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Peer reviewedMinerney, Joseph D. – American Biology Teacher, 1993
Asserts that concerns over the use of animals in science education is confounded by the unworthy introduction of false sentiment by animal rights groups, which persist in ignoring the realities of biology. (PR)
Descriptors: Bioethics, Biology, Elementary Secondary Education, Laboratory Animals
Peer reviewedSwanson, H. Lee; Hoskyn, Maureen – Review of Educational Research, 1998
A comprehensive synthesis of experimental intervention studies that have included students with learning disabilities was based on 180 studies. Results support the pervasive influence of cognitive strategy and direct instruction models for remediating the academic difficulties of children with learning disabilities. (SLD)
Descriptors: Children, Experiments, Intervention, Learning Disabilities
Peer reviewedSymbaluk, Diane G.; Cameron, Judy – Teaching of Psychology, 1998
Describes a procedure for teaching experimental design to students in the social sciences. Argues that by replicating Solomon Asch's and H. Kelley's classic studies on impression formation, students learn how to conduct experiments, analyze data, and evaluate the significance of research. Provides instructions for implementing the strategy. (DSK)
Descriptors: Data Analysis, Demonstrations (Educational), Experiments, Higher Education
Peer reviewedPiper, Alison I. – Library & Information Science Research, 1998
Discusses the application of methodological techniques to social science Web experiments, and suggests topics in library and information science most conducive to research on the World Wide Web. Topics include causal inference; the Web as a venue for research; Web experiments versus laboratory experiments; and internal, construct, and external…
Descriptors: Information Science, Laboratory Experiments, Reliability, Research Methodology
Peer reviewedSawicki, Mikolaj – Physics Teacher, 1999
Gives an analogy useful for explaining the experimental teleportation of a quantum-mechanical state to beginning physics students. (WRM)
Descriptors: Higher Education, Physics, Quantum Mechanics, Science Experiments
Peer reviewedSmith, Dwight G.; Avery, David F. – American Biology Teacher, 1999
Presents a laboratory activity designed to be a botanical autotutorial tour of a supermarket, meant to increase students' appreciation of the role that botany plays in the production of food. (WRM)
Descriptors: Biology, Botany, Food, Higher Education
Peer reviewedCronholm, Tomas; Hoog, Jan-Olov; Martenson, Dick – Medical Teacher, 2000
Examines student attitudes towards biochemical experiments and their effect on student learning. Finds that biochemical experiments in the medical curriculum are valuable, but efforts should be directed more towards the development of students' attitudes and approaches to the exercise. (Author/CCM)
Descriptors: Biochemistry, Higher Education, Laboratory Experiments, Medical Education
Peer reviewedSprigham, S. V. – Physics Education, 2000
Presents an alternative experimental arrangement that results in a considerable cost savings by reducing the number of sensors and other apparati required while giving excellent quantitative results for comparison with theory. (Author/CCM)
Descriptors: Cost Effectiveness, Light, Optics, Physics
Peer reviewedMarshall, Stephanie Pace – NASSP Bulletin, 1998
Because continuous learning and knowledge generation are core competencies in our ability to resolve the problems facing us as a world community, we must reject the efficiency model and embrace the emerging model of learning. Current schooling structures are counter to new brain/mind learning precepts. Learner-as-pioneer requires individuals to…
Descriptors: Brain, Experiments, Futures (of Society), Learning Processes
Peer reviewedJackson, Barbara Albers; Crouse, David J. – Journal of Chemical Education, 1998
Describes how to determine the mass of a gas in a flexible, lightweight container and argues that the buoyant force of air needs to be taken into account. Recommends the use of mylar and describes equipment preparation. (DDR)
Descriptors: Chemistry, Higher Education, Laboratory Equipment, Laboratory Experiments
Peer reviewedStacpoole, Peter W.; Fisher, Waldo R.; Flotte, Terence R.; Geiser, Edward A.; Theriaque, Douglas W.; Hutson, Alan D. – Academic Medicine, 2001
Describes student-led research projects conducted at the University of Florida's General Clinical Research Center. First-year medical and M.D.-Ph.D. students collaborate on a hypothesis-driven experiment involving students as volunteer subjects and investigators. Feedback indicates students find the program useful and that it encourages pursuit of…
Descriptors: Experiments, Hypothesis Testing, Medical Education, Medical Research
Peer reviewedNelson, Jane B. – Science Teacher, 2000
Describes a set of laboratory activities in which students construct a model for the relationship between potential difference (measured in volts) and current (measured in amperes) in a DC circuit with a single resistor. (SAH)
Descriptors: Electric Circuits, Electricity, Inquiry, Laboratory Experiments
Peer reviewedDeutch, Charles E. – American Biology Teacher, 2001
Introduces the chicken wing project in which students assess the microbial contamination of chicken wings for the safety of foods. Uses the colony counting technique and direct wash fluid examination for determining the microbial contamination, and investigates methods to reduce the level of microbial contamination. (Contains 14 references.) (YDS)
Descriptors: Food Standards, Higher Education, Laboratory Experiments, Microbiology
Peer reviewedMills, David A.; Kelley, Kevin; Jones, Michael – American Biology Teacher, 2001
Points out the lack of microscopic images of wine-related microbes. Uses a digital camera during a wine microbiology laboratory to capture student-generated microscope images. Discusses the advantages of using a digital camera in a teaching lab. (YDS)
Descriptors: Computer Software, Educational Technology, Higher Education, Microbiology
Peer reviewedPoggensee, