6 resultados para internet-based computations

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The present work reports on the practical cooperation between two Universities from Hungary and Portugal. Students from Portugal are remotely accessing an experimental facility, which is physically in Hungary. The cooperation among these Higher Education establishments allowed the development and testing of a Remote Laboratory at the BME. This paper reports on the characteristics and initial testing of the Thermocouples Rise Time Measurement System and provides information on development and students' feedback.

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Glucose sensing is an issue with great interest in medical and biological applications. One possible approach to glucose detection takes advantage of measuring changes in fluorescence resonance energy transfer (FRET) between a fluorescent donor and an acceptor within a protein which undergoes glucose-induced changes in conformation. This demands the detection of fluorescent signals in the visible spectrum. In this paper we analyzed the emission spectrum obtained from fluorescent labels attached to a protein which changes its conformation in the presence of glucose using a commercial spectrofluorometer. Different glucose nanosensors were used to measure the output spectra with fluorescent signals located at the cyan and yellow bands of the spectrum. A new device is presented based on multilayered a-SiC:H heterostructures to detect identical transient visible signals. The transducer consists of a p-i'(a-SiC:H)-n/p-i(a-Si:H)-n heterostructure optimized for the detection of the fluorescence resonance energy transfer between fluorophores with excitation in the violet (400 nm) and emissions in the cyan (470 nm) and yellow (588 nm) range of the spectrum. Results show that the device photocurrent signal measured under reverse bias and using appropriate steady state optical bias, allows the separate detection of the cyan and yellow fluorescence signals presented.

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Combined tunable WDM converters based on SiC multilayer photonic active filters are analyzed. The operation combines the properties of active long-pass and short-pass wavelength filter sections into a capacitive active band-pass filter. The sensor element is a multilayered heterostructure produced by PE-CVD. The configuration includes two stacked SiC p-i-n structures sandwiched between two transparent contacts. Transfer function characteristics are studied both theoretically and experimentally. Results show that optical bias activated photonic device combines the demultiplexing operation with the simultaneous photodetection and self amplification of an optical signal acting the device as an integrated photonic filter in the visible range. Depending on the wavelength of the external background and irradiation side, the device acts either as a short- or a long-pass band filter or as a band-stop filter. The output waveform presents a nonlinear amplitude-dependent response to the wavelengths of the input channels. A numerical simulation and two building-blocks active circuit is presented and gives insight into the physics of the device.

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WDM multilayered SiC/Si devices based on a-Si:H and a-SiC:H filter design are approached from a reconfigurable point of view. Results show that the devices, under appropriated optical bias, act as reconfigurable active filters that allow optical switching and optoelectronic logic functions development. Under front violet irradiation the magnitude of the red and green channels are amplified and the blue and violet reduced. Violet back irradiation cuts the red channel, slightly influences the magnitude of the green and blue ones and strongly amplifies de violet channel. This nonlinearity provides the possibility for selective removal of useless wavelengths. Particular attention is given to the amplification coefficient weights, which allow taking into account the wavelength background effects when a band needs to be filtered from a wider range of mixed signals, or when optical active filter gates are used to select and filter input signals to specific output ports in WDM communication systems. A truth table of an encoder that performs 8-to-1 multiplexer (MUX) function is presented.

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Na história da comunicação moderna, após o desenvolvimento da imprensa, o telégrafo desencadeou uma revolução nas comunicações da qual a Internet é a herdeira contemporânea. A reflexão sobre o telégrafo pode abrir perspectivas sobre as tendências, as possibilidades e os problemas colocados pela Internet. O telégrafo tem sido objecto de estudos que tendem a privilegiar sobretudo a história desta tecnologia, o contexto social e o seu significado institucional (ex. Thompson, 1947; Standage 2007 [1998]). James W. Carey, no seu ensaio “Technology and Ideology. The Case of the Telegraph”, propõe uma abordagem distinta. No telégrafo, vê o protótipo de muitos impérios comerciais de base científico-tecnológica que se lhe seguiram, um modelo pioneiro para a gestão de empresas complexas; um dos promotores da configuração nacional do mercado e de um sistema nacional de comunicações; e um catalisador de um pensamento futurista e utópico das tecnologias da informação. Tendo no horizonte a revolução das comunicações promovida pela Internet, o artigo revisita aquele ensaio seminal para explorar o alcance, mas também os problemas de uma perspectiva que concebe a inovação do telégrafo como uma metáfora para todas as inovações que anunciaram o período histórico da modernidade e que tem determinado até aos nossos dias as principais linhas de desenvolvimento das comunicações modernas.

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Trabalho de Projeto realizado para obtenção do grau de Mestre em Engenharia Informática e de Computadores