)." Nature 424, no. 6944 (July 2003): 30. http://dx.doi.org/10.1038/424030a.

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Guo, Minyong, Yu Tian, Xiaoning Wu, and Hongbao Zhang. "From Prigogine to Raychaudhuri." Classical and Quantum Gravity 34, no. 3 (January 10, 2017): 035013. http://dx.doi.org/10.1088/1361-6382/aa54a0.

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Nicolis, Gregoire. "Ilya Prigogine 1917–2003." Physics World 16, no. 7 (July 2003): 12. http://dx.doi.org/10.1088/2058-7058/16/7/17.

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Goldbeter, Albert. "Ilya Prigogine (1917–2003)." Journal of Biosciences 28, no. 6 (December 2003): 657–59. http://dx.doi.org/10.1007/bf02708424.

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Antoniou, Ioannis. "Farewell to Ilya Prigogine." International Journal of Quantum Chemistry 98, no. 2 (2004): 60–61. http://dx.doi.org/10.1002/qua.10881.

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Белощенко, D. Beloshchenko, Пахомов, A. Pakhomov, Козлова, V. Kozlova, Умаров, and B. Umarov. "Entropic approach in assessment of seasonal dynamics of neuromuscular system’s parameters in human under exposure to local cooling." Complexity. Mind. Postnonclassic 4, no. 2 (September 25, 2015): 38–47. http://dx.doi.org/10.12737/12010.

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The paper presents an experimental verification of Prigogine-Glansdorff’s theorem for evolution of complex biological systems and verification of Prigogine´s theorem for an open nonequilibrium thermodynamic (biological) systems. Entropy can be represented as a value that indicates how many different states are in the system, but it does not represent if they are stable, i.e. it is not linked to the concept of chaos, order and disorder act as deterministic and non-deterministic state of the system. Thus, we found that the conditions of Prigogine-Glansdorff’s theorem for studying the biosystems don’t suite because it is common (except for tremorogramm’s parameters of the spring period) that the entropy of parameters of tremorogramms and myograms statistically doesn’t change.
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Juarrero, Alicia. "Downward Causation: Polanyi and Prigogine." Tradition and Discovery: The Polanyi Society Periodical 40, no. 3 (2013): 4–15. http://dx.doi.org/10.5840/traddisc2013/201440330.

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Dissertations / Theses on the topic "Prigogine"

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Santos, Maria da Conceição Rodrigues dos. "Ilya Prigogine: estabilidade afastada do equilíbrio e irreversibilidade temporal." Universidade Federal de Goiás, 2010. http://repositorio.bc.ufg.br/tede/handle/tede/5315.

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It is reference to this study the work of the physical chemist Ilya Prigonine based on ideas of complexity and chaos responsible for a deep change in science, originally triggered by thermodynamics followed by the theory of relativity and quantic physics. The study aims to examine the influence of the prigogineane work on the formation of the new episteme behind all these changes, in the face of the paradigmatic rupture of the contemporary thought. The study will also understand the new knowledge body which these investigated changes are about to model along with the issues of contemporary world, like those regarding the science and philosophy, the boundaries of growth, sustainable development and the emergency of a new model of rationality.
É referência para este estudo a obra do físico-químico Ilya Prigogine, nucleada pelas idéias de complexidade e caos, que apontam para uma profunda transformação da ciência, originariamente desencadeada pela termodinâmica, seguida de perto pela teoria da relatividade e pela física quântica. O trabalho tem por meta examinar o alcance da obra prigogineana na conformação da nova episteme que subjaz a tais mudanças, em face da ruptura paradigmática que instaura o pensamento contemporâneo. De resto, importará ao estudo entrever o novo corpo de saber que as mudanças investigadas estão a modelar, em concurso com questões prementes do mundo contemporâneo, como as que dizem respeito à crise na ciência e na filosofia, aos limites do crescimento, ao desenvolvimento sustentável e à emergência de um novo modelo de racionalidade.
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Lestage, Philippe. "La psychologie genetique de piaget et le paradigme d'auto-organisation de prigogine." Montpellier 3, 1991. http://www.theses.fr/1991MON30024.

