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Ottemo, Andreas; Berge, Maria; Silfver, Eva – Science Education, 2020
A diverse body of feminist scholarship has addressed the masculine orientation of Western engineering education for at least four decades. Among critiques specifically targeting curriculum, a recurrent line of argumentation highlights its reductionist framing and narrow focus on mathematics and technology. The argument is that these traits…
Descriptors: Cultural Influences, Gender Bias, Engineering Education, Undergraduate Study
Shein, Paichi P.; Falk, John H.; Li, Yuh-Yuh – Science Education, 2019
In this paper, we use dimensions of the construct "science identity" as an analytic lens to tap into the motivation and learning of science center visits. This exploratory empirical study was based on a large international dataset drawn from 10 science centers in countries across Europe, Asia, and North America, to investigate the…
Descriptors: Science Education, Self Concept, Learning Motivation, Path Analysis
Bang, Megan; Medin, Douglas – Science Education, 2010
Although there has been considerable focus on the underrepresentation of minorities in science, technology, engineering, and mathematics (STEM) disciplines and the need for science instruction that fosters diversity, much of the associated effort has focused on the goal of diversity and tended to assume that science and science learning are…
Descriptors: American Indians, Disproportionate Representation, Science Instruction, Science Education

Brandes, Karlheinz K; Rinehart, James R – Science Education, 1971
Descriptors: Chemistry, College Science, Curriculum, Graduate Study

Gallagher, James Joseph – Science Education, 1971
Descriptors: Curriculum, Models, Science Education, Scientific Concepts

Ost, David H. – Science Education, 1974
Expresses the need for a public that understands the relationships between freedom and responsibility in a contemporary technologic society. (Author/GS)
Descriptors: Curriculum, Environmental Education, Ethics, Models

Zebrowski, Ernest, Jr. – Science Education, 1984
Traces the effects the relationship between printing technology, and publishing have had on the historical emergence of college physics textbooks. Printing technology before 1880, growth of the book publishing industry, emergence of college physics textbooks, linotype machines, printing technology, and textbook pedagogy are among the areas…
Descriptors: College Science, Higher Education, Physics, Printing

Lunetta, Vincent N. – Science Education, 1976
Discusses the role of the science educator in helping youth develop skills that are relevant and meaningful in a technological society while emphasizing hope and human values. (MLH)
Descriptors: Instruction, Science Education, Social Attitudes, Social Problems

Hirschhorn, Joel S. – Science Education, 1974
Reports the results of a study designed to test the hypothesis that successful engineering students would have more positive attitudes toward technology than non-engineering students. (JR)
Descriptors: Academic Achievement, Attitudes, College Students, Educational Research

Solbes, J.; Vilches, A. – Science Education, 1997
Analyzes the absence of science-technology-society (STS) interactions and its consequences in the basic teaching of science in Spain. Proposes the introduction of STS interactions in physics and chemistry classes in conjunction with the teaching/learning model of science as research. Surveys students 16-18 years of age on their interest in physics…
Descriptors: Chemistry, Constructivism (Learning), Foreign Countries, Physics

Zoller, Uri; Watson, Fletcher G. – Science Education, 1974
Suggests that technology education is an essential component of future science curricula for non-science secondary students. Explores some of the important issues and problems, and suggests directives for action, in moving toward technology education in the high schools. (JR)
Descriptors: Curriculum Development, Educational Innovation, Science Curriculum, Science Education

MacMahan, Horace – Science Education, 1971
Descriptors: Curriculum, Environmental Education, Honesty, Policy

Winthrop, Henry – Science Education, 1971
Descriptors: College Programs, Cybernetics, Interdisciplinary Approach, Prediction

Munby, A. Hugh – Science Education, 1976
Proposes that the language in which science instruction is given is significant for the understanding it can convey about the nature of science. (MLH)
Descriptors: Communication (Thought Transfer), Instruction, Language, Language Role

Baker, Milton R.; Doran, Rodney L. – Science Education, 1975
Describes many approaches to affective science teaching. Includes specific examples that correspond to Bloom's taxonomy of affective objectives. (MLH)
Descriptors: Affective Objectives, Attitudes, Instruction, Science Education