920 resultados para Engineering -- Educational innovations


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This paper examines two innovative educational initiatives for the Ecuadorian public health workforce: a Canadian-funded Masters programme in ecosystem approaches to health that focuses on building capacity to manage environmental health risks sustainably; and the training of Ecuadorians at the Latin American School of Medicine in Cuba (known as Escuela Latinoamericana de Medicina in Spanish). We apply a typology for analysing how training programmes address the needs of marginalized populations and build capacity for addressing health determinants. We highlight some ways we can learn from such training programmes with particular regard to lessons, barriers and opportunities for their sustainability at the local, national and international levels and for pursuing similar initiatives in other countries and contexts. We conclude that educational efforts focused on the challenges of marginalization and the determinants of health require explicit attention not only to the knowledge, attitudes and skills of graduates but also on effectively engaging the health settings and systems that will reinforce the establishment and retention of capacity in low- and middle-income settings where this is most needed.

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"Connections 2000 is a program devoted to developing and disseminating activities which further Education-to-Careers innovations throughout the State of Illinois. In 1999, Connections 2000 awards were presented to instructors and/or administrators who successfully developed activities or programs which enhanced Education-to-Careers programs"--P [i].

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En el proyecto de innovación docente cada uno de los participantes aportó su visión conceptual de los problemas y sus resoluciones en equipos formados por estudiantes de disciplinas humanísticas y técnicas, con perspectivas diferentes de la realidad, y por lo tanto, también del planteamiento de la estrategia para la resolución y del desarrollo y la eficacia de la solución. En definitiva, se les ha preparado para la adquisición de los conocimientos, habilidades, destrezas y actitudes básicas necesarias para desenvolverse sin problemas en el actual modelo laboral europeo, siendo el Espacio Europeo de Educación Superior el escenario en el cual se ha desarrollado el proyecto de innovación

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Web is a powerful hypermedia-based information retrieval mechanism that provides a user-friendly access across all major computer platforms connected over Internet. This paper demonstrates the application of Web technology when used as an educational delivery tool. It also reports on the development of a prototype electronic publishing project where Web technology was used to deliver power engineering educational resources. The resulting hyperbook will contain diverse teaching resources such as hypermedia-based modular educational units and computer simulation programs that are linked in a meaningful and structured way. The use of Web for disseminating information of this nature has many advantages that cannot possibly be achieved otherwise. PREAMBLE The continual increase of low-cost functionality available in desktop computing has opened up a new possibility in learning within a wider educational framework. This technology also is supported by enhanced features offered by new and ...

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In the 21st century's global economy, the new challenges facing the engineering profession have arrived, confirming the need to restructure engineering curricula, teaching and learning practices, and processes, including assessment. Possessing merely technical knowledge no longer guarantees an engineering graduate a successful career. And while all countries are facing this dilemma, India is struggling the most. It has been argued that most Indian engineering educational institutions struggle with the systemic problem of centralisation coupled with an archaic examination system that is detrimental to student learning. This article examines some internationally renowned educational institutions that are embracing the growing importance of non-technical subjects and soft skills in 21st century engineering curricula. It will then examine the problems that India faces in doing the same.

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In the 21st century's global economy, the new challenges facing the engineering profession have arrived, confirming the need to restructure engineering curricula, teaching and learning practices, and processes, including assessment. Possessing merely technical knowledge no longer guarantees an engineering graduate a successful career. And while all countries are facing this dilemma, India is struggling the most. It has been argued that most Indian engineering educational institutions struggle with the systemic problem of centralisation coupled with an archaic examination system that is detrimental to student learning. This article examines some internationally renowned educational institutions that are embracing the growingimportance of non-technical subjects and soft skills in 21st century engineering curricula. It will then examine the problems that India faces in doing the same.

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Change is a regular part of school life. Educational innovations are constantly being implements in order to benefit students, improve outcomes and meet the obligations and accountability demands of governments. Rapid social and technological change has occurred within and around schools during the past 15 or more years, impacting upon curricula and pedagogies. Simultaneously, there has been a trend towards incorporating youth voice, where young people share in the decisions that will impact on their school experiences (Mitra, 2008a, 2004). Most recently, with the advent of the first National Australian Curriculum (McGaw, 2010), there is an imposed curriculum change, which reflects the growing global trend towards centralised control over what students learn in school (Zhao, 2011) and highlights that schools have to respond to change from all levels. Spears (in press) also notes that parents are raising children in an increasingly wireless world which is far removed from the one in which they were raised. Educators are teaching in schools that are vastly different technologically from those they knew as children and adolescents, or even those in which they were teaching a decade ago. Children born in 1995, the year when the Internet was first commercialised, are 16 years old in 2011 and, whilst parents may have embraced technological advances in their own adult working or social lives, they are yet to fathom fully what it means for their children and their relationships: to be educated and to socialise in the midst of mobile social media. Young people have greater access to more information than at any time past and move seamlessly between online and offline environments, often referring to them as ‘the same life’ (Spears, Kofoed, Bartolo, Palermiti and Castabile, in press). Along with these changes has come the transformation of traditional forms of bullying to cyberbullying, amid the public perception that bullying generally is becoming worse in schools.