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L'oeuvre considerable de piaget est a la mesure de l'etendue, de la complexite multidimensionnelle de l'objet de la psychologie genetique : le developpement, la genese des fonctions et structures de l'intelligence. Mais au-dela ou en deca de cette complexite multidimensionnelle, propre aux sciences humaines, s'ouvrent aujourd'hui de nouveaux horizons de complexite, jusque dans les sciences reputees les plus exactes, les pluis deterministes comme la mecanique (par exemple le chaos, les fractals). En thermodynamique notamment, aux lois de laquelle est soumis le cerveau, 1. Prigogine (nobel de chimie 1977) a entame une veritable revolution conceptuelle avec ses travaux sur l'auto-organisation des "structures dissipatives". Une avancee epistemologique fondamentale vers la comprehension du probleme general de la genese des structures, appelees a se repercuter sur celui particulier de la genese des structures cognitives. Son importance n'echappa pas a piaget qui entretint dans les dernieres annees de sa vie un passionnant debat avec prigogine. Nous nous sommes attache a confronter le paradigme piagetien de l'equilibration des structures cognitives au paradigme d'auto-organisation de prigogine. Ce changement de paradigme invite a reconsiderer la psychologie genetique piagetienne dans sa continuite entre le biologique et le cognitif. Le principal apport du paradigme de l'auto-organisation nous est apparu etre le role des fluctuations aleatoires internes au systeme neuro-cognitif (prigogine, j. P. Changeux, e. Morin), ainsi que la production d'entropie du cerveau liee aux processus dissipatifs dont il est le siege (prigogine). Deux sources "aleatoires" d'emergence, de nouveaute, de creativite ignorees de piaget, que nous localisons dans l'inconscient. Sources premieres de l'accroissement des connaissances. Role premier de la creativite dans les processus d'emergence de la pensee
The considerable work of plaget reflects the wide range and multidimensional complexity of developmental psychology which studies the genesis and evolution of the structures and functions of intelligence. But beyond or within this multidimensional complexity, peculiar to the human sciences, new horizons of complexity are opening which reach as far as the reputedly most exacting and determinist sciences such as mechanics (for example chaos and fractals). Notably in thermodynamics, whose laws govern the brain, i. Prigogine (nobel chemistry prize 1977) began a real conceptual revolution with his work on the selforganization of the "dissipative structures". This is a fundamental epistemological advance towards the understanding of the general problem of the genesis of structures and affects in particular the study of the development of cognitive structures. Piaget could not ignore the importance of this theory and in the final years of his life he engaged an impassioned debate with prigogine. We set out to confront the piagetian paradigm of the equilibration of cognitive structures with prigogine's paradigm of gine's paradigm of self-organization. Following this changing paradigm leads us to reconsider piagetian developmental psychology in its continuity between the biological and the cognitive. The main contribution of the paradigm of self-organization appeared to us to be the role of random fluctuations within the neurocognitive system (progogine, changeux, morin) and the entropy production of the brain which is related to the dissipative processes centered there. Theses two random sources of development, innovation and creativity that we localize in the unconscious were ignored by piaget. They are the primary sources of the growth of knowledge and play the leading creative role in the processes involved in the development of thought
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Carvalho, Rodrigo França. "Além das nuvens e dos relógios: a ideia de ciência de David Bohm e de Ilya Prigogine." Universidade Federal de Goiás, 2015. http://repositorio.bc.ufg.br/tede/handle/tede/5081.

