815 resultados para Distance education -- Computer-assisted instruction


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Thesis (M. S.)--University of Illinois at Urbana-Champaign.

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Mode of access: Internet.

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Thesis--University of Illinois at Urbana-Champaign.

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Bibliography: p. 52.

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This work presents the use of projects as an alternative for teaching statistics, for that it was elaborated a Project that involves the educational socioeconomic reality from the families of the students and built a link between the reality and the scholastic knowledge. This project was applied in Sesi School - Pato Branco between the months of August to September 2014 with 25 students from the 1o and 2o grades from High School. To work the statistics concepts a questionnaire was applied for the parents of the students of the Project´s, they answer it and through these answers the students made frequency tables and graphs, besides measure calculations on measures of central tendency and dispersion measure. All of the construction were realized manually and in the Excel spreadsheet and some of them were chosen to be in this work to with the purpose of showing the hits and the mistakes done. The students worked in groups of 5 students, except in the last class when it was done a test referring to the contents taught in the classroom and a questionnaire for them to evaluate the project´s application. The results show that the teaching of Statistics trough projects motivate the students interest, stimulating the statistical reasoning, in addition made the students know a Math that was different from the one they have already known, with a lot of calculation but with no final objective.

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This thesis focuses on the adaptation of formal education to people’s technology- use patterns, theirtechnology-in-practice, where the ubiquitous use of mobile technologies is central. The research question is: How can language learning practices occuring in informal learning environments be effectively integrated with formal education through the use of mobile technology? The study investigates the technical, pedagogical, social and cultural challenges involved in a design science approach. The thesis consists of four studies. The first study systematises MALL (mobile-assisted language learning) research. The second investigates Swedish and Chinese students’ attitudes towards the use of mobile technology in education. The third examines students’ use of technology in an online language course, with a specific focus on their learning practices in informal learning contexts and their understanding of how this use guides their learning. Based on the findings, a specifically designed MALL application was built and used in two courses. Study four analyses the app use in terms of students’ perceived level of self-regulation and structuration. The studies show that technology itself plays a very important role in reshaping peoples’ attitudes and that new learning methods are coconstructed in a sociotechnical system. Technology’s influence on student practices is equally strong across borders. Students’ established technologies-in-practice guide the ways they approach learning. Hence, designing effective online distance education involves three interrelated elements: technology, information, and social arrangements. This thesis contributes to mobile learning research by offering empirically and theoretically grounded insights that shift the focus from technology design to design of information systems.

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This article reports on a project at the Universitat Oberta de Catalunya (UOC: The Open University of Catalonia, Barcelona) to develop an innovative package of hypermedia-based learning materials for a new course entitled 'Current Issues in Marketing'. The UOC is a distance university entirely based on a virtual campus. The learning materials project was undertaken in order to benefit from the advantages which new communication technologies offer to the teaching of marketing in distance education. The article reviews the main issues involved in incorporating new technologies in learning materials, the development of the learning materials, and their functioning within the hypermedia based virtual campus of the UOC. An empirical study is then carried out in order to evaluate the attitudes of students to the project. Finally, suggestions for improving similar projects in the future are put forward.

