998 resultados para Virtual works


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The educational platform Virtual Science Hub (ViSH) has been developed as part of the GLOBAL excursion European project. ViSH (http://vishub.org/) is a portal where teachers and scientist interact to create virtual excursions to science infrastructures. The main motivation behind the project was to connect teachers - and in consequence their students - to scientific institutions and their wide amount of infrastructures and resources they are working with. Thus the idea of a hub was born that would allow the two worlds of scientists and teachers to connect and to innovate science teaching. The core of the ViSH?s concept design is based on virtual excursions, which allow for a number of pedagogical models to be applied. According to our internal definition a virtual excursion is a tour through some digital context by teachers and pupils on a given topic that is attractive and has an educational purpose. Inquiry-based learning, project-based and problem-based learning are the most prominent approaches that a virtual excursion may serve. The domain specific resources and scientific infrastructures currently available on the ViSH are focusing on life sciences, nano-technology, biotechnology, grid and volunteer computing. The virtual excursion approach allows an easy combination of these resources into interdisciplinary teaching scenarios. In addition, social networking features support the users in collaborating and communicating in relation to these excursions and thus create a community of interest for innovative science teaching. The design and development phases were performed following a participatory design approach. An important aspect in this process was to create design partnerships amongst all actors involved, researchers, developers, infrastructure providers, teachers, social scientists, and pedagogical experts early in the project. A joint sense of ownership was created and important changes during the conceptual phase were implemented in the ViSH due to early user feedback. Technology-wise the ViSH is based on the latest web technologies in order to make it cross-platform compatible so that it works on several operative systems such as Windows, Mac or Linux and multi-device accessible, such as desktop, tablet and mobile devices. The platform has been developed in HTML5, the latest standard for web development, assuring that it can run on any modern browser. In addition to social networking features a core element on the ViSH is the virtual excursions editor. It is a web tool that allows teachers and scientists to create rich mash-ups of learning resources provided by the e-Infrastructures (i.e. remote laboratories and live webcams). These rich mash-ups can be presented in either slides or flashcards format. Taking advantage of the web architecture supported, additional powerful components have been integrated like a recommendation engine to provide personalized suggestions about educational content or interesting users and a videoconference tool to enhance real-time collaboration like MashMeTV (http://www.mashme.tv/).

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The proximity between Europe and Africa and the fact that the Strait of Gibraltar has historically acted as a link between races, cultures and religions have made absolutely necessary to establish a relationship between the Northern African coast and the Southern European equivalent. From the Nineteenth Century the possibility of building a permanent link between both continents through the Strait of Gibraltar has been taken into account. In order to establish that relationship it is necessary to have coastal zones completely geo-referenced, under the same geodetic system and with a unique projection system. The paper describes the work carried out in the Strait of Gibraltar for this purpose.

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The project arises from the need to develop improved teaching methodologies in field of the mechanics of continuous media. The objective is to offer the student a learning process to acquire the necessary theoretical knowledge, cognitive skills and the responsibility and autonomy to professional development in this area. Traditionally the teaching of the concepts of these subjects was performed through lectures and laboratory practice. During these lessons the students attitude was usually passive, and therefore their effectiveness was poor. The proposed methodology has already been successfully employed in universities like University Bochum, Germany, University the South Australia and aims to improve the effectiveness of knowledge acquisition through use by the student of a virtual laboratory. This laboratory allows to adapt the curricula and learning techniques to the European Higher Education and improve current learning processes in the University School of Public Works Engineers -EUITOP- of the Technical University of Madrid -UPM-, due there are not laboratories in this specialization. The virtual space is created using a software platform built on OpenSim, manages 3D virtual worlds, and, language LSL -Linden Scripting Language-, which imprints specific powers to objects. The student or user can access this virtual world through their avatar -your character in the virtual world- and can perform practices within the space created for the purpose, at any time, just with computer with internet access and viewfinder. The virtual laboratory has three partitions. The virtual meeting rooms, where the avatar can interact with peers, solve problems and exchange existing documentation in the virtual library. The interactive game room, where the avatar is has to resolve a number of issues in time. And the video room where students can watch instructional videos and receive group lessons. Each audiovisual interactive element is accompanied by explanations framing it within the area of knowledge and enables students to begin to acquire a vocabulary and practice of the profession for which they are being formed. Plane elasticity concepts are introduced from the tension and compression testing of test pieces of steel and concrete. The behavior of reticulated and articulated structures is reinforced by some interactive games and concepts of tension, compression, local and global buckling will by tests to break articulated structures. Pure bending concepts, simple and composite torsion will be studied by observing a flexible specimen. Earthquake resistant design of buildings will be checked by a laboratory test video.

