15 resultados para ESSENTIAL ELEMENTS

em Archivo Digital para la Docencia y la Investigación - Repositorio Institucional de la Universidad del País Vasco


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Contributed to: III Bienal de Restauración Monumental: "Sobre la des-restauración" (Sevilla, Spain, Nov 23-25, 2006)

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Contributed to: Virtual Retrospect 2007 (Pessac, France, Nov 14-16, 2007)

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Contributed to: Fusion of Cultures. XXXVIII Annual Conference on Computer Applications and Quantitative Methods in Archaeology – CAA2010 (Granada, Spain, Apr 6-9, 2010)

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[ES]En el presente trabajo se diseña el circuito neumático para el accionamiento de una cuchara de colada. Se comienza con la solución menos automatizada a la que se le van añadiendo elementos para mejorar el circuito hasta llegar a la forma de funcionamiento deseada. Para su desarrollo se han realizado los circuitos de forma teórica con el programa FluidSIM y posteriormente de forma práctica en un panel neumático en el laboratorio de fluidos de la Escuela Técnica Superior de Ingeniería de Bilbao. Finalmente se presenta un ejemplo ilustrativo del dimensionamiento del cilindro neumático.

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[ES] Esta investigación es un intento de avanzar en la comprensión de por qué las organizaciones son sensibles a la institucionalización. Para ello, describimos los elementos clave que ayudan a explicar el origen del proceso corporativo de institucionalización. Además, se ha seguido una metodología de investigación cualitativa, utilizando la técnica del concept mapping , para agrupar en constructos los diferentes ítems que actúan como factores motivadores de la transformación de las organizaciones en instituciones. Metodológicamente hemos tratado de obviar la separación entre viejo y nuevo institucionalismo siguiendo a los autores que cuestionan la conveniencia de trazar una línea divisoria entre la vieja y la nueva teoría. Consideramos que el papel del CEO es esencial en el impulso del proceso de institucionalización, aunque en muchas ocasiones sus decisiones estén apoyadas o hayan pasado por el filtro de los equipos de gobierno de la organización o de los consejos de administración. Cualquier impulso que realice la organización dependerá fundamentalmente de las capacidades, las sensaciones, la formación y el modo de pensar del CEO. Los resultados refuerzan varios de los temas claves sugeridos en la literatura sobre Teoría Institucional. En particular, se establece una clasificación con los motivos que dan origen a las iniciativas institucionales, a saber: autoridad institucional; ventaja en gestión; e, implicación social. Esta clasificación es coincidente, en una gran medida, con los pilares de la institucionalización que han sido definidos en la literatura de la teoría institucional, ayudando a comprender, con mayor detalle, el origen de los procesos institucionales y los antecedentes o motivaciones que los generan y guían.

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Geology is the science that studies the Earth, its composition, structure and origin in addition to past and present phenomena that leave their mark on rocks. So why does society need geologists? Some of the main reasons are listed below: - Geologists compile and interpret information about the earth’s surface and subsoil, which allows us to establish the planet’s past history, any foreseeable changes and its relationship with the rest of the solar system. - Society needs natural resources (metals, non-metals, water and fossil fuels) to survive. The work of geologists is therefore a key part of finding new deposits and establishing a guide for exploring and managing resources in an environmentally-friendly way. - The creation of geological maps allows us to identify potential risk areas and survey different land uses; in other words, they make an essential contribution to land planning and proposing sustainable development strategies in a region. - Learning about Geology and the proper use of geological information contributes to saving lives and reducing financial loss caused by natural catastrophes such as earthquakes, tsunamis, volcanic eruptions, flooding and landslides, while also helping to develop construction projects, public works, etc. Through the proposed activities we aim to explain some of the basic elements of the different specialities within the field of Geological Sciences. In order to do this, four sessions have been organised that will allow for a quick insight into the fields of Palaeontology, Mineralogy, Petrology and Tectonics.

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Geology is the science that studies the Earth, its composition, structure and origin in addition to past and present phenomena that leave their mark on rocks. So why does society need geologists? Some of the main reasons are listed below: - Geologists compile and interpret information about the earth’s surface and subsoil, which allows us to establish the planet’s past history, any foreseeable changes and its relationship with the rest of the solar system. - Society needs natural resources (metals, non-metals, water and fossil fuels) to survive. The work of geologists is therefore a key part of finding new deposits and establishing a guide for exploring and managing resources in an environmentally-friendly way. - The creation of geological maps allows us to identify potential risk areas and survey different land uses; in other words, they make an essential contribution to land planning and proposing sustainable development strategies in a region. - Learning about Geology and the proper use of geological information contributes to saving lives and reducing financial loss caused by natural catastrophes such as earthquakes, tsunamis, volcanic eruptions, flooding and landslides, while also helping to develop construction projects, public works, etc. Through the proposed activities we aim to explain some of the basic elements of the different specialities within the field of Geological Sciences. In order to do this, four sessions have been organised that will allow for a quick insight into the fields of Palaeontology, Mineralogy, Petrology and Tectonics.

