975 resultados para Tuning.


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Several pseudo-binary RxR2-x'Fe-17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rhombohedral Th2Zn17-type crystal structure determined from x-ray and neutron powder diffraction. The choice of compositions was done with the aim of tuning the Curie temperature (T-C) in the 270 +/- 20 K temperature range, in order to obtain the maximum magneto-caloric effect around room temperature. The investigated compounds exhibit broad isothermal magnetic entropy changes, Delta S-M(T), with moderate values of the refrigerant capacity, even though the values of Delta S-M(Peak) are relatively low compared with those of the R2Fe17 compounds with R = Pr or Nd. The reduction on the Delta S-M(Peak) is explained in terms of the diminution in the saturation magnetization value. Furthermore, the Delta S-M(T) curves exhibit a similar caret-like behavior, suggesting that the magneto-caloric effect is mainly governed by the Fe-sublattice. A single master curve for Delta S-M/Delta S-M(Peak)(T) under different values of the magnetic field change are obtained for each compound by rescaling of the temperature axis.

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以两种吡唑啉衍生物为空穴传输材料(HTM)和BBOT为电子传输材料组成双层器件,获得了相对于组成材料的荧光光谱红移和宽化的电致发光.双层器件和HTM:BBOT等摩尔混蒸薄膜的光致发光及电致发光测量表明,该谱带来自HTM/BBOT界面激基复合物的发射,根据器件的能级图,激基复合物的类型为BBOT的激发态BBOT^

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Este trabalho consiste em investigar as marcas do pensamento da desconstrução, em especial da filosofia de Jacques Derrida, nos ensaios críticos de Silviano Santiago. No entanto, o objetivo não se esgota em uma visada meramente expositiva, ou seja, apenas colocar em relevo as noções propostas pelo filósofo argelino em suas obras que por ventura apareçam nos ensaios selecionados crítico literário. Mais do que isso, pretende-se mostrar como a articulação desconstrutora é útil ao crítico na discussão de seus próprios temas, principalmente a questão da dependência cultural. Foram selecionados ensaios de suas coletâneas publicadas no fim do século XX e início do XXI, de modo a evidenciar um eixo temático que perpassa a sua obra, voltada a pensar os esquemas cristalizados de trocas culturais, a partir de questionamentos amplos que visam a subverter as hierarquias estabelecidas, abrindo espaço para a alteridade do outro como diferença, mediante o aporte da noção derridiana de différance. No que concerne especificamente aos estudos literários, serão apresentadas as leituras que Santiago faz das estratégias estéticas que reiteram, deslocam ou reiteram para deslocar os paradigmas de globalização, considerando a literatura como uma modalidade discursiva inserida no campo mais amplo da cultura, afinando sua discussão com as estratégias desconstrutoras de Derrida

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A presente tese aborda e discute a experiência sobre uma prática clínica desenvolvida a partir de demandas que se originaram no próprio campo da pesquisa, o Centro Cultural Cartola, território sociocultural, que agregou, com a instauração da clínica Afinando as Emoções, o radical psi às atividades oferecidas, passando a denominar-se psicossociocultural. Com a inserção dessa nova prática, foi possível dizer que o Centro Cultural Cartola se confirma como Território da Esperança, lugar com possibilidades de oferecer uma rede de atividades capaz de auxiliar os sujeitos no processo de ressignificação, já que promove maior consciência de si, instrumentalizando-os a romperem com a discriminação e o estigma que a pobreza lhes reserva como destino. A Afinando as Emoções configurou-se como clínica que atua no social, seja sob o ponto de vista teórico, seja por confirmar a possibilidade do exercício clínico dentro do espaço habitado pelo sujeito da demanda, no qual o desejo e as singularidades são o destaque. Também faculta aos sujeitos que lá se integram/entregam uma oportunidade de conhecerem e de experienciarem novas perspectivas de estar no mundo