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Actualmente son una práctica común los procesos de normalización de métodos de ensayo y acreditación de laboratorios, ya que permiten una evaluación de los procedimientos llevados a cabo por profesionales de un sector tecnológico y además permiten asegurar unos mínimos de calidad en los resultados finales. En el caso de los laboratorios de acústica, para conseguir y mantener la acreditación de un laboratorio es necesario participar activamente en ejercicios de intercomparación, utilizados para asegurar la calidad de los métodos empleados. El inconveniente de estos ensayos es el gran coste que suponen para los laboratorios, siendo en ocasiones inasumible por estos teniendo que renunciar a la acreditación. Este Proyecto Fin de Grado se centrará en el desarrollo de un Laboratorio Virtual implementado mediante una herramienta software que servirá para realizar ejercicios de intercomparación no presenciales, ampliando de ese modo el concepto e-comparison y abriendo las bases a que en un futuro este tipo de ejercicios no presenciales puedan llegar a sustituir a los llevados a cabo actualmente. En el informe primero se hará una pequeña introducción, donde se expondrá la evolución y la importancia de los procedimientos de calidad acústica en la sociedad actual. A continuación se comentará las normativas internacionales en las que se soportará el proyecto, la norma ISO 145-5, así como los métodos matemáticos utilizados en su implementación, los métodos estadísticos de propagación de incertidumbres especificados por la JCGM (Joint Committee for Guides in Metrology). Después, se hablará sobre la estructura del proyecto, tanto del tipo de programación utilizada en su desarrollo como la metodología de cálculo utilizada para conseguir que todas las funcionalidades requeridas en este tipo de ensayo estén correctamente implementadas. Posteriormente se llevará a cabo una validación estadística basada en la comparación de unos datos generados por el programa, procesados utilizando la simulación de Montecarlo, y unos cálculos analíticos, que permita comprobar que el programa funciona tal y como se ha previsto en la fase de estudio teórico. También se realizará una prueba del programa, similar a la que efectuaría un técnico de laboratorio, en la que se evaluará la incertidumbre de la medida calculándola mediante el método tradicional, pudiendo comparar los datos obtenidos con los que deberían obtenerse. Por último, se comentarán las conclusiones obtenidas con el desarrollo y pruebas del Laboratorio Virtual, y se propondrán nuevas líneas de investigación futuras relacionadas con el concepto e-comparison y la implementación de mejoras al Laboratorio Virtual. ABSTRACT. Nowadays it is common practise to make procedures to normalise trials methods standards and laboratory accreditations, as they allow for the evaluation of the procedures made by professionals from a particular technological sector in addition to ensuring a minimum quality in the results. In order for an acoustics laboratory to achieve and maintain the accreditation it is necessary to actively participate in the intercomparison exercises, since these are used to assure the quality of the methods used by the technicians. Unfortunately, the high cost of these trials is unaffordable for many laboratories, which then have to renounce to having the accreditation. This Final Project is focused on the development of a Virtual Laboratory implemented by a software tool that it will be used for making non-attendance intercomparison trials, widening the concept of e-comparison and opening the possibility for using this type of non-attendance trials instead of the current ones. First, as a short introduction, I show the evolution and the importance today of acoustic quality procedures. Second, I will discuss the international standards, such as ISO 145-5, as well the mathematic and statistical methods of uncertainty propagation specified by the Joint Committee for Guides in Metrology, that are used in the Project. Third, I speak about the structure of the Project, as well as the programming language structure and the methodology used to get the different features needed in this acoustic trial. Later, a statistical validation will be carried out, based on comparison of data generated by the program, processed using a Montecarlo simulation, and analytical calculations to verify that the program works as planned in the theoretical study. There will also be a test of the program, similar to one that a laboratory technician would carry out, by which the uncertainty in the measurement will be compared to a traditional calculation method so as to compare the results. Finally, the conclusions obtained with the development and testing of the Virtual Laboratory will be discussed, new research paths related to e-comparison definition and the improvements for the Laboratory will be proposed.

