4 resultados para C-60-GAMMA-CYCLODEXTRIN

em Universidad Politécnica de Madrid


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El objetivo de este PFG es aplicar las herramientas de planificación a un proyecto existente y hacer un estudio del análisis de riesgos. El PFC al que se va a aplicar la gestión de riesgos es: “ Remodelación del vial existente que une el municipio de Cañaveruelas (Cuenca) con el embalse de Buendía, mediante una vía de doble sentido tipo C-60 que incluye un carril bici y otro peatonal. Ordenación territorial en las proximidades al embalse”. Fue realizado por Laura Gallego Salagre y por mí, para la defensa del PFC de Ingeniero Técnico en Topografía en junio de 2013. - Descripción breve del proyecto al que se va a aplicar la herramienta de gestión. - Estudio de los métodos y de las herramientas de gestión de análisis de los riesgos - Diseño de una planificación adecuada y eficiente. - Identificación de los riesgos que puedan afectar al proyecto - Realizar un análisis cualitativo y cuantitativo de Riesgos - Planificar las respuestas a los Riesgos - Analizar las diferentes respuestas - Comparar la planificación determinista con la realizada tras el análisis de riesgos. Para hacer un estudio del análisis de riesgos, hay que empezar por una planificación detallada del proyecto e identificar los posibles riesgos que puedan aparecer. Después haremos una estimación de los recursos y los asignaremos a las diferentes actividades. Posteriormente se realizará una red de procedencias, se calculará el camino crítico y se establecerá un plan de hitos para realizar un análisis de riesgos mediante el método Monte Carlo, que nos indicará la incertidumbre de las actividades. Posteriormente identificaremos los posibles riesgos que puedan afectar a nuestra planificación, los analizaremos cualitativa y cuantitativamente y se evaluarán las acciones de mitigación de los riesgos. Por último, se creará el impacto de estos en las actividades y a partir de ellos, se harán los calendarios pre y post mitigados para su posterior análisis.

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The application of the response of fruits to low energy for mechanical impacts is described, for evaluation of post-harvest ripening of avocadoes of the variety "Hass". An impactor of 50g of weight, provided with an accelerometer, and free-falling from a height of 4 cm, is used; it is interfaced to a computer and uses a special software for retrieving and analyzing the deceleration data. Impact response parameters of individual fruits were compared to firmness of the pulp, measured by the most used method of double-plate puncture, as well as to other physical and physiological parameters: color, skin puncture ethylene production rate and others. Two groups of fruits were carefully selected, stored at 6º C (60 days) and ripened at 20ºC (11 days), and tested during the storage period. It is shown that, as in other types of fruits, impact response can be a good predictor of firmness in avocadoes, obtaining the same accuracy as with destructive firmness measurements. Mathematical and multiple regression models are calculated and compared to measured data, with which a prediction of storage period can be made for these fruits.

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A review of the experimental data for natC(n,c) and 12C(n,c) was made to identify the origin of the natC capture cross sections included in evaluated data libraries and to clarify differences observed in neutronic calculations for graphite moderated reactors using different libraries. The performance of the JEFF-3.1.2 and ENDF/B-VII.1 libraries was verified by comparing results of criticality calculations with experimental results obtained for the BR1 reactor. This reactor is an air-cooled reactor with graphite as moderator and is located at the Belgian Nuclear Research Centre SCK-CEN in Mol (Belgium). The results of this study confirm conclusions drawn from neutronic calculations of the High Temperature Engineering Test Reactor (HTTR) in Japan. Furthermore, both BR1 and HTTR calculations support the capture cross section of 12C at thermal energy which is recommended by Firestone and Révay. Additional criticality calculations were carried out in order to illustrate that the natC thermal capture cross section is important for systems with a large amount of graphite. The present study shows that only the evaluation carried out for JENDL-4.0 reflects the current status of the experimental data.

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This paper presents seventy new experimental results from PMMA notched specimens tested under torsion at 60 C. The notch root radius ranges from 0.025 to 7.0 mm. At this temperature the non-linear effects previously observed on specimens of the same material tested at room temperature strongly reduce. The averaged value of the strain energy density over a control volume is used to assess the critical loads to failure. The radius of the control volume and the critical strain energy density are evaluated a priori by using in combination the mode III critical stress intensity factor from cracked-like specimens and the critical stress to failure detected from semicircular notches with a large notch root radius