999 resultados para Razonamiento geométrico


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Tratar de ver la relación existente entre la medida de los tests psicométricos y las pruebas operatorias, así como el pronóstico de una prueba sobre otra y de los factores que determinan las relaciones. 130 niños/as elegidos aleatoriamente de dos colegios públicos de Murcia: CP Narciso Yepes y Espíritu Santo de Espinardo, con edades comprendidas entre los seis y diez años, distribuídos en Ciclo Inicial (55) y Ciclo Medio (75). Aplicación de los tests y pruebas de forma individual teniendo como variables independientes: tests y subtests psicométricos, y como dependientes: pruebas operatorias (clasificación aditiva y clasificación multiplicativa). Wisc: semejanzas, figuras incompletas y rompecabezas; matrices progresivas de Raven: series a y b color y c, d y e; escala de madurez mental de Columbia; escalas 1 y 2 del test de factor 'G' de Cattell; pruebas operatorias. Análisis correlacional para ver la relación entre un conjunto de variables independientes y una variable dependiente. Análisis de regresión para ver en función de qué variable independiente se puede pronosticar mejor la variable dependiente. Parece ser que las relaciones entre ambos tipos de medida en lo que al razonamiento lógico se refiere presentan una relación moderadamente buena, aunque no son muy altas como se esperaba. Los tests que mejor pronostican las pruebas operatorias son el Columbia y el Raven. Pese a las diferencias teóricas, empíricas y metodológicas de los tests y pruebas, se puede considerar que algunas variables independientes son moderadamente buenas predictoras en lo correspondiente al razonamiento lógico. La escala CMMS pronostica mejor en las clasificaciones aditivas y el Raven en las clasificaciones multiplicativas. La convergencia de ambos instrumentos en la medida de 'G' no es determinante en sus relaciones. Las cargas culturales de los tests de inteligencia no es el único factor que determina las relaciones entre estos y las pruebas operatorias.

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Monográfico con el título: 'La Docencia en Ciencias de la Salud'. Resumen basado en el de la publicación

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El presente trabajo de investigación pretende demostrar que el razonamiento práctico justificativo es el método adecuado para la fundamentación de la sustanciación y resolución de las acciones ordinarias de protección bajo la premisa que al coincidir sus fundamentos y finalidades al ser desarrollados en conjunto puede garantizar niveles óptimos de eficacia de dicha garantía jurisdiccional. Al efecto: en primer lugar desarrollaré los conceptos e ideas trasversales más importantes del razonamiento práctico justificativo propuesto por el filósofo argentino Carlos Santiago Nino(casos en que debe aplicarse, precondiciones de los sujetos deliberantes, estructura del razonamiento, relaciones epistémicas de los conceptos “razonamiento práctico” y “contextos”, relaciones epistémicas entre los conceptos “razonamiento práctico justificativo” y “acción ordinaria de protección”, finalidades del razonamiento práctico justificativo y procedimiento de aplicación del razonamiento práctico justificativo a los textos jurídicos. En segundo lugar me ocuparé de algunas importantes críticas propuestas en contra de los razonamientos prácticos incluyendo el razonamiento práctico justificativo (Ulises Schmill, Rolando Tamayo y Óscar Correas). Y, en tercer lugar, desarrollaré un análisis cuali – cuantitativo de varias muestras de investigación constituidas por procesos constitucionales de acciones ordinarias de protección con el propósito de verificar la validez de la premisa inicial consistente en la relación ideal entre razonamiento práctico justificativo y acción ordinaria de protección.

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In the teaching practice of architecture and urbanism in Brazil, educational legislation views modeling laboratories and workshops as an indispensable component of the infrastructure required for the good functioning of any architectural course of study. Although the development of information technology at the international level has created new possibilities for digital production of architectural models, research in this field being underway since the early 1990s, it is only from 2007 onwards that such technologies started to be incorporated into the teaching activity of architecture and urbanism in Brazil, through the pioneering experience at LAPAC/FEC/UNICAMP. It is therefore a recent experiment whose challenges can be highlighted through the following examples: (i) The implementation of digital prototyping laboratories in undergraduate courses of architecture and urbanism is still rare in Brazil; (ii) As a new developing field with few references and application to undergraduate programs, it is hard to define methodological procedures suitable for the pedagogical curricula already implemented or which have already been consolidated over the years; (iii) The new digital ways for producing tridimensional models are marked with specificities which make it difficult to fit them within the existing structures of model laboratories and workshops. Considering the above, the present thesis discusses the tridimensional model as a tool which may contribute to the development of students skills in perceiving, understanding and representing tridimensional space. Analysis is made of the relation between different forms of models and the teaching of architectural project, with emphasis on the design process. Starting from the conceptualization of the word model as it is used in architecture and urbanism, an attempt is made to identify types of tridimensional models used in the process of project conception, both through the traditional, manual way of model construction as well as through the digital ones. There is also an explanation on how new technologies for digital production of models through prototyping are being introduced in undergraduate academic programs of architecture and urbanism in Brazil, as well as a review of recent academic publications in this area. Based on the paradigm of reflective practice in teaching as designed by Schön (2000), the experiment applied in the research was undertaken in the integrated workshop courses of architectural project in the undergraduate program of architecture and urbanism at Universidade Federal do Rio Grande do Norte. Along the experiment, physical modeling, geometric modeling and digital prototyping are used in distinct moments of the design process with the purpose of observing the suitability of each model to the project s phases. The procedures used in the experiments are very close to the Action Research methodology in which the main purpose is the production of theoretical knowledge by improving the practice. The process was repeated during three consecutive semesters and reflection on the results which were achieved in each cycle helped enhancing the next one. As a result, a methodological procedure is proposed which consists of the definition of the Tridimensional Model as the integrating element for the contents studied in a specific academic period or semester. The teaching of Architectural Project as it is developed along the fifth academic period of the Architecture and Urbanism undergraduate program of UFRN is taken as a reference