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El siguiente trabajo abarca todo el proceso llevado a cabo para el rediseño de un sistema automático de tutoría que se integra con laboratorios virtuales desarrollados para la realización de prácticas por parte de estudiantes dentro de entornos virtuales tridimensionales. Los principales objetivos de este rediseño son la mejora del rendimiento del sistema automático de tutoría, haciéndolo más eficiente y por tanto permitiendo a un mayor número de estudiantes realizar una práctica al mismo tiempo. Además, este rediseño permitirá que el tutor se pueda integrar con otros motores gráficos con un coste relativamente bajo. Se realiza en primer lugar una introducción a los principales conceptos manejados en este trabajo así como algunos aspectos relacionados con trabajos previos a este rediseño del tutor automático, concretamente la versión anterior del tutor ligada a la plataforma OpenSim. Acto seguido se detallarán qué requisitos funcionales cumplirá así como las ventajas que aportará este nuevo diseño. A continuación, se explicará el desarrollo del trabajo donde se podrá ver cómo se ha reestructurado el antiguo sistema de tutoría, la aplicación de un diseño orientado a objetos y los distintos paquetes y clases que lo conforman. Por último, se detallarán las conclusiones obtenidas durante el desarrollo del trabajo así como la implicación del trabajo aquí mostrado en futuros desarrollos.---ABSTRACT--- The following work shows the process that has been carried out in order to redesign an automatic tutoring system that can be integrated into virtual laboratories developed for supporting students’ practices in 3D virtual environments. The main goals of this redesign are the improvement of automatic tutoring system performance, making it more efficient and therefore allowing more students to perform a practice at the same time. Furthermore, this redesign allows the tutor to be integrated with other graphic engines with a relative low cost. Firstly, we begin with an introduction to the main concepts used in this work and some aspects concerning the related previous works to this automatic tutoring system redesign, such as the previous version of the tutoring system bound to OpenSim. Secondly, it will be detailed what functional requirements are met and what advantages this new tutoring system will provide. Next, it will be explained how this work has been developed, how the previous tutoring system has been restructured, how an object-oriented design is applied and the classes and packages derived from this design. Finally, it will be outlined the conclusions drawn in the development of this work as well as how this work will take part in future works.