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Esta pesquisa aborda em primeiro momento os conceitos de crimes de perigo abstrato e concreto. Estendeu a ideia de crime e as funções do Direito Penal na sociedade contemporânea, como ainda evidencia esta área do Direito no sistema e/ou estrutura do mundo da vida. Os dois casos de crimes de perigo abstrato e concreto foram propostos nos estudos acerca do artigo 306 do Código de Trânsito Brasileiro CTB no tratado à embriaguez ao volante e a constitucionalidade ou não da aplicação do crime de perigo abstrato ao caso em específico. Nesta perspectiva as análises se configuraram nos relatos dos Tribunais de Justiça dos Estados do Rio de Janeiro e de Rondônia a fim de significar as tipificações em tela, bem como às relações intersubjetivas dos desembargadores e à própria organização de cada órgão judiciário. Dessas análises foi possível chegar à interpretação das diferenças entre o crime de perigo abstrato e concreto presentes nas incidências e/ou ocorrências de acidentes de trânsito nos dois Estados respectivamente. Em um terceiro momento centrou-se as análises nos estudos socioeconômicos e culturais que tratam de entender o fenômeno do trânsito nos municípios de Porto Velho-RO e Rio de Janeiro-RJ, cujos acidentes nas vias públicas modificam os modos de ser e de viver nos locais. Do ponto de vista metodológico a ideia é conceituar os crimes de perigo concreto e abstrato; os riscos da sociedade atual, se utilizando muitas vezes de Niklas Luhmann e Raffaele De Giorgi; Leonel S. Rocha; Renato de Mello Jorge Silveira; Jorge Luis Fortes Pinheiro da Câmara; Aparecida Luzia Alzira Zuin, Jürgen Habermas, Juarez Estevam Xavier Tavares; Eduardo Sanz de Oliveira Silva; Winfried Hassemer; Antônio Carlos Wolkmer e José Rubens Morato Leite; Diego Romero, entre outros. A fim de entender o que é perigo no escopo abrangido pelo Direito Penal, tomamos como embasamentos teóricos Luiz H. Merlin; Sánchez Silva, Luís Greco, Claus Roxin, Nilo Batista etc. Além desses autores, a tese se apoia nos teóricos: Juarez Tavares, Luiz Alberto Machado; E. Raúl Zaffaroni; Alexandre de Moraes. Ainda, complementamos as referências com Luiz Regis Prado; Nilo Batista. Estende-se à ideia aos crimes de perigo abstrato e direito penal brasileiro; aqui, encontramos subsídios em: Celso Delmanto; Luiz Flávio Gomes, dentre outros. Vale mencionar que neste diapasão, a proposta é conceituar e exemplificar os princípios legitimadores do Direito Penal frente à proposta fundamental da Constituição Federal de 1988. Ainda, conceituar e descrever os objetivos do CTB; as aplicações legais ou não do Art. 306 do CTB; e a definição e/ou classificação de embriaguez nesta linha de pensamento.

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This paper describes a measurement on a GaAs quantum well waveguide with a high built in field across the quantum wells at a wavelength far from the bandedge. The device structure used for the measurement has been fabricated at STC Technology Ltd and is that of a standard laser ridge structure. In fabrication double heterostructure layers are grown on a [001] n + GaAs substrate, with the active region containing two intrinsic GaAs quantum wells of 10nm thickness separated by 10nm. A 4μm wide ridge is etched to provide transverse optical guiding. The experimental work has involved the use of 1.06μm wavelength light from a Q-switched Nd:YAG laser. Any induced change in refractive index is determined by measuring the change in transmission of the quantum well waveguide Fabry-Perot cavity. The waveguide is placed on a Peltier temperature controller to allow thermal tuning.

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This paper describes a new way to perform hydrodynamic chromatography (HDC) for the size separation of particles based on a unique recirculating flow pattern. Pressure-driven (PF) and electro-osmotic flows (EOF) are opposed in narrow glass microchannels that expand at both ends. The resulting bidirectional flow turns into recirculating flow because of nonuniform microchannel dimensions. This hydrodynamic effect, combined with the electrokinetic migration of the particles themselves, results in a trapping phenomenon, which we have termed flow-induced electrokinetic trapping (FIET). In this paper, we exploit recirculating flow and FIET to perform a size-based separation of samples of microparticles trapped in a short separation channel using a HDC approach. Because these particles have the same charge (same zeta potential), they exhibit the same electrophoretic mobility, but they can be separated according to size in the recirculating flow. While trapped, particles have a net drift velocity toward the low-pressure end of the channel. When, because of a change in the externally applied PF or electric field, the sign of the net drift velocity reverses, particles can escape the separation channel in the direction of EOF. Larger particles exhibit a larger net drift velocity opposing EOF, so that the smaller particles escape the separation channel first. In the example presented here, a sample plug containing 2.33 and 2.82 microm polymer particles was introduced from the inlet into a 3-mm-long separation channel and trapped. Through tuning of the electric field with respect to the applied PF, the particles could be separated, with the advantage that larger particles remained trapped. The separation of particles with less than 500 nm differences in diameter was performed with an analytical resolution comparable to that of baseline separation in chromatography. When the sample was not trapped in the separation channel but located further downstream, separations could be carried out continuously rather than in batch. Smaller particles could successfully pass through the separation channel, and particles were separated by size. One of the main advantages of exploiting FIET for HDC is that this method can be applied in quite short (a few millimeters) channel geometries. This is in great contrast to examples published to date for the separation of nanoparticles in much longer micro- and nanochannels.

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We demonstrated the nonvolatile memory functionality of ZnO nanowire field effect transistors (FETs) using mobile protons that are generated by high-pressure hydrogen annealing (HPHA) at relatively low temperature (400 °C). These ZnO nanowire devices exhibited reproducible hysteresis, reversible switching, and nonvolatile memory behaviors in comparison with those of the conventional FET devices. We show that the memory characteristics are attributed to the movement of protons between the Si/SiO(2) interface and the SiO(2)/ZnO nanowire interface by the applied gate electric field. The memory mechanism is explained in terms of the tuning of interface properties, such as effective electric field, surface charge density, and surface barrier potential due to the movement of protons in the SiO(2) layer, consistent with the UV photoresponse characteristics of nanowire memory devices. Our study will further provide a useful route of creating memory functionality and incorporating proton-based storage elements onto a modified CMOS platform for FET memory devices using nanomaterials.

