571 resultados para Hidrogênio difusível
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The present work has as its goal to treat well known and interesting unidimensional cases from quantum mechanics through an unusual approach within this eld of physics. The operational method of Laplace transform, in spite of its use by Erwin Schrödinger in 1926 when treating the radial equation for the hydrogen atom, turned out to be forgotten for decades. However, the method has gained attention again for its use as a powerful tool from mathematical physics applied to the quantum mechanics, appearing in recent works. The method is specially suitable to the approach of cases where we have potential functions with even parity, because this implies in eigenfunctions with de ned parity, and since the domain of this transform ranges from 0 to ∞, it su ces that we nd the eigenfunction in the positive semi axis and, with the boundary conditions imposed over the eigenfunction at the origin plus the continuity (discontinuity) of the eigenfunction and its derivative, we make the odd, even or both parity extensions so we can get the eigenfunction along all the axis. Factoring the eigenfunction behavior at in nity and origin, we take the due care with the points that might bring us problems in the later steps of the solving process, thus we can manipulate the Schrödinger's Equation regardless of time, so that way we make it convenient to the application of Laplace transform. The Chapter 3 shows the methodology that must be followed in order to search for the solutions to each problem
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To evaluate the effect of surface treatment with Er:YAG and Nd:YAG laser on resin composite bond strength to recently bleached dentin. Material and Methods: In this study 120 bovine incisors were used and distributed into two groups: Group C: without bleaching treatment; Group B: with bleaching treatment (35% hydrogen peroxide). Each group was divided into three subgroups: Subgroup N: without laser treatment; Subgroup Nd: irradiation with Nd:YAG laser; Subgroup Er: irradiation with Er:YAG laser. Next, the adhesive system (Adper Single Bond 2) was applied and composite buildups were constructed with Z350 composite. The teeth were sectioned to obtain dentin-resin sticks (1x1mm) and analyzed by microtensile bond testing. The data were statistically analyzed by the ANOVA and Tukey tests. Results: The results showed that the bond strength values in the bleached control group (16.17 MPa) presented no significant difference in comparison with the group bleached and irradiated with Er:YAG laser (14.69 MPa). The non bleached control group (26.79 MPa) presented significant difference in bond strength when compared with the non bleached group irradiated with Er:YAG laser (22.82 MPa) and with the group treated by bleaching and irradiation with Nd:YAG laser (28,792 MPa). The group without bleaching treatment and irradiated with Nd:YAG (36.1 MPa) presented a significant increase in bond strength in comparison with the other groups. Conclusion: The use of Nd:YAG laser on bleached specimens was able of completely reversing the immediate effects of bleaching, obtaining bond strength values similar to those of the control group
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Mass spectrometry is an analytical technique widely used in several areas of academic research. It allows the knowledge of the information about the micro-world of atoms leading to significant advances in science today. The analysis of stable isotopes of carbon, hydrogen, oxygen, nitrogen and sulfur, also known as bio-elements, shows itself as a major area of interest in using the proposed method. The development of techniques and equipment coupled with mass spectrometry promises to deliver even greater progress in this field, in particular, for the biological sciences and related areas. The pyrolytic method in reduction of organic compounds at high temperatures provides simultaneous isotopic analysis of bio-elements H and O, by the gases released, H2 and CO after the pyrolitic process, significantly reducing analysis time and the amount of material to sample. This paper presents a review of mass spectrometry with its basic principles of operation, and pyrolytic method for reducing compounds at temperatures above 1400 ° C for isotopic analysis of bio-elements
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O tratamento dos Linfomas de Hodgkin e Não - Hodgkin é baseado, atualmente, na combinação de drogas antineoplásicas, associadas ou não à radioterapia. Embora as taxas de cura sejam elevadas, sabe-se que tais terapias podem induzir mutações gênicas e cromossômicas que, mais tarde, podem ser responsáveis pela iniciação de novos processos carcinogênicos ou de doenças degenerativas relacionadas a danos genéticos. Sendo assim, o presente estudo teve por objetivo avaliar o efeito toxicogenético tardio (sobre os níveis de danos no DNA) das terapias antineoplásicas para linfomas. Para isso, foram incluídos no estudo 10 pacientes recém diagnosticados com linfoma (Grupo 1- Pré-terapia), 10 pacientes com história de linfoma e que finalizaram o tratamento antineoplásico há no mínimo dois anos (Grupo 2- Pós-terapia) e 10 indivíduos saudáveis (Grupo 3- Controles). Os linfócitos de sangue periférico foram utilizados para se avaliar os níveis de danos no DNA pelo teste do cometa. Além disso, foi avaliada a eficiência do sistema de reparo do DNA frente às lesões induzidas in vitro pelo peróxido de hidrogênio (H2O2). Os dados mostraram que não houve diferença estatisticamente significativa nos níveis de danos no DNA entre os três grupos. No entanto, foram observadas diferenças estatisticamente significativas no reparo das lesões induzidas pelo (H2O2), com o grupo controle apresentado maior indução de danos em comparação com aos demais grupos (p <0,05). Concluindo, os resultados não evidenciaram efeitos toxicogenéticos tardios decorrentes da exposição às terapias antineoplásicas para linfomas
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Biologia Geral e Aplicada - IBB
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Pós-graduação em Odontologia Restauradora - ICT
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Pós-graduação em Ciências Odontológicas - FOAR
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Química - IQ
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Pós-graduação em Química - IQ
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Pós-graduação em Química - IQ
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Pós-graduação em Química - IQ