1000 resultados para Protección individual


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Young carers (YCs) who provide prolonged care for ill, disabled, or addicted family member(s) face a tremendous risk for negative developmental trajectories when remaining hidden (Charles, Stainton, & Marshall, 2009; Charles, 2011; Cass, 2007). Despite a growing recognition of YCs, understanding how providing care impacts a young person is not fully understood. The present study aimed to investigate circumstantial, family, and individual factors which may be associated with YCs’ caregiving role. By comparing YCs to a normative sample, a comprehensive YC profile was formed. A secondary comparative analysis was conducted on 124 YCs (72 females and 52 males, Mage = 12) and a normative sample (n = 124) matched on YCs’ age, gender, and number of siblings within the family. Unique attributes of the YC population were discussed, thereby creating a YC profile. Future research may be able to use this profile to promote identification and recognition of YCs.

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Photosynthesis is a process in which electromagnetic radiation is converted into chemical energy. Photosystems capture photons with chromophores and transfer their energy to reaction centers using chromophores as a medium. In the reaction center, the excitation energy is used to perform chemical reactions. Knowledge of chromophore site energies is crucial to the understanding of excitation energy transfer pathways in photosystems and the ability to compute the site energies in a fast and accurate manner is mandatory for investigating how protein dynamics ef-fect the site energies and ultimately energy pathways with time. In this work we developed two software frameworks designed to optimize the calculations of chro-mophore site energies within a protein environment. The first is for performing quantum mechanical energy optimizations on molecules and the second is for com-puting site energies of chromophores in a fast and accurate manner using the polar-izability embedding method. The two frameworks allow for the fast and accurate calculation of chromophore site energies within proteins, ultimately allowing for the effect of protein dynamics on energy pathways to be studied. We use these frame-works to compute the site energies of the eight chromophores in the reaction center of photosystem II (PSII) using a 1.9 Å resolution x-ray structure of photosystem II. We compare our results to conflicting experimental data obtained from both isolat-ed intact PSII core preparations and the minimal reaction center preparation of PSII, and find our work more supportive of the former.

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia) UANL

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia) UANL

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica, con especialidad en Potencia) U.A.N.L.

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Tesis (Maestría en Ciencias en Ingeniería Eléctrica, con especialidad en Sistemas Eléctricos de Potencia) U.A.N.L.

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia) U.A.N.L.

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Tesis (Maestría en Administración de Empresas, con especialidad en Recursos Humanos) U.A.N.L.

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia) U.A.N.L.

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Tesis (Maestro en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia) UANL, 1997.

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Tesis (Maestría en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia Eléctrica) - U.A.N.L, 1997

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Tesis (Maestro en Ciencias de la Ingeniería Eléctrica con Especialidad en Potencia Eléctrica) U.A.N.L.

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[Tesis] ( Maestría en Ciencias con Especialidad en Ingeniería Ambiental) U.A.N.L.