761 resultados para Nightclubs -- Lighting


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Durant les années 1950, les autorités municipales, sous la pression du département de la police, ont demandé le déboisement d’une section du parc du Mont-Royal. Cette section, communément appelée la « Jungle » et principalement composée de broussailles, de buissons et d’arbres, était fréquentée par une clientèle considérée comme indésirable. Cette dernière comprenait, essentiellement, des alcooliques, des voyous, des pervers, et, surtout, des homosexuels. Leur éradication s’est alors déployée selon un plan en trois étapes qui avait pour objectif de simplifier les techniques de surveillance utilisées par le département de la police. D’abord, une augmentation de l’éclairage, puis, le déboisement de la « Jungle », et, finalement, la construction d’une route, aujourd’hui connue sous le nom de Camillien-Houde. Le parc devenait ainsi plus accessible et plus sécuritaire. Les coupes, que l’on a appelées les « coupes de la moralité », ont eu un effet considérable sur l’environnement et la composition écologique du parc, donnant, entre autres, aux Montréalais, l’impression que le parc était devenu chauve (ce qui lui conféra d’ailleurs le surnom de Mont Chauve). Les transformations du parc du Mont-Royal n’étaient cependant pas limitées à sa Jungle. En fait, des modifications furent aussi mises en application dans d’autres sections considérées comme sous-développées. La métamorphose du parc et de sa « Jungle » était un acte de développement caractéristique de l’ère moderniste de la planification du Montréal d’après-guerre. La re-planification du parc du Mont-Royal témoigne ainsi d’une volonté sans bornes des autorités d’instaurer la moralité et la modernité dans la ville, volonté qui aura pour conséquence d’altérer la composition écologique du parc. C’est ce qui sera à l’origine d’une campagne nommée « Save-the-Mountain Movement », qui a cherché à empêcher la modernisation de l’espace et milité pour la réhabilitation du parc en tant que boisé paisible.

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Introdução: O presente trabalho tem como tema Microcirurgia Endodôntica sendo esta um tipo de Retratamento Endodôntico Cirúrgico (RTEC). Este tipo de procedimento está indicado em casos de insucesso prévio no Tratamento Endodôntico Não Cirúrgico (TENC). Embora atualmente os índices de sucesso do TENC sejam elevados, existem ainda alguns casos, que não atingem os resultados desejados mesmo realizando corretamente todas as etapas do tratamento. Quando assim é, há necessidade de abordar o sistema de canais radiculares por outra via: recorrer à cirurgia endodôntica e à obturação retrógrada. Objetivos: Esta dissertação tem como objetivo principal abordar uma técnica de Retratamento Endodôntico Cirúrgico: a Microcirurgia Endodôntica. Procedeu-se a uma revisão bibliográfica, analisando literatura que versa o tema, a evolução da técnica, o protocolo cirúrgico em toda a sua extensão, a sua utilidade e aplicabilidade na prática clínica. Materiais e métodos: Na execução desta revisão bibliográfica, os motores de pesquisa on-line utilizados foram os seguintes: b-On, Pubmed, Scielo, Science Direct e Google Académico. Os critérios de inclusão limitaram o uso de artigos publicados entre 2000 e 2016 e nos idiomas de português, inglês e espanhol. Os critérios de exclusão rejeitaram artigos dos quais o teor não teria relevância para a concretização do trabalho e artigos fora dos limites temporais. Conclusão: Na literatura científica, quando a técnica Microcirurgica é comparada com a técnica convencional de RTEC mostra uma taxa de sucesso de excelência e que maioritariamente, os autores defendem que esta deverá ser usada apenas como retratamento, e não isoladamente ou como primeira abordagem terapêutica. Nas últimas décadas, o crescente desenvolvimento científico e tecnológico da cirurgia endodôntica leva à introdução da microcirurgia graças ao recurso da magnificação e iluminação, instrumentos adaptados à nova realidade da cirurgia endodôntica, novos equipamentos e novos materiais associados à retrobturação. É de salientar que este processo cirúrgico é menos invasivo para o paciente e que se obtém um aumento das taxas de sucesso.

