896 resultados para Luigy Pareyson. Aesthetic. Formativity theory. Interpretation. Metaphysics of figuration
Resumo:
Second-rank tensor interactions, such as quadrupolar interactions between the spin- 1 deuterium nuclei and the electric field gradients created by chemical bonds, are affected by rapid random molecular motions that modulate the orientation of the molecule with respect to the external magnetic field. In biological and model membrane systems, where a distribution of dynamically averaged anisotropies (quadrupolar splittings, chemical shift anisotropies, etc.) is present and where, in addition, various parts of the sample may undergo a partial magnetic alignment, the numerical analysis of the resulting Nuclear Magnetic Resonance (NMR) spectra is a mathematically ill-posed problem. However, numerical methods (de-Pakeing, Tikhonov regularization) exist that allow for a simultaneous determination of both the anisotropy and orientational distributions. An additional complication arises when relaxation is taken into account. This work presents a method of obtaining the orientation dependence of the relaxation rates that can be used for the analysis of the molecular motions on a broad range of time scales. An arbitrary set of exponential decay rates is described by a three-term truncated Legendre polynomial expansion in the orientation dependence, as appropriate for a second-rank tensor interaction, and a linear approximation to the individual decay rates is made. Thus a severe numerical instability caused by the presence of noise in the experimental data is avoided. At the same time, enough flexibility in the inversion algorithm is retained to achieve a meaningful mapping from raw experimental data to a set of intermediate, model-free
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Fine particles of cobalt ferrite were synthesized by the sol–gel method. Subsequent heat treatment at different temperatures yielded cobalt ferrites having different grain sizes. X-ray diffraction studies were carried out to elucidate the structure of all the samples. Dielectric permittivity and ac conductivity of all the samples were evaluated as a function of frequency, temperature and grain size. The variation of permittivity and ac conductivity with frequency reveals that the dispersion is due to Maxwell–Wagner type interfacial polarization in general, with a noted variation from the expected behaviour for the cold synthesized samples. High permittivity and conductivity for small grains were explained on the basis of the correlated barrier-hopping model
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Esta obra es producto de la primera, y única, Reunión Hispano-Soviética de Prehistoriadores organizada por el Departamento de Prehistoria del Centro de Estudios Históricos en el marco del convenio entre la Academia de Ciencias de la U.R.S.S. y el C.S.I.C. español. Su objetivo es promover contactos entre investigadores de ambos países. La publicación se divide en catorce partes: 1. Prefacio. 2. Prólogo. 3. El Centro de Estudios Históricos. 4. El Departamento de Prehistoria. 5. El Instituto de Arqueología de la Academia de Ciencias de Rusia. 6. Gonzalo Ruiz Zapatero. 7. Rauv M. Munchaez (ponencia). 8. Emiliano Aguirre Enríquez (ponencia). 9. Valery P. Alekseev (ponencia). 10. Alfonso Moure Romanillo (ponencia). 11. Jizri A. Amirjanoz (ponencia). 12. Eugenio N. Chernij (ponencia). 13. Arturo Ruiz Rodríguez (ponencia). 14. Valery I. Gulaiev.
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La teoría sociocultural es una teoría de la evolución de las funciones mentales superiores que tiene sus raíces en la filosofía alemana de los siglos dieciocho y diecinueve. Esta publicación integra la teoría, la investigación y la práctica en el aprendizaje de segundas lenguas extranjeras, desde una perspectiva sociocultural. También describe e ilustra el uso de la teoría como apoyo a las innovaciones conceptuales y prácticas en la educación de segunda lengua.
Resumo:
Monográfico con el título: 'Educación, valores y democracia'. Resumen basado en el de la publicación
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Vertically pointing Doppler radar has been used to study the evolution of ice particles as they sediment through a cirrus cloud. The measured Doppler fall speeds, together with radar-derived estimates for the altitude of cloud top, are used to estimate a characteristic fall time tc for the `average' ice particle. The change in radar reflectivity Z is studied as a function of tc, and is found to increase exponentially with fall time. We use the idea of dynamically scaling particle size distributions to show that this behaviour implies exponential growth of the average particle size, and argue that this exponential growth is a signature of ice crystal aggregation.
Resumo:
Population subdivision complicates analysis of molecular variation. Even if neutrality is assumed, three evolutionary forces need to be considered: migration, mutation, and drift. Simplification can be achieved by assuming that the process of migration among and drift within subpopulations is occurring fast compared to Mutation and drift in the entire population. This allows a two-step approach in the analysis: (i) analysis of population subdivision and (ii) analysis of molecular variation in the migrant pool. We model population subdivision using an infinite island model, where we allow the migration/drift parameter Theta to vary among populations. Thus, central and peripheral populations can be differentiated. For inference of Theta, we use a coalescence approach, implemented via a Markov chain Monte Carlo (MCMC) integration method that allows estimation of allele frequencies in the migrant pool. The second step of this approach (analysis of molecular variation in the migrant pool) uses the estimated allele frequencies in the migrant pool for the study of molecular variation. We apply this method to a Drosophila ananassae sequence data set. We find little indication of isolation by distance, but large differences in the migration parameter among populations. The population as a whole seems to be expanding. A population from Bogor (Java, Indonesia) shows the highest variation and seems closest to the species center.