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El objetivo principal de crear un espacio web para el Museo Histórico de la Informática (MHI) perteneciente a la Escuela Técnica Superior de Ingenieros Informáticos (ETSIINF) de la Universidad Politécnica de Madrid (UPM) es la difusión de la historia de la informática entre el público en general. Si bien es cierto que existe ya una página web de consulta del MHI con algunas imágenes y contenido sobre los objetos que allí se exhiben, es también reseñable que se trata de un espacio obsoleto, lleno de carencias y extremadamente difícil de gestionar y actualizar, por lo que se hacía imprescindible actualizar el diseño del espacio web, los contenidos y el sistema de gestión de los mismos, cosa que es de gran interés para un lugar divulgativo. En la actualidad, existen maneras mucho más amigables para el usuario de navegar por una web; y de la misma manera para un administrador, gestionar el contenido de la misma y mantener a los usuarios bien informados de todo lo que se ofrece en cada momento. Esto es posible gracias a los sistemas de gestión de contenidos o content management system (CMS), de los que se hablará lo largo de todo el documento. Estos sistemas, dan una facilidad mucho mayor a los encargados de llevar al día una página web, sin tener que saber de programación, lenguajes o informática en general, ya que incorporan paneles de control muy intuitivos y fáciles de manejar, que son una ventaja tanto para ellos como para los usuarios. Es por esta razón que, hay páginas web como la de las empresas IKEA, Ubuntu o, en especial para el caso que compete al documento, el museo del Louvre usan gestores de contenidos para sus páginas web. Y es que las ventajas y facilidades que ofrece un CMS son realmente interesantes y se tratará de todas ellas en el documento, de la elección del CMS que mejor se ajusta a los requisitos del museo, las restricciones a la hora del despliegue en el ámbito de la ETSIINF y de cómo mejorará esto la calidad visual y divulgativa del MHI. Este trabajo se desarrolla a lo largo de 11 capítulos, en los que se muestra como construir un sitio web, las posibilidades y la elección final para este caso. En el primer capítulo se hace una pequeña introducción de lo que es el proyecto, se especifican los objetivos, la motivación del mismo y el alcance que tiene. En el segundo capítulo se muestra la información que se ha recopilado en el trabajo de investigación que se hace previo al desarrollo. En él se muestran los distintos tipos de páginas web, que tecnologías y lenguajes se pueden usar para su construcción, una comparativa sobre otras entidades similares al MHI, las limitaciones que presenta el entorno y la elección final que se consideró más adecuada para este caso. En el capítulo tres se empieza a desarrollar la solución a través del diseño. Aquí se puede encontrar el diseño de más bajo nivel que se le presenta al cliente para sentar las bases del trabajo, el diseño de alto nivel con un mayor grado de realidad que el anterior y una preparación de lo que serán los planes de prueba. El capítulo cuatro muestra todo lo que se ha usado en la implementación y la integración de la página web: herramientas, tecnologías, plantillas de diseño y módulos que proporcionan distintas funcionalidades. Llegados al capítulo cinco, se puede ver una detallada documentación de los resultados de las pruebas de usabilidad y accesibilidad realizadas, y las conclusiones que subyacen de estas. Una vez acabada la implementación del sitio web del MHI, en el capítulo seis se intenta hacer una labor de consultoría, mostrando precios y presupuestos de las distintas tareas que se han llevado a cabo para la realización de este proyecto. En el capítulo siete se extraen las conclusiones de todo lo acontecido en los capítulos anteriores y en el ocho unas líneas sobre posibles trabajos futuros que se podrían llevar a cabo en base a lo que ya se tiene en la institución, incluido este trabajo. Para facilitar la comprensión y satisfacer la curiosidad del lector, se ha incluido en el capítulo nueve la bibliografía con toda la documentación consultada y en el diez un glosario de términos para la aclaración de términos y acrónimos más técnicos. Para acabar, en el capítulo once se anexionan tanto el documento que se usó para las pruebas de usabilidad como un manual de administrador para el sitio web, que hace más amigable el entorno para las personas que lo tengan que mantener en un futuro.---ABSTRACT---The main goal of creating a website for the Informatics Historical Museum (“Museo Histórico de la Informática” or MHI) located in the Higher Technical School of Informatics Engineers (“Escuela Técnica Superior de Ingenieros Informáticos” or ETSIINF) of the Polytechnic University of Madrid (“Universidad Politécnica de Madrid” UPM), is to promote the aforementioned museum as to increase its reach to the public. While it is true that there already is a consulting website with some pictures and information about the items which are displayed in the building, it is outdated and the data is scarce. Moreover, it is extremely complicated to manage and to regularly update the web page, which is very important for informative/broadcasting media. Currently, there are easier ways for the users of a website to consult whatever information they want, as well as it is now easy for a website manager to display new content and to keep the users informed about what is been offered at every moment. This is possible because of content management systems (CMS), which will be discussed throughout the entire paper. These systems make it easier to use for the administrator of a website to keep it up to date without the necessity for them of having any knowledge or skills in programming, languages or computing, because the systems have an intuitive control panel that is easy to use, which is an advantage for both managers and users. Because of all these reasons, there are lots of companies that use this kind of systems, such as IKEA, Ubuntu or, especially, the Louvre Museum, to which we direct our attention all throughout this report. It is easy to notice that these systems have an important and very interesting number of perks and benefits. In the next chapters of the document we will explain the benefits of the program as well as the choice on the kind of CMS that best suits the requirements of the museum and, finally, the restrictions of the school for the deployment and of how all of this will improve the visual and informational qualities of the MHI. This work is developed over 11 chapters, shown how to build up a website, the possibilities and the final choice for this case. In the first chapter a brief introduction of the project, goals, motivation and scope thereof having specified are done. Before the development of the website, the second chapter shows de information of the researching work. It discusses the different types of websites, technologies and languages that can be used for build-up, a comparison of similar entities to MHI, the limitations of the environment and the final choice was considered more appropriate for this case. Chapter three begins to develop the design of the solution. Here there are the lowest level design that presents the customer to fix any problem, the high level design with a higher degree of reality than the last and the test plans. Chapter four shows everything that has been used in the implementation and integration of the website: tools, technologies, design templates and modules that provide different functionalities. Reaching the fifth chapter, you can see a detailed documentation of the results of the usability and accessibility tests made to some users and the conclusions of it. Once the implementation of MHI website is done, in chapter six there is a consultancy work, showing prices and budgets of the different tasks which were carried out for this project. In chapter seven there are the conclusions of what happened in the previous chapters and eight chapter shows possible future works that could be carried out based on what the institution already have, including this work. To make easier to the reader understand this paper and satisfy his curiosity, the chapter nine includes the bibliography consulted with all the documentation and chapter ten has a glossary of terms and an explanation of technical terms and acronyms. Finally, in chapter eleven there are attached both the document that was used for usability testing as a manual administrator for the website, making the environment friendlier for people who have to maintain it in the future.

