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Tonsillar polyps are nonneoplastic lesions usually composed of variable amounts of lymphoid and vascular and connective tissues. All of them are generally assumed to be hamartomatous proliferations, but the profile of vascular and connective components has yet to be explored. The vascular system of the tonsils is complex and includes highly specialized structures (i.e., high endothelial venules (HEVs)) involved in lymphocyte homing into lymphoid tissues. In 14 tonsillar polyps and 26 control tonsils, an immunohistochemical study was performed using CD34 (blood vessels and HEVs), MECA-79 (HEVs), D2-40 (lymphatic vessels), Ki-67, collagens I and III, fibronectin, and tenascin-C. The polyps showed increased total lymphatic area, whereas the number of blood vessels and lymphatics and the blood vascular area did not differ significantly from those of control tonsils. Rare Ki-67+ endothelial cells were found. In the polyps, we detected, possibly for the first time, HEVs amid lymphoid tissue, and that the amount of the latter correlated positively with HEV density. The polyps also presented lesser amounts of fibronectin and collagens I and III than in normal tonsils, which were distributed in a disorganized fashion. Tenascin-C expression was uncommon in the polyps and control tonsils. Tonsillar polyps are composed of disorganized connective tissue and lymphatic channels which can be considered hamartomatous proliferations. However, the lymphoid component is possibly reactive due to its relationship with the HEVs. The highly differentiated phenotype of the HEVs and their complex biology are not in agreement with what would be expected for a component of hamartomatous nature.

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Provision of an inert gas atmosphere with high-purity argon gas is recommended for preventing titanium castings from contamination although the effects of the level of argon purity on the mechanical properties and the clinical performance of Ti castings have not yet been investigated. The purpose of this study was to evaluate the effect of argon purity on the mechanical properties and microstructure of commercially pure (cp) Ti and Ti-6Al-4V alloys. The castings were made using either high-purity and/or industrial argon gas. The ultimate tensile strength (UTS), proportional limit (PL), elongation (EL) and microhardness (VHN) at different depths were evaluated. The microstructure of the alloys was also revealed and the fracture mode was analyzed by scanning electron microscopy. The data from the mechanical tests and hardness were subjected to a two-and three-way ANOVA and Tukey`s test (alpha = 0.05). The mean values of mechanical properties were not affected by the argon gas purity. Higher UTS, PL and VHN, and lower EL were observed for Ti-6Al-4V. The microhardness was not influenced by the argon gas purity. The industrial argon gas can be used to cast cp Ti and Ti-6Al-4V.

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Monitoramento e avalia????o de pol??ticas p??blicas: conceitua????o e tipos. O M&A em experi??ncias internacionais selecionadas. Formula????o, monitoramento e avalia????o de pol??ticas p??blicas no Brasil em contexto hist??rico. Experi??ncias de M&A de agendas estrat??gicas no Brasil no per??odo recente

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A Comiss??o de Assessoramento a Classifica????o de Informa????es Sigilosas da ENAP foi institu??da pela Portaria n?? 83, de 27 de abril de 2012, em decorr??ncia da Lei de Acesso ?? Informa????o - LAI (Lei n?? 12.527, de 18 de novembro de 2011), com a atribui????o de assessorar as autoridades classificadoras quanto ?? correta classifica????o das informa????es sens??veis, segundo os dispositivos da Lei, bem como de propor ?? autoridade classificadora ou autoridade hierarquicamente superior competente para dispor sobre a desclassifica????o ou reclassifica????o das informa????es sigilosas produzidas e acumuladas no ??mbito da Escola de acordo com a LAI.

