55 resultados para IMS Learning Design

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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The identification and integration of reusable and customizable CSCL (Computer Supported Collaborative Learning) may benefit from the capture of best practices in collaborative learning structuring. The authors have proposed CLFPs (Collaborative Learning Flow Patterns) as a way of collecting these best practices. To facilitate the process of CLFPs by software systems, the paper proposes to specify these patterns using IMS Learning Design (IMS-LD). Thus, teachers without technical knowledge can particularize and integrate CSCL tools. Nevertheless, the support of IMS-LD for describing collaborative learning activities has some deficiencies: the collaborative tools that can be defined in these activities are limited. Thus, this paper proposes and discusses an extension to IMS-LD that enables to specify several characteristics of the use of tools that mediate collaboration. In order to obtain a Unit of Learning based on a CLFP, a three stage process is also proposed. A CLFP-based Unit of Learning example is used to illustrate the process and the need of the proposed extension.

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This paper introduces Collage, a high-level IMS-LD compliant authoring tool that is specialized for CSCL (Computer-Supported Collaborative Learning). Nowadays CSCL is a key trend in elearning since it highlights the importance of social interactions as an essential element of learning. CSCL is an interdisciplinary domain, which demands participatory design techniques that allow teachers to get directly involved in design activities. Developing CSCL designs using LD is a difficult task for teachers since LD is a complex technical specification and modelling collaborative characteristics can be tricky. Collage helps teachers in the process of creating their own potentially effective collaborative Learning Designs by reusing and customizing patterns, according to the requirements of a particular learning situation. These patterns, called Collaborative Learning Flow Patterns (CLFPs), represent best practices that are repetitively used by practitioners when structuring the flow of (collaborative) learning activities. An example of an LD that can be created using Collage is illustrated in the paper. Preliminary evaluation results show that teachers, with experience in CL but without LD knowledge, can successfully design real collaborative learning experiences using Collage.

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Collage is a pattern-based visual design authoring tool for the creation of collaborative learning scripts computationally modelled with IMS Learning Design (LD). The pattern-based visual approach aims to provide teachers with design ideas that are based on broadly accepted practices. Besides, it seeks hiding the LD notation so that teachers can easily create their own designs. The use of visual representations supports both the understanding of the design ideas and the usability of the authoring tool. This paper presents a multicase study comprising three different cases that evaluate the approach from different perspectives. The first case includes workshops where teachers use Collage. A second case implies the design of a scenario proposed by a third-party using related approaches. The third case analyzes a situation where students follow a design created with Collage. The cross-case analysis provides a global understanding of the possibilities and limitations of the pattern-based visual design approach.

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Designs of CSCL (Computer Supported Collaborative Learning)activities should be flexible, effective and customizable toparticular learning situations. On the other hand, structureddesigns aim to create favourable conditions for learning. Thus,this paper proposes the collection of representative and broadlyaccepted (best practices) structuring techniques in collaborative learning. With the aim of establishing a conceptual common ground among collaborative learning practitioners and softwaredevelopers, and reusing the expertise that best practicesrepresent, the paper also proposes the formulation of these techniques as patterns: the so-called CLFPs (CollaborativeLearning Flow Patterns). To formalize these patterns, we havechosen the educational modelling language IMS Learning Design (IMS-LD). IMS-LD has the capability to specify many of the collaborative characteristics of the CLFPs. Nevertheless, the language bears limited capability for describing the services that mediate interactions within a learning activity and the specification of temporal or rotated roles. This analysis isdiscussed in the paper, as well as our approaches towards thedevelopment of a system capable of integrating tools using IMSLDscripts and a CLFP-based Learning Design authoring tool.

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This article presents preliminary research from an instructional design perspective on the design of the case method as an integral part of pedagogy and technology. Key features and benefitsusing this teaching and learning strategy in a Virtual Teaching and Learning Environment(VTLE) are identified, taking into account the requirements of the European Higher Education Area (EHEA) for a competence-based curricula design. The implications of these findings for alearning object approach exploring the possibilities of learning personalization, reusability and interoperability trough IMS LD, are also analyzed.

