993 resultados para van Hiele


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Pós-graduação em Educação - FFC

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Pós-graduação em Educação - FCT

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Current reform initiatives recommend that geometry instruction include the study of three-dimensional geometric objects and provide students with opportunities to use spatial skills in problem-solving tasks. Geometer's Sketchpad (GSP) is a dynamic and interactive computer program that enables the user to investigate and explore geometric concepts and manipulate geometric structures. Research using GSP as an instructional tool has focused primarily on teaching and learning two-dimensional geometry. This study explored the effect of a GSP based instructional environment on students' geometric thinking and three-dimensional spatial ability as they used GSP to learn three-dimensional geometry. For 10 weeks, 18 tenth-grade students from an urban school district used GSP to construct and analyze dynamic, two-dimensional representations of three-dimensional objects in a classroom environment that encouraged exploration, discussion, conjecture, and verification. The data were collected primarily from participant observations and clinical interviews and analyzed using qualitative methods of analysis. In addition, pretest and posttest measures of three-dimensional spatial ability and van Hiele level of geometric thinking were obtained. Spatial ability measures were analyzed using standard t-test analysis. ^ The data from this study indicate that GSP is a viable tool to teach students about three-dimensional geometric objects. A comparison of students' pretest and posttest van Hiele levels showed an improvement in geometric thinking, especially for students on lower levels of the van Hiele theory. Evidence at the p < .05 level indicated that students' spatial ability improved significantly. Specifically, the GSP dynamic, visual environment supported students' visualization and reasoning processes as students attempted to solve challenging tasks about three-dimensional geometric objects. The GSP instructional activities also provided students with an experiential base and an intuitive understanding about three-dimensional objects from which more formal work in geometry could be pursued. This study demonstrates that by designing appropriate GSP based instructional environments, it is possible to help students improve their spatial skills, develop more coherent and accurate intuitions about three-dimensional geometric objects, and progress through the levels of geometric thinking proposed by van Hiele. ^

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In questa tesi si presenta uno studio sull'apprendimento della probabilità e la relativa sperimentazione fatta su 4 classi, due terze alla fine del primo ciclo d'istruzione, una prima e una seconda di liceo scientifico. Utilizzando le proprietà elaborate dai coniugi Van Hiele per costruire dei livelli di apprendimento della geometria, sono stati stilati dei livelli di apprendimento della probabilità e l'obiettivo del progetto è di confermarli ed eventualmente correggerli. Gli studenti sono stati sottoposti ad un breve test ed in seguito a delle interviste in coppia, per cercare nel loro dialogo alcuni ''indicatori'' che permettessero di inquadrare ogni studente in un livello di apprendimento. Dalle interviste sono state estrapolate prima le strategie risolutive, ovvero i procedimenti che gli studenti usano per risolvere un problema, poi delle ''categorie di pensiero'', il modo in cui gli studenti pensano a situazioni in ambito probabilistico ed, infine, i livelli di apprendimento, corretti e rielaborati secondo i risultati ottenuti.

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Les résultats de la cinquième réalisation de l’étude de TIMSS en 2011 montrent la présence d’un faible rendement des élèves iraniens en mathématiques par rapport à la moyenne internationale. Plusieurs facteurs peuvent être à la source de ce faible rendement : programmes d’études, caractéristiques de l’école, qualité des ressources éducatives fournies à l’école ou accessibles aux élèves hors de l’école, etc. (Mullis et coll., 2009; 2012; Coleman et coll., 1966). Ce mémoire est une tentative d’identifier les points faibles probables du contenu géométrique du manuel scolaire de mathématiques de 8e année de l’Iran, en considérant les exigences de TIMSS 2011. Dans cette perspective, cette recherche se focalise sur trois axes d’analyse : la répartition des contenus géométriques dans le manuel des mathématiques, la manière de présenter les concepts et les niveaux de raisonnement exigés par les problèmes du test et par les activités du manuel. L’analyse des résultats obtenus nous a permis de constater plusieurs divergences. Au niveau de la présence des connaissances géométriques, 9 % des connaissances nécessaires à la résolution des questions de TIMSS 2011 sont absentes du manuel. Quant à la présentation des connaissances, 27 % des connaissances sont présentées implicitement dans les manuels. L’utilisation de la grille d’analyse du niveau de raisonnement exigé par les tâches géométriques (Tanguay, 2000), montre que le manuel manque d’exercices mettant en jeu le développement des expériences mentales (35 %). Selon la théorie de Van Hiele (1959), l’insuffisance d’expériences nécessaires pour le développement de la pensée géométrique aux niveaux visuel, descriptif et analytique influencera la construction des concepts et la réussite dans la résolution des problèmes.

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This work aims to provide high school students an development in his mathematical and geometrical knowledge, through the use of Geometric Constructions as a teaching resource in Mathematics classes. First a literature search to understand how it emerged and evolved the field of geometry was carried out and the Geometric Constructions. The ways in which the teaching of geometry happened in our country, also were studied some theories related to learning and in particular the Van Hiele theory which deals with the geometric learning also through the literature search were diagnosed. Two forms of the Geometric Constructions approach are analyzed in class: through the design of hand tools - ruler and compass - and through the computational tool - geometric software - being that we chose to approach using the ruler and compass instruments. It is proposed a workshop with nine Geometric Construction activities which was applied with a group of 3rd year of high school, the Escola de Educac¸ ˜ao B´asica Professor Anacleto Damiani in the city of Abelardo Luz, Santa Catarina. Each workshop activity includes the following topics: Activity Goals, Activity Sheet, Steps of Construction Activity Background and activity of the solution. After application of the workshop, the data were analyzed through content analysis according to three categories: Drawing Instruments, angles and their implications and Parallel and its Implications. Was observed that most of the students managed to achieve the research objectives, and had an development in their mathematical and geometrical knowledge, which can be perceived through the analysis of questionnaires administered to students, audio recordings, observations made during the workshop and especially through the improvement of the students in the development of the proposed activities.

