Academic literature on the topic '"Gaïa scienza"'
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Journal articles on the topic ""Gaïa scienza""
Helsloot, Niels. "Gaya Scienza." New Nietzsche Studies 5, no. 3 (2003): 89–104. http://dx.doi.org/10.5840/newnietzsche2003/20045/63/4/1/26.
Full textTakeuchi, Kasumi. "GABA, A Primary Metabolite Controlled by the Gac/Rsm Regulatory Pathway, Favors a Planktonic Over a Biofilm Lifestyle in Pseudomonas protegens CHA0." Molecular Plant-Microbe Interactions® 31, no. 2 (February 2018): 274–82. http://dx.doi.org/10.1094/mpmi-05-17-0120-r.
Full textMargulis, L. "Gaia in Science." Science 259, no. 5096 (February 5, 1993): 745. http://dx.doi.org/10.1126/science.259.5096.745.
Full textO'Mullane, W., U. Lammers, J. Hoar, and J. Hernandez. "Gaia Science Operations Centre." Proceedings of the International Astronomical Union 3, S248 (October 2007): 282–83. http://dx.doi.org/10.1017/s1743921308019327.
Full textCrosby, Sarah L. "Gaia Again // De nuevo Gaia." Ecozon@: European Journal of Literature, Culture and Environment 7, no. 1 (June 15, 2016): 228–33. http://dx.doi.org/10.37536/ecozona.2016.7.1.996.
Full textKeller, Hans-Erich. "La gaia scienza dei trovatori. Mario Mancini." Speculum 61, no. 4 (October 1986): 962–63. http://dx.doi.org/10.2307/2854011.
Full textBrown, Anthony G. A. "Microarcsecond Astrometry: Science Highlights from Gaia." Annual Review of Astronomy and Astrophysics 59, no. 1 (September 8, 2021): 59–115. http://dx.doi.org/10.1146/annurev-astro-112320-035628.
Full textLOVELOCK, J. E. "Toujours Gaia." Science 252, no. 5012 (June 14, 1991): 1472. http://dx.doi.org/10.1126/science.252.5012.1472.
Full textKotilainen, Jari. "Quasar host galaxies and environments in the GAMA survey." Proceedings of the International Astronomical Union 15, S356 (October 2019): 170. http://dx.doi.org/10.1017/s1743921320002823.
Full textKiberstis, P. A. "BIOMEDICINE: GATA Differentiate!" Science 319, no. 5867 (February 29, 2008): 1162a. http://dx.doi.org/10.1126/science.319.5867.1162a.
Full textDissertations / Theses on the topic ""Gaïa scienza""
Couécou, Fabienne. "La trilogie "England & the English" au coeur de l'écriture fordienne." Thesis, Montpellier 3, 2011. http://www.theses.fr/2011MON30048.
Full textThe three books collected in England and the English are The Soul of London (1905), The Heart of the Country (1906) et The Spirit of the People (1907). Although the complete trilogy was edited in New-York in 1907 it was made available to English readers in 2003 only, when Sara Haslam edited the volume for Carcanet Press. This study means to show in what ways those so-called essays are crucial and make sense as a trilogy, within Ford's own work as well as within modern literature. The hermeneutic approach adopted here attempts to decipher a multi-layered text and brings out underlying themes and intertexts that bear on the author's biography as well as on his interests in philosophical, religious, and socio-historical topics and reflect his passion for writing. The trilogy comes out as emblematic of the original aesthetic of a writer who, hovering between impressionism and futurism, tried to find his own way within the international literary landscape. Ford defines and addresses here an homme moyen sensible, very close to his ideal reader and transmits to him a specific message of love resorting to a hybrid, joyful and plural language inherited from the medieval langue desoiseaux. England becomes indistinguishable from Provence and from aesth/ethics connected with its troubadours
Paech, Norman. "Gaza und das Völkerrecht." Universität Potsdam, 2009. http://opus.kobv.de/ubp/volltexte/2009/2937/.
Full textGalv?o, T?lio Madson de Oliveira. "Para al?m da ci?ncia: por uma gaia ci?ncia." Universidade Federal do Rio Grande do Norte, 2012. http://repositorio.ufrn.br:8080/jspui/handle/123456789/16515.
