Planet earth models about students in rural schools from Chile
Keywords:
Planet Earth models, cultural differences, cognitive developmentAbstract
The aim of this study was to identify planet Earth models in mapuches and non mapuches students of rural origin. The participants were 40 students divided into two age groups who responded to a cognitive task which explores the representation of the shape of the planet Earth. Based on the degree of agreement with the scientific representation, each participant was categorized into one of four models of planet Earth. Model 4, consistent with the scientific knowledge was not observed because the majority of the participants were concentrated in Model 3. In non mapuche children, it is observed that the model of the planet Earth is adjusted to the scientific meaning in accordance with the increase of school knowledge. On the other hand, this trend is not observed in mapuche children. The role of culture and teaching is discussed in the learning of planet scientific model.
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Alonqueo, P. & Silva, E. (2012). Diferencias culturales en el uso de marcos de referencia espacial: el caso de los niños mapuches. Universitas Psychologica, 11(3), 839-852.
Alonqueo, P., Silva, E., & Orellana, L. (2013). ¿Izquierda o derecha? El desarrollo de las relaciones espaciales proyectivas en escolares mapuches y no mapuches. Revista de Psicología, 22(1), 85-96.
Candela, A. (2006). Del conocimiento extraescolar al conocimiento científico escolar: un estudio etnográfico en aulas de la escuela primaria. Revista Mexicana de Investigación Educativa, 11(30), 797-820.
Denegri, M. (1991). Confrontación del modelo teórico de Piaget en una muestra de niños mapuches y no mapuches de la Región de la Araucanía, Chile. Revista Frontera, 9-10, 103-108.
Diakidoy, I., Vosniadou, S., & Hawks, J. (1997). Conceptual change in astronomy: models of the Earth and the day/night cycle in American-Indian children, European Journal of Psychology of Education, 12(2), 159-184.
Driver, R., Guesne, E., & Tiberghien, A. (1989). Ideas Científicas en la Infancia y la Adolescencia. Madrid: Morata.
Fernández, T. & Peña, S. (2008). Concepciones de maestros de primaria sobre el planeta Tierra y gravedad. Implicaciones en la enseñanza de la ciencia. Revista Electrónica de Investigación Educativa, 10(2). Recuperado de http:// redie.uabc.mx/vol10no2/contenido-fernandeznistal.html
Fernández, T. (2004). Concepciones del planeta Tierra. Capacidades espaciales implicadas. Infancia y Aprendizaje, 27(2), 189-210.
Harlow, E. (2009). Challenging elementary science misconceptions (Teaching and Learning Department Capstone Project). Nashville, Tennessee: Vanderbilt University.
Huenchulaf, E., Cárdenas, P., & Ancalaf, G. (2004). Nociones de tiempo y espacio en la cultura mapuche. Guía didáctica para el profesor nivel básico 1. Temuco: Corporación Nacional de Desarrollo Indígena.
Instituto Nacional de Estadísticas. (2012). Síntesis de resultados. Censo 2012. Recuperado de http://www.censo.cl/contenido/ sintesis_resultados_censo_2012.pdf
Johnson-Laird, P. (1983). Mental Models: Toward a Cognitive Science of Language, Inference and Consciousness. MA: Harvard University Press.
Kohler, J. (2005). Importancia de las estrategias de enseñanza y el plan curricular. Liberabit, 11, 25-34.
Mali, G. & Howe, A. (1979). Development of Earth and gravity concepts among Nepali children. Science Education, 63(5), 685-691.
Ministerio de Educación. (2012). Unidad de Currículum y Evaluación. Programa de Estudio Ciencias Naturales Tercero Básico. Gobierno de Chile.
Nussbaum, J. & Novak, J. (1976). An assessment of children´s concepts of the Earth utilizing structural interviews. Science Education, 60(4), 535-550.
Nussbaum, J. (1979). Children´s conceptions of the Earth as a cosmic body: A cross-age study. Science Education, 63(1), 83-93.
Nussbaum, J. (1983). Classroom conceptual change: philosophical perspectives. International Journal of Science Education, 11(5), 530-540.
Panagiotaki, G., Nobes, G., & Potton, A. (2009). Mental models and other misconceptions in children´s understanding of the earth. Journal of Experimental Child Psychology, 104(1), 52-67.
Pozo, G. & Canío, M. (2014). Wenumapu astronomía y cosmología mapuche. Santiago de Chile: Ocho Libros.
Quintriqueo, S., Torres, H., Gutiérrez, M., & Sáez, D. (2011). Articulación entre el conocimiento cultural Mapuche y el conocimiento escolar en ciencia. Educación y Educadores, 14(3), 475-492.
Samarapungavan, A., Vosniadou, S., & Brewer, W. (1996). Mental models of the Earth, sun and moon: Indian children’s cosmologies. Cognitive Development, 11(31), 491-521.
Siegal, M., Butterworth, G., & Newcombe, P. (2004). Culture and children’s cosmology. Developmental Science, 7(3), 308-24.
Siegal, M., Nobes, G., & Panagiotaki, G. (2011). Children’s knowledge of the Earth. Nature Geoscience, 4, 130-133. doi: 10.1038/ngeo1094
Sneider, C. & Pulos, S. (1983). Children’s cosmographies: Understanding the earth’s shape and gravity. Science Education, 67(2), 205-221.
Troadec, B., Zarhbouch, B., & Frède, V. (2009). Cultural artifact and children´s understanding of the shape of the shape of the Earth: The case of Moroccan children. European Journal of Psychology of Education, 24(4), 485-498.
Vega, A. (2007). Ideas, conocimientos y teorías de niños y adultos sobre las relaciones Sol-Tierra-Luna. Estado actual de las investigaciones. Revista de Educación, 342, 475-500.
Vosniadou, S. (1992). Knowledge Acquisition and Conceptual Change. Applied Psychology, 41(4), 347-357.
Vosniadou, S. (1994). Capturing and modeling the process of conceptual change. Learning and Instruction, 4(1), 45-69.
Vosniadou, S. (2013). Model based reasoning and the learning of counter-intuitive science concepts. Infancia y Aprendizaje, 36(1), 5-33.
Vosniadou, S. & Brewer, W. (1992). Mental models of the earth: A study of conceptual change in childhood. Cognitive Psychology, 24(4), 535-585.
Vosniadou, S. & Brewer, W. (1994). Mental models of the day/ night cycle. Cognitive Science, 18(1), 123-183. Vosniadou, S., Skopeliti, I., & Ikospentaki, K. (2004). Modes of knowing and ways of reasoning in elementary astronomy. Cognitive Development, 19(2), 203-222.
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