IEC 60815: Guide For The Selection And Dimensioning Of High ....pdf rayver

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IEC 60815: Guide For The Selection And Dimensioning Of High ....pdf rayver





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IEC 60815: Guide for the selection and dimensioning of high ....pdf


Category:Selection and dimensioning Category:IEC 61511Individual differences in emotion regulation in relation to self-reported mood, sleep and physical activity. This study examined the influence of individual differences in the ability to regulate emotions on sleep and physical activity as well as self-reported mood. It also examined the extent to which these influences are mediated by body mass index (BMI), a biological risk factor for depression, fatigue and sleep disturbance. The present study included 132 women in a general health examination and a sleep laboratory. Several self-report instruments were used to measure a variety of variables. All of the individuals had stable sleep patterns during a two-week period. The results showed that self-reported mood was most closely related to the ability to regulate emotions, and that the individual differences in ability to regulate emotions were significant predictors of self-reported mood. No evidence was found for significant moderation of the relation between ability to regulate emotions and self-reported mood by BMI. However, results showed that BMI was related to self-reported mood and ability to regulate emotions. These results were confirmed in a subsequent analysis of the effect of BMI on the emotion regulation pathway. The results of the current study imply that the ability to regulate emotions may be more important than the volume of specific emotions in relation to mood and that the association between BMI and mood is partially mediated by the ability to regulate emotions.In vitro bioactivity of hydroxyapatite coatings on titanium for osseous integration. The purpose of this study was to evaluate the biological response of mesenchymal stem cells, osteoblasts and fibroblasts exposed to a biomimetic hydroxyapatite coating on a titanium substrate for osseous integration. For the in vitro study, we selected pure titanium samples that were polished, etched and silanized. Then, the samples were treated with hydroxyapatite or hydroxyapatite + Al2O3 nanoparticles, and the surfaces of the samples were examined with SEM, EDS, XRD and Raman spectroscopy. For the in vivo study, thirty-six samples were implanted into rabbit femurs, and the tissue surrounding the implants was evaluated with conventional histomorphometry. After 8 weeks, the histomorphometric evaluation showed that hydroxyapatite coating with Al2O3 nanoparticles induces higher new bone formation than coating without Al2O3 nanoparticles. The in vitro study showed that the titanium substrate with hydroxyapatite coating induced


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