842 resultados para Theoretical model and wind action
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"Georgia Institute of Technology."
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Mode of access: Internet.
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Mode of access: Internet.
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Thesis (D. V. M.) - Cornell University, 1905.
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"March 1984."
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Mode of access: Internet.
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Bibliography: p. 22-23.
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Mode of access: Internet.
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We examine the event statistics obtained from two differing simplified models for earthquake faults. The first model is a reproduction of the Block-Slider model of Carlson et al. (1991), a model often employed in seismicity studies. The second model is an elastodynamic fault model based upon the Lattice Solid Model (LSM) of Mora and Place (1994). We performed simulations in which the fault length was varied in each model and generated synthetic catalogs of event sizes and times. From these catalogs, we constructed interval event size distributions and inter-event time distributions. The larger, localised events in the Block-Slider model displayed the same scaling behaviour as events in the LSM however the distribution of inter-event times was markedly different. The analysis of both event size and inter-event time statistics is an effective method for comparative studies of differing simplified models for earthquake faults.
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A mismatch exists in expectations about the requirements of translation between NAATI and those attempting the NAATI test, be they translation practitioners, graduates from translation training programs. This article will examine issues concerning NAATI accreditation for Translators at the professional level in terms of the relevant theoretical frameworks of translation, and assess translation practice in the real translation world, in order to contribute to a better understanding of the NAATI Translator test, its theoretical underpinnings and practical implications.
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A structurally-based quasi-chemical viscosity model for fully liquid slags in the Al2O3 CaO-'FeO'-MgO-SiO2 system has been developed. The model links the slag viscosities to the internal structures of the melts through the concentrations of various Si0.5O, Me2/nn+O and Me1/nn+Si0.25O viscous flow structural units. The concentrations of these structural units are derived from a quasi-chemical thermodynamic model of the system. The model described in this series of papers enables the viscosities of liquid slags to be predicted within experimental uncertainties over the whole range of temperatures and compositions in the Al2O3 CaOMgO-SiO2 system.