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Amyloid nanofibers derived from hen egg white lysozyme were processed into macroscopic fibers in a wet-spinning process based on interfacial polyion complexation using a polyanionic polysaccharide as cross-linker. As a result of their amyloid nanostructure, the hierarchically self-assembled protein fibers have a stiffness of up to 14 GPa and a tensile strength of up to 326 MPa. Fine-tuning of the polyelectrolytic interactions via pH allows to trigger the release of small molecules, as demonstrated with riboflavin-5'-phophate. The amyloid fibrils, highly oriented within the gellan gum matrix, were mineralized with calcium phosphate, mimicking the fibrolamellar structure of bone. The formed mineral crystals are highly oriented along the nanofibers, thus resulting in a 9-fold increase in fiber stiffness.

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A type of adaptive, closed-loop controllers known as self-tuning regulators present a robust method of eliminating thermoacoustic oscillations in modern gas turbines. These controllers are able to adapt to changes in operating conditions, and require very little pre-characterisation of the system. One piece of information that is required, however, is the sign of the system's high frequency gain (or its 'instantaneous gain'). This poses a problem: combustion systems are infinite-dimensional, and so this information is never known a priori. A possible solution is to use a Nussbaum gain, which guarantees closed-loop stability without knowledge of the sign of the high frequency gain. Despite the theory for such a controller having been developed in the 1980s, it has never, to the authors' knowledge, been demonstrated experimentally. In this paper, a Nussbaum gain is used to stabilise thermoacoustic instability in a Rijke tube. The sign of the high frequency gain of the system is not required, and the controller is robust to large changes in operating conditions - demonstrated by varying the length of the Rijke tube with time. Copyright © 2008 by Simon J. Illingworth & Aimee S. Morgans.

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The standard, ad-hoc stopping criteria used in decision tree-based context clustering are known to be sub-optimal and require parameters to be tuned. This paper proposes a new approach for decision tree-based context clustering based on cross validation and hierarchical priors. Combination of cross validation and hierarchical priors within decision tree-based context clustering offers better model selection and more robust parameter estimation than conventional approaches, with no tuning parameters. Experimental results on HMM-based speech synthesis show that the proposed approach achieved significant improvements in naturalness of synthesized speech over the conventional approaches. © 2011 IEEE.

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Materials with nonlinear optical properties are much sought after for ultrafast photonic applications. Mode-locked lasers can generate ultrafast pulses using saturable absorbers[1]. Currently, the dominant technology is based on semiconductor saturable absorber mirrors (SESAMs). However, narrow tuning range (tens of nm), complex fabrication and packaging limit their applications[2]. Single wall nanotubes (SWNTs) and graphene offer simpler and cost-effective solutions[1]. Broadband operation can be achieved in SWNTs using a distribution of tube diameters[1,3], or by using graphene[4-8], due to the gapless linear dispersion of Dirac electrons[8,9]. © 2011 IEEE.

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Ultrafast passively mode-locked lasers with spectral tuning capability and high output power have widespread applications in biomedical research, spectroscopy and telecommunications [1,2]. Currently, the dominant technology is based on semiconductor saturable absorber mirrors (SESAMs) [2,3]. However, these typically have a narrow tuning range, and require complex fabrication and packaging [2,3]. A simple, cost-effective alternative is to use Single Wall Carbon Nanotubes (SWNTs) [4,10] and Graphene [10,14]. Wide-band operation is possible using SWNTs with a wide diameter distribution [5,10]. However, SWNTs not in resonance are not used and may contribute to unwanted insertion losses [10]. The linear dispersion of the Dirac electrons in graphene offers an ideal solution for wideband ultrafast pulse generation [10,15]. © 2011 IEEE.

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A novel type of linear extensometer with exceptionally high resolution of 4 nm based on MEMS resonant strain sensors bonded on steel and operating in a vacuum package is presented. The tool is implemented by means of a steel thin bar that can be pre-stressed in tension within two fixing anchors. The extension of the bar is detected by using two vacuum-packaged resonant MEMS double- ended tuning fork (DETF) sensors bonded on the bar with epoxy glue, one of which is utilized for temperature compensation. Both sensors are driven by a closed loop self-oscillating transresistance amplifier feedback scheme implemented on a PCB (Printed Circuit Board). On the same board, a microcontroller-based frequency measurement circuit is also implemented, which is able to count the square wave fronts of the MEMS oscillator output with a resolution of 20 nsec. The system provides a frequency noise of 0.2 Hz corresponding to an extension resolution of 4 nm for the extensometer. Nearly perfect temperature compensation of the frequency output is achieved in the temperature range 20-35 C using the reference sensor. © 2011 IEEE.

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We report a femtosecond-pulse vertical-external-cavity surface-emitting laser with a continuous repetition frequency tuning range of 8 near 1 GHz. A constant average output power of 56 ± 1 mW and near-transform-limited pulse duration of 450 ± 20 fs were observed across the entire tuning range. © 2011 American Institute of Physics.