991 resultados para Evolution teaching


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A introdução do ensino médico-legal nos currículos de Direito, já assegura longa data e teve sua proposta relatada por Rui Barbosa e aprovada na Câmara dos Deputados, após o que o Governo brasileiro determinou a criação da cátedra de Medicina Legal nas Faculdades de Direito do país a partir de 1891. Ao longo de muitos anos foi disciplina obrigatória nos cursos de Direito transparecendo a importância da matéria na formação dos profissionais, mormente aqueles que militam na esfera criminal, mas também aplicável a, praticamente, todas as especialidades da área jurídica. A despeito da evolução das ciências forenses, que introduziram no século XXI novos horizontes da sua aplicação no contexto jurídico, ressalto ainda a própria cobrança da matéria nos concursos, para aqueles que almejam a carreira Policial. No entanto, independente da indiscutível importância da matéria, na formação acadêmica do profissional de direito, o Ministério da Educação decidiu estabelecer a Medicina Legal como disciplina optativa nos cursos de Direito. Essa medida veio ao de encontro dos interesses sociais, pois a sociedade, na busca de seus direitos, requer profissionais bem formados, com conhecimento compatível com a evolução científica. Ensinar Medicina Legal é uma árdua tarefa, pois há necessidade de valorizar mais a atividade docente e proporcionar meios para que esse ensino seja amplamente desenvolvido na formação da carreira jurídica. No presente trabalho são expostas as argumentações técnicas e pedagógicas para a manutenção de disciplina como obrigatória nos Cursos de graduação em Direito, visando, com isso, uma formação acadêmica mais completa, que corresponda a sua importante aplicação nas diversas áreas do Direito, bem como sua implantação como disciplina obrigatória nos exames de ordem da OAB.

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Este trabalho procura identificar e discutir aspectos da formação inicial que estejam relacionados com o ensino de evolução biológica no curso de licenciatura plena em Ciências Biológicas da Faculdade de Formação de Professores da Universidade do Estado do Rio de Janeiro. A evolução biológica é considerada tanto por vários estudiosos como por documentos oficiais de educação como um eixo unificador dentro das Ciências Biológicas que, além de interligar as diversas partes que compõem a Biologia, é imprescindível para a compreensão de diversos conceitos e processos biológicos. A coleta de dados foi realizada a partir de entrevistas semiestruturadas aplicadas a quatro docentes do curso, sendo dois responsáveis por disciplinas de conteúdo biológico específico e os outros por disciplinas relacionadas ao ensino de Ciências e Biologia. Os discursos foram analisados a partir da Análise de Conteúdo. Os resultados aqui expostos revelam que o ensino da teoria evolutiva ocupa posição de destaque na formação dos alunos da FFP-UERJ ao longo do curso, contribuindo para a construção de uma visão mais global sobre a Biologia para muitos. As principais dificuldades apontadas para a sua abordagem são a ausência de atividades interdisciplinares como trabalhos de campo; a falta de comunicação entre os docentes do curso sobre o assunto; a falta de maturidade dos alunos para compreender os processos evolutivos; a falta de materiais de apoio em determinadas áreas específicas; e o embate entre as explicações científicas e alguns pontos de vista religiosos sobre a origem da diversidade biológica. A maioria dos docentes apontou as estratégias que utilizam para superar tais empecilhos e incluir o tema em suas disciplinas. O resultado deste esforço é reconhecido por eles mesmos, ao perceber que, ao longo do curso, os alunos desenvolveram capacidade intelectual para relacionar temas de distintos campos através da perspectiva evolutiva.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The quantitative and qualitative increasing of researches in Science teaching imposes the periodical mapping need of scientific production about the subject, with a view to identify its own characteristics and tendencies. In this context, researches such as “State of art”, given his executrix character, constitute in modality inquiring that allow us to outline historical scenes for a given area (or subarea) of knowledge. In this light, this work aims to outline the panorama of Brazilian academic production, represented by dissertations and thesis, in evolution teaching between 1990- 2010. The documents susceptible of analysis were raised in three online data basis and its selection happened from the reading of titles, abstracts and key-words with views to identify the dissertations and thesis that truly approached the Evolution Teaching. The found results evidence the predominance of dissertations related to the number of thesis and the concentration of academic production in Evolution Teaching in Brazil south-east region, especially in São Paulo state. In researches trends we verified the prevalence of investigations related to the previous conceptions of students and professors (in all teaching levels) and to teacher training.

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This paper presents a brief history of the use of online technologies in the support of teaching and learning in the School of Engineering and Technology at Deakin University, Victoria, Australia. It addresses the following topics: flexible engineering programs at Deakin University; computer-based learning in the School of Engineering and Technology; progression from individual efforts to formal, centralized control of the World Wide Web (Web); the costs of information technology; experiences with grant funded development projects; managing the development of online material; student access and equity; and staff development and cultural change. A sustainable online content development model is proposed to carry the School’s online initiatives in support of teaching and learning activities into the future.