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Teachers at local elementary and secondary schools were invited to participate in a survey research study by completing a questionnaire containing 26 statements regarding educational issues (e.g., "I am satisfied with the quality of my interactions with students."). Teachers were asked to indicate whether they agreed, were neutral, or disagreed with each statement; and further, to make a suggestions for appropriate change; to indicate a level at which the change could be implemented (classroom, school, board, ministry, society); and to indicate to what extent they perceive they have influence on change in the area represented in the statement. The responses of 50 elementary and 50 secondary teachers were randomly chosen from among the completed questionnaires and the information was recorded for analysis. Results of frequency counts of responses showed teachers were generally satisfied with their experiences of the areas referred to in the statements. Seventy-two percent of the responses agreed with the statements; 15% of the responses indicated disagreement, and 13% of the responses were neutral. Cross-tabulations of the survey data with demographic information showed differences among the responses of female and male teachers; elementary and secondary teachers; and teachers grouped according to their total years of teaching experience.

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Cette recherche qualitative porte sur les innovations pédagogiques utilisées à l’Université de Montréal en contexte de cultures disciplinaires. La recherche visait à étudier les innovations pédagogiques, entendues comme tout enseignement dispensé de manières différentes de la pratique traditionnelle du cours magistral, proposées par les professeurs dans une université fortement engagée en recherche. ll nous a paru utile de contribuer à compléter les savoirs existants dans ce domaine peu exploré, particulièrement lorsque nous savons que les innovations pédagogiques en contexte de cultures disciplinaires n’ont encore pas été étudiées à l’Université de Montréal. D’un point de vue social, la pertinence de cette recherche réside dans le cadre de la valorisation de l’enseignement universitaire souhaitée tant par les politiques, les institutions et la société que les professeurs et, au-delà, elle invite au rééquilibrage des deux piliers indispensables à l’université centrée sur la recherche qui laisse paraître une relation dichotomique marquée entre enseignement et recherche. Deux modes de cueillettes de données ont été privilégiés : les entrevues individuelles semi-structurées et un entretien de groupe auprès de trente-deux professeurs lauréats du Prix d’excellence en enseignement de l’Université de Montréal. Pour cette recherche, nous avons employé la théorisation ancrée comme méthode d’analyse de données recueillies selon d’autres approches. En d’autres mots, nous avons souhaité utiliser la théorisation ancrée comme un « processus » (Paillé, 1994, p. 149) d’analyse des données avec pour objectif d’approfondir l’objet de notre recherche par-delà la simple analyse descriptive sans pour autant prétendre à une théorisation avancée. En premier lieu, nos résultats nous ont permis de connaître les innovations pédagogiques utilisées dans l’enceinte de notre terrain de recherche, l’Université de Montréal et de dresser un portrait actualisé de leurs innovateurs. Nous avons aussi exploré les raisons qui amènent les professeurs à innover, décrit le processus nécessaire à l’innovation pédagogique et expliqué les freins s’opposant à cette dernière. En second lieu, nos résultats énumèrent les différences liées à la matière d’enseignement, au champ de recherche et soulignent le rapport de la discipline à l’innovation comme critère déterminant à son implication. En dernier lieu, nos résultats révèlent l’existence d’une expertise pédagogique partagée au sein de l’Université de Montréal qui permet de rompre la solitude des professeurs par un soutien entre pairs et favorise la transférabilité des innovations pédagogiques d’une culture disciplinaire à une autre. Finalement, nous présentons une théorisation actualisée des paramètres constituant une innovation pédagogique et détaillons les nouveaux paramètres qui influent sur la construction d’une innovation pédagogique. Nous concluons cette thèse par des recommandations et des pistes de recherches.

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The use of photovoltaic experimental plants in engineering educational buildings contributes to an increase in acceptance of this technology by future engineers. There are some photovoltaic (PV) systems in educational buildings in Spain, but they are usually limited to buildings in relation to electrical technologies or research areas. They are not common in other educational or official buildings. This paper presents the project of a grid-connected solar plant with two main objectives. First, different PV module technologies will be compared. Second, an emphasis on agronomical areas in educational settings will be reviewed in an attempt to facilitate student engagement in the use of the power plant. The system is grid-connected in order to pay-back the investment in the plant. In fact the electricity generated by the plant will be used by the installations of the building, as it is the closest consumer. This work intends to approximate photovoltaic technology to university degrees not directly related with it and at the same time research in comparison of systems with different technologies. This is a good example of an solar plant for both optimum production and educational purposes.

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Cover title, 1960: Electronic computers in engineering education; report.

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Shipping list no.: 88-645-P.