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Esta pesquisa apresenta as imagens da escola como mediadoras do processo formativo dos jovens no ensino da Arte em diálogo com a história, memória e ambientes intraescolares. Inscreve-se no debate produzido pela linha de pesquisa em Educação e Linguagens. Analisa a formação dos jovens numa turma do terceiro ano do Ensino Médio na Escola Estadual de Ensino Médio “Hunney Everest Piovesan”, localizada no município de Cariacica no Estado do Espírito Santo. O estudo foi realizado em 2013 e tem como objetivo analisar as imagens escolares como mediadoras na formação dos estudantes do Ensino Médio no ensino da Arte em diálogo com a história, memória e ambientes intraescolares. Ao mesmo tempo, por meio de trabalho colaborativo, contribui para (re)construção da história da instituição, significando-a junto aos alunos e comunidade escolar. Por meio de intervenção artística com imagens da escola propõe reflexão crítica, analisando a formação dos jovens no terceiro ano do Ensino Médio. Para compreender os conceitos de mediação e meio social, estabelece um diálogo com as obras de Lev Semenovith Vigotski. A partir dos estudos de Maria Ciavatta e Schütz–Foerste procura entender a mediação imagética e sua dimensão educativa. Dialoga ainda com Frago, Escolano e Buffa, ampliando as reflexões sobre os ambientes intraescolares, dimensionando a imagética desses espaços e o senso de pertencimento à escola a partir da impregnação pela história e memória. A investigação pauta-se nos referenciais do método qualitativo e colaborativo de pesquisa. A produção dos dados contou com o recolhimento e análise documental de um conjunto de fontes primárias e secundárias formadas por livro de registro de funcionários da escola da década de 1970, diários de classe, recortes de jornais, convites de formaturas e registros fotográficos escolares dessa mesma década até a atualidade. Além desses documentos históricos, foram analisadas entrevistas de antigos alunos e questionários dos alunos do terceiro ano do Ensino Médio da instituição. Relata brevemente experiências de curto intercâmbio acadêmico realizado na Universidade de Ancara, na Turquia, com o objetivo de ampliar os horizontes de referência sociocultural, em especial com o contexto educacional do Ensino Médio euroasiático, identificando os espaços de formação dos jovens no contexto turco e suas relações com a educação brasileira. Esta experiência apresentada não integra a análise desta dissertação, mas projeta a discussão para novos estudos. A análise se elabora a partir da triangulação, entre outros, do referencial teórico com o processo de intervenção, produção de dados e no debate acadêmico em diferentes contextos. A partir da caminhada acadêmica permeada pela história e memória, inferimos que as imagens escolares medeiam o processo formativo dos jovens do terceiro ano do Ensino Médio no ensino da Arte. Contribuem para o cultivo da memória escolar, enquanto presença impregnada pela história da instituição, por meio da imagética dos seus ambientes intraescolares. Constatamos ainda que as imagens colaboram para o (re)conhecimento por parte desses sujeitos do seu papel ativo, autônomo e transformador da realidade escolar na qual estão inseridos.

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Os aditivos alimentares desempenham um papel vital na indústria alimentar moderna e são geralmente utilizados na manutenção da qualidade e das características dos alimentos, promovendo desta forma a segurança alimentar. Para garantir o consumo seguro de alimentos com aditivos, os Estados Membros da União Europeia devem estabelecer um sistema regular de vigilância para monitorização desse consumo. No sentido de obter essa informação, é necessário aplicar métodos de análise robustos de modo a quantificar os níveis dessas substâncias numa larga variedade de matrizes alimentares. O presente trabalho teve como objectivos: a determinação analítica do tipo e do teor de aditivos alimentares nos novos refrigerantes à base de água mineral através de um método de HPLC baseado na norma EN 12856, a validação do método analítico para a quantificação dos edulcorantes (acessulfame K, aspartame e sacarina) e dos conservantes (ácido sórbico e ácido benzóico) e a comparação dos resultados obtidos com os valores máximos permitidos pela legislação portuguesa. Dos refrigerantes à base de água existentes no mercado português, foram analisadas 34 amostras de diferentes marcas, para determinação do tipo e teor de aditivos. Na validação da metodologia foram avaliados os seguintes parâmetros: gama de trabalho, linearidade, sensibilidade, limite de detecção (LD), limite de quantificação (LQ), precisão (repetibilidade e precisão intermédia) e exactidão. Relativamente à análise dos edulcorantes, verificou-se a presença do acessulfame K em 12 refrigerantes numa concentração que oscilou entre 34 e 94 mg/L. O aspartame foi encontrado apenas em 5 amostras num intervalo de concentração de 36 a 159 mg/L e a sacarina não foi detectada. No caso dos conservantes, o ácido sórbico foi encontrado em 19 dos refrigerantes numa gama de concentração entre 109 e 283 mg/L enquanto que o ácido benzóico, presente em 18 amostras, apresentou um teor que variou entre 91 e 143 mg/L. Observou-se ainda que o teor de cada um dos aditivos nos diferentes refrigerantes não excedeu o limite máximo legislado.

