3 resultados para Spin periods

em Universitat de Girona, Spain


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Investigaciones recientes sugieren que en la adolescencia tienen lugar importantes cambios en la estructura, bioquímica y fisiología del cerebro que podrían explicar la dificultad que experimentan los adolescentes en el control de sus emociones así como también otros rasgos de su comportamiento inestable. En este artículo presentamos algunas investigaciones que establecen, asimismo, una correlación entre las reorganizaciones cerebrales que tienen lugar en el primer año de vida con signos de irritabilidad y desazón emocional que muestra el bebé durante este periodo. En ambos casos la dificultad de controlar los impulsos emocionales es susceptible de afectar la relación de los padres con el niño o joven. Discutimos la posible relevancia de esta coincidencia dentro de una perspectiva evolucionista así como la posible vulnerabilidad de estos períodos. Finalmente, apuntamos la necesidad de una teoría integradora del desarrollo humano y ofrecemos algunos puntos de debate

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Based on Rijt-Plooij and Plooij’s (1992) research on emergence of regression periods in the first two years of life, the presence of such periods in a group of 18 babies (10 boys and 8 girls, aged between 3 weeks and 14 months) from a Catalonian population was analyzed. The measurements were a questionnaire filled in by the infants’ mothers, a semi-structured weekly tape-recorded interview, and observations in their homes. The procedure and the instruments used in the project follow those proposed by Rijt-Plooij and Plooij. Our results confirm the existence of the regression periods in the first year of children’s life. Inter-coder agreement for trained coders was 78.2% and within-coder agreement was 90.1 %. In the discussion, the possible meaning and relevance of regression periods in order to understand development from a psychobiological and social framework is commented upon

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We report here a new empirical density functional that is constructed based on the performance of OPBE and PBE for spin states and SN 2 reaction barriers and how these are affected by different regions of the reduced gradient expansion. In a previous study [Swart, Sol̀, and Bickelhaupt, J. Comput. Methods Sci. Eng. 9, 69 (2009)] we already reported how, by switching between OPBE and PBE, one could obtain both the good performance of OPBE for spin states and reaction barriers and that of PBE for weak interactions within one and the same (SSB-sw) functional. Here we fine tuned this functional and include a portion of the KT functional and Grimme's dispersion correction to account for π- π stacking. Our new SSB-D functional is found to be a clear improvement and functions very well for biological applications (hydrogen bonding, π -π stacking, spin-state splittings, accuracy of geometries, reaction barriers)