6 resultados para Physics teachers’ knowledge

em Universidad de Alicante


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El objetivo de esta investigación es indagar en el conocimiento especializado de contenido matemático de estudiantes para maestro (EPM) sobre problemas de división-medida. Los EPM respondieron a dos cuestionarios en los que resolvieron dos problemas de división-medida e interpretaron respuestas dadas por alumnos de primaria. Un alto porcentaje de EPM resolvieron con éxito los dos problemas, pero pocos fueron capaces de interpretar de forma adecuada las respuestas de los alumnos de primaria cuando empleaban un procedimiento correcto alternativo a la división. Los resultados obtenidos ofrecen a los formadores referencias iniciales acerca de los conocimientos de los EPM sobre problemas de división-medida y sobre el uso que hacen de estos conocimientos en una de sus tareas profesionales: interpretar las respuestas de los alumnos.

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El objetivo de este estudio es aportar información sobre el papel que desempeña el conocimiento de matemáticas de los estudiantes para maestro (EPM) cuando piensan en el aprendizaje de las matemáticas de los estudiantes de primaria. Nuestro estudio se centra en el razonamiento up and down que es una de las componentes que facilitan el desarrollo del razonamiento proporcional. 92 EPM resolvieron una tarea en la que tenían que interpretar las respuestas de estudiantes de educación primaria a un problema que implicaba el razonamiento up and down. Identificamos tres perfiles de EPM caracterizados por la relación entre el conocimiento de matemáticas y la competencia de reconocer el desarrollo del razonamiento up and down en los estudiantes.

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Este estudio examina cómo los estudiantes para maestro identifican evidencias del razonamiento up and down en los estudiantes de primaria. Este razonamiento implica dos procesos: la reconstrucción de la unidad y la representación de fracciones. 92 estudiantes para maestro respondieron una tarea que consistía en analizar tres respuestas de estudiantes de educación primaria a un problema de proporcionalidad que mostraban diferentes características de esta manera de razonar. En este estudio presentamos algunos aspectos del análisis que estamos realizando para categorizar la manera en la que los estudiantes para maestro reconocen evidencias de este razonamiento, y cómo este reconocimiento se relaciona con la manera en la que reconocen los elementos matemáticos relevantes para resolver el problema.

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This research study examines the development of the ability of pre-service teachers to notice signs of students’ understanding of the derivative concept. It analyses preservice teachers’ interpretations of written solutions to problems involving the derivative concept before and after participating in a teacher training module. The results indicate that the development of this skill is linked to pre-service teachers’ progressive understanding of the mathematical elements that students use to solve problems. We have used these results to make some suggestions for teacher training programmes.

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A suitable knowledge of the orientation and motion of the Earth in space is a common need in various fields. That knowledge has been ever necessary to carry out astronomical observations, but with the advent of the space age, it became essential for making observations of satellites and predicting and determining their orbits, and for observing the Earth from space as well. Given the relevant role it plays in Space Geodesy, Earth rotation is considered as one of the three pillars of Geodesy, the other two being geometry and gravity. Besides, research on Earth rotation has fostered advances in many fields, such as Mathematics, Astronomy and Geophysics, for centuries. One remarkable feature of the problem is in the extreme requirements of accuracy that must be fulfilled in the near future, about a millimetre on the tangent plane to the planet surface, roughly speaking. That challenges all of the theories that have been devised and used to-date; the paper makes a short review of some of the most relevant methods, which can be envisaged as milestones in Earth rotation research, emphasizing the Hamiltonian approach developed by the authors. Some contemporary problems are presented, as well as the main lines of future research prospected by the International Astronomical Union/International Association of Geodesy Joint Working Group on Theory of Earth Rotation, created in 2013.

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This study focuses on how prospective teachers learn about students’ mathematical thinking when (i) anticipating secondary students’ answers reflecting different characteristics of understanding and (ii) propose new activities in relation to the classification of quadrilaterals. The data were collected from forty-eight prospective secondary school teachers enrolled in an initial training programme. The results indicate three changes in how the prospective teachers anticipate secondary students’ answers in relation to the role given to a perceptual or relational perspective of the classification of quadrilaterals. These changes are described considering how prospective teachers grasp the students’ understanding of the inclusive relation among quadrilaterals as a conceptual advance. We argue that prospective teachers’ learning was promoted after participating in a structured environment where they had the opportunity to discuss how to recognize the features of student’s understanding.