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Our thesis consists in analyzing, based on theories of the American quantum physicist David Bohm (1917-1992) and the Russian physical chemist, naturalized Belgian, Ilya Prigogine (1917-2003), the science ideas of these two scientists, how they represent authentic scientific views, quite deviating from the prevailing view of science, and also how their concepts contribute to overcoming long dichotomies that have been present in the history of science since a long time, such as determinism-indeterminism antithesis. Through a critical biographical analysis, we present the main aspects of scientific research work of Bohm, his formulation of an alternative interpretation of quantum theory, which has ignited debates and controversies within the world of quanta, his several theoretical contributions, including the theory of plasma, the development of an innovative theory called implicit and explicit order and also his philosophical investigations. We also present and analyze the scientific way of Prigogine and his theoretical interest in non-equilibrium thermodynamics. We show the fundamentals of his theory of dissipative structures, his unique insight into the irreversible phenomena and the most significant implications of this new view of nature and science that led him to the Nobel Prize in Chemistry 1977. Although several important differences between theoretical perspectives and Bohm and Prigogine approach, we noted some similar points that were quite significant, as a concept of science radically different from the prevailing idealized view. Among these similarities we have the search for a unity between man and nature, the importance given to the conception of science without dissociating it from the deepest philosophical questions and the concern about establishing more fruitful dialogues among areas of knowledge.
Nossa tese consiste em analisar, com base nas teorias do físico quântico estadunidense David Bohm (1917-1992) e do físico-químico russo, naturalizado belga, Ilya Prigogine (1917-2003), as ideias de ciência desses dois cientistas, como elas representam autênticas visões científicas, bastante distintas da visão predominante de ciência, e também como suas concepções contribuem para a superação de dicotomias há muito presentes na História da Ciência, como a antítese determinismo-indeterminismo. Por meio de uma análise bibliográfica crítica, apresentamos os principais aspectos do trabalho investigativo científico de Bohm, sua formulação de uma interpretação alternativa à teoria quântica, que acendeu debates e controvérsias dentro do mundo dos quanta, suas várias contribuições teóricas, entre elas a teoria do plasma, a elaboração de uma inovadora teoria denominada de ordem implícita e explícita e também as suas investigações filosóficas. Também apresentamos e analisamos o caminho científico de Prigogine e o seu interesse teórico pelos sistemas de não equilíbrio da Termodinâmica. Mostramos os fundamentos de sua teoria das estruturas dissipativas, sua original visão sobre os fenômenos irreversíveis e as implicações mais significativas dessa nova visão sobre a natureza e a ciência, que o levaram ao prêmio Nobel de Química de 1977. Apesar de diversas e importantes diferenças entre as perspectivas teóricas e de abordagem de Bohm e de Prigogine, evidenciamos pontos similares bastante significativos, como um conceito de ciência radicalmente distinto da visão idealizada predominante. Entre essas similitudes, estão a busca de uma unidade entre homem e natureza, a importância dada ao fazer ciência sem dissociá-la das questões mais profundas filosóficas e a preocupação em estabelecer diálogos mais profícuos entre as áreas do saber.
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FINARELLI, Luigi (ORCID:0000-0003-1252-6336). "Il Poeta della termodinamica e il Maestro di suoni e silenzi. Tempo e musica tra Ilya Prigogine e Luigi Nono." Doctoral thesis, Università degli studi di Bergamo, 2021. http://hdl.handle.net/10446/186151.

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In questo studio si analizzano le particolari idee di tempo e musica che emergono dalle analogie e dai parallelismi dell’opera di due personalità del Novecento tanto incisive e discusse quanto distanti ed eterogenee: Ilya Prigogine (1917-2003) e Luigi Nono (1924-1990). Entrambi sono stati senza dubbio figure di primissimo piano nei loro ambiti di attività. Prigogine dopo l’assegnazione del premio Nobel è diventato un personaggio pubblico e grazie alla sua eloquenza si è guadagnato, fin dal discorso di ringraziamento per quel premio, l’appellativo di poeta della termodinamica. Nono nella musica e nella vita ha spesso sostenuto posizioni radicali e anticipatrici che, nell’evoluzione di quella sua opera di compositore, che è considerata una delle più significative del secondo Novecento, lo ha portato ad essere commemorato, nella targa affissa sulla sua casa veneziana, come maestro di suoni e silenzi. Entrambi si sono espressi ampiamente sul piano filosofico con idee e opinioni personalissime che hanno vivacemente animato, non senza polemiche, il dibattito culturale degli ultimi decenni del Novecento e tutt’oggi costituiscono un fertile ambito di riflessione e una stimolante eredità interdisciplinare. Non risulta che tra di loro ci siano stati contatti né diretti né indiretti. Si è quindi cercato di mettere in luce i punti d’intersezione dei loro percorsi biografici e culturali e di individuare nelle mappe dei loro pensieri musicali, scientifici e filosofici le aree di sovrapposizione maggiormente significative.
This study analyzes the particular ideas of time and music that emerge from the analogies and parallels of the work of Ilya Prigogine (1917-2003) and Luigi Nono (1924-1990 ): two personalities of the twentieth century as incisive and discussed as distant and heterogeneous. Both have been leading figures in their fields of activity. Prigogine after the Nobel Prize was award became a public figure and, thanks to his eloquence, he has earned, since the speech of thanks for that prize, the title of ‘Poet of thermodynamics’. In his life and also in his music Nono has often supported radical and anticipatory positions. So the evolution of his work as a composer, which is considered one of the most significant of the second half of the twentieth century, led him to be commemorated, on the plaque affixed to his Venetian house, as ‘Master of sounds and silences’. Both have expressed themselves extensively on a philosophical level with very personal ideas and opinions that have animated, not without controversy, the cultural debate of the last decades of the twentieth century and still constitute a fertile field of reflection and a stimulating interdisciplinary heritage. There is no evidence that they have had any direct or indirect contact. We therefore tried to highlight the intersection points of their biographical and cultural paths and to identify the most significant overlapping areas in the maps of their musical, scientific and philosophical thoughts.
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Bernard, Mary Elaine. "New forms of coherence, the theory and facilitation of organizational change from the perspective of the Eric Trist and Ilya Prigogine schools of thought." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1999. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape10/PQDD_0004/NQ42777.pdf.