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The main objective of this article is to focus on the analysis of teaching techniques, ranging from the use of the blackboard and chalk in old traditional classes, using slides and overhead projectors in the eighties and use of presentation software in the nineties, to the video, electronic board and network resources nowadays. Furthermore, all the aforementioned, is viewed under the different mentalities in which the teacher conditions the student using the new teaching technique, improving soft skills but maybe leading either to encouragement or disinterest, and including the lack of educational knowledge consolidation at scientific, technology and specific levels. In the same way, we study the process of adaptation required for teachers, the differences in the processes of information transfer and education towards the student, and even the existence of teachers who are not any longer appealed by their work due which has become much simpler due to new technologies and the greater ease in the development of classes due to the criteria described on the new Grade Programs adopted by the European Higher Education Area. Moreover, it is also intended to understand the evolution of students’ profiles, from the eighties to present time, in order to understand certain attitudes, behaviours, accomplishments and acknowledgements acquired over the semesters within the degree Programs. As an Educational Innovation Group, another key question also arises. What will be the learning techniques in the future?. How these evolving matters will affect both positively and negatively on the mentality, attitude, behaviour, learning, achievement of goals and satisfaction levels of all elements involved in universities’ education? Clearly, this evolution from chalk to the electronic board, the three-dimensional view of our works and their sequence, greatly facilitates the understanding and adaptation later on to the business world, but does not answer to the unknowns regarding the knowledge and the full development of achievement’s indicators in basic skills of a degree. This is the underlying question which steers the roots of the presented research.

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This paper addresses the historical evolution of, from its inception, to the present day, within the changing context of EHEA and linked to professional competences. The research methodology, although it is mainly a historical document review, expert opinions on university educational planning of university education of forestry engineering in Spain are also included. The results show the evolution of centralized planning, based on technical knowledge transmission to an approach based on competences (technical, contextual and behavioral) focusing on learning for improving employability.

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This paper describes the evolution of a ‘Design - Build-Fly’ (DBF) approach to the delivery and assessment of a Stage Three Aircraft Design module. It focuses on the primary learning outcomes around the design and manufacturing functions associated with the development of a remotely controlled aircraft. The work covers a six year period from 2011 to present mapping the transformation of the module from report based assessment to a more hands on approach resulting in a fully functioning remotely controlled aircraft. Results show that both the staff and student experience improved across key performance metrics including student feedback, learning and competency development. Challenges still remain in methods of placing students within teams and maintaining technical rigour in reporting as students develop vocational skills and more reflective writing styles.

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The International Conference on Advanced Materials, Structures and Mechanical Engineering 2015 (ICAMSME 2015) was held on May 29-31, Incheon, South-Korea. The conference was attended by scientists, scholars, engineers and students from universities, research institutes and industries all around the world to present on going research activities. This proceedings volume assembles papers from various professionals engaged in the fields of materials, structures and mechanical engineering.

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In architecture courses, instilling a wider understanding of the industry specific representations practiced in the Building Industry is normally done under the auspices of Technology and Science subjects. Traditionally, building industry professionals communicated their design intentions using industry specific representations. Originally these mainly two dimensional representations such as plans, sections, elevations, schedules, etc. were produced manually, using a drawing board. Currently, this manual process has been digitised in the form of Computer Aided Design and Drafting (CADD) or ubiquitously simply CAD. While CAD has significant productivity and accuracy advantages over the earlier manual method, it still only produces industry specific representations of the design intent. Essentially, CAD is a digital version of the drawing board. The tool used for the production of these representations in industry is still mainly CAD. This is also the approach taken in most traditional university courses and mirrors the reality of the situation in the building industry. A successor to CAD, in the form of Building Information Modelling (BIM), is presently evolving in the Construction Industry. CAD is mostly a technical tool that conforms to existing industry practices. BIM on the other hand is revolutionary both as a technical tool and as an industry practice. Rather than producing representations of design intent, BIM produces an exact Virtual Prototype of any building that in an ideal situation is centrally stored and freely exchanged between the project team. Essentially, BIM builds any building twice: once in the virtual world, where any faults are resolved, and finally, in the real world. There is, however, no established model for learning through the use of this technology in Architecture courses. Queensland University of Technology (QUT), a tertiary institution that maintains close links with industry, recognises the importance of equipping their graduates with skills that are relevant to industry. BIM skills are currently in increasing demand throughout the construction industry through the evolution of construction industry practices. As such, during the second half of 2008, QUT 4th year architectural students were formally introduced for the first time to BIM, as both a technology and as an industry practice. This paper will outline the teaching team’s experiences and methodologies in offering a BIM unit (Architectural Technology and Science IV) at QUT for the first time and provide a description of the learning model. The paper will present the results of a survey on the learners’ perspectives of both BIM and their learning experiences as they learn about and through this technology.

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Research in science education is now an international activity. This book asks for the first time, Does this research activity have an identity?-It uses the significant studies of more than 75 researchers in 15 countries to see to what extent they provide evidence for an identity as a distinctive field of research.-It considers trends in the research over time, and looks particularly at what progression in the research entails.-It provides insight into how researchers influence each other and how involvement in research affects the being of the researcher as a person.-It addresses the relation between research and practice in a manner that sees teaching and learning in the science classroom as interdependent with national policies and curriculum traditions about science. It gives graduate students and other early researchers an unusual overview of their research area as a whole. Established researchers will be interested in, and challenged by, the identity the author ascribes to the research and by the plea he makes for the science content itself to be seen as problematic.

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Communities of practice (CoPs) may be defined as groups of people who are mutually bound by what they do together (Wenger, 1998, p. 2), that is, they “form to share what they know, to learn from one another regarding some aspects of their work and to provide a social context for that work” (Nickols, 2000, para. 1). They are “emergent” in that the shape and membership emerges in the process of activity (Lees, 2005, p. 7). People in CoPs share their knowledge and experiences freely with the purpose of finding inventive ways to approach new problems (Wenger & Snyder, 2000, p. 2). They can be seen as “shared histories of learning” (Wenger, 1998, p. 86). For some time, QUT staff have been involved in a number of initiatives aimed at sharing ideas and resources for teaching first year students such as the Coordinators of Large First Year Units Working Party. To harness these initiatives and maximise their influence, the leaders of the Transitions In Project (TIP)1 decided to form a CoP around the design, assessment and management of large first year units.