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La démarche scientifique (ou expérimentale) en milieu scolaire nécessite des savoir-faire expérimentaux qui ne s’acquièrent habituellement qu’en présentiel, c’est-à-dire en laboratoire institutionnel où l’enseignant ou le technicien sont présents et peuvent, à tout moment, assister pleinement l’apprenant dans sa démarche d’investigation scientifique et technologique. Ils peuvent l’orienter, le diriger, susciter sa réflexion, faire des démonstrations réelles ou contrôler son expérimentation en lui montrant comment paramétrer les outils d’expérimentation assistée par ordinateur (ExAO). Pour répondre aux besoins de la formation à distance, cette recherche de développement en didactique des sciences et de la technologie propose de mettre à la disposition des apprenants et des enseignants un environnement de laboratoire informatisé, contrôlé et assisté à distance. Cet environnement, axé sur un microlaboratoire d’ExAO (MicrolabExAO), que nous avons nommé Ex@O pour le distinguer, a été testé de manière fonctionnelle, puis évalué en situation réelle par des étudiants-maîtres et des élèves de l’éducation des adultes qui ont pratiqué et expérimenté la démarche scientifique, en situation de laboratoire réel, mais à distance. Pour ce faire, nous avons couplé le logiciel MicrolabExAO à un logiciel de prise en main à distance avec outils audio et vidéo (Teamviewer). De plus, nous avons créé et inséré, dans le logiciel MicrolabExAO, une aide en ligne pour télécharger et faciliter la prise en main à distance. Puisque cet environnement Ex@O permet de multiplier les contacts des apprenants avec une expérimentation concrète, ce prototype répond bien à l’un des objectifs du Programme de formation de l’école québécoise (PFEQ) qui est de rendre l’apprenant plus actif dans ses apprentissages. Et parce que ce premier prototype d’environnement Ex@O permet d’effectuer des activités en laboratoire à distance, nous avons pu vérifier qu’il met aussi l’accent, non seulement sur les savoirs, mais également sur les savoir-faire expérimentaux en sciences et technologie, traditionnellement développés dans les locaux des laboratoires institutionnels. Notons ici que la démarche expérimentale s’acquiert très majoritairement en laboratoire en pratiquant, souvent et régulièrement, le processus inductif et déductif propre à cette démarche. Cette pratique de la démarche expérimentale, à distance, avec la technologie Ex@O qui l’accompagne, nous a permis de vérifier que celle-ci était possible, voire comparable à la réalisation, pas-à-pas, d’un protocole expérimental effectué dans un laboratoire institutionnel.

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Nursing school graduates are under pressure to pass the RN-NCLEX Exam on the first attempt since New York State monitors the results and uses them to evaluate the school’s nursing programs. Since the RN-NCLEX Exam is a standardized test, we sought a method to make our students better test takers. The use of on-line computer adaptive testing has raised our student’s standardized test scores at the end of the nursing course.

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This paper presents two tools developed to facilitate the use and automate the process of using Virtual Worlds for educational purposes. The first tool has been developed to automatically create the classroom space, usually called region in the virtual world, which means, a region in the virtual world used to develop educational activities between professors, students and interactive objects. The second tool helps the process of creating 3D interactive objects in a virtual world. With these tools educators will be able to produce 3D interactive learning objects and use them in virtual classrooms improving the quality and appeal, for students, of their classes. © 2011 IEEE.

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Presentation at M25 Learning Technology Group, FutureLearn, 15 November 2017

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Presentation at M25 Learning Technology Group, FutureLearn, 15 November 2017

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Presentation at M25 Learning Technology Group, FutureLearn, 15 November 2017

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Rangel EM, Mendes IA, Carnio EC, Marchi Alves LM, Godoy S, Crispim JA. Development, implementation, and assessment of a distance module in endocrine physiology. Adv Physiol Educ 34: 70-74, 2010; doi: 10.1152/advan.00070.2009.-This study aimed to develop, implement, and assess a distance module in endocrine physiology in TelEduc for undergraduate nursing students from a public university in Brazil, with a sample size of 44 students. Stage 1 consisted of the development of the module, through the process of creating a distance course by means of the Web. Stage 2 was the planning of the module's practical functioning, and stage 3 was the planning of student evaluations. In the experts' assessment, the module complied with pedagogical and technical requirements most of the time. In the practical functioning stage, 10 h were dedicated for on-site activities and 10 h for distance activities. Most students (93.2%) were women between 19 and 23 yr of age (75%). The internet was the most used means to remain updated for 23 students (59.0%), and 30 students (68.2%) accessed it from the teaching institution. A personal computer was used by 23 students (56.1%), and most of them (58.1%) learned to use it alone. Access to a forum was more dispersed (variation coefficient: 86.80%) than access to chat (variation coefficient: 65.14%). Average participation was 30 students in forums and 22 students in the chat. Students' final grades in the module averaged 8.5 (SD: 1.2). TelEduc was shown to be efficient in supporting the teaching- learning process of endocrine physiology.