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Dunajew, Tatiana Silva. "Procura de ressonancias entre aspectos da ciencia de Ilya Priogogne e aspectos da filosofia deleusiana da diferença." [s.n.], 2000. http://repositorio.unicamp.br/jspui/handle/REPOSIP/278836.

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Orientador: Luiz Benedicto Lacerda Orlandi
Dissertação (mestrado) - Universidade Estadual de Campinas, Instituto de Filosofia e Ciencias Humanas
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Resumo: Esta pesquisa pretende investigar ressonâncias entre os trabalhos do cientista russo Ilya Prigogine e o filósofo francês Gilles Deleuze. Ao invés de buscar modelos comparativos para este propósito, o mesmo, uma vez que tem como foco a filosofia da diferença, tem o compromisso evidente de gerar novos modos de experimentação do pensamento, longe dos critérios daquilo que Deleuze chama de imagem tradicional do pensamento. Para tanto, apesar de a noção de caos ser colocada de modo diverso em ambos domínios - filosofia e ciência - , esta aparecerá como o aspecto mais importante desta pesquisa
Abstract: This research aims to investigate ressonances between the works of the russian cientist Ilya Prigogine and the french philosopher Gilles Deleuze . lnstead of searching comparative models for this purpose, once it has the difference philosophy as focus, it. has the obvious committment of generating brand new ways of thought experimentation far away of that called by Deleuze's words as tradicional thought image. For that although the chaos notion being essentially different in both domains - philosophy and science - this will appear as the most important aspect in this research
Mestrado
Mestre em Filosofia
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Dahllöv, Mats. "Jordens sång : Naturfilosofi och musik hos Gilles Deleuze." Thesis, Uppsala universitet, Avdelningen för estetik, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-293476.

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This essay provides a thorough reading of Gilles Deleuze’s (1925–95) philosophy of nature and the way music relates to this philosophy. It does so with regards to changes in the view of nature in 20th century science, especially in the theories of self-organisation as developed by, among others, Ilya Prigogine. Deleuze’s metaphysics is viewed in relation to these theories, and is also compared to the philosophy of Immanuel Kant, which is related to classical science. The essay then investigates certain key issues in Deleuze’s philosophy concerning difference and univocity (or immanence), developed in his doctoral thesis Différence et répétition (1968). Also, certain aspects of the further evolution of this philosophy of immanence in Mille plateaux (1980), co-written with Félix Guattari, are examined. The essay then studies the role of aesthetics in Deleuze’s philosophy, and the way he transforms the aesthetics of Kant. The following chapter deals with Deleuze & Guattari’s primary text concerning music, ”De la ritournelle” in Mille plateaux. In this text, they develop a highly abstract concept of music, which, in their philosophy, is: 1) granted a cosmological reach regarding rhythms and motives; 2) made an essential aspect of the emergence of art, which they find in animals creating a territory (especially in the songbird); 3) used to discuss Baroque/Classicist, Romantic and 20th century musical styles. Apart from analysing these aspects, this chapter focuses on 20th century music, with a thorough examination of Gustav Mahler and of spectral music, demonstrating that Deleuze’s philosophy can deepen the understanding of this music. The chapter also discusses problematic tendencies in Deleuzian research on contemporary music, which does not take the entirety of Deleuze’s philosophy of nature into account. This essay argues that such knowledge is necessary to correctly examine the implications of Deleuze & Guattari’s philosophy of music. The lack of awareness of Deleuze’s philosophy of nature is also significant in the critique that Deleuze’s aesthetics has received by Jacques Rancière, which is analysed in the final chapter. This chapter also discusses Michael Gallope’s reading of Deleuze & Guattari, in which he makes a distinction between a metaphysical and an ethical-aesthetic philosophy of music. Although the relation between metaphysics, ethics, and aesthetics, is key to understanding their philosophy of music, this essay argues that Gallope’s idea of what sort of music they advocate is incorrect.
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Pompa, Federica. "Bilancio energetico ed irreversibilità in termodinamica dei continui." Bachelor's thesis, Alma Mater Studiorum - Università di Bologna, 2017. http://amslaurea.unibo.it/14057/.

