967 resultados para K-Nearest Neighbor


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Comprend : [Planche du 1er Frontispice. Parisienne fin de siècle] [Cote : BNF C214312] ; [2ème frontispice. Hommes et femmes de la bourgeoisie dans un café parisien.] [Cote : BNF 91C153751] ; [Planche du 3ème frontispice. Homme et deux élégantes dans un café parisien.] [Cote : BNF C214313] ; [Planche en regard de la p.11. Bourgeois et élégantes parisiennes.] [Cote : BNF C214314] ; [Planche en regard de la p.37. L'ambulante.] [Cote : BNF C39544] ; [Planche en regard de la p.49. Le marchand de marrons parisien.] [Cote : BNF C39545] ; [Planche en regard de la p.55. La Bièvre. Paysage des alentours de Paris.] [Cote : BNF C39546] ; [Planche en regard de la p.66. La rue de la Chine à Paris.] [Cote : BNF C39547] ; [Planche en regard de la p.85. Homme mangeant à une table de café parisien.] [Cote : BNF C214315] ; [Planche en regard de la p.99. Elégante parisienne.] [Cote : BNF C214316]

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O abacaxi Gold (MD-2) tem atraído interesse no Brasil, visando à exportação. No entanto, há poucas informações científicas no País sobre o manejo nutricional dessa cultivar. O presente trabalho teve por objetivo determinar o efeito da adubação com N, P e K no estado nutricional da planta, no desenvolvimento, na produtividade e na qualidade dos frutos do abacaxi MD-2. Foram avaliados os efeitos de cinco doses de N, cinco de P2O5 e cinco de K 2O sobre as características de crescimento da folha D e do fruto, bem como sobre os teores de N, P e K das folhas D e as características de qualidade do fruto. Concluiu-se que as maiores produtividade e massa de fruto foram obtidas com a aplicação de 650,6 kg ha-1 de N e 735,9 kg ha-1 de K2O, correspondendo a 12,7 e 14,4 g/planta de N e K2O, respectivamente. Nesse caso, a indução floral deve ser recomendada quando a folha D apresentar comprimento > 75,5 cm. Os valores das características de qualidade do fruto diminuíram com a aplicação de N e aumentaram com a adição de P e K, sendo que as doses máximas de 205,8 kg ha-1 de P2O5 e 703,4 kg ha-1 de K2O corresponderam a 4,01 e 13,7 g/planta de N e K2O, respectivamente.

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We make a thorough study of the process of three-body kaon absorption in nuclei, in connection with a recent FINUDA experiment which claims the existence of a deeply bound kaonic state from the observation of a peak in the Lambdad invariant mass distribution following K- absorption on 6Li. We show that the peak is naturally explained in terms of K- absorption from three nucleons leaving the rest as spectators. We can also reproduce all the other observables measured in the same experiment and used to support the hypothesis of the deeply bound kaon state. Our study also reveals interesting aspects of kaon absorption in nuclei, a process that must be understood in order to make progress in the search for K- deeply bound states in nuclei.

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We study a confined mixture of bosons and fermions in the quantal degeneracy regime with attractive boson-fermion interaction. We discuss the effect that the presence of vortical states and the displacement of the trapping potentials may have on mixtures near collapse, and investigate the phase stability diagram of the K-Rb mixture in the mean-field approximation supposing in one case that the trapping potentials felt by bosons and fermions are shifted from each other, as it happens in the presence of a gravitational sag, and in another case, assuming that the Bose condensate sustains a vortex state. In both cases, we have obtained an analytical expression for the fermion effective potential when the Bose condensate is in the Thomas-Fermi regime, that can be used to determine the maxima of the Fermionic density. We have numerically checked that the values one obtains for the location of these maxima using the analytical formulas remain valid up to the critical boson and fermion numbers, above which the mixture collapses.

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We study the properties of (K) over bar* mesons in nuclear matter using a unitary approach in coupled channels within the framework of the local hidden gauge formalism and incorporating the (K) over bar pi decay channel in matter. The in-medium (K) over bar *N interaction accounts for Pauli blocking effects and incorporates the (K) over bar* self-energy in a self-consistent manner. We also obtain the (K) over bar* (off-shell) spectral function and analyze its behavior at finite density and momentum. At a normal nuclear matter density, the (K) over bar* meson feels a moderately attractive potential, while the (K) over bar* width becomes five times larger than in free space. We estimate the transparency ratio of the gamma A -> K+K*(-) A` reaction, which we propose as a feasible scenario at the present facilities to detect changes in the properties of the (K) over bar* meson in nuclear medium.

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We present the study of discrete breather dynamics in curved polymerlike chains consisting of masses connected via nonlinear springs. The polymer chains are one dimensional but not rectilinear and their motion takes place on a plane. After constructing breathers following numerically accurate procedures, we launch them in the chains and investigate properties of their propagation dynamics. We find that breather motion is strongly affected by the presence of curved regions of polymers, while the breathers themselves show a very strong resilience and remarkable stability in the presence of geometrical changes. For chains with strong angular rigidity we find that breathers either pass through bent regions or get reflected while retaining their frequency. Their motion is practically lossless and seems to be determined through local energy conservation. For less rigid chains modeled via second neighbor interactions, we find similarly that chain geometry typically does not destroy the localized breather states but, contrary to the angularly rigid chains, it induces some small but constant energy loss. Furthermore, we find that a curved segment acts as an active gate reflecting or refracting the incident breather and transforming its velocity to a value that depends on the discrete breathers frequency. We analyze the physical reasoning behind these seemingly general breather properties.

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Poultry litter is an important nutrient source in agriculture, although little information is available regarding its decomposition rate and nutrient release. To evaluate these processes, poultry litter (PL) was applied to the soil to supply 100, 200 and 300 kg ha-1 N contained in 4,953, 9,907 and 14,860 kg ha-1 PL, respectively. The litter bag technique was used to monitor the process of decomposition and nutrient release from the litter. These bags were left on the soil surface and collected periodically (after 15, 30, 60, 90, 120, 150, 180, 210, 240, 270, 300, 330, and 365 days). The dry matter (DM) loss was highest (35 %) after the first 30 days of field incubation. The highest nutrient release occurred in the first 60 days on the field, when 40, 34, 91, and 39 %, respectively, of N, P, K, and Ca of the initial PL dry matter (4,860 kg ha-1) was already released to the soil. In absolute terms, these percentages represent 40, 23, 134, and 69 kg ha-1 of N, P, K, and Ca and these values doubled and tripled as the PL fertilization rates increased to 9,907 and 14,860 kg ha-1, respectively. After one year of field incubation, the residual contents in the litter were 27, 15, 18 and 30 % of the initial DM , and N, P and Ca, respectively. The release rate of K was the fastest and 91 % of the K had been released from the PL after 30 days of field incubation.