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El estudio tiene como principal propósito analizar la incidencia del desarrollo de un curso de geometría que utiliza como herramienta instruccional el software educativo CABRI GEOMETRE II, en la evolución del razonamiento geométrico de alumnos de educación superior. Tomando como base los niveles y fases del modelo de razonamiento geométrico de Van Hiele, se realizó una categorización referente al grado de adquisición de un determinado nivel, en relación a la naturaleza de la tarea. Los resultados obtenidos en el análisis corroboraron las hipótesis de que el factor instruccional es necesario para el progreso entre etapas de aprendizaje y que existe lentitud en la maduración del razonamiento geométrico de los alumnos, a pesar de vivir experiencias de enseñanza estructuradas e intencionales. Además, el avance promedio es de una etapa y no se detectaron diferencias significativas entre los niveles en cuanto a los avances promedio en las etapas de aprendizaje. Se concluye que el modelo de análisis diseñado en el estudio parece pertinente, porque establece secuencias, de etapas de aprendizaje adaptadas a la naturaleza de los ítems.

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El rescate de la enseñanza de la geometría en el ámbito escolar, desde una perspectiva psicopedagógica adecuada, está vinculada a la formación inicial y continuada de los docentes de Matemática, ya que, para alcanzar esta meta se requiere que los docentes logren integrar el conocimiento geométrico con el conocimiento didáctico asociado a éste. Esta idea motivó la realización de una investigación del tipo proyecto factible sustentada en una investigación documental y orientada a diseñar e implementar una propuesta didáctica que integrara elementos considerados innovadores y de un comprobado potencial didáctico en el proceso de enseñanza-aprendizaje de la Geometría: (a) el uso de un software de Geometría dinámica como el Cabri II, (b) la aplicación del Modelo de Razonamiento Geométrico de Van Hiele y (c) el llamado enfoque de resolución de problemas.

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Density functional theory (DFT) is a powerful approach to electronic structure calculations in extended systems, but suffers currently from inadequate incorporation of long-range dispersion, or Van der Waals (VdW) interactions. VdW-corrected DFT is tested for interactions involving molecular hydrogen, graphite, single-walled carbon nanotubes (SWCNTs), and SWCNT bundles. The energy correction, based on an empirical London dispersion term with a damping function at short range, allows a reasonable physisorption energy and equilibrium distance to be obtained for H2 on a model graphite surface. The VdW-corrected DFT calculation for an (8, 8) nanotube bundle reproduces accurately the experimental lattice constant. For H2 inside or outside an (8, 8) SWCNT, we find the binding energies are respectively higher and lower than that on a graphite surface, correctly predicting the well known curvature effect. We conclude that the VdW correction is a very effective method for implementing DFT calculations, allowing a reliable description of both short-range chemical bonding and long-range dispersive interactions. The method will find powerful applications in areas of SWCNT research where empirical potential functions either have not been developed, or do not capture the necessary range of both dispersion and bonding interactions.

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Various forms of hydrogenated graphene have been produced to date by several groups, while the synthesis of pure graphane has not been achieved yet. The study of the interface between graphane, in all its possible hydrogenation configurations, and catalyst metal surfaces can be pivotal to assess the feasibility of direct CVD growth methods for this material. We investigated the adhesion of graphane to a Cu(111) surface by adopting the vdW-DF2-C09 exchange-correlation functional, which is able to describe dispersion forces. The results are further compared with the PBE and the LDA exchange-correlation functionals. We calculated the most stable geometrical configurations of the slab/graphane interface and evaluated how graphane's geometrical parameters are modified. We show that dispersion forces play an important role in the slab/graphane adhesion. Band structure calculations demonstrated that in the presence of the interaction with copper, the band gap of graphane is not only preserved, but also enlarged, and this increase can be attributed to the electronic charge accumulated at the interface. We calculated a substantial energy barrier at the interface, suggesting that CVD graphane films might act as reliable and stable insulating thin coatings, or also be used to form compound layers in conjunction with metals and semiconductors.

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As mentioned in the letter by van der Linden and van der Heijde, Jurgen Braun’s excellent recent paper describing a survey of blood donors by questionnaire, clinical, and magnetic resonance imaging examinations revealed a prevalence of ankylosing spondylitis in B27 positive blood donors (6.4%)1-1 very similar to that reported by Gran et al(6.7%).1-2 It is probable that some of the differences in reported prevalence of ankylosing spondylitis by the various studies are because of methodological differences.

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The application of the van der Pauw-Hall measurement technique to implanted samples in which the mobility varies with depth has still not been fully justified. A proof that the technique is in fact applicable in this situation is given. Journal of Applied Physics is copyrighted by The American Institute of Physics.