990 resultados para Dissipative 2-state System


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A solid state system having the configuration WO 3/Ormolyte/CeO2-TiO2 has been assembled. Syntheses routes for tungsten oxide WO3, and cerium-titanium CeO 2-TiO2 oxide sols, were developed. A novel solid electrolyte - Ormolyte is reported, which were obtained by the sol-gel process, they have a chemical stability due to the covalent bonds between the inorganic and organic phase, and were prepared with different [O]/[L] ratios, being the best for [O]/[L]=15. The variation of transmittance of the electrochromic device using the ormolyte [O]/[L]=15 was 35% (colored state) and 77% (bleached state).

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The main function of the immune system is the defense against infection, being composed by the leukocytes that modulate the immune response, which can be innate or adaptive. The physical exercise can causes positive or negative alterations in the total or relative number of leukocytes. When the exercise has a low or moderate intensity it`s considered beneficial for improving the function of the cells responsible for the defense and to reduce the risk of infectious illnesses. The type 2 diabetes is related to an incapacity of the body in rightly respond to insulin, associated to an resistance to its actions. The purpose of this research was to make a study of the immune system characteristics, as well as the type 2 diabetes and the relation among both and the physical exercise. So, it was analyzed a group of type 2 diabetics coming from Diabetics House of Franca -SP, treated through a program of mix physical training. Two collections of blood were pre and post training program for the pair comparable of the participants. It was found positive alterations of the subpopulations of leukocytes that show a probable improvement of the immunological state what allows us to suggest about a possible improvement of the immunological activity, what would be measured by the activation of these cells forward to an inflammatory/infectious condition. So, we suggest that future studies involving diabetes, immune system and physical exercise be encouraged.

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Roger Casement

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Energy storage at low maintenance cost is one of the key challenges for generating electricity from the solar energy. This paper presents the theoretical analysis (verified by CFD) of the night time performance of a recently proposed conceptual system that integrates thermal storage (via phase change materials) and thermophotovoltaics for power generation. These storage integrated solar thermophotovoltaic (SISTPV) systems are attractive owing to their simple design (no moving parts) and modularity compared to conventional Concentrated Solar Power (CSP) technologies. Importantly, the ability of high temperature operation of these systems allows the use of silicon (melting point of 1680 K) as the phase change material (PCM). Silicon's very high latent heat of fusion of 1800 kJ/kg and low cost ($1.70/kg), makes it an ideal heat storage medium enabling for an extremely high storage energy density and low weight modular systems. In this paper, the night time operation of the SISTPV system optimised for steady state is analysed. The results indicate that for any given PCM length, a combination of small taper ratio and large inlet hole-to-absorber area ratio are essential to increase the operation time and the average power produced during the night time. Additionally, the overall results show that there is a trade-off between running time and the average power produced during the night time. Average night time power densities as high as 30 W/cm(2) are possible if the system is designed with a small PCM length (10 cm) to operate just a few hours after sun-set, but running times longer than 72 h (3 days) are possible for larger lengths (50 cm) at the expense of a lower average power density of about 14 W/cm(2). In both cases the steady state system efficiency has been predicted to be about 30%. This makes SISTPV systems to be a versatile solution that can be adapted for operation in a broad range of locations with different climate conditions, even being used off-grid and in space applications.