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De Avila, Paulo, Jr.; Torres, Bayardo B. – Biochemistry and Molecular Biology Education, 2010
Understanding the scientific method fosters the development of critical thinking and logical analysis of information. Additionally, proposing and testing a hypothesis is applicable not only to science, but also to ordinary facts of daily life. Knowing the way science is done and how its results are published is useful for all citizens and…
Descriptors: Undergraduate Students, Critical Thinking, Logical Thinking, Publications
McGuire, Saundra Yancy – Learning Assistance Review, 2007
Many students who enter colleges and universities seem to be focused on memorizing and regurgitating information rather than on developing critical thinking and problem solving skills. Mentoring is crucial to help these students transition from the current approach to one that will be successful in college. Successful mentoring requires a…
Descriptors: Mentors, Scientific Methodology, Learning Strategies, Teaching Methods
MacGregor, Ronald N. – Elements: Translating Theory into Practice, 1974
Article focused on the issue of participating in matters of immediate and widespread concern, on involving ourselves with the problems of others. (Author/RK)
Descriptors: Art Education, Creativity, Critical Thinking, Educational Environment
Peer reviewedDreyfus, A.; Jungwirth, E. – Science Education, 1980
Compares critical thinking ability of pupils in scientific situations and in real-life situations by administering multiple choice tests to Israeli ninth graders (N=344). Results confirm that students do not react similarly when confronted with equivalent situations presented in different contexts. (CS)
Descriptors: Critical Thinking, Logical Thinking, Problem Solving, Science Education
Peer reviewedWitucke, Virginia – Top of the News, 1980
Describes 18 books on thinking and learning for elementary school-aged children. Each book is critically discussed and evaluated in an appropriate category--problem solving, the scientific method, observation, or logic. (BK)
Descriptors: Bibliographies, Critical Thinking, Elementary Education, Literature Reviews
Logan, Ruth – 1987
A discussion is provided of an instructional technique which has been used in a lower-division biology course to identify and clearly define critical thinking skills for students, model the skills, and give students frequent feedback by describing and evaluating what they are doing. Section I considers the links between the critical thinking and…
Descriptors: Biology, Community Colleges, Critical Thinking, Evaluative Thinking
Peer reviewedNewton, Richard F. – Teachers College Record, 1975
This article points out the flaws inherent in the hypothetico-deductive formulation of inquiry. (CD)
Descriptors: Conceptual Schemes, Critical Thinking, Hypothesis Testing, Inquiry
Peer reviewedGriggs, Richard A.; Ransdell, Sarah E. – Social Studies of Science, 1986
Presents findings of a study of scientists on the Wason four-card selection task, finding little understanding of the effect of disconfirmatory data in assessing conditionals. Found performance influenced by problem content. Explains performance as memory-cueing plus reasoning-by-analogy. (JM)
Descriptors: Convergent Thinking, Critical Thinking, Cues, Information Utilization
Leibold, B. G.; And Others – Engineering Education, 1976
Presented is a problem solving strategy emphasizing the definition step. Detailed analysis of the process of problem definition is included. (SL)
Descriptors: Creative Thinking, Critical Thinking, Engineering Education, Higher Education
Peer reviewedKoertge, Noretta – Science and Education, 1996
Examines two areas of contention that exist within modern science curricula. One arises in trying to present the structure of a modern scientific theory, the other is encountered in attempting to include scientific methodology within the curriculum. Argues that the difficulty in reconciling these tensions has been underestimated. (DDR)
Descriptors: Content Analysis, Course Content, Creative Thinking, Critical Thinking
Newton, Richard F. – 1973
This essay examines flaws in the standard hypothetical-deduction inquiry model and offers another quite different model of inquiry, the multiple-completing model, for use in the school classroom. In positing this new model of inquiry the assumption has been made that a pedagogical inquiry model need not necessarily be an accurate reflection of…
Descriptors: Classroom Techniques, Cognitive Processes, Critical Thinking, Hypothesis Testing
Andrews, James G. – Engineering Education, 1987
Examines some of the assumptions associated with attempts to define the "engineering method." Critiques a previously stated definition of this method, and offers an alternative definition that attempts to include the ideas put forth in the previous definition. Discusses the use of engineering heuristics in both definitions. (TW)
Descriptors: Cognitive Structures, College Science, Convergent Thinking, Critical Thinking
Peer reviewedPhillips, D. C. – Journal of College Science Teaching, 1985
Discussion of changes in science education and scientific literacy is presented in the form of a dialog between the author and his alter ego. Structure of science, myths, facts, methods, and critical rationality are considered. Suggests that scientific principles once considered basic and unchanging are giving way to critical thinking. (DH)
Descriptors: College Science, Critical Thinking, Decision Making, Higher Education
Helgeson, Stanley L. – 1987
Problem solving has long been a concern of science educators, with many asserting that problem solving should be both the overriding method and valued outcome of science instruction in American schools. This information bulletin synthesizes studies that deal with the relationships between the teaching of problem solving and secondary school…
Descriptors: Critical Thinking, Inquiry, Junior High Schools, Middle Schools
Peer reviewedSteller, J. Ph. – School Science Review, 1977
Elementary school students (12 year olds) and two groups of 13 year old grammar school students were involved in an experiment which measured the ability to recognize the concept of controlling variables. In addition, ability to transfer learning to another situation was tested. (CP)
Descriptors: Cognitive Development, Critical Thinking, Educational Research, Elementary School Science
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