Full textEm A gaia ci?ncia Nietzsche ir? abordar a ci?ncia, especificamente a sua finalidade, sob uma perspectiva cr?tica, apontando a necessidade de um conhecimento cient?fico mais humano e menos mecanicista, uma ci?ncia mais pr?xima ? arte, que ao inv?s de descobrir verdades, se ocupe em criar novos valores, vis?es e perspectivas. Ao longo da obra fica evidente a inten??o do fil?sofo em n?o apenas criticar a ci?ncia, mas tamb?m, conceber um novo m?todo, uma nova ci?ncia, uma gaya scienza, em alus?o ? arte dos trovadores medievais. Objetiva-se, com isso, unir vida e conhecimento como partes constituintes de um mesmo processo, fazendo da busca pelo conhecimento, n?o apenas um ?cio ou profiss?o, mas, sobretudo, um meio de vida. Nietzsche anseia por uma ci?ncia que n?o se enquadra nas categorias de verdadeiro ou falso, pois o seu valor ? diferente do valor da verdade, seu valor maior ? a m?xima potencialidade da vida em todos os seus aspectos
McGrail, Heather M. "Frank and Gala." ScholarWorks@UNO, 2011. http://scholarworks.uno.edu/td/1362.
Full textAguilar, Guilherme Aparecido Santos. "Família distribuição gama exponenciada /." Presidente Prudente, 2017. http://hdl.handle.net/11449/149970.
Full textBanca: Sergio Minouru Oikawa
Banca: Carlos Aparecido dos Santos
Resumo: Devido aos inúmeros campos para aplicações na Análise de Sobrevivência, diferentes funções de risco são necessárias para modelar os mais diversos casos em estudo. Portanto, ao criar novas distribuições pode-se obter diferentes funções de risco com suas diferentes curvas, que podem ser utilizadas para diversos tipos de dados. Serão apresentadas três novas distribuições de probabilidade, criadas a partir de três diferentes métodos, sendo a Gama Exponenciada Estendida de Marshall Olkin, Gama Exponenciada Poisson Truncada no Zero e também a Gama Exponenciada Bivariada. Para as distribuições de probabilidade univariadas foram obtidos resultados probabilísticos, tais como o n-ésimo momento; r-ésimo momento de vida média residual; r-ésimo momento de vida média residual invertido; ordenação estocástica; entropias; desvios médios; curvas de Bonferroni e de Lorenz; assimetria, curtose e seus gráficos; estatísticas de ordem e parâmetro stress − strength. Em relação a distribuição Gama Exponenciada Bivariada foi encontrada sua função acumulada; função densidade; função marginal; função condicional e seu n-ésimo momento. Para as novas distribuições univariadas encontradas, também foram feitas simulações para diferentes valores de parâmetros com o intuito de verificar qual o melhor método de estimação, para cada parâmetro de cada distribuição. Os métodos utilizados foram: estimador de máxima verossimilhança, Mínimos Quadrados, Mínimos Quadrados Ponderados, Cramér-von-Mises, Anderson Darli... (Resumo completo, clicar acesso eletrônico abaixo)
Abstract: Due to the many fields for applications in Survival Analysis, different hazard functions are needed to modelling the various case studies. Therefore, creating new distributions can obtains different hazard functions with different graphics, which can be used for various types of data. There will be presented three new probability distributions, created from three different methods, the Marshall Olkin Extendet Exponentiated Gamma, Poisson Zero Truncated Exponentiated Gamma and the Bivariate Exponentiated Gamma. For such univariate probability distributions it will be obtained some probabilistics results, like n-th time, rth moment of residual life, r-th moment of residual life inverted, stochastic ordering, entropies, mean deviation, Bonferroni and Lorenz curve, skewness, kurtosis, order statistics and stress-strength parameter. Regarding the Bivariate Gamma Exponentiated was found your acumulated and density function; marginal function; conditional function and it's n-th moment. For the new univariate distributions found, were also made simulations for different parameter values in order to find the best estimation method for each parameter. The methods used were: maximum likelihood, ordinary least-squares, weighted least-squares, Cramér-von-Mises, Anderson Darling, Anderson Darling - RT (right-tail), Anderson Darling - LT (left-tail), Anderson Darling - 2LT (left-tail second order), Kolmogorov and bayesian estimator with the prior Gamma... (Complete abstract click electronic access below)
Mestre
Dutreuil, Sébastien. "Gaïa : hypothèse, programme de recherche pour le système terre, ou philosophie de la nature ?" Thesis, Paris 1, 2016. http://www.theses.fr/2016PA01H231.