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Molti sistemi fisici sono descritti, con ottima approssimazione, come sistemi continui, nei quali è trascurata la descrizione della struttura molecolare della materia costituente. La loro descrizione, tuttavia, deve essere arricchita, precisando quelle che sono tutte le altre proprietà caratterizzanti il continuo fisico, quali, ad esempio, la massa, la velocità, la temperatura e la pressione. Ciò viene fatto introducendo, nelle regioni occupate dal continuo, opportuni campi, scalari e tensoriali, corrispondenti a caratteristiche grandezze fisiche le cui leggi di bilancio sono formulate in modo tale da possedere carattere universale: valide per ogni continuo in ogni riferimento da cui lo si studia. A livello meccanico, la trattazione del continuo fisico è basata sui concetti di volume e superficie materiali, in grado di muoversi e deformarsi nello spazio e nel tempo. A livello termodinamico, l'impossibilità di attribuire un valore globale alle grandezze intensive di una porzione estesa di continuo non in equilibrio porta al bisogno di ripartire quest'ultima in porzioni infinitesime, ciascuna approssimativamente in equilibrio termodinamico, nelle quali i diversi campi possono essere definiti con continuità in ogni punto. Tuttavia le sole leggi di bilancio non risultano sufficienti per studiare compiutamente il comportamento di uno specifico continuo: ad esse si affiancano le relazioni costitutive, caratteristiche di ciascun mezzo, che legano tra loro i diversi campi introdotti nella trattazione.
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Bernard, Mary Elaine. "New forms of coherence the theory and facilitation of organizational change from the perspective of the Eric Trist and Ilya Prigogine Schools of Thought /." 1998. http://wwwlib.umi.com/cr/yorku/fullcit?pNQ42777.

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Thesis (Ph. D.)--York University, 1998. Graduate Programme in Sociology.
Typescript. Includes bibliographical references (leaves 457-499). Also available on the Internet. MODE OF ACCESS via web browser by entering the following URL: http://wwwlib.umi.com/cr/yorku/fullcit?pNQ42777.
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VALOTTA, BRUNA. "Tra Wiener e Morin. Dalla cibernetica alla sibernetica." Doctoral thesis, 2019. http://hdl.handle.net/11570/3146218.

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La tesi si propone di investigare da una prospettiva storico-complessa le tappe più emblematiche del cammino storico-teoretico del pensiero cibernetico, dalla fase pioneristica sino agli sviluppi epistemologici costruttivisti contemporanei della cosiddetta "cibernetica dei sistemi che osservano" e della teoria dell'autopoiesi. Si cercherà di mostrare nella fattispecie come la cibernetica di matrice wieneriana, nella "rigenerativa" veste "sibernetica" proposta da Edgar Morin, prefiguri la possibilità di “superare conservando” il deterministico paradigma di controllo di ascendenza cartesiana, integrandolo ed articolandolo in una metascienza enciclopedicamente riflessiva del "pilotare insieme".
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Books on the topic "Prigogine"

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Spire, Arnaud. La pensée-Prigogine. Paris: Desclée de Brouwer, 1999.

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Teilhard and Prigogine. Chambersburg, PA: Published for American Teilhard Association for the Future of Man by ANIMA Books, 1987.

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Ecodynamics: The Prigogine legacy. Southampton: Wit Press, 2011.

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Somville, Pierre. Penseurs et idéologues: De Platon à Prigogine. 3rd ed. Bruxelles: Espace de libertés, 2000.

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Kirk, James. Organicism as reenchantment: Whitehead, Prigogine, and Barth. New York: P. Lang, 1993.

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Rice, Stuart A., ed. Special Volume in Memory of Ilya Prigogine. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/0470121912.

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Rodríguez, Jorge Luis, ed. La vez que Borges conoció a Ilyá Prigogine. Santa Clara, Cuba: Sed de belleza Ediciones, 2016.

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Stengers, Isabelle. Au nom de la flèche du temps: Le défi de Prigogine. Paris: La Découverte, 1997.

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Sadoun-Goupil, Michelle. Du flou au clair?: Histoire de l'affinité chimique de Cardan à Prigogine. Paris: Éditions du C.T.H.S., 1991.

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1939-, Griffin David Ray, and Claremont Center for Process Studies., eds. Physics and the ultimate significance of time: Bohm Prigogine, and process philosophy. Albany: State University of New York Press, 1986.

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Book chapters on the topic "Prigogine"

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Ramage, Magnus, and Karen Shipp. "Ilya Prigogine." In Systems Thinkers, 235–44. London: Springer London, 2020. http://dx.doi.org/10.1007/978-1-4471-7475-2_23.