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In this paper we present a methodology which enables the graphical representation, in a bi-dimensional Euclidean space, of atmospheric pollutants emissions in European countries. This approach relies on the use of Multidimensional Unfolding (MDU), an exploratory multivariate data analysis technique. This technique illustrates both the relationships between the emitted gases and the gases and their geographical origins. The main contribution of this work concerns the evaluation of MDU solutions. We use simulated data to define thresholds for the model fitting measures, allowing the MDU output quality evaluation. The quality assessment of the model adjustment is thus carried out as a step before interpretation of the gas types and geographical origins results. The MDU maps analysis generates useful insights, with an immediate substantive result and enables the formulation of hypotheses for further analysis and modeling.

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This paper reports on optical filters based on a-SiC:H tandem pi'n/pin heterostructures. The spectral sensitivity is analyzed. Steady state optical bias with different wavelengths are applied from each front and back sides and the photocurrent is measured. Results show that it is possible to control the sensitivity of the device and to tune a specific wavelength range by combining radiations with complementary light penetration depths. The transfer characteristics effects due to changes in the front and back optical bias wavelength are discussed. 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.

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A new effective isotropic potential is proposed for the dipolar hard-sphere fluid, on the basis of recent results by others for its angle-averaged radial distribution function. The new effective potential is shown to exhibit oscillations even for moderately high densities and moderately strong dipole moments, which are absent from earlier effective isotropic potentials. The validity and significance of this result are briefly discussed.

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We have calculated the shapes of flat liquid films, and of the transition region to the associated Plateau borders (PBs), by integrating the Laplace equation with a position-dependent surface tension γ(x), where 2x is the local film thickness. We discuss films in either zero or non-zero gravity, using standard γ(x) potentials for the interaction between the two bounding surfaces. We have investigated the effects of the film flatness, liquid underpressure, and gravity on the shape of films and their PBs. Films may exhibit 'humps' and/or 'dips' associated with inflection points and minima of the film thickness. Finally, we propose an asymptotic analytical solution for the film width profile.

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The temperature dependence of electrical conductivity and the photoconductivity of polycrystalline Cu2ZnSnS4 were investigated. It was found that at high temperatures the electrical conductivity was dominated by band conduction and nearest-neighbour hopping. However, at lower temperatures, both Mott variable-range hopping (VRH) and Efros–Shklovskii VRH were observed. The analysis of electrical transport showed high doping levels and a large compensation ratio, demonstrating large degree of disorder in Cu2ZnSnS4. Photoconductivity studies showed the presence of a persistent photoconductivity effect with decay time increasing with temperature, due to the presence of random local potential fluctuations in the Cu2ZnSnS4 thin film. These random local potential fluctuations cannot be attributed to grain boundaries but to the large disorder in Cu2ZnSnS4.