Full textThe Gaia hypothesis (GH) proposed in the 1970's by Lovelock and Margulis is here analyzed from a history and philosophy of science perspective. The historical analysis of GH's elaboration and rich reception across various disciplines (climatology, biogeochemistry, geochemistry, evolutionary biology, ecology and complexity sciences) and within environmentalist movements leads me to argue that a major ambiguity plagues the relevant literatures: what is GH? I show that GH has been considered as a hypothesis, as a theory, as a research program, or as a philosophy of nature. Each of these interpretations is then analyzed. An epistemological and historical characterisation of GH shows that GH should not be interpreted as a hypothesis which ought to be confronted directly to empirical facts, but as a theory elaborated with models. I elucidate the methodological role and status of GH's models and theories before clarifying the concepts and expliciting the fundamental hypotheses underlying these models and theories. The recognition of Gaia as a system constituted of living organisms and the environment with which they internet led to the constitution of a new research program: the Earth system sciences. I offer a history and a characterisation of this research program, specify the philosophical shifts it brought about concepts such as life, the environment and nature and I analyze the relationships between Lovelock's conceptions of Gaia and the environmental prescriptions he pronounced in the name of Gaia
Ramos, Pedro Luiz [UNESP]. "Aspectos computacionais para inferência na distribuição gama generalizada." Universidade Estadual Paulista (UNESP), 2014. http://hdl.handle.net/11449/108639.
Full textNesta dissertação, tem-se como objetivo desenvolver aspectos computacionais a fim de realizar inferência nos parâmetros da distribuição Gama Generalizada. A distribuição Gama Generalizada tem se mostrado um excelente modelo que leva a melhores inferências quando utilizamos dados de sobrevivência. No entanto, os Estimadores de Máxima Verossimilhança (EMV) da distribuição Gama Generalizada não têm o comportamento estável e para muitos casos não existem, apenas para amostras muito grandes. Na abordagem Bayesiana o problema permanece de tal forma que diferentes distribuições a priori podem ter grande efeito nas estimativas a posteriori de interesse. Neste trabalho, ao se utilizar a inferência Clássica, será demonstrado uma forma de simplificar as equações de verossimilhança, minimizando o problema de instabilidade do método. Considerando-se a abordagem Bayesiana, serão propostas diferentes distribuições a priori, empíricas ou não-informativas e seus efeitos serão estudados nas estimativas a posteriori. Serão propostos também diferentes métodos exploratórios, a fim de se obter bons valores iniciais para serem utilizados nos procedimentos de estimação dos parâmetros, considerando-se dados censurados (censura aleatória) sob o enfoque Clássico e Bayesiano. Por fim, serão apresentados alguns exemplos de aplicações, utilizando-se dados da literatura e dados reais.
The most important goals of this research project are related to the study of computational aspects to get inferences for the parameters of the Generalized Gamma distribution. The Generalized Gamma distribution is a good option to get better inferences for lifetime data, but usually in applications, the maximum likelihood estimators (MLE) of the parameters of the distribution could be very unstable depending on appropriated initial values in the numerical iterative procedure, especially for small sample sizes. Under a Bayesian approach, we observe that the posterior distributions could depend heavily on the choice of a prior distribution. In this work, using the classical inference will be shown a way to simplify the likelihood equations, minimizing the problem of instability of the method. Under a Bayesian approach, we will study the effect of different empirical and non-informative prior distributions on the posterior estimates, especially for small sample sizes. Numerical methods are also proposed in this work, in order to get good initial values used to improve the obtained inferences, considering censored data (random censoring) under the Classical and Bayesian approach. Simulated and real data sets will be used to illustrate the proposed methodology.