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This paper describes a Computer-Supported Collaborative Learning (CSCL) case study in engineering education carried out within the context of a network management course. The case study shows that the use of two computing tools developed by the authors and based on Free- and Open-Source Software (FOSS) provide significant educational benefits over traditional engineering pedagogical approaches in terms of both concepts and engineering competencies acquisition. First, the Collage authoring tool guides and supports the course teacher in the process of authoring computer-interpretable representations (using the IMS Learning Design standard notation) of effective collaborative pedagogical designs. Besides, the Gridcole system supports the enactment of that design by guiding the students throughout the prescribed sequence of learning activities. The paper introduces the goals and context of the case study, elaborates onhow Collage and Gridcole were employed, describes the applied evaluation methodology, anddiscusses the most significant findings derived from the case study.

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Two important challenges that teachers are currently facing are the sharing and the collaborative authoring of their learning design solutions, such as didactical units and learning materials. On the one hand, there are tools that can be used for the creation of design solutions and only some of them facilitate the co-edition. However, they do not incorporate mechanisms that support the sharing of the designs between teachers. On the other hand, there are tools that serve as repositories of educational resources but they do not enable the authoring of the designs. In this paper we present LdShake, a web tool whose novelty is focused on the combined support for the social sharing and co-edition of learning design solutions within communities of teachers. Teachers can create and share learning designs with other teachers using different access rights so that they can read, comment or co-edit the designs. Therefore, each design solution is associated to a group of teachers able to work on its definition, and another group that can only see the design. The tool is generic in that it allows the creation of designs based on any pedagogical approach. However, it can be particularized in instances providing pre-formatted designs structured according to a specific didactic method (such as Problem-Based Learning, PBL). A particularized LdShake instance has been used in the context of Human Biology studies where teams of teachers are required to work together in the design of PBL solutions. A controlled user study, that compares the use of a generic LdShake and a Moodle system, configured to enable the creation and sharing of designs, has been also carried out. The combined results of the real and controlled studies show that the social structure, and the commenting, co-edition and publishing features of LdShake provide a useful, effective and usable approach for facilitating teachers' teamwork.

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This workshop paper states that fostering active student participation both in face-to-face lectures / seminars and outside the classroom (personal and group study at home, the library, etc.) requires a certain level of teacher-led inquiry. The paper presents a set of strategies drawn from real practice in higher education with teacher-led inquiry ingredients that promote active learning. Thesepractices highlight the role of the syllabus, the importance of iterative learning designs, explicit teacher-led inquiry, and the implications of the context, sustainability and practitioners’ creativity. The strategies discussed in this paper can serve as input to the workshop as real cases that need to be represented in design and supported in enactment (with and without technologies).

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When applying a Collaborative Learning Flow Pattern (CLFP) to structure sequences of activities in real contexts, one of the tasks is to organize groups of students according to the constraints imposed by the pattern. Sometimes,unexpected events occurring at runtime force this pre-defined distribution to be changed. In such situations, an adjustment of the group structures to be adapted to the new context is needed. If the collaborative pattern is complex, this group redefinitionmight be difficult and time consuming to be carried out in real time. In this context, technology can help on notifying the teacher which incompatibilitiesbetween the actual context and the constraints imposed by the pattern. This chapter presents a flexible solution for supporting teachers in the group organization profiting from the intrinsic constraints defined by a CLFPs codified in IMS Learning Design. A prototype of a web-based tool for the TAPPS and Jigsaw CLFPs and the preliminary results of a controlled user study are alsopresented as a first step towards flexible technological systems to support grouping tasks in this context.

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In this paper we identify the requirements for creating formal descriptions of learning scenarios designed under the European HigherEducation Area paradigm, using competences and learning activities as the basic pieces of the learning process, instead of contents and learning resources, pursuing personalization. Classical arrangements of content based courses are no longer enough to describe all the richness of this new learning process, where user profiles, competences and complex hierarchical itineraries need to be properly combined. We study the intersection with the current IMS Learning Design specification and theadditional metadata required for describing such learning scenarios. This new approach involves the use of case based learning and collaborativelearning in order to acquire and develop competences, following adaptive learning paths in two structured levels.