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A dc magnetron sputtering-based method to grow high-quality Cu2ZnSnS4 (CZTS) thin films, to be used as an absorber layer in solar cells, is being developed. This method combines dc sputtering of metallic precursors with sulfurization in S vapour and with post-growth KCN treatment for removal of possible undesired Cu2−xS phases. In this work, we report the results of a study of the effects of changing the precursors’ deposition order on the final CZTS films’ morphological and structural properties. The effect of KCN treatment on the optical properties was also analysed through diffuse reflectance measurements. Morphological, compositional and structural analyses of the various stages of the growth have been performed using stylus profilometry, SEM/EDS analysis, XRD and Raman Spectroscopy. Diffuse reflectance studies have been done in order to estimate the band gap energy of the CZTS films. We tested two different deposition orders for the copper precursor, namely Mo/Zn/Cu/Sn and Mo/Zn/Sn/Cu. The stylus profilometry analysis shows high average surface roughness in the ranges 300–550 nm and 230–250 nm before and after KCN treatment, respectively. All XRD spectra show preferential growth orientation along (1 1 2) at 28.45◦. Raman spectroscopy shows main peaks at 338 cm−1 and 287 cm−1 which are attributed to Cu2ZnSnS4. These measurements also confirm the effectiveness of KCN treatment in removing Cu2−xS phases. From the analysis of the diffuse reflectance measurements the band gap energy for both precursors’ sequences is estimated to be close to 1.43 eV. The KCN-treated films show a better defined absorption edge; however, the band gap values are not significantly affected. Hot point probe measurements confirmed that CZTS had p-type semiconductor behaviour and C–V analysis was used to estimate the majority carrier density giving a value of 3.3 × 1018 cm−3.

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Thin films of Cu2SnS3 and Cu3SnS4 were grown by sulfurization of dc magnetron sputtered Sn–Cu metallic precursors in a S2 atmosphere. Different maximum sulfurization temperatures were tested which allowed the study of the Cu2SnS3 phase changes. For a temperature of 350 ◦C the films were composed of tetragonal (I -42m) Cu2SnS3. The films sulfurized at a maximum temperature of 400 ◦C presented a cubic (F-43m) Cu2SnS3 phase. On increasing the temperature up to 520 ◦C, the Sn content of the layer decreased and orthorhombic (Pmn21) Cu3SnS4 was formed. The phase identification and structural analysis were performed using x-ray diffraction (XRD) and electron backscattered diffraction (EBSD) analysis. Raman scattering analysis was also performed and a comparison with XRD and EBSD data allowed the assignment of peaks at 336 and 351 cm−1 for tetragonal Cu2SnS3, 303 and 355 cm−1 for cubic Cu2SnS3, and 318, 348 and 295 cm−1 for the Cu3SnS4 phase. Compositional analysis was done using energy dispersive spectroscopy and induced coupled plasma analysis. Scanning electron microscopy was used to study the morphology of the layers. Transmittance and reflectance measurements permitted the estimation of absorbance and band gap. These ternary compounds present a high absorbance value close to 104 cm−1. The estimated band gap energy was 1.35 eV for tetragonal (I -42m) Cu2SnS3, 0.96 eV for cubic (F-43m) Cu2SnS3 and 1.60 eV for orthorhombic (Pmn21) Cu3SnS4. A hot point probe was used for the determination of semiconductor conductivity type. The results show that all the samples are p-type semiconductors. A four-point probe was used to obtain the resistivity of these samples. The resistivities for tetragonal Cu2SnS3, cubic Cu2SnS3 and orthorhombic (Pmn21) Cu3SnS4 are 4.59 × 10−2 cm, 1.26 × 10−2 cm, 7.40 × 10−4 cm, respectively.

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Thin film solar cells based on Cu(In,Ga)Se2 as an absorber layer use Mo as the back contact. This metal is widely used in research and in industry but despite this, there are only a few published studies on the properties of Mo. Properties such as low resistivity and good adhesion to soda lime glass are hard to obtain at the same time. These properties are dependent on the deposition conditions and are associated with the overall stress state of the film. In this report, a study of the deposition of a Mo bilayer is carried out by analysing first single and then bilayers. The best properties of the bilayer were achieved when the bottom layer was deposited at 10 × 10−3 mbar with a thickness of 500 nm and the top layer deposited at 1 × 10−3 mbar with a thickness of 300 nm. The films deposited under these conditions showed good adhesion and a sheet resistivity lower than 0.8 .