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Biochemical energy is the fundamental element that maintains both the adequate turnover of the biomolecular structures and the functional metabolic viability of unicellular organisms. The levels of ATP, ADP and AMP reflect roughly the energetic status of the cell, and a precise ratio relating them was proposed by Atkinson as the adenylate energy charge (AEC). Under growth-phase conditions, cells maintain the AEC within narrow physiological values, despite extremely large fluctuations in the adenine nucleotides concentration. Intensive experimental studies have shown that these AEC values are preserved in a wide variety of organisms, both eukaryotes and prokaryotes. Here, to understand some of the functional elements involved in the cellular energy status, we present a computational model conformed by some key essential parts of the adenylate energy system. Specifically, we have considered (I) the main synthesis process of ATP from ADP, (II) the main catalyzed phosphotransfer reaction for interconversion of ATP, ADP and AMP, (III) the enzymatic hydrolysis of ATP yielding ADP, and (IV) the enzymatic hydrolysis of ATP providing AMP. This leads to a dynamic metabolic model (with the form of a delayed differential system) in which the enzymatic rate equations and all the physiological kinetic parameters have been explicitly considered and experimentally tested in vitro. Our central hypothesis is that cells are characterized by changing energy dynamics (homeorhesis). The results show that the AEC presents stable transitions between steady states and periodic oscillations and, in agreement with experimental data these oscillations range within the narrow AEC window. Furthermore, the model shows sustained oscillations in the Gibbs free energy and in the total nucleotide pool. The present study provides a step forward towards the understanding of the fundamental principles and quantitative laws governing the adenylate energy system, which is a fundamental element for unveiling the dynamics of cellular life.

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This work presents the basic elements for the analysis of decision under uncertainty: Expected Utility Theory and its citicisms and risk aversion and its measurement. The concepts of certainty equivalent, risk premium, absolute risk aversion and relative risk aversion, and the "more risk averse than" relation are discussed. The work is completed with several applications of decision making under uncertainty to different economic problems: investment in risky assets and portfolio selection, risk sharing, investment to reduce risk, insurance, taxes and income underreporting, deposit insurance and the value of information.

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[ES]En este documento se propone el diseño de dos sistemas imprescindibles en el tren trasero de una moto de competición, el sistema de tensor de cadena y el del acople de pinza de freno trasero. Junto a estos sistemas se diseñará, dada su relevancia, el basculante de la moto. Estos diseños se realizarán de tal manera que cumplan una serie de requisitos geométricos y de resistencia, garantizando en todo momento la estabilidad y seguridad del piloto. Se realizará también el estudio de la fabricación de cada uno de los elementos que componen los sistemas, con el fin de realizar diseños viables, que resulten económicamente factibles y mantengan un alto grado de calidad. En el proyecto se analizarán las diferentes alternativas de los sistemas que se puedan adoptar, sus ventajas y desventajas, para así poder escoger, con un alto grado de seguridad, la opción que mejor cumpla los objetivos y condiciones establecidos. Cabe destacar que este proyecto se encuentra dentro de otro de mayor envergadura consistente en el diseño y la fabricación de una motocicleta de competición para participar en el campeonato internacional llamado “MotoStudent”. Esta competición se realiza entre universidades de todo el mundo y en ella los equipos de estudiantes se enfrentan al desafío de diseñar y desarrollar un prototipo de motocicleta de competición similar a la categoría mundialista de “Moto3”.

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[ES]Hoy en día la simulación de elementos de red y de redes completas supone una herramienta esencial para las telecomunicaciones, pudiendo ayudar en el dimensionado y el análisis de las mismas, así como en el estudio de problemáticas y escenarios que puedan darse. Uno de estos puntos de gran interés para el estudio es ARQ, y más concretamente, las técnicas de Stop & Wait y Go Back N. Así pues, nace dentro del grupo de investigación NQAS la necesidad de elaborar un conjunto de simulaciones sobre estas técnicas, con especial interés sobre la recolección de datos relacionados con el rendimiento de las mismas. Se pretende diseñar y simular una serie de escenarios de red partiendo de módulos simples con funciones de envío, conmutación y recepción de paquetes, escalándolo gradualmente para aumentar las funcionalidades de los mismos, hasta conseguir el diseño e implementación de redes basadas en dicha arquitectura cuyos enlaces estén bajo la cobertura de instancias de protocolo ARQ (Stop & Wait, Go Back N). Se tratará el resultado de las simulaciones mediante la recolección de estadísticas relacionadas con rendimiento y desempeño de las técnicas.

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In nickel-based superalloys, substitutional solute species have a strong impact on in service mechanical properties as well as on oxidation and corrosion resistances. In alloy 718, recent studies carried out by tensile tests highlighted the fact that refractory solute species are able to interact strongly with mobile dislocations during plastic deformation, generating dynamic strain ageing, and, in wide ranges of tests temperatures and strain rates, Portevin-Le Chatelier effect. The precise nature of the substitutional element responsible for such a dynamic interaction is still subject to debate. We addressed this question by means of mechanical spectroscopy studies of alloy 718 and various related alloys corresponding to monitored changes in the chemical composition. Only a single internal friction relaxation peak has been observed for all the studied alloys. By analyzing the damping behavior of these alloys at different imposed solicitation frequencies by sweeping a large temperatures range, the activation energies of the relaxation process and the type of mechanism involved have been determined. The process is a "Zener relaxation" in the alloys, i.e. a substitutional atoms dipole reorientation under applied stress. The results tend to prove that Niobium is not involved in the relaxation process whereas Molybdenum content seems to play an important role in the relaxation intensity.

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To achieve the apparently simple Periodic Table of the Elements has implied tremendous efforts over thousands of years. In this paper we present a brief history of the discovery of the chemical elements from prehistory to the present day, revealing the controversies that arose on the way and claiming the important work performed by alchemists in the advancement of knowledge. This is especially important if we consider that alchemy had a period of existence of many thousands of years, while the "Chemistry", officially established as a science in the eighteenth century, has operated as such for only a few hundred years. Even so, if we consider the progress of discovery and isolation of chemical elements throughout history, it can be observed that the number of elements identified is achieved mainly in the nineteenth and twentieth centuries, reflecting the development of instrumental techniques, that facilitated this task.