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In this paper, a smart wireless wristband is proposed. The potential of innovative gesture based interactivity with connected lighting solutions is reviewed. The solution is intended to offer numerous benefits, in terms of ease of use, and enhanced dynamic interactive functionality. A comparative analysis will be carried out between this work and existing solutions. The evolution of lighting and gesture controls will be discussed and an overview of alternative applications will be provided, as part of the critical analysis.

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Introducción: El síndrome de agotamiento profesional o de burnout se define como una respuesta al estrés laboral crónico, afecta con frecuencia a los trabajadores del sector salud y ha sido descrito según la Organización Mundial de la Salud (OMS) como un riesgo laboral. En su desarrollo intervienen distintos factores principalmente sociodemográficos y laborales. Objetivo: Determinar la prevalencia de síndrome de agotamiento profesional y su relación con las condiciones de trabajo del personal de salud de la zona rural del Cauca. Metodología: Se realizó un estudio de corte transversal en 4 hospitales rurales nivel I, con un muestreo probabilístico aleatorio simple, para un total de 212 trabajadores, de los cuales el 74.5% fueron asistenciales y el 25.5% administrativos, Se les aplicó el cuestionario Maslash Burnout Inventory (MBI) que consta de 22 ítems y mide los 3 aspectos del síndrome: cansancio emocional, despersonalización y falta de realización personal y el cuestionario nacional de condiciones de trabajo del instituto nacional de seguridad e higiene en el trabajo de España (INSHT). Se realizó un análisis de datos en STATA versión 12. Resultados: Se encontró una prevalencia general de síndrome de agotamiento profesional de 39.7% y según cada dimensión para cansancio emocional de 21.7%, para despersonalización de 15.1% y para realización personal de 13.7%. Se halló significancia estadística con relación a la edad y baja realización personal (p=0.037), con los factores de riesgo psicolaborales por sobrecarga y cansancio emocional (p=0.020), falta de autonomía y cansancio emocional (p=0.021) entre otros. En los factores de riesgo biomecánicos por falta de iluminación y cansancio emocional (p=0.000), falta de iluminación y despersonalización (p=0.017) y falta de iluminación y síndrome en general (p=0.000). Conclusión: La prevalencia de síndrome de agotamiento profesional en el personal de salud que trabaja en zona rural del Cauca fue de 39.7%, la dimensión más determinante fue cansancio emocional seguido de despersonalización y por ultimo realización personal. Se recomienda iniciar en la institución con un programa de vigilancia epidemiológica de prevención para el agotamiento laboral e intervenir en los factores biomecánicos y factores psicolaborales.

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The effects of plant density and the number of emitters per Styrofoam box on plant growth and nitrate (NO3-) concentration were evaluated in spinach (Spinacia oleracea L. cv. Tapir). Spinach seedlings were transplanted at 45 days after emergence into Styrofoam boxes filled with the substrate and were grown during winter in an unheated greenhouse with no supplemental lighting. The experiment was carried out with four treatments, including two plant densities (160 and 280 plants/m2) and two number of emitters per Styrofoam box (4 and 8 emitters). Each planting box was irrigated daily and fertigated with a complete nutrient solution. Shoot dry weight was not affected by plant density. However, yield increased with plant density and emitter number. Leaf-blade NO3- concentration was not affected by the interaction between plant density and number of emitters, but petioles NO3- concentration was greater in treatment with 160 plants/m2 and 8 emitters. Although leaf-blade NO3- concentration was not affected by plant density, it decreased with the number of emitters. On the other hand, petiole NO3- concentration was not affected by plant density or number of emitters. Leaf-blade NO3- concentration ranged from 3.2 to 4.1 mg/g fresh weight, occurring the highest value in the treatment with 280 plants/m2 and 4 emitters. Petiole NO3- concentration ranged from 3.5 to 5.3 mg/g fresh weight, values that were higher than allowed by EU regulation.

