999 resultados para 622.3
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Friedrich Stoltze II
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The mineral amarantite Fe23+(SO4)O∙7H2O has been studied using a combination of techniques including thermogravimetry, electron probe analyses and vibrational spectroscopy. Thermal analysis shows decomposition steps at 77.63, 192.2, 550 and 641.4°C. The Raman spectrum of amarantite is dominated by an intense band at 1017 cm-1 assigned to the SO42- ν1 symmetric stretching mode. Raman bands at 1039, 1054, 1098, 1131, 1195 and 1233 cm-1 are attributed to the SO42- ν3 antisymmetric stretching modes. Very intense Raman band is observed at 409 cm-1 with shoulder bands at 399, 451 and 491 cm-1 are assigned to the v2 bending modes. A series of low intensity Raman bands are found at 543, 602, 622 and 650 cm-1 are assigned to the v4 bending modes. A very sharp Raman band at 3529 cm-1 is assigned to the stretching vibration of OH units. A series of Raman bands observed at 3025, 3089, 3227, 3340, 3401 and 3480 cm-1 are assigned to water bands. Vibrational spectroscopy enables aspects of the molecular structure of the mineral amarantite to be ascertained.
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To explore the anticancer effect associated with the piperidine framework, several (substituted phenyl) {4-[3-(piperidin-4-yl)propyl]piperidin-1-yl} methanone derivatives 3(a-i) were synthesized. Variation in the functional group at N-terminal of the piperidine led to a set of compounds bearing amide moiety. Their chemical structures were confirmed by (1)H NMR, IR and mass spectra analysis. Among these, compounds 3a, 3d and 3e were endowed with antiproliferative activity. The most active compound among this series was 3a with nitro and fluoro substitution on the phenyl ring of aryl carboxamide moiety, which inhibited the growth of human leukemia cells (K562 and Reh) at low concentration. Comparison with other derivative (3h) results shown by LDH assay, cell cycle analysis and DNA fragmentation suggested that 3a is more potent to induce apoptosis.
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Este estudo teve como objetivos compreender a inteligência emocional e o engagement como fator de proteção face ao burnout, bem como estudar as relações entre a inteligência emocional, o engagement e o burnout. Mayer e Salovey (1997) definem a inteligência emocional como a capacidade de perceber, avaliar e de expressar as emoções, baseada em quatro níveis: capacidade de perceber, usar, conhecer e regular as emoções para facilitar o pensamento. O engagement é um construto recente a nível mundial, integrado na corrente da psicologia positiva. O oposto ao engagement é o Burnout, expressão inglesa para designar aquilo que deixou de funcionar por exaustão de energia (França, 1987, citado por, Carlotto,2012). A amostra foi constituída por 250 professores do 2º ciclo (26.4%), 3º ciclo (57.2%) e Secundário (16.4 %), do género feminino (70.4%) e do masculino (29.6%), da Região Autónoma da Madeira (RAM). Como instrumentos, utilizámos um Questionário de Dados Sócio-Demográficos e Profissionais, o Trait Meta-Mood Scale (TMMS-24), o Questionário de Expressividade e o de Regulação Emocional de Berkeley, o Questionário de Engagement e o Inventário de Burnout de Maslach (MBI). Para confirmar a relação estatística entre a inteligência emocional, o engagement e o burnout foi realizado um teste de correlação de Spearman entre as variáveis. Encontrámos correlações significativas entre a atenção emocional e o vigor, na dedicação, na absorção e na realização profissional. Relativamente à inteligência emocional dos professores, revelou-se como adequada em ambos os sexos nas três dimensões do construto. No que concerne ao engagement, os professores revelaram valores altos de vigor, dedicação e absorção. Concluiu-se que quanto maior a reparação das emoções, o vigor e a dedicação, menor é a exaustão emocional. Por outro lado, quanto maior a reavaliação das emoções, maior a exaustão emocional.
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Error en símbolo en tapa y contraportada (S/2006/20)
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Includes bibliography
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Endophytic fungi are considered a rich source of active compounds resulting from their secondary metabolism. Fungi from marine environment grow in a habitat with unique conditions that can contribute to the activation of metabolic pathways of synthesis of different unknown molecules. The production of these compounds may support the adaptation and survival of the fungi in the marine ecosystem. Mangroves are ecosystems situated between land and sea. They are frequently found in tropical and subtropical areas and enclose approximately 18.1 million hectares of the planet. The great biodiversity found in these ecosystems shows the importance of researching them, including studies regarding new compounds derived from the endophytic fungi that inhabit these ecosystems. 3-hydroxypropionic acid (3-HPA) has been isolated from the mangrove endophytic fungus Diaporthe phaseolorum, which was obtained from branches of Laguncularia racemosa. The structure of this compound was elucidated by spectroscopic methods, mainly 1D and 2D NMR. In bioassays, 3-HPA showed antimicrobial activities against both Staphylococcus aureus and Salmonella typhi. The structure of this antibiotic was modified by the chemical reaction of Fischer-Speier esterification to evaluate the biologic activity of its chemical analog. The esterified product, 3-hydroxypropanoic ethyl ester, did not exhibit antibiotic activity, suggesting that the free carboxylic acid group is important to the pharmacological activity. The antibiotic-producing strain was identified with internal transcribed spacer sequence data. To the best of our knowledge, this is the first report of antibacterial activity by 3-HPA against the growth of medically important pathogens.