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Roth, Wolff-Michael – Cultural Studies of Science Education, 2015
For many students, the experience with science tends to be alienating and uprooting. In this study, I take up Simone Weil's concepts of "enracinement" (rooting) and "déracinement" (uprooting) to theorize the root of this alienation, the confrontation between children's familiarity with the world and unfamiliar/strange…
Descriptors: Science Education, Science Instruction, Phenomenology, Alienation
Roth, Wolff-Michael – Routledge, Taylor & Francis Group, 2011
This study examines the origins of geometry in and out of the intuitively given everyday lifeworlds of children in a second-grade mathematics class. These lifeworlds, though pre-geometric, are not without model objects that denote and come to anchor geometric idealities that they will understand at later points in their lives. Roth's analyses…
Descriptors: Constructivism (Learning), Geometric Concepts, Geometry, Phenomenology
Goulart, Maria Ines Mafra; Roth, Wolff-Michael – Journal of Curriculum Studies, 2006
One important challenge for researchers is to understand what happens inside classrooms that make the environment available for children's learning. This study develops the margin|centre dialectic as a general framework for describing participation of very young children in science-related activities. It employs a cultural-historical approach that…
Descriptors: Teaching Methods, Figurative Language, Case Studies, Classroom Environment

Roth, Wolff-Michael; McGinn, Michelle K. – Research in Science Education, 1997
Information processing models do not account for much of human competence in everyday scientific and lay contexts. Situated cognition models account better for competence in widely differing situations. In situated cognition models, the purpose of science education must be reconceived as preparing citizens to participate in public enactments of…
Descriptors: Citizen Participation, Cognitive Development, Cultural Context, Educational Objectives