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We live in an era defined by a wealth of open and readily available information, and the accelerated evolution of social, mobile and creative technologies. The provision of knowledge, once a primary role of educators, is now devolved to an immense web of free and readily accessible sources. Consequently, educators need to redefine their role not just ¿from sage on the stage to guide on the side¿ but, as more and more voices insist, as ¿designers for learning¿.The call for such a repositioning of educators is heard from leaders in the field of technology-enhanced learning (TEL) and resonates well with the growing culture of design-based research in Education. However, it is still struggling to find a foothold in educational practice. We contend that the root causes of this discrepancy are the lack of articulation of design practices and methods, along with a shortage of tools and representations to support such practices, a lack of a culture of teacher-as-designer among practitioners, and insufficient theoretical development.The Art and Science of Learning Design (ASLD) explores the frameworks, methods, and tools available for teachers, technologists and researchers interested in designing for learning Learning Design theories arising from findings of research are explored, drawing upon research and practitioner experiences. It then surveys current trends in the practices, methods, and methodologies of Learning Design. Highlighting the translation of theory into practice, this book showcases some of the latest tools that support the learning design process itself.

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Las nuevas generaciones de estudiantes se caracterizan en que han crecido inmersas en la tecnología digital, hecho que ha cambiado sus costumbres y preferencias en la forma de estudiar. Así que es necesario ingeniar nuevas técnicas de aprendizaje y buscar un complemento al poco atractivo y desmotivador material físico tradicional. Una de las alternativas que se plantean es utilizar juegos educativos como herramienta de aprendizaje, aportándonos innovación, motivación y un aprendizaje activo que no nos aportan técnicas más tradicionales.Esta metodología basada en el uso de juegos educativos puede afectar positivamente en un campo de educación perjudicado como es el área de las ingenierías del área de Tecnologías de la Información y la Comunicación (TIC), donde cada vez son más los jóvenes que deciden no estudiar carreras técnicas. Ante esta situación, aplicar juegos educativos puede ser una buena solución. Este proyecto consistirá en diseñar e implementar un juego educativo enfocado a aprender sobre algunos conceptos que se tratan en los grados de ingeniería informática, telemática y sistemas audiovisuales de la Universidad Pompeu Fabra (UPF). En concreto, el juego que se ha diseñado e implementado se caracteriza por seguir un modelo conceptual que define qué elementos han de contener un tipo concreto de juegos basados en puzles. Además, aprovechando las ventajas que aportan los estándares educativos, utilizaremos la especificación de IMS Learning Design, como parte de la implementación del juego. Por otro lado, nuestro juego será diseñado para dispositivos móviles y, por consiguiente, consistirá en un juego pervasivo en el que los estudiantes se tendrán que mover por el edificio Tànger de la UPF para poder resolver los diferentes problemas planteados. Finalmente, el juego será evaluado con diferentes estudiantes y serán analizados sus resultados para extraer las conclusiones oportunas.

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El aprendizaje basado en juegos proporciona a los alumnos una forma de aprender más motivadora y gratificante al estudiante. Los juegos educativos permiten a los estudiantes centrarse completamente en un contenido concreto, resultándoles beneficioso a la hora de profundizar su conocimiento en esa materia. Esta forma de educar puede ayudar a revertir la situación actual de desinterés de los alumnos por las asignaturas del área de las ingenierías de las Tecnologías de la Información y la Comunicación (TIC). En este sentido, estudios realizados y estadísticas demuestran que las matriculaciones en este sector han disminuido en los últimos años. Teniendo en cuenta estos factores, en este PFC se ha diseñado un juego educativo, basado en puzzles, para aprender conceptos relacionados con las redes de ordenadores, una de las temáticas principales en el campo de las ingenierías TIC. El diseño del juego está fundamentado en un modelo conceptual que define los elementos necesarios para crear juegos basados en puzzles. Por otra parte, en este PFC se hace uso de estándares educativos (en concreto, de la especificación de IMS Learning Design), para la implementación del juego. De este modo, el juego se beneficia de las ventajas derivadas del uso de estándares educativos: definición, compartición y reutilización de objetos de aprendizaje para el diseño, intercambio y la reutilización de estrategias pedagógicas, facilitando la interoperabilidad de los diseños pedagógicos complejos. Además, el juego se ha implementado con tecnología para Android,pudiendo de esta manera ser utilizado en dispositivos móviles que utilicen esta tecnología. Por último, nuestro juego ha sido evaluado por estudiantes de un centro escolar con el fin de analizar los resultados obtenidos a partir de sus opiniones y valoraciones.

