986 resultados para 100-625


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We find that the use of V(100) buffer layers on MgO(001) substrates for the epitaxy of FePd binary alloys yields to the formation at intermediate and high deposition temperatures of a FePd¿FeV mixed phase due to strong V diffusion accompanied by a loss of layer continuity and strong increase of its mosaic spread. Contrary to what is usually found in this kind of systems, these mixed phase structures exhibit perpendicular magnetic anisotropy (PMA) which is not correlated with the presence of chemical order, almost totally absent in all the fabricated structures, even at deposition temperatures where it is usually obtained with other buffer layers. Thus the observed PMA can be ascribed to the V interdiffusion and the formation of a FeV alloy, being the global sample saturation magnetization also reduced.

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The variation in the emission of Si+ ions from ion-beam-induced oxidized silicon surfaces has been studied. The stoichiometry and the electronic structure of the altered layer has been characterized using x-ray photoelectron spectroscopy (XPS). The XPS analysis of the Si 2p core level indicates the strong presence of suboxide chemical states when bombarding at angles of incidence larger than 30 °. Since the surface stoichiometry or degree of oxidation varies with the angle of incidence, the corresponding valence-band structures also differ among each other. A comparison between experimental measurements and theoretically calculated Si and SiO2 valence bands indicates that the valence bands for the altered layers are formed by a combination of those two. Since Si-Si bonds are present in the suboxide molecules, the top of the respective new valence bands are formed by the corresponding 3p-3p Si-like subbands, which extend up to the Si Fermi level. The changes in stoichiometry and electronic structure have been correlated with the emission of Si+ ions from these surfaces. From the results a general model for the Si+ ion emission is proposed combining the resonant tunneling and local-bond-breaking models.

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Solos dos planaltos subtropicais do Brasil são pobres em nutrientes e têm alta necessidade de calagem, o que encarece e pode limitar a correção da acidez. O objetivo deste estudo foi avaliar modificações químicas e físicas de um Cambissolo Húmico alumínico e a resposta da cultura do trigo ao resíduo alcalino da indústria de papel e celulose (Dregs) em comparação com um corretivo convencional. Os tratamentos foram doses de resíduo (Res) de 25, 50 e 100 % da recomendação indicada pelo método SMP, visando elevar o pH para 6,0, que correspondem a 2.625, 5.250 e 10.500 kg ha-1, respectivamente. Essas doses se comparam a 50 e 100 % SMP de calcário dolomítico (Cal), e correspondem a 5.600 e 11.200 kg ha-1, respectivamente, além do solo sem correção (testemunha, sem resíduo e, ou, corretivo). O delineamento experimental foi em blocos ao acaso, com quatro repetições. Os corretivos foram aplicados superficialmente em duas épocas: primeira metade em junho de 2004 e o restante em junho de 2006, em uma área de campo nativo pastejado, sem revolvimento do solo. As amostras de solo foram coletadas nas camadas de 0 a 5, 5 a 10, e 10 a 15 cm para caracterização química e física do solo. Em 2006, foram avaliados os teores foliares de nutrientes e a produtividade de grãos de trigo. A aplicação superficial do resíduo alcalino melhorou os atributos químicos do solo, principalmente na camada superficial, com aumento do pH e dos teores de Ca e Mg, da relação molar entre Ca e Mg e do teor de Na, sem, entretanto, atingir o valor crítico de saturação da CTC por Na. A calagem superficial com resíduo ou calcário reduziu linearmente o grau de floculação das argilas na camada superficial do solo. Os teores de nutrientes nas plantas e a produtividade de grãos foram semelhantes entre os tratamentos com calcário ou resíduo, com respostas crescentes às doses dos corretivos.

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Bureau of Nutrition and Health Promotion part of the Iowa Department of Public Health produces of weekly newsletter about the Iowa WIC Program for the State of Iowa citizen.

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One-hundred patients treated with curative radiotherapy (RT) ± chemotherapy (CT) for an anal canal carcinoma (T1-4N0-3M0) were retrospectively analyzed. Five- and 10-year local control (LC) rates were 73% and 67%, respectively. Acute and late G3-G4 toxicity rates were 32% and 12%, respectively. Two patients underwent a colostomy for a G4 anal toxicity. This study confirms the outcomes of RT ± CT in the treatment of anal canal cancer. Concomitant CT and LC statistically influenced Overall Survival and Colostomy-Free Survival. CT also statistically reduced the risk of nodal relapse. High rates of acute skin toxicity impose tailored volumes and techniques of irradiation.

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Suomalaisen lakimiesyhdistyksen puheenjohtajan puhe yhdistyksen 100-vuotisjuhlassa 23.10.1998

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Magnetic properties of Fe nanodots are simulated using a scaling technique and Monte Carlo method, in good agreement with experimental results. For the 20-nm-thick dots with diameters larger than 60¿nm, the magnetization reversal via vortex state is observed. The role of magnetic interaction between dots in arrays in the reversal process is studied as a function of nanometric center-to-center distance. When this distance is more than twice the dot diameter, the interaction can be neglected and the magnetic properties of the entire array are determined by the magnetic configuration of the individual dots. The effect of crystalline anisotropy on the vortex state is investigated. For arrays of noninteracting dots, the anisotropy strongly affects the vortex nucleation field and coercivity, and only slightly affects the vortex annihilation field