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Rudge, David W.; Howe, Eric M. – Science & Education, 2009
Monk and Osborne ("Sci Educ" 81:405-424, 1997) provide a rigorous justification for why history and philosophy of science should be incorporated as an integral component of instruction and a model for how history of science should be used to promote learning of and about science. In the following essay we critique how history of science is used on…
Descriptors: Teaching Methods, Scientific Principles, Problem Solving, Scientists
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Trussell, Patricia; And Others – Journal of Nursing Administration, 1981
With the increased professional interest in nursing research, it is important for nursing administrators to be precise in their thinking. In this article, the authors define science and distinguish it from other bases of knowledge. This is done to help avoid conceptual and semantic errors. (Author)
Descriptors: Educational Research, Nursing Education, Problem Solving, Scientific Methodology
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Niaz, Mansoor – Interchange, 1993
The paper critically appraises the concept-learning and developmental perspectives in science education to show that Pascual-Leone's Theory of Constructive Operators leads to a progressive problem-shift between Piaget's epistemic subject and Pascual-Leone's metasubject. (SM)
Descriptors: Heuristics, Higher Education, Problem Solving, Science Education
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Kincanon, Eric – Physics Teacher, 1990
Demonstrates what theoretical physicists make a rule using juggling. Provides the thinking process and calculating procedure. (YP)
Descriptors: College Science, Higher Education, Mechanics (Physics), Motion
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Sterner, Ray T. – American Biology Teacher, 1998
Presents a classroom technique designed to aid student understanding of science that involves a flow chart of the scientific method. Affords a conceptual framework for organizing many research concepts taught in introductory science classes. Contains 19 references. (DDR)
Descriptors: Concept Formation, Flow Charts, Higher Education, Problem Solving
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Weinberg, Eugene D.; Fraser, Dean – American Biology Teacher, 1976
Discussed is the tendency in science to challenge obvious explanation for observed phenomenon. Ten examples are given where the initial obvious explanation was subsequently shown to be totally incorrect. Four examples that relate to biomedicine are presented in detail. (SL)
Descriptors: Biology, Discovery Processes, Problem Solving, Scientific Attitudes
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Colyer, Christa – Journal of College Science Teaching, 2000
Presents a scenario about Ignaz Semmelweis' work with childbed fever. Provides study questions about the scenario as well as teaching notes. (YDS)
Descriptors: College Freshmen, Health Education, Higher Education, Inquiry
Lall, Bernard M. – 1975
The science of education has been influenced by the basic sciences to the extent that educational research now has been able to modernize its approach by accepting and using the basic scientific methodology and experimental techniques. Using primarily the same steps of scientific investigations, education today holds a place of much greater esteem…
Descriptors: Biological Sciences, Education, Logic, Natural Sciences
Walker, Jearl – Scientific American, 1986
Relates how Charles Martin Hall discovered the method of making pure aluminum metal in 1886. Retraces the events and steps that led to the process of aluminum purification. Includes diagrams of the apparatus used in the investigations. (ML)
Descriptors: Inventions, Metals, Physical Sciences, Problem Solving
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Hackling, Mark W.; Garnett, Patrick J. – Australian Science Teachers Journal, 1995
Uses a problem-solving task to compare the performance of school students, university students, and research scientists on a laboratory-based science investigation. Reports limitations in the work of the school students and provides insights into the development and nature of expertise in investigation skills. Presents recommendations for…
Descriptors: Foreign Countries, Higher Education, Problem Solving, Science Experiments
Clement, John – 1988
Some central issues in discussions of creative processes in science are: (1) the mechanism(s) by which hypothesis formation takes place; (2) the sources of new knowledge during hypothesis formation; and (3) the "Eureka" versus steady accumulation (accretion) issue concerning the pace of change during hypothesis formation. This paper…
Descriptors: Cognitive Processes, Creative Thinking, Hypothesis Testing, Models
Szoke, Ron – 1975
The long-forgotten debate of 1929-31 between T. L. Kelley and W. H. Kilpatrick is reviewed with the aim of reviving the crucial, but dormant, issue of the competence of quantitative empirical research to answer educational questions. They debated the need to supplement scientific method with a philosophical approach sensitive to needs, impulses,…
Descriptors: Debate, Educational History, Educational Philosophy, Problem Solving
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Middleman, Stanley – Chemical Engineering Education, 1983
Discusses the evolution of a set of research programs (dealing with the removal of liquid contaminants from surfaces) used to introduce graduate students to methods of design, evaluation, and modification within the context of a larger research program. Stresses the simultaneity and interaction of theoretical and experimental studies. (JM)
Descriptors: Chemical Engineering, Engineering Education, Graduate Study, Higher Education
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Friedler, Yael; Tamir, Pinchas – Journal of Biological Education, 1986
Presents a rationale for teaching inquiry skills and describes a learning module which was designed to develop inquiry skills and provides a realistic view of the nature of scientific research for secondary science students. Explains the module's evaluation procedures and results. (ML)
Descriptors: Educational Philosophy, Foreign Countries, Inquiry, Learning Modules