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Ramage, Magnus, and Karen Shipp. "Ilya Prigogine." In Systems Thinkers, 229–37. London: Springer London, 2009. http://dx.doi.org/10.1007/978-1-84882-525-3_24.

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Böcher, Wolfgang. "Ilya Prigogine: Die dissipativen Strukturen." In Selbstorganisation, Verantwortung, Gesellschaft, 146–54. Wiesbaden: VS Verlag für Sozialwissenschaften, 1996. http://dx.doi.org/10.1007/978-3-322-83579-6_9.

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Grana, Nicola. "The Concept of Time in Prigogine." In Studies in Applied Philosophy, Epistemology and Rational Ethics, 229–37. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-24895-0_28.

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Schlögl, F. "Glansdorff-Prigogine Criterion and Statistical Theory." In Advances in Chemical Physics, 61–63. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470143841.ch5.

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Balescu, Radu. "Ilya Prigogine: his Life, his Work." In Advances in Chemical Physics, 1–81. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470121917.ch1.

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Magnani, Lorenzo. "Commentary: Einstein, Prigogine, Barbour, and Their Philosophical Refractions." In Studies in Applied Philosophy, Epistemology and Rational Ethics, 249–51. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-24895-0_31.

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Schlögl, F. "The Statistical Background of the Clansdorff-Prigogine Criterion." In Thermodynamics and Regulation of Biological Processes, edited by Ingolf Lamprecht and A. I. Zotin, 35–54. Berlin, Boston: De Gruyter, 1985. http://dx.doi.org/10.1515/9783110861198-004.

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Hens, Kristien. "8. Time, Culture and Creativity." In Chance Encounters, 87–100. Cambridge, UK: Open Book Publishers, 2022. http://dx.doi.org/10.11647/obp.0320.08.

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I describe ideas from Isabelle Stengers, Ilya Prigogine and Stuart Kauffman and others to introduce aspects of creativity in life and how life is fundamentally creative. I also describe new materialist entanglements of ethics, ontology and epistemology to argue that, given this creativity of life and the universe, ethics is implied all the way down. Moreover, describing organisms and practices, and choosing how to describe them, is not a mere representation but creates the next possible world. Living is finding creative solutions and reflecting on the worlds we want our practices to create. Each ‘chance encounter’ entails possibilities, and our choices are deeply ethical.
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Näpinen, Leo. "The Problem of the Relationship Between Human and Physical Realities in Ilya Prigogine’s Paradigm of Self-Organisation." In Estonian Studies in the History and Philosophy of Science, 151–64. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/978-94-010-0672-9_11.

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Conference papers on the topic "Prigogine"

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Méndez, A. R., W. Marques, and R. M. Velasco. "The fundamental diagram from the Herman-Prigogine kinetic equation." In 31ST INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS: RGD31. AIP Publishing, 2019. http://dx.doi.org/10.1063/1.5119678.

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Lisitsin, V., N. Matveev, Natal'ya Evsikova, Nina Kamalova, and S. Vnukova. "THERMODYNAMIC SUBSTANTIATION OF THE MODEL OF GROWTH DYNAMICS OF NATURAL STANDS." In PHYSICAL BASIS OF MODERN SCIENCE-INTENSIVE TECHNOLOGIES. FSBE Institution of Higher Education Voronezh State University of Forestry and Technologies named after G.F. Morozov, 2022. http://dx.doi.org/10.34220/pfmsit2022_7-11.

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The paper analyzes the change in the entropy production of an open thermodynamic forest ecosystem, in which processes associated with the entry of a negative entropy flow into it can be realized. Using the example of computer modeling of the dynamics of effective specific entropy production for a single-pedigree stand, it is shown for the first time that the specific entropy production as a function of time corresponds to the Prigogine-Glensdorf principle, and the time to reach a stationary state coincides with experimental values from forestry tables.
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GALVÃO, A. C., W. S. ROBAZZA, A. M. DA LUZ, L. G. FRANZOSI, and R. H. SCHNEIDER. "AVALIAÇÃO DO MODELO PRIGOGINE-FLORY-PATTERSON NA PREDIÇÃO DO VOLUME PARCIAL MOLAR DE SOLUÇÕES LÍQUIDAS BINÁRIAS." In XX Congresso Brasileiro de Engenharia Química. São Paulo: Editora Edgard Blücher, 2015. http://dx.doi.org/10.5151/chemeng-cobeq2014-1000-21800-133715.