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Purpose – The purpose of this paper is to measure the performance of commercial virtual learning environment (VLE) systems, which helps the decision makers to select the appropriate system for their institutions. Design/methodology/approach – This paper develops an integrated multiple criteria decision making approach, which combines the analytic hierarchy process (AHP) and quality function deployment (QFD), to evaluate and select the best system. The evaluating criteria are derived from the requirements of those who use the system. A case study is provided to demonstrate how the integrated approach works. Findings – The major advantage of the integrated approach is that the evaluating criteria are of interest to the stakeholders. This ensures that the selected system will achieve the requirements and satisfy the stakeholders most. Another advantage is that the approach can guarantee the benchmarking to be consistent and reliable. From the case study, it is proved that the performance of a VLE system being used at the university is the best. Therefore, the university should continue to run the system in order to support and facilitate both teaching and learning. Originality/value – It is believed that there is no study that measures the performance of VLE systems, and thus decision makers may have difficulties in system evaluation and selection for their institutions.

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Presentation made by Jamie Rogers and John Nemmers at the Society of Florida Archivists annual meeting in Tallahassee, Florida. Jamie Rogers presented the "Coral Gables - Virtual Historic City" project at Florida International University. John Nemmers presented the "Unearthing St. Augustine’s Colonial Heritage" project at the University of Florida