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This document addresses the direct and indirect use of energy in European organic greenhouse horticulture (OGH) with the aim of reviewing available means for making it more environmental friendly and identifying knowledge gaps that should be addressed to attain this aim. The first observation is that there is no common regulation for energy use in OGH, which is not unexpected, since the need for climatisation is not uniformly distributed in the EU (and outside). Accordingly, the EU directive on organic agriculture does not set limitations on the use of energy, but rather promotes the responsible use of energy and of natural resources. The restrictions and rules of most private standards are slightly more stringent. Some standards have specific restrictions on the amount and sources of energy and/or on the seasonal use of energy for heating. Some standards also address processes that may affect (in)direct energy use, such as cultivation methods, mulching, lighting and growing media or substrates. However, most private standards have no or little restrictions or regulations on energy use. Accordingly, it should not surprise that very little quantitative information is available about energy use in OGH. In the present document we have filled the gaps with data with estimates drawn on energy use in conventional greenhouses. With respect to ongoing research, whereas many of the present research results about energy use and saving in conventional greenhouses are relevant (and also applied) in OGH, little research is devoted to address the energy use that is peculiar to OGH, particularly energy use for humidity control. In short, there are still a lot of knowledge gaps to improve quality and to lower energy use in organic greenhouses. The purpose of this document is a summary of present relevant knowledge about energy use and energy saving and of the perspective for improvement. In particular, the goal is to make an overview on the methods and technologies which can be used to reduce the energy use in OGH. We start from the assumption that methods and technologies that are used for reducing direct and indirect energy in conventional greenhouses can also be applied in organic greenhouses. Research on reducing energy use in conventional greenhouses is also more widely available because the area of conventional greenhouse horticulture is much larger than the area of OGH. When implementing these methods and techniques we should take into account the specific characteristics of organic agriculture like soil-based cultivation, use of organic fertilizers and the limited use of crop protection products. This document is organised as follows: first we report the results of a survey about energy use and relevant standards in the countries participating to the COST action (chapter 1); then we review the energy use for climatisation: heating (chapter 2) and humidity (chapter 3). In chapter 4 we review the available design and management means that would either reduce energy use and/or increase energy use efficiency by increasing productivity of OGH. In chapter 5 we present a short summary of existing information on indirect energy use, that is the energy required to manufacture production means (greenhouse structure and cover, fertilisers, equipment etc.) and for crop protection, particularly steaming, and briefly discuss possible savings. Finally (chapter 6) we review briefly the potential for application of renewable energy sources in OGH.

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Abstract The effects of three commercial substrates (a mixture of forest residues, composted grape husks, and white peat, black peat and coir) on plant growth and nitrogen (N) and nitrate (NO3) concentration and content were evaluated in spinach (Spinacia oleracea L. cv. Tapir). Spinach seedlings were transplanted at 45 days after emergence into Styrofoam boxes filled with the substrates and were grown during winter and early spring in an unheated greenhouse with no supplemental lighting. Each planting box was irrigated daily by drip and fertilized with a complete nutrient solution. The NO3 content of the drainage water was lower in coir than in the other substrates. However, shoot NO3 concentration was not affected by substrate type, while yield and total shoot N and NO3 content were greater when plants were grown in peat than in the mixed substrate or the coir. Leaf chlorophyll meter readings provided a good indication of the amount of N in the plants and increased linearly with total shoot N. Keywords Spinacia oleracea; chlorophyll meter; coir; peat; soilless culture systems

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The effects of three commercial substrates (a mixture of forest residues, composted grape husks, and white peat, black peat and coir) on plant growth and nitrogen (N) and nitrate (NO3) concentration and content were evaluated in spinach (Spinacia oleracea L. cv. Tapir). Spinach seedlings were transplanted at 45 days after emergence into Styrofoam boxes filled with the substrates and were grown during winter and early spring in an unheated greenhouse with no supplemental lighting. Each planting box was irrigated daily by drip and fertilized with a complete nutrient solution. The NO3 content of the drainage water was lower in coir than in the other substrates. However, shoot NO3 concentration was not affected by substrate type, while yield and total shoot N and NO3 content were greater when plants were grown in peat than in the mixed substrate or the coir. Leaf chlorophyll meter readings provided a good indication of the amount of N in the plants and increased linearly with total shoot N.