Ramos, Pedro Luiz. "Aspectos computacionais para inferência na distribuição gama generalizada /." Presidente Prudente, 2014. http://hdl.handle.net/11449/108639.
Full textBanca: Fernando Antônio Moala
Banca: Carlos Aparecido dos Santos
Resumo: Nesta dissertação, tem-se como objetivo desenvolver aspectos computacionais a fim de realizar inferência nos parâmetros da distribuição Gama Generalizada. A distribuição Gama Generalizada tem se mostrado um excelente modelo que leva a melhores inferências quando utilizamos dados de sobrevivência. No entanto, os Estimadores de Máxima Verossimilhança (EMV) da distribuição Gama Generalizada não têm o comportamento estável e para muitos casos não existem, apenas para amostras muito grandes. Na abordagem Bayesiana o problema permanece de tal forma que diferentes distribuições a priori podem ter grande efeito nas estimativas a posteriori de interesse. Neste trabalho, ao se utilizar a inferência Clássica, será demonstrado uma forma de simplificar as equações de verossimilhança, minimizando o problema de instabilidade do método. Considerando-se a abordagem Bayesiana, serão propostas diferentes distribuições a priori, empíricas ou não-informativas e seus efeitos serão estudados nas estimativas a posteriori. Serão propostos também diferentes métodos exploratórios, a fim de se obter bons valores iniciais para serem utilizados nos procedimentos de estimação dos parâmetros, considerando-se dados censurados (censura aleatória) sob o enfoque Clássico e Bayesiano. Por fim, serão apresentados alguns exemplos de aplicações, utilizando-se dados da literatura e dados reais.
Abstract: The most important goals of this research project are related to the study of computational aspects to get inferences for the parameters of the Generalized Gamma distribution. The Generalized Gamma distribution is a good option to get better inferences for lifetime data, but usually in applications, the maximum likelihood estimators (MLE) of the parameters of the distribution could be very unstable depending on appropriated initial values in the numerical iterative procedure, especially for small sample sizes. Under a Bayesian approach, we observe that the posterior distributions could depend heavily on the choice of a prior distribution. In this work, using the classical inference will be shown a way to simplify the likelihood equations, minimizing the problem of instability of the method. Under a Bayesian approach, we will study the effect of different empirical and non-informative prior distributions on the posterior estimates, especially for small sample sizes. Numerical methods are also proposed in this work, in order to get good initial values used to improve the obtained inferences, considering censored data (random censoring) under the Classical and Bayesian approach. Simulated and real data sets will be used to illustrate the proposed methodology.
Mestre
Abed, Ali Jalal. "Israel's policies in the West Bank and Gaza: a study of underdevelopment, 1967- 1986." DigitalCommons@Robert W. Woodruff Library, Atlanta University Center, 1988. http://digitalcommons.auctr.edu/dissertations/1682.
Full textHauk, Marna. "Gaia E/mergent| Earth Regenerative Education Catalyzing Empathy, Creativity, and Wisdom." Thesis, Prescott College, 2014. http://pqdtopen.proquest.com/#viewpdf?dispub=3630295.
Full textPatterns from nature and bioculture lead us to become more ethical teachers and learners and can guide wise school design. The research asked if intrapersonal empathy, collaborative nature creativity, and wisdom education are the same phenomenon at different scales that might accurately be called regeneration. This dissertation reviewed the interconnected landscapes of sustainability education, regenerative design, permaculture, emergence, innovation, ecological intelligence, complexity, chaos, natural pattern, biomimicry, and creativity, to weave a complexity web research nexus using a transdisciplinary, feminist, decolonizing lens and Gaian methods. This regenerative fractal emergent inquiry studied four scales of regeneration with eighty participants using multi-level mixed methods with triangulation. The research found that engaging with the planetary system and dynamic living patterns catalyzed breakthrough learning for wisdom. Inspired by symbiotic nature and biocultural connection, learners and learning collectives accessed expanded states of emergent, creative metacognition and ecological intelligence, including level-jumping and scale-slithering as larger emergents. This Gaian emergence, including e/mergence and inmergence, birthed planetary-scale intelligence and creativity and generated sustained increases in regenerativity in designs and enhanced ethical action. Another outcome of this study was the development of a Transdisciplinary Regenerativity Index. Ecofractal patterns, including branching, radiance, flow, packing, vortex, and tapestry, mobilized learners for ecosocial, emergent, earth regenerative creativity. Such emergent creativity is at the heart of wisdom learning and wisdom school design. In earth regenerative education, learners, communities, and learning organizations can embody the living earth in regenerative self-organization for meta-species wisdom and earth innovations to continue to become a part of the living processes of the planetary unfolding.
