790 resultados para secondary science education experiences


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Esta escrito para ayudar a los profesores, tanto nuevos como experimentados, a reflexionar sobre su práctica docente y a considerar la manera de mejorar la eficacia de su enseñanza. Así, examina los métodos de enseñanza más comunes utilizados para el aprendizaje de la ciencia por los alumnos y proporciona orientación sobre temas de dirección y procedimientos. Para ello, también, tiene en cuenta temas subyacentes tales como el interés de los estudiantes por la ciencia y su motivación para aprender, la forma en que aprenden, el tipo de ciencia que se imparte actualmente en la escuela, y el valor de la investigación pedagógica.

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Abarca una amplia gama de temas del plan de estudios de ciencias para secundaria. Proporciona a los profesores que preparan el Qualified Teacher Status (QTS) no solo un detallado conocimiento de las distintas materias para captar sus principales conceptos, sino, también, actividades prácticas y útiles para entusiasmar a los alumnos con la ciencia. Incluye experimentos de interés para los niños como: extraer el ADN a un kiwi, la cromatografía de los dulces, la eliminación del hierro de los cereales y un rompecabezas de una placa tectónica.

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Resumen basado en el de la publicaci??n

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Educational reforms in many countries currently call for the development of knowledge-based societies. In particular, emphasis is placed on the promotion of creativity, especially in the areas of science education and of design and technology education. In this paper, perceptions of the nature of creativity and of the conditions for its realization are discussed. The notion of modelling as a creative act is outlined and the scope for using modelling as a bridge between science education and design and technology education explored. A model for the creative act of modelling is proposed and its major aspects elaborated upon. Finally, strategies for forging links between the two subjects are outlined.

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Teaching and learning with history and philosophy of science (HPS) has been, and continues to be, supported by science educators. While science education standards documents in many countries also stress the importance of teaching and learning with HPS, the approach still suffers from ineffective implementation in school science teaching. In order to better understand this problem, an analysis of the obstacles of implementing HPS into classrooms was undertaken. The obstacles taken into account were structured in four groups: 1. culture of teaching physics, 2. teachers` skills, epistemological and didactical attitudes and beliefs, 3. institutional framework of science teaching, and 4. textbooks as fundamental didactical support. Implications for more effective implementation of HPS are presented, taking the social nature of educational systems into account.