999 resultados para Guillaume de Saint-Pair, fl. ca. 1170.
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Os primatas são animais que possuem elo social entre a mãe e sua prole, diferente de outras ordens de mamíferos. A sobrevivência do infante primata é completamente dependente do cuidado provido por membros de seu grupo social, particularmente do cuidado materno. O objetivo deste estudo foi analisar a utilização do recinto por um infante de bugio e sua proximidade com os pais. O grupo de bugios era composto por um casal de adultos e seu filhote fêmea com quatro meses de idade. O período de observações foi de agosto a dezembro/2006, perfazendo uma média de 96 horas de esforço de amostragem. O método de observação foi o animal focal com registro instantâneo, com intervalos de 30 segundos durante uma hora por dia. O local do estudo foi o recinto de exposição da Fundação Zoo-Botânica de Belo Horizonte, com 7m de altura, 6 m de largura, 7 m de profundidade com presença de paisagismo interno. As observações revelaram um contato maior do infante com a mãe em relação ao pai e um distanciamento significativo (P < 0,05) do filhote em relação ao contato materno, com o aumento da idade e maior independência. O local mais utilizado durante os três primeiros meses de cativeiro foi a pérgola. No mês de dezembro, período de maior pluviosidade, o filhote aumentou interações ventrais com a mãe, e permaneceu mais tempo no cano. As informações obtidas neste trabalho contribuem para um melhor entendimento em relação aos infantes de Alouatta fusca, suas interações sociais e uso do espaço que podem ser utilizados para aprimorar o manejo ex-situ dos animais, criando melhores condições para a estadia dos mesmos em cativeiro, utilizando-se de estruturas adequadas que simulem o ambiente natural, a fim de garantir o bem-estar dos bugios e assim, a sobrevivência da espécie.
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Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e Computadores
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An analysis is presented of events containing jets including at least one b-tagged jet, sizeable missing transverse momentum, and at least two leptons including a pair of the same electric charge, with the scalar sum of the jet and lepton transverse momenta being large. A data sample with an integrated luminosity of 20.3 fb−1 of pp collisions at s√=8 TeV recorded by the ATLAS detector at the Large Hadron Collider is used. Standard Model processes rarely produce these final states, but there are several models of physics beyond the Standard Model that predict an enhanced rate of production of such events; the ones considered here are production of vector-like quarks, enhanced four-top-quark production, pair production of chiral b′-quarks, and production of two positively charged top quarks. Eleven signal regions are defined; subsets of these regions are combined when searching for each class of models. In the three signal regions primarily sensitive to positively charged top quark pair production, the data yield is consistent with the background expectation. There are more data events than expected from background in the set of eight signal regions defined for searching for vector-like quarks and chiral b′-quarks, but the significance of the discrepancy is less than two standard deviations. The discrepancy reaches 2.5 standard deviations in the set of five signal regions defined for searching for four-top-quark production. The results are used to set 95% CL limits on various models.
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A search for the associated production of the Higgs boson with a top quark pair is performed in multilepton final states using 20.3 fb−1 of proton-proton collision data recorded by the ATLAS experiment at s√=8 TeV at the Large Hadron Collider. Five final states, targeting the decays H→WW∗, ττ, and ZZ∗, are examined for the presence of the Standard Model (SM) Higgs boson: two same-charge light leptons (e or μ) without a hadronically decaying τ lepton; three light leptons; two same-charge light leptons with a hadronically decaying τ lepton; four light leptons; and one light lepton and two hadronically decaying τ leptons. No significant excess of events is observed above the background expectation. The best fit for the tt¯H production cross section, assuming a Higgs boson mass of 125 GeV, is 2.1+1.4−1.2 times the SM expectation, and the observed (expected) upper limit at the 95% confidence level is 4.7 (2.4) times the SM rate. The p-value for compatibility with the background-only hypothesis is 1.8σ; the expectation in the presence of a Standard Model signal is 0.9σ.
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This paper reviews and extends searches for the direct pair production of the scalar supersymmetric partners of the top and bottom quarks in proton--proton collisions collected by the ATLAS collaboration during the LHC Run 1. Most of the analyses use 20 fb−1 of collisions at a centre-of-mass energy of s√=8 TeV, although in some case an additional 4.7 fb−1 of collision data at s√=7 TeV are used. New analyses are introduced to improve the sensitivity to specific regions of the model parameter space. Since no evidence of third-generation squarks is found, exclusion limits are derived by combining several analyses and are presented in both a simplified model framework, assuming simple decay chains, as well as within the context of more elaborate phenomenological supersymmetric models.
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Searches for both resonant and non-resonant Higgs boson pair production are performed in the hh→bbττ,γγWW∗ final states using 20.3 fb−1 of pp collision data at a center-of-mass energy of 8 TeV recorded with the ATLAS detector at the Large Hadron Collider. No evidence of their production is observed and 95% confidence level upper limits on the production cross sections are set. These results are then combined with the published results of the hh→γγbb,bbbb analyses. An upper limit of 0.69 (0.47) pb on the non-resonant Standard Model like hh production is observed (expected), corresponding to 70 (48) times of the SM gg→hh cross section. For production via narrow resonances, cross section limits of hh production from a heavy Higgs boson decay are set as a function of the heavy Higgs boson mass. The observed (expected) limits range from 2.1 (1.1) pb at 260 GeV to 0.011 (0.018) pb at 1000 GeV. These results are interpreted in the context of two simplified scenarios of the Minimal Supersymmetric Standard Model.
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Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e de Computadores
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