Books on the topic ""Gaïa scienza""
Nietzsche, Friedrich. Die fröhliche Wissenschaft: La gaya scienza. 4th ed. [München]: Goldmann, 1987.
Find full textNietzsche, Friedrich. Die fröhliche Wissenschaft =: La gaya scienza. Leipzig: Reclam-Verlag, 1990.
Find full textNietzsche, Friedrich. He charumene episte me: = ("La gaya scienza"). Thessalonike: Ne sides, 2004.
Find full textLuca, Carmine De. Gianni Rodari: La gaia scienza della fantasia. Catanzaro: Abramo, 1991.
Find full textChiara, Piazzesi, Campioni G. (Giuliano) 1945-, and Wotling Patrick, eds. Letture della Gaia scienza =: Lectures du Gai savoir. Pisa: ETS, 2010.
Find full textLovelock, James. Gaia, the practical science of planetary medicine. London: Gaia Books, 1991.
Find full textBook chapters on the topic ""Gaïa scienza""
Bernardi, Gabriella, and Alberto Vecchiato. "The Science of Gaia: A Walkthrough." In Understanding Gaia, 117–35. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-11449-7_10.
Full textFellows, Andrew. "Gaia and science." In Gaia, Psyche and Deep Ecology, 35–67. Abingdon, Oxon ; New York, NY : Routledge, 2019. Identifiers: LCCN 2018052286 (print) | LCCN 2018054125 (ebook) | ISBN 9780203733394 (Master eBook) | ISBN 9781351403542 (epub) | ISBN 9781138300484 (hardback) | ISBN 9781138300507 (pbk.): Routledge, 2019. http://dx.doi.org/10.4324/9780203733394-3.
Full textBrandt, Per Aage. "Umberto Eco, la gaia scienza." In Umberto Eco in His Own Words, edited by Torkild Thellefsen and Bent Sørensen, 1–4. Berlin, Boston: De Gruyter, 2017. http://dx.doi.org/10.1515/9781501507144-001.
Full textJordi, C., J. M. Carrasco, C. Fabricius, F. Figueras, and H. Voss. "Spectrophotometry with Gaia." In Astrophysics and Space Science Proceedings, 147–54. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-11250-8_14.
Full textMignard, François. "Status of the Gaia Mission." In Astrophysics and Space Science Proceedings, 197. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-59909-0_24.
Full textMasana, E., Y. Isasi, X. Luri, and J. Peralta. "The Gaia Simulator: Design and Results." In Astrophysics and Space Science Proceedings, 515. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-11250-8_154.
Full textCarrasco, J. M., H. Voss, C. Jordi, C. Fabricius, and F. Figueras. "Calibration Model for Gaia Photometry and Spectrophotometry." In Astrophysics and Space Science Proceedings, 385. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-11250-8_91.
Full textMoraïtis, Pavlos, Eleftheria Petraki, and Nikolaos I. Spanoudakis. "Engineering JADE Agents with the Gaia Methodology." In Lecture Notes in Computer Science, 77–91. Berlin, Heidelberg: Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/3-540-36559-1_8.
Full textKovaleva, Dana, Oleg Malkov, Sergei Sapozhnikov, Dmitry Chulkov, and Nikolay Skvortsov. "Data for Binary Stars from Gaia DR2." In Communications in Computer and Information Science, 125–33. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-81200-3_9.