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This work is a case study to investigate the dynamics of the historians thought as they produce a knowledge about the history of the area measurement systems as forms of historical expressions and representations. We refer to some of the ideas of David Bohm (1989, 1992, 1994, 1996) to support our theoretical understanding about the operation of thought. We chose a period that is recognized by the theorists as the origin of the geometrical thought -embracing the knowledge developed by the Egyptians, Babylonians, Chinese, Hindus, Greeks and Romans- and is referred to as containing a cycle in the development of this knowledge, described as beginning, apogee and decline. We assume this history, as told by the theorists, as a version that we organize and tell with the help of three sets of categories. The first refers to the elements that take part in the measurement practices; the second refers to the historians understanding about the development of the scientific knowledge. This exercise allowed us to extract the theorists main beliefs, that we criticized in the light of the knowledge about Cubação (Dal Pian, 1990). We stress the importance of the methodological approach adopted in this study to the teaching of Geometry and its history

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In this paper, a methodology is proposed for the geometric refinement of laser scanning building roof contours using high-resolution aerial images and Markov Random Field (MRF) models. The proposed methodology takes for granted that the 3D description of each building roof reconstructed from the laser scanning data (i.e., a polyhedron) is topologically correct and that it is only necessary to improve its accuracy. Since roof ridges are accurately extracted from laser scanning data, our main objective is to use high-resolution aerial images to improve the accuracy of roof outlines. In order to meet this goal, the available roof contours are first projected onto the image-space. After that, the projected polygons and the straight lines extracted from the image are used to establish an MRF description, which is based on relations ( relative length, proximity, and orientation) between the two sets of straight lines. The energy function associated with the MRF is minimized by using a modified version of the brute force algorithm, resulting in the grouping of straight lines for each roof object. Finally, each grouping of straight lines is topologically reconstructed based on the topology of the corresponding laser scanning polygon projected onto the image-space. The preliminary results showed that the proposed methodology is promising, since most sides of the refined polygons are geometrically better than corresponding projected laser scanning straight lines.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Educação - FCT

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Pós-graduação em Educação Matemática - IGCE

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Pós-graduação em Educação Matemática - IGCE

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A medição de parâmetros físicos de reservatórios se constitui de grande importância para a detecção de hidrocarbonetos. A obtenção destes parâmetros é realizado através de análise de amplitude com a determinação dos coeficientes de reflexão. Para isto, faz-se necessário a aplicação de técnicas especiais de processamento capazes de corrigir efeitos de divergência esférica. Um problema pode ser estabelecido através da seguinte questão: Qual o efeito relativamente mais importante como responsável pela atenuação de amplitudes, o espalhamento geométrico ou a perda por transmissividade? A justificativa desta pergunta reside em que a correção dinâmica teórica aplicada a dados reais visa exclusivamente o espalhamento geométrico. No entanto, a análise física do problema por diferentes direções põe a resposta em condições de dúvida, o que é interessante e contraditório com a prática. Uma resposta embasada mais fisicamente pode dar melhor subsídio a outros trabalhos em andamento. O presente trabalho visa o cálculo da divergência esférica segundo a teoria Newman-Gutenberg e corrigir sismogramas sintéticos calculados pelo método da refletividade. O modelo-teste é crostal para que se possa ter eventos de refração crítica além das reflexões e para, com isto, melhor orientar quanto à janela de aplicação da correção de divergência esférica o que resulta em obter o então denominado “verdadeiras amplitudes”. O meio simulado é formado por camadas plano-horizontais, homogêneas e isotrópicas. O método da refletividade é uma forma de solução da equação de onda para o referido modelo, o que torna possível um entendimento do problema em estudo. Para se chegar aos resultados obtidos foram calculados sismogramas sintéticos através do programa P-SV-SH desenvolvido por Sandmeier (1998), e curvas do espalhamento geométrico em função do tempo para o modelo estudado como descrito por Newman (1973). Demonstramos como uma das conclusões que a partir dos dados do modelo (velocidades, espessuras, densidades e profundidades) uma equação para a correção de espalhamento geométrico visando às “verdadeiras amplitudes” não é de fácil obtenção. O objetivo maior então deveria ser obter um painel da função de divergência esférica para corrigir as verdadeiras amplitudes.