854 resultados para Concept of Will in Antiquity


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El propósito de esta tesis es estudiar la aproximación a los fenómenos de transporte térmico en edificación acristalada a través de sus réplicas a escala. La tarea central de esta tesis es, por lo tanto, la comparación del comportamiento térmico de modelos a escala con el correspondiente comportamiento térmico del prototipo a escala real. Los datos principales de comparación entre modelo y prototipo serán las temperaturas. En el primer capítulo del Estado del Arte de esta tesis se hará un recorrido histórico por los usos de los modelos a escala desde la antigüedad hasta nuestro días. Dentro de éste, en el Estado de la Técnica, se expondrán los beneficios que tiene su empleo y las dificultades que conllevan. A continuación, en el Estado de la Investigación de los modelos a escala, se analizarán artículos científicos y tesis. Precisamente, nos centraremos en aquellos modelos a escala que son funcionales. Los modelos a escala funcionales son modelos a escala que replican, además, una o algunas de las funciones de sus prototipos. Los modelos a escala pueden estar distorsionados o no. Los modelos a escala distorsionados son aquellos con cambios intencionados en las dimensiones o en las características constructivas para la obtención de una respuesta específica por ejemplo, replicar el comportamiento térmico. Los modelos a escala sin distorsión, o no distorsionados, son aquellos que mantienen, en la medida de lo posible, las proporciones dimensionales y características constructivas de sus prototipos de referencia. Estos modelos a escala funcionales y no distorsionados son especialmente útiles para los arquitectos ya que permiten a la vez ser empleados como elementos funcionales de análisis y como elementos de toma de decisiones en el diseño constructivo. A pesar de su versatilidad, en general, se observará que se han utilizado muy poco estos modelos a escala funcionales sin distorsión para el estudio del comportamiento térmico de la edificación. Posteriormente, se expondrán las teorías para el análisis de los datos térmicos recogidos de los modelos a escala y su aplicabilidad a los correspondientes prototipos a escala real. Se explicarán los experimentos llevados a cabo, tanto en laboratorio como a intemperie. Se han realizado experimentos con modelos sencillos cúbicos a diferentes escalas y sometidos a las mismas condiciones ambientales. De estos modelos sencillos hemos dado el salto a un modelo reducido de una edificación acristalada relativamente sencilla. Los experimentos consisten en ensayos simultáneos a intemperie del prototipo a escala real y su modelo reducido del Taller de Prototipos de la Escuela Técnica Superior de Arquitectura de Madrid (ETSAM). Para el análisis de los datos experimentales hemos aplicado las teorías conocidas, tanto comparaciones directas como el empleo del análisis dimensional. Finalmente, las simulaciones nos permiten comparaciones flexibles con los datos experimentales, por ese motivo, hemos utilizado tanto programas comerciales como un algoritmo de simulación desarrollado ad hoc para esta investigación. Finalmente, exponemos la discusión y las conclusiones de esta investigación. Abstract The purpose of this thesis is to study the approximation to phenomena of heat transfer in glazed buildings through their scale replicas. The central task of this thesis is, therefore, the comparison of the thermal performance of scale models without distortion with the corresponding thermal performance of their full-scale prototypes. Indoor air temperatures of the scale model and the corresponding prototype are the data to be compared. In the first chapter on the State of the Art, it will be shown a broad vision, consisting of a historic review of uses of scale models, from antiquity to our days. In the section State of the Technique, the benefits and difficulties associated with their implementation are presented. Additionally, in the section State of the Research, current scientific papers and theses on scale models are reviewed. Specifically, we focus on functional scale models. Functional scale models are scale models that replicate, additionally, one or some of the functions of their corresponding prototypes. Scale models can be distorted or not. Scale models with distortion are considered scale models with intentional changes, on one hand, in dimensions scaled unevenly and, on the other hand, in constructive characteristics or materials, in order to get a specific performance for instance, a specific thermal performance. Consequently, scale models without distortion, or undistorted scale models scaled evenly, are those replicating, to the extent possible, without distortion, the dimensional proportions and constructive configurations of their prototypes of reference. These undistorted and functional scale models are especially useful for architects because they can be used, simultaneously, as functional elements of analysis and as decision-making elements during the design. Although they are versatile, in general, it is remarkable that these types of models are used very little for the study of the thermal performance of buildings. Subsequently, the theories related to the analysis of the experimental thermal data collected from the scale models and their applicability to the corresponding full-scale prototypes, will be explained. Thereafter, the experiments in laboratory and at outdoor conditions are detailed. Firstly, experiments carried out with simple cube models at different scales are explained. The prototype larger in size and the corresponding undistorted scale model have been subjected to same environmental conditions in every experimental test. Secondly, a step forward is taken carrying out some simultaneous experimental tests of an undistorted scale model, replica of a relatively simple lightweight and glazed building construction. This experiment consists of monitoring the undistorted scale model of the prototype workshop located in the School of Architecture (ETSAM) of the Technical University of Madrid (UPM). For the analysis of experimental data, known related theories and resources are applied, such as, direct comparisons, statistical analyses, Dimensional Analysis and last, but not least important, simulations. Simulations allow us, specifically, flexible comparisons with experimental data. Here, apart the use of the simulation software EnergyPlus, a simulation algorithm is developed ad hoc for this research. Finally, the discussion and conclusions of this research are exposed.