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L'aprenentatge basat en jocs facilita el millor enteniment de conceptes, aportant entorns estimulants on poder aprendre d'una manera diferent a l'actual. Alguns dels avantatges més destacables són, per exemple, que els jocs fomenten la capacitat dels jugadors per comunicar-se i interactuar entre si. D'altra banda també poden ajudar a pensar de manera critica quan tenenque establir vincles entre la vida virtual i la real, estimulant-los a intentar trobar la solució diferents maneres. Malgrat això, hi ha una escassetat d'eines que permetin als professors poder crear els seus propis jocs educatius.Per donar solució a aquest problema s'ha dissenyat un model conceptual que defineix els elements necessaris perquè professors puguin dissenyar els seus propis jocs educatius basats en puzles. En aquest PFC ens centrarem en el disseny i implementació d'una eina d'autoria que generi els documents d'acord amb aquest model conceptual. En concret, aquesta eina d'autorias'encarregarà de demanar la informació necessària per poder realitzar la creació del joc, de manera que qualsevol persona que tingui o no habilitats de programació, tingui una petita eina que li guiï pas a pas i li generi els arxius necessaris per a la creació d'aquests jocs. D'altra banda, donada els avantatges de l'ús d'estàndards educatius en sistemes d'e-learning, destacar queaquesta eina d'autoria és conforme a l'especificació d'IMS Learning Design (IMS LD). És per això que, com a resultat, l'eina s'encarrega d'emmagatzemar la informació necessària per després processar-la i generar els arxius corresponents a IMS LD per definir el flux d'activitats dels jocs, i els arxius corresponents al model conceptual que defineix els mecanismes de comportamentdels puzles associats a les activitats.

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Actualment existeix una falta d'interès per part dels estudiants a l'àrea de les enginyeries en Tecnologies de la Informació i la Comunicació (TIC) que es pot veure reflectida en el descens de les matriculacions universitàries en aquest àmbit. Aquest fet està relacionat amb que la nova generació d‟estudiants està constantment en contacte amb tota mena d'aparells tecnològics estimulants i a l‟hora de l‟estudi poden sofrir una falta d‟interès per l‟ús d‟una metodologia d'aprenentatge més tradicional. En aquest sentit s'ha investigat que l‟ús de jocs com a eina educativa pot ser una bona solució per afrontar aquesta falta d'interès. No obstant això, actualment no existeixen gaires jocs destinats a aprendre conceptes relacionats amb les enginyeries TIC i que proporcionin als estudiants els mecanismes d'ajuda necessaris per donar-los suport durant l'aprenentatge d‟aquests nous conceptes. En aquest projecte es desenvoluparà un joc educatiu per a estudiants amb l‟objectiu de proporcionar uns primers coneixements sobre les TIC. Per una banda, per al disseny del joc s‟utilitzarà un model conceptual que defineix els elements necessaris per a dissenyar jocs basats en resoldre puzles. A més, aquest model conceptual permet el disseny no només de jocs per a PCs, sinó també de jocs tangibles i exploratius (mitjançant tecnologia mòbil). En el nostre cas, ens centrarem en la implementació d‟un joc tangible. Per altra banda, pel que fa a la implementació, tindrem en compte l‟estàndard educatiu d‟IMS Learning Design, demostrant d‟aquesta manera que aquest tipus de jocs es poden beneficiar dels avantatges que aporten els estàndards educatius. Per tant, en aquest PFC es dissenyarà i implementarà un joc tangible basat en puzles dintre de l‟àrea d‟arquitectura d‟ordinadors. El joc constarà de tres mini-jocs que es presentaran com jocs de realitat augmentada amb el suport d‟un ordinador i unes peces físiques amb les que interactuaran els usuaris. El sistema proporcionarà un sistema d‟ajuda i un sistema de puntuació. Per últim, avaluarem el joc en un centre escolar amb estudiants de 4t d‟ESO amb la finalitat d'analitzar les valoracions dels estudiants respecte el joc i les pistes proporcionades.