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Esta tese pretende descrever o desenvolvimento e arquitectura do software que constitui o Miradouro Virtual@, mais especificamente do componente referente à interface. O Miradouro Virtual@ é um dispositivo cujo propósito à semelhança dos tradicionais binóculos turísticos, é observar a paisagem, mas cuja interacção não está limitada à simples observação individual. Recorre à realidade aumentada para sobrepôr imagens geradas por computador a imagens reais, capturadas por um dispositivo para aquisição de imagem real (tipicamente uma câmara de vídeo), e mostra-as num ecrã touchscreen, permitindo deste modo, combinar elementos virtuais e multimédia com a paisagem real. A imagem final, composta, dá ao utilizador uma nova dimensão do espaço envolvente, permitindo-lhe explorar uma nova camada de informação não visível anteriormente. Sendo sensíveis à orientação do Miradouro Virtual@, os elementos virtuais e multimédia adaptam-se de acordo com os movimentos do dispositivo. O Miradouro Virtual@ é um produto composto por diversos elementos de hardware e software. O foco desta tese recai apenas nos componentes de software, mais especificamente na interface. Pretende dar a conhecer as limitações da versão anterior do software e mostrar as soluções encontradas que permitiram ultrapassar algumas dessas limitações. ABSTRACT; This thesis focuses on the design and development of the Virtual Sightseeing™ software, more specifically on the interface component. The Virtual Sightseeing™ is a device similar to the traditional scenic viewers that takes advantage of its generally known and popularity to build an innovative system. It works by using augmented reality to superimpose, in real-time, images generated by a computer onto a live stream captured by a video camera and displaying them on a touchscreen display. It allows adding multimedia elements to the real scenery by composing them in the image that is presented to the user. The multimedia information and virtual elements that are displayed are sensitive to the orientation and position of the device. They change as the user manually changes the orientation of the device. The Virtual Sightseeing™ is comprised of several hardware and software components. The focus of this thesis is on the software part, more specifically on the interface component. It intends to show the known limitations of the previous software version and how they were overcome in this new version.

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Background and Purpose—An early and reliable prognosis for recovery in stroke patients is important for initiation of individual treatment and for informing patients and relatives. We recently developed and validated models for predicting survival and functional independence within 3 months after acute stroke, based on age and the National Institutes of Health Stroke Scale score assessed within 6 hours after stroke. Herein we demonstrate the applicability of our models in an independent sample of patients from controlled clinical trials. Methods—The prognostic models were used to predict survival and functional recovery in 5419 patients from the Virtual International Stroke Trials Archive (VISTA). Furthermore, we tried to improve the accuracy by adapting intercepts and estimating new model parameters. Results—The original models were able to correctly classify 70.4% (survival) and 72.9% (functional recovery) of patients. Because the prediction was slightly pessimistic for patients in the controlled trials, adapting the intercept improved the accuracy to 74.8% (survival) and 74.0% (functional recovery). Novel estimation of parameters, however, yielded no relevant further improvement. Conclusions—For acute ischemic stroke patients included in controlled trials, our easy-to-apply prognostic models based on age and National Institutes of Health Stroke Scale score correctly predicted survival and functional recovery after 3 months. Furthermore, a simple adaptation helps to adjust for a different prognosis and is recommended if a large data set is available. (Stroke. 2008;39:000-000.)

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A educação na arte e pela arte confere a todos os seus intervenientes a estimulação da sua criatividade e da sua consciência cultural, proporcionando meios para se exprimirem e participarem ativamente no mundo que nos rodeia. A integração das tecnologias de informação e comunicação no processo de ensino-aprendizagem veio alargar o papel que a arte pode desempenhar neste processo, promovendo novas formas de aprender, de ensinar e de pensar. Assim, a utilização de ambientes virtuais em contexto educativo tem revelado um enorme potencial, sobretudo ao nível da comunicação e da interação entre alunos e obras de arte. Neste sentido, considerou-se importante desenvolver um estudo de caso em contexto de sala de aula da Educação Visual, promovendo uma aprendizagem baseada na articulação entre a observação, interpretação e análise da obra de arte e o museu virtual. Assim o principal objetivo deste estudo foi avaliar as potencialidades do Google Art Project, enquanto objeto de aprendizagem, na promoção da aprendizagem na área da literacia em artes. Para além disso, procurámos ainda avaliar se a utilização de ferramentas multimédia como o referido Google Art Project e o Quadro Interativo, constituem fatores de motivação na aprendizagem da disciplina de Educação Visual. Do ponto de vista metodológico desenvolvemos uma estratégia baseada na investigação-ação. Procurámos, por um lado, descobrir e compreender o significado de uma realidade vivida por um grupo de alunos e, por outro lado, refletir sobre a prática educativa com o intuito de a melhorar e transformar. Este estudo envolveu cinco turmas do sexto ano do ensino público. Para a recolha de dados utilizámos técnicas baseadas na conversação e na observação, no questionário e nas notas de campo. Os resultados deste estudo revelam que as ferramentas tecnológicas utilizadas podem efetivamente contribuir para a promoção da aprendizagem dos alunos na área da Educação Visual, mais concretamente ao nível do domínio da literacia artística, da representação e da interpretação visual.

