974 resultados para Trento, Concilio de, 1545-1563


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Infestations of the marine macrophytic alga Caulerpa taxifolia were discovered in Agua Hedionda Lagoon, California in 2000. Rapid response actions included containment under pvc tarps coupled with injection of liquid sodium hypochlorite. To assess the efficacy of these treatments, replicated sediment cores were removed from representative treated sites and transferred to grow-out facilities. Similar cores from uninfested (control) sediments were removed, inoculated with viable explants of C. taxifolia and placed in grow-out facilities. Results from two sampling periods (1 year, 2 years post-treatment) showed that no viable C. taxifolia emerged in cores, and that inoculated “control” sediments supported normal growth. Eelgrass ( Zostera marina L.) seedlings emerged from native seed-banks in “treated” cores, which also supported growth of some invertebrates (annelid worms and hydroids). This study provided essential verification of C. taxifolia eradication efforts, and demonstrates the feasibility of incorporating quality control/quality assurance components in rapid response actions. Results of this study also suggest that seeds of eelgrass are viable for at least two years. (PDF has 9 pages.)

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Florian de Ocampo, religioso e escritor espanhol, nasceu em Zamora entre os anos de 1490 e 1499 e morreu na mesma cidade, entre 1555 e 1559. Foi no meado cronista-real, em 1539, cargo que lhe permitiu reunir o material e dar continuidade à obra ‘Coronica general de Espana’ que já havia iniciado por conta própria. Continuada por Ambrósio de Morales a partir do volume três desta coleção, o titulo da obra é alterado nos volumes nove e dez para ‘Livro de las antiguedades de las ciudades de Espana’. Ambrósio de Morales, historiador espanhol nasceu em 1513 e morreu em 1591, na cidade de Córdoba. Estudou na Universidade de Alcalá, onde lecionou Retórica, manifestando aí seu interesse pelos estudos históricos. Foi nomeado, em 1563, cronista-mor dando continuidade à obra Coronica general de Espana, publicando em 1574 o seu primeiro volume. Na obra ‘Coronica General de Espana’, Ocampo se propunha a narrar com certa unidade a história da Espanha. Planejada em oitenta volumes, foram publicados apenas cinco: quatro em Zamora, em 1543 e um em Medina, em 1553. Nesta edição os dois primeiros volumes foram reunidos. Palau considera-a uma obra fabulosa sobre as origens dos espanhóis e da Espanha. Segundo Brunet, esta obra teve algumas reimpressões com notáveis adições em Medina dei Campo, em 1553, em Alcalá, em 1578, e em Madri no período de 1791 e 1792, em dez volumes.

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Esta é a primeira edição da Quarta década, que completa tanto a primeira edição das décadas anteriores (1553-1563), como a segunda edição de 1628, mandadas imprimir pelo Senado da Câmara de Lisboa, como é o caso desta coleção, e prática mencionada por Innocencio da Silva. Palau menciona haver alguns exemplares como este, com dezesseis folhas preliminares, quando o norma seriam dez folhas, mais a de rosto. No final, figura o nome do impressor: Anibal Folorsi. Há nesse exemplar uma página de rosto original, solta, e uma fac-similada. O mada da Ilha de Iaoa tem a parte inferior acrescntada em dois centímetros, com o desenho da escala a lápis.

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Frei Heitor Pinto nasceu em covilhã, Portugal, em 1528, e morreu em Toledo, Espanha, em 1584. Foi um dos mais eminentes escritores do seu tempo, sendo, atualmente, considerado um dos clássicos portugueses.

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The field of cavity-optomechanics explores the interaction of light with sound in an ever increasing array of devices. This interaction allows the mechanical system to be both sensed and controlled by the optical system, opening up a wide variety of experiments including the cooling of the mechanical resonator to its quantum mechanical ground state and the squeezing of the optical field upon interaction with the mechanical resonator, to name two.

In this work we explore two very different systems with different types of optomechanical coupling. The first system consists of two microdisk optical resonators stacked on top of each other and separated by a very small slot. The interaction of the disks causes their optical resonance frequencies to be extremely sensitive to the gap between the disks. By careful control of the gap between the disks, the optomechanical coupling can be made to be quadratic to first order which is uncommon in optomechanical systems. With this quadratic coupling the light field is now sensitive to the energy of the mechanical resonator and can directly control the potential energy trapping the mechanical motion. This ability to directly control the spring constant without modifying the energy of the mechanical system, unlike in linear optomechanical coupling, is explored.

Next, the bulk of this thesis deals with a high mechanical frequency optomechanical crystal which is used to coherently convert photons between different frequencies. This is accomplished via the engineered linear optomechanical coupling in these devices. Both classical and quantum systems utilize the interaction of light and matter across a wide range of energies. These systems are often not naturally compatible with one another and require a means of converting photons of dissimilar wavelengths to combine and exploit their different strengths. Here we theoretically propose and experimentally demonstrate coherent wavelength conversion of optical photons using photon-phonon translation in a cavity-optomechanical system. For an engineered silicon optomechanical crystal nanocavity supporting a 4 GHz localized phonon mode, optical signals in a 1.5 MHz bandwidth are coherently converted over a 11.2 THz frequency span between one cavity mode at wavelength 1460 nm and a second cavity mode at 1545 nm with a 93% internal (2% external) peak efficiency. The thermal and quantum limiting noise involved in the conversion process is also analyzed and, in terms of an equivalent photon number signal level, are found to correspond to an internal noise level of only 6 and 4 times 10x^-3 quanta, respectively.

We begin by developing the requisite theoretical background to describe the system. A significant amount of time is then spent describing the fabrication of these silicon nanobeams, with an emphasis on understanding the specifics and motivation. The experimental demonstration of wavelength conversion is then described and analyzed. It is determined that the method of getting photons into the cavity and collected from the cavity is a fundamental limiting factor in the overall efficiency. Finally, a new coupling scheme is designed, fabricated, and tested that provides a means of coupling greater than 90% of photons into and out of the cavity, addressing one of the largest obstacles with the initial wavelength conversion experiment.

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We propose a simple single-layer magnetic microtrap configuration which can trap an array of magnetically-trapped Bose-Einstein condensate. The configuration consists of two series of parallel wires perpendicular to each other and all of the crossing points are cut off for maintaining the uniformity of the current. We analyse the trapping potential, the position of trapping centres and the uniformity of the array of the traps. The trapping depth and trapping frequency with different parameters are also calculated. Lastly, the effect of the cut-off crossing points, dissipate power, chip production are introduced concisely.