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Neveu, Pierre, and Nathalie Mazet. "Gibbs Systems Dynamics: A Simple But Powerful Tool for Process Analysis, Design and Optimization." In ASME 2002 International Mechanical Engineering Congress and Exposition. ASMEDC, 2002. http://dx.doi.org/10.1115/imece2002-33355.

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Dynamic process modeling by the mean of Equivalent Gibbs systems is described here. It allows to model a large number of processes and only requires standard engineering knowledge. This method is issued from thermodynamics of irreversible processes, initiated by I. Prigogine, but applied here to process engineering. First, an Equivalent Gibbs System (EGS) is defined for each component involved in the process. In such system, mass, energy and entropy are linked through Gibbs equation and entropy production can easily be expressed according to fluxes and their related forces. Assuming linear phenomenological laws, phenomenological coefficients can be calculated from common engineering correlations, or evaluated from technical data if available. As an example, a conventional vapor compression chiller is simulated. Three control modes are analyzed on an exergy basis: on/off control with constant or floating condensing pressure, PID control with variable compressor speed.
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n. v. santos, pedro henrique, and Regina Maria Prosperi Meyer. "LONGE DO EQUILÍBRIO." In Seminario Internacional de Investigación en Urbanismo. Bogotá: Universidad Piloto de Colombia, 2022. http://dx.doi.org/10.5821/siiu.10154.