Full textIsasi, Y., F. Figueras, X. Luri, and A. C. Robin. "GUMS & GOG: Simulating the Universe for Gaia." In Astrophysics and Space Science Proceedings, 415. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-11250-8_106.
Full textConference papers on the topic ""Gaïa scienza""
Sahlmann, J., J. Martín-Fleitas, A. Mora, A. Abreu, C. M. Crowley, and E. Joliet. "Enabling science with Gaia observations of naked-eye stars." In SPIE Astronomical Telescopes + Instrumentation, edited by Howard A. MacEwen, Giovanni G. Fazio, Makenzie Lystrup, Natalie Batalha, Nicholas Siegler, and Edward C. Tong. SPIE, 2016. http://dx.doi.org/10.1117/12.2231240.
Full textTang, Yifang, and Meiling Sun. "Localization Using GASA for Wireless Sensor Networks." In 2008 International Symposium on Computer Science and Computational Technology. IEEE, 2008. http://dx.doi.org/10.1109/iscsct.2008.269.
Full textWyrzykowski, Łukasz, Vasily Belokurov, and Coryn A. L. Bailer-Jones. "Self-Organizing Maps in application to the OGLE data and Gaia Science Alerts." In CLASSIFICATION AND DISCOVERY IN LARGE ASTRONOMICAL SURVEYS: Proceedings of the International Conference: “Classification and Discovery in Large Astronomical Surveys”. AIP, 2008. http://dx.doi.org/10.1063/1.3059046.
Full textEls, S. G., A. G. A. Brown, N. Cheek, G. Comoretto, M. Garcia-Reinaldos, G. Garcia, H. Siddiqui, and A. Vallenari. "More than two years of nominal mission: experiences from the Gaia science ground segment." In SPIE Astronomical Telescopes + Instrumentation, edited by George Z. Angeli and Philippe Dierickx. SPIE, 2016. http://dx.doi.org/10.1117/12.2232828.
Full textHolland, Andrew D., Michael A. Perryman, Cyril Vetel, Roy Steward, Ian B. Hutchinson, Richard M. Ambrosi, David R. Smith, et al. "Development of the CCDs for ESA GAIA cornerstone mission." In Optical Science and Technology, SPIE's 48th Annual Meeting, edited by Thomas J. Grycewicz and Craig R. McCreight. SPIE, 2004. http://dx.doi.org/10.1117/12.515401.
Full textLock, T., E. Mercier, S. Els, G. Gracia, W. O'Mullane, G. Comoretto, and J. Gallegos. "Product and quality assurance processes and ECSS compliance within a science ground segment using Gaia as an example." In SPIE Astronomical Telescopes + Instrumentation, edited by George Z. Angeli and Philippe Dierickx. SPIE, 2012. http://dx.doi.org/10.1117/12.926795.
Full textFajri, Ikhsan, Muksal Muksal, Eddy Gunawan, and Teuku Kesuma. "Risk Management Analysis In Gala Financing Procedures In Sharia Bank." In Proceedings of the 3rd International Conference on Economic and Social Science, ICON-ESS, 17–18 October 2018, Banda Aceh, Indonesia. EAI, 2020. http://dx.doi.org/10.4108/eai.17-10-2018.2294208.
Full textMeira, Roberta Rodrigues. "NANOPARTÍCULAS METÁLICAS: ANTIMICROBIANOS PROMISSORES." In I Congresso Brasileiro de Biotecnologia On-line. Revista Multidisciplinar de Educação e Meio Ambiente, 2021. http://dx.doi.org/10.51189/rema/796.
Full textDužinskytė, Viktorija, and Viktorija Stasytytė. "ŽEMĖS ŪKIO SEKTORIAUS RIZIKOS VALDYMAS." In Conference for Junior Researchers „Science – Future of Lithuania“. VGTU Technika, 2016. http://dx.doi.org/10.3846/mla.2015.901.
Full textLindholm, Teresa. "Gaia: Business solutions to sustainability - Combating biodiversity loss and climate change through collaboration between science, technology and business models." In 5th European Congress of Conservation Biology. Jyväskylä: Jyvaskyla University Open Science Centre, 2018. http://dx.doi.org/10.17011/conference/eccb2018/109158.
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