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Kim, Mijung; Roth, Wolff-Michael – Cultural Studies of Science Education, 2016
In (science) education, primacy is given to agency, the human capability to act and, in this, to learn. However, phenomenological philosophers and societal-historical psychologists point out that agency, the purposeful (intentional) engagement with the world, is only the effect of a much more profound capacity: passibility, the capacity to be…
Descriptors: Problem Solving, Children, Individual Power, Learning
Maheux, Jean-Francois; Roth, Wolff-Michael – For the Learning of Mathematics, 2011
Current conceptualizations of knowing and learning tend to separate the knower from others, the world they know, and themselves. In this article, we offer "relationality" as an alternative to such conceptualizations of mathematical knowing. We begin with the perspective of Maturana and Varela to articulate some of its problems and our alternative.…
Descriptors: Mathematics Instruction, Geometry, Learning, Critical Thinking

Roth, Wolff-Michael; Roychoudhury, Anita – School Science and Mathematics, 1993
Discusses Vee mapping, a technique to assist students in categorizing the relationship between the conceptual and procedural aspects of science. Presents a study to investigate elementary education majors' (n=27) use of the Vee heuristic and concept mapping for the construction of knowledge; attitudes toward learning science in collaborative…
Descriptors: Cognitive Structures, Concept Formation, Concept Mapping, Constructivism (Learning)

Roth, Wolff-Michael – Journal of Research in Science Teaching, 1994
Presents a study involving students (n=46) enrolled in an introductory physics course designed to describe and understand students' experimenting and problem-solving strategies in a constructivist learning environment. Concludes that students should be provided with problem-rich learning environments in which they learn to investigate phenomena of…
Descriptors: Classroom Environment, Classroom Research, Constructivism (Learning), High Schools

Roth, Wolff-Michael; Bowen, G. Michael – Cognition and Instruction, 1995
Examines perceptions of eighth graders in a science teaching environment in which they guide their own learning, frame problems for inquiry, design data collection procedures, and interpret and present data in a convincing fashion. Asserts that, in constructing their inquiries, students successfully negotiated courses of action and established…
Descriptors: Active Learning, Constructivism (Learning), Elementary Education, Elementary School Students

Roth, Wolff-Michael – School Science and Mathematics, 1992
Provides a rationale for a learning environment in science classrooms that integrates science, mathematics, and technology while solving authentic problems. Describes activities that can be used in such an environment and presents data regarding students' attitudes toward the described activities. (MDH)
Descriptors: Calculators, Computer Assisted Instruction, Computers, Discovery Learning

Roth, Wolff-Michael; McGinn, Michelle K. – Canadian Journal of Education, 1997
Traditional conceptions of problem solving in education are critiqued, and a new framework is proposed to conceptualize open- ended problem solving in ill-structured domains. How innovative curriculum design is informed by this conceptualization is described, and research findings from studies in grades 4 through 12 are presented. (SLD)
Descriptors: Curriculum Development, Decision Making, Educational Research, Elementary Secondary Education

McGinn, Michelle K.; Roth, Wolff-Michael – International Journal of Science Education, 1998
Investigates variations in students' responses to lever problems across multiple assessment contexts and formats. Data sources include students' semantic maps, written responses to questions, and modeled solutions to practical problems. Contains 40 references. (DDR)
Descriptors: Cognitive Processes, Concept Mapping, Elementary Secondary Education, Foreign Countries

Roth, Wolff-Michael – Cognition and Instruction, 1996
Employed the actor network theory to examine the transformation of a grade-four classroom community as new resources and practices became available. Found that the diffusion and enculturation metaphors are insufficient to model important aspects of learning in a student-centered classroom. (MOK)
Descriptors: Case Studies, Classroom Environment, Comparative Analysis, Cultural Context

Roth, Wolff-Michael – Science Teacher, 1991
Several types of physics activities that use real-world problems to motivate learners, use computers to assist in developing conceptual understandings, connect problem situations to mathematical models, and use the models to analyze other real-world problems are presented. The topics of racing sports, sailing, and damped harmonic oscillations are…
Descriptors: Calculus, Computer Simulation, Experiential Learning, Graphs

Roth, Wolff-Michael; Milkent, Marlene M. – Journal of Research in Science Teaching, 1991
Examines the relationships between the development of proportional reasoning strategies and three cognitive variables from Pascual-Leone's and Case's neo-Piagetian theories: (1) degree of field independence; (2) M-space; and (3) short-term storage space. Describes the ability of students to transfer problem-solving schemata to new contexts as well…
Descriptors: Cognitive Development, College Students, Computer Uses in Education, Decision Making

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

Roth, Wolff-Michael – Journal of Research in Science Teaching, 1990
Examined is the predictive value of the cognitive variables of developmental level, mental capacity, cognitive style, short-term storage space, and numerical inductive reasoning for student achievement in college science. Included is a strategy for the development of materials which would allow students to develop problem-solving skills. (KR)
Descriptors: Achievement, Cognitive Style, College Science, Concept Formation