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The aim of this research is to characterize the coordination of the processes of approximation related to the understanding of the limit of a function. We analyze the answers of 64 post-secondary school students to 7 problems considering the dynamic and metric conception of limit of a function. Results indicate that the metric understanding of the limit in terms of inequality supports that the student is capable of coordinating the approximations in the domain and in the range when lateral approximations coincide. However, the student is not capable of this coordination when lateral approximations do not coincide. This indicates that the metric understanding of the limit begins with the previous construction of the dynamic conception in case of coincidence of the lateral approximations in the range.

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The methodological approach a teacher uses in the competence teaching-learning process determines the way students learn. Knowledge can be acquired from a series of perspectives, mainly: “know-what” (concept), where facts and descriptions of (natural or social) phenomena are pursued; “know-how” (procedure), where methods and procedures for their application are described; and “know-why” (competence), where general principles and laws that explain both the facts and their applications are sought. As all the three cases are interconnected, the boundaries between them are not fully clear and their application uses shared elements. In any case, the depth of student’s acquired competences will be directly affected by the teaching-learning perspective, traditionally aiming to a “know-why” approach for full competence acquisition. In this work, we discuss a suitable teaching-learning methodology for evaluating whether a “know-how”, “know-what” or combined approach seems better for enhancing competence learning in students. We exemplify the method using a selection of formative activities from the Physical Chemistry area in the Grades of Chemistry and Chemical Engineering.

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[From the Introduction]. The economic rules, or put more ambitiously, the economic constitution of the Treaty,1 only apply to economic activities. This general principle remains valid, even if some authors strive to demonstrate that certain Treaty rules also apply in the absence of an economic activity,2 and despite the fact that non-economic (horizontal) Treaty provisions (e.g. principle of nondiscrimination, rules on citizenship) are also applicable in the absence of any economic activity.3 Indeed, the exercise of some economic activity transcends the concepts of ‘goods’ (having positive or negative market value),4 workers (even if admitted in an extensive manner),5 and services (offered for remuneration).6 It is also economic activity or ‘the activity of offering goods and services into the market’7 that characterises an ‘undertaking’ thus making the competition rules applicable. Further, it is for regulating economic activity that Article 115 TFEU, Article 106(3) TFEU and most other legal bases in the TFEU provide harmonisation powers in favour of the EU. Last but not least, Article 14 TFEU on the distinction between services of general economic interest (SGEIs) and non-economic services of general interest (NESGIs), as well as Protocol n. 26 on Services of General Interest (SGIs) confirm the constitutional significance of the distinction between economic and non-economic: a means of dividing competences between the EU and the member states. The distinction between economic and non-economic activities is fraught with legal and technical intricacies – the latter being generated by dynamic technological advances and regulatory experimentation. More importantly, however, the distinction is overcharged with political and ideological significations and misunderstandings and, even, terminological confusions.8

Proposals for Council decisions on a Community position on an amendment to Protocol 4 on the definition of the concept of "originating products" and methods of administrative cooperation set out in the Europe Agreement between the European Communities and Bulgaria, the Czech Republic, Poland, Hungary, the Slovak Republic and Romania. Proposals for Council decisions on a Community position on an amendment to Protocol 3 on the definition of the concept of "originating products" and methods of administrative cooperation set out in the Europe Agreement between the European Communities and the Republic of Estonia, the Republic of Latvia and the Republic of Lithuania. Proposal for a Council decision on a Community position on an amendment to Protocol 4 on the definition of the concept of "originating products" and methods of administrative cooperation set out in the Interim Agreement on trade and trade related matters between the European Communities and the Republic of Slovenia. Draft decision N° .../ of the EC-Switzerland Joint Committee amending Protocol 3 to the Agreement between the European Economic Community and the Swiss Confederation concerning the definition of the concept of "originating products" and methods of administrative cooperation. Draft decision N° .../ of the EC-Norway Joint Committee amending Protocol 3 to the Agreement between the European Economic Community and the Kingdom of Norway concerning the definition of the concept of "originating products" and methods of administrative cooperation. Draft decision N° .../ of the EC-Iceland Joint Committee amending Protocol 3 to the Agreement between the European Economic Community and the Republic of Iceland concerning the definition of the concept of "originating products" and methods of administrative cooperation. Draft decision N° .../ of the EEA Joint Committee No .. amending Protocol 4 to the EEA Agreement on rules of origin. COM (98) 389 final, 17 July 1998

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