3 resultados para CMS,DT,HL-LHC,Phase-2

em Instituto Politécnico do Porto, Portugal


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OBJECTIVO: Analisar a influência da Idade nos efeitos de um Programa de Reabilitação Cardíaca Fase III, em pacientes coronários, analisando Provas de Esforço. METODOLOGIA: Amostra constituída pelo Grupo Meia-idade, <65 anos, e Grupo Idosos, ≥65 anos, tendo sido recolhidos o Índice de Massa Corporal, Velocidade e Inclinação máximas, Tempo de Prova, VO2 máximo teórico, Tensão Arterial basal, máxima e de recuperação, Frequência Cardíaca máxima, Percentagem da Frequência Cardíaca máxima teórica, Duplo Produto máximo e Tempo de Recuperação. RESULTADOS: Sem diferenças significativas, entre os dois grupos, em nenhum parâmetro. CONCLUSÕES: A Idade não influenciou os efeitos do Programa de Reabilitação Cardíaca.

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QuEChERS original method was modified into a new version for pesticides determination in soils. The QuEChERS method is based on liquid–liquid portioning with ACN and was followed by cleanup step using dispersive SPE and disposable pipette tips. Gas chromatographic separation with MS detection was carried out for pesticides quantification. The method was validated using recovery experiments for 36 multiclass pesticides. Mean recoveries of pesticides at each of the four spiking levels between 10–300 µg/kg of soil ranged from 70–120% for 26 pesticides with RSD values less than 15%. The method achieved low limit of detection less than 7.6 µ g/kg. Matrix effects were observed for 13 pesticides. Matrix effects were compensated by using matrix-matched calibration. The method was applied successfully using d-SPE or DPX in the analysis of the pesticides in soils from organic farming and integrated pest management.

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We report the results of the growth of Cu-Sn-S ternary chalcogenide compounds by sulfurization of dc magnetron sputtered metallic precursors. Tetragonal Cu2SnS3 forms for a maximum sulfurization temperature of 350 ºC. Cubic Cu2SnS3 is obtained at sulfurization temperatures above 400 ºC. These results are supported by XRD analysis and Raman spectroscopy measurements. The latter analysis shows peaks at 336 cm-1, 351 cm-1 for tetragonal Cu2SnS3, and 303 cm-1, 355 cm-1 for cubic Cu2SnS3. Optical analysis shows that this phase change lowers the band gap from 1.35 eV to 0.98 eV. At higher sulfurization temperatures increased loss of Sn is expected in the sulphide form. As a consequence, higher Cu content ternary compounds like Cu3SnS4 grow. In these conditions, XRD and Raman analysis only detected orthorhombic (Pmn21) phase (petrukite). This compound has Raman peaks at 318 cm-1, 348 cm-1 and 295 cm-1. For a sulfurization temperature of 450 ºC the samples present a multi-phase structure mainly composed by cubic Cu2SnS3 and orthorhombic (Pmn21) Cu3SnS4. For higher temperatures, the samples are single phase and constituted by orthorhombic (Pmn21) Cu3SnS4. Transmittance and reflectance measurements were used to estimate a band gap of 1.60 eV. For comparison we also include the results for Cu2ZnSnS4 obtained using similar growth conditions.