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Among the various aspects to be investigated for a technological and productive upgrade of tomato greenhouse production in the Mediterranean area, the application of supplementary LED interlighting still shows limited interest. However, high-density tomato cultivation with intensive high-wire systems could lead to mutual shading and consequent reduction in photosynthesis and yield, even in case of appreciable amounts of external solar radiation, as in Southern Europe. Applications of interest could also involve off-season production or Building-Integrated Agriculture (BIA) such as rooftop greenhouses, where municipal regulations for structure and fire safety could limit the incoming radiation in the growing area. The aim of this research was to investigate diversified applications of supplemental LED interlighting for greenhouse tomato production (Solanum lycopersicum) in the Mediterranean countries. The diversified applications included: effects on post-harvest quality, shading reduction in BIA, tailored seedlings production, and off-season cultivation. The results showed that the application of supplemental LED light on greenhouse-grown tomato in Mediterranean countries (Italy and Spain) has potential to foster diverse applications. In particular, it can increase production in case of the limited solar radiation in rooftop greenhouses, maintain quality and reduce losses during post-harvest, help producing high quality and tailored seedlings, and increase yield during wintertime. Despite the positive results obtained, some aspects of the application of additional LED light in Southern Europe countries still need to be deepened and improved. In particular, given the current increase of electricity cost, future research should focus on more economically valuable methods of managing supplemental lighting, such as the application of shorter photoperiods or lower intensities, or techniques that can provide energy savings such as the pulsed light.

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The research project of my experimental thesis deals with the design, synthesis and characterization of a new series of luminescent metallapolymers to be exploited for their peculiar photophysical and opto-electronic properties. To this end, our design strategy consisted in the incorporation of brightly luminescent and colour tuneable Ir(III) cyclometalated complexes with general formula [Ir(C^N)2(N^N)]+, where C^N represents various phenyl piridine based cyclometalating ligands and N^N is an aromatic chelating N-heterocyle, into methyl methacrylate (MMA) based copolymers. Whereas the choice of the cyclometalating ligands was driven by the possibility to obtain different emission colours, the design of the N^N ligands was aimed to obtain a molecule capable of providing the chelate coordination to the metal centre and, at the same time, of being susceptible to polymerisation reactions. To fulfil these requirements, a new molecule (abbreviated as L) consisting in an alkylated 2-pyrydyl tetrazole structure equipped with a styryl unit was designed and successfully prepared. The preparation of the target cationic metallapolymers was accomplished by the complexation of the preformed MMA-L copolymers with different amounts of an appropriate Ir(III) dimeric precursor [(Ir(C^N)2Cl)2]. The investigation of the photophysical features of the new hybrid compounds in the solid state at r.t. suggested how these metallapolymers displayed brightly intense phosphorescent emissions, whose colour was found to span from blue to yellow according to the nature of the cyclometalating ligands. In all cases, the emissive performances were superior to those displayed by the corresponding mononuclear “model” complexes. These promising results pave the way for the application of this new class of metallapolymers as Luminescent Solar Concentrators for the photovoltaic technology and/or to solid state lighting.

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Neural scene representation and neural rendering are new computer vision techniques that enable the reconstruction and implicit representation of real 3D scenes from a set of 2D captured images, by fitting a deep neural network. The trained network can then be used to render novel views of the scene. A recent work in this field, Neural Radiance Fields (NeRF), presented a state-of-the-art approach, which uses a simple Multilayer Perceptron (MLP) to generate photo-realistic RGB images of a scene from arbitrary viewpoints. However, NeRF does not model any light interaction with the fitted scene; therefore, despite producing compelling results for the view synthesis task, it does not provide a solution for relighting. In this work, we propose a new architecture to enable relighting capabilities in NeRF-based representations and we introduce a new real-world dataset to train and evaluate such a model. Our method demonstrates the ability to perform realistic rendering of novel views under arbitrary lighting conditions.