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Part 2: Behaviour and Coordination

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The Toledo Gate of Ciudad Real, Spain, constructed between the late 13th and early 14th centuries, is the last remaining portion of a once complete medieval city wall. It represents the long history of the city and constitutes its main heritage symbol, dividing the historic city centre from the later 19th and 20th century expansions. In October 2012, the Town Hall and the Montemadrid Foundation started the conservation works to preserve this important monument. The preliminary phase of this project included an in-depth series of scientific studies which were carried out by a multidisciplinary team focusing on archival research, historic investigations, archaeological excavations as well as material composition analysis and main treatment application tests. As a result of these studies a series of virtual 3D models were created to inform, discuss and study the monument. A first digital model permitted visualization of the gate in the 19th century and how the main entrance to the city was integrated as a fundamental part of the city walls. This virtual reconstruction also became an important part of the campaign to raise awareness among the citizens towards a monument that had remained in the shadows for the last century, isolated in a roundabout after the systematic demolition of the city walls in the late 19th century. Over the last three years and as a result of these archaeological and historic investigations and subsequent virtual models, surprisingly new and interesting data were brought to light thus permitting the establishment and corroboration of a new and updated hypothesis of the Toledo Gate that goes beyond the previous ideas. As a result of these studies a new architectural typology with construction techniques of has been suggested. This paper describes how the results of this continuous and interdisciplinary documentation process have benefitted from a computer graphic reconstruction of the gate. It highlights how virtual reconstruction can be a powerful tool for conservation decision making and awareness raising. Furthermore, the interesting results of the final reconstruction hypothesis convinced the technical team responsible for the conservation to alter some aspects of the final project physical interventions in order to focus on some of the features and conclusions discovered through the virtual model study.

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La Mapoteca Virtual es un sitio web construido sobre la plataforma Joomla, auspiciado por la Escuela de Ciencias Geográfica de la Universidad Nacional, en colaboración con UNA VIRTUAL.Este sitio pretende apoyar la labor docente al permitirle cargar y difundir cartografía digital para los estudiantes, y a los investigadores les facilita la localización de cartografía en línea, necesaria para la realización de sus trabajos en diferentes áreas del conocimiento. Adicionalmente, es un espacio para presentar documentos actuales en relación a la práctica de la cartografía y ciencias conexas, a la vez que fomenta la colaboración y el acceso libre a cartografía digital.Palabras clave: Cartografía, Joomla, Mapas digitales, Herramientas didácticas en líneaAbstractThe Virtual Map Library, www.mapoteca.geo.una.ac.cr, is a website constructed on the Joomla platform and supported by the School of Geographic Sciences at National University, Costa Rica, in collaboration with UNAVIRTUAL. The site intends to support the work of education by allowing the teacher to load and disseminate digital cartography for the students and helping geographic investigators locate cartography needed to accomplish their works in different areas of knowledge.In addition, Mapoteca offers a space to present current  documents relating to the practice of cartography and related sciences that at the same time promotes the contribution and free access to digital cartography.Key Words: Cartography, Mapoteca Virtual, Virtual Map Library, Joomla, digital maps, online teaching tools, School of Geographic Sciences, National University, Costa Rica.