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The present article aims to explore some assumptions about how complexity operates more flexible approaches to urbanism. To this end, were analyzed theoretical productions and contemporary design strategies that eschew very deterministic and generalizing logics, thus admitting the possibility of characterizing cities as a system far-from-equilibrium. After characterizing such condition, some properties inherent to the complex nature of cities were defined, without very clear outlines. An indication – or arrangement - that makes possible to understand some alternatives of acting in the city, not in an imperative way, but recognizing its indeterminacies as project tools. They are: Interactions, which operate and engender dynamics, establishing constructive relations of new realities; Becoming, as an expression of the creative force, the possibilities of multiple and mutual fecundations; and Entropy, which reveals our ability to recognize the possibilities of a system facing off unpredictability and new arrangements. Keywords: Complexity, Urban Design, Cities. O urbanista italiano Bernardo Secchi (1934-2014), em diversas ocasiões, enfatiza sua preocupação com a simplificação do funcionamento urbano própria do Movimento Moderno e levanta a necessidade sobre um novo olhar para a cidade contemporânea que, ao mesmo tempo, opera maiores níveis de abstração e de precisão (SECCHI, 2006). As questões que orientam essa pesquisa estão relacionadas às contribuições das teorias sobre Complexidade, que, assim como para as ciências exatas e biológicas, apresentam para o campo das sociais um importante ferramental para a revisão de paradigmas deterministas e que enriquece as concepções de fenômenos considerados caóticos ou aleatórios. Buscamos investigar com quais pressupostos a Complexidade opera, analisando abordagens mais flexíveis, produções teóricas e estratégias projetuais contemporâneas que escampam das lógicas muito deterministas e generalizantes, admitindo assim a possibilidade de caracterizar as cidades como um sistema que não tende ao equilíbrio. A noção de equilíbrio e a imagem da cidade-máquina e do planejamento controlador, desviaram o debate sobre as questões críticas essenciais e ajudou a manter a ilusão de um falso controle sobre a morfologia urbana e suas dinâmicas. A imagem de uma “boa” cidade – equilibrada – era, nessa ilusão, aquela que se apresentava homogênea, onde todas suas variações e diversidades pudessem ser controladas através, por exemplo, do zoneamento e da hipercodificação, ideia também refutada por Jane Jacobs em 1961. Com isso, a percepção de que o Planejamento Urbano deveria trabalhar buscando uma cidade estável e funcional começou a sobrecarregar não só sua teoria e prática, mas também a noção de que as cidades eram compreensíveis através de analogias com a ciência reducionista e as tecnologias industriais do passado. Após os anos 70, quando os objetivos do Planejamento Urbano passaram a ser refutados e as incertezas sobre as possíveis transformações teóricas e práticas que deveriam ser propostas para pensar as cidades, o mundo mudou (BATTY, 2012). O químico Ilya Prigogine, ao propor sua tese sobre estruturas dissipativas e auto-organização de sistemas longe do equilíbrio, indica os problemas relacionados ao reducionismo, abrindo possibilidades para novos níveis de descrição e análise de diversos fenômenos do universo, chama a responsabilidade da física para além de comportamentos analisados em ambientes perfeitamente controlados, estáveis e previsíveis. Anuncia assim uma “nova ciência” capaz de interpretar os comportamentos evolutivos que escorregam entre as “malhas da rede científica” e leva em conta as incertezas e diversidades da natureza e seus eventos complexos, por vezes considerados, aos olhos deterministas, transitórios e sem importância. Interessa então entender concepções teóricas que permitem possibilidades menos duras, fechadas e estáticas de percepção dos espaços e suas dinâmicas. Para tal, é preciso considerar que, em sistemas longe do equilíbrio como as cidades, sua evolução apresenta comportamentos e estados variados, de previsibilidade limitada. Como Prigogine insiste em dizer, nada mais natural, uma vez que estamos falando de um mundo real onde a “natureza apresenta-nos, de fato, a imagem da criação, da imprevisível novidade. Nosso universo seguiu um caminho de ramificações sucessivas: poderia ter seguido outros” (PRIGOGINE, 1996). Dada a impossibilidade de controlar seus desdobramentos, nos é disponível entender tal sistema através de seus “eventos e qualidades – transições de fase – resultantes de fluxos de matéria e energia que passam por eles. ” (BRISSAC, 2010). Para a análise das estratégias projetuais proposta nessa pesquisa, viu-se a necessidade de definir algumas propriedades que oferecessem bases comparativas, reconhecer indícios pela qual algo prova pertencer a categorias não estabelecidas aqui. Tal definição não pretendem ter um contorno muito claro com função de predicados para esses projetos, muito menos uma lista fechada, mas uma indicação, um certo agenciamento/ agrupamento ou um reconhecimento de como “ se relacionar com a matéria - através de suas próprias tendências e não pela imposição de uma forma preestabelecida. ” (BRISSAC, 2010). Considerando as características atribuídas aos sistemas complexos, definimos as seguintes propriedades: Interações, que operam, engendram – e são engendradas por – dinâmicas, influencias, perturbações, disputas e articulações, estabelecem relações construtivas de novas realidades, são linhas de forças que agem como combustível para trajetórias não-lineares de futuros incertos, trata-se, portanto de estratégias que entendam o projeto como síntese resultante das interações de múltiplos fatores, internos e externo; Devir, o "jorro efetivo de novidade imprevisível” (PRIGOGINE, 2009), de força criativa, o que está em vias de ser (vínculo com o futuro incerto), estratégias que, de uma forma ou de outra, tem como pressupostos a função de palco (que também faz parte do espetáculo) para possibilidades de fecundações múltiplas e mutuas, da força “comunicativa e contagiosa” – colocada por Deleuze e Guattari – que, sem códigos precedentes, constrói; e Entropia, a medida da probabilidade da ocorrência de eventos e da nossa habilidade em reconhecer possibilidades de determinado sistema face à imprevisibilidade de interações e novos arranjos resultantes, estratégias que assumem o carácter evolutivo das cidades, de configurações de “ajustes soltos” (ALLEN, 1999), menos codificada – ou de codificações muito abstratas – mas que de certa maneira apresentam condições para assimilar eventos, transformando-se, que assumem como premissa a tensão entre ordem e desordem e seu “ caráter provisório, instável e de sobreposições contínuas” (MEYER, 2003). Palavras-chave: Complexidade, Projeto Urbano, Cidades.
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Gorbunov, Dmitriy, Marina Gorbunova, Idosif Bulatov, and Sergey Gorbunov. "HOMOGENEITY OF PARAMETERS OF THE HUMAN NEUROMUSCULAR SYSTEM UNDER STATIC LOAD IN THE FRAMEWORK OF THE THERMODYNAMICS OF NON-EQUILIBRIUM SYSTEMS BY I.R. PRIGOGINE." In XV International interdisciplinary congress "Neuroscience for Medicine and Psychology". LLC MAKS Press, 2019. http://dx.doi.org/10.29003/m365.sudak.ns2019-15/144.

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Reports on the topic "Prigogine"

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Gundermann, Ditte, Ulf R. Pedersen, Tina Hecksher, Nicholas P. Bailey, Bo Jakobsen, Tage Christensen, Niels B. Olsen, Thomas B. Schroder, Daniel Fragiadakis, and Riccardo Casalini. Predicting the Density-Scaling Exponent of a Glass-Forming Liquid from Prigogine-Defay Ratio Measurements. Fort Belvoir, VA: Defense Technical Information Center, July 2011. http://dx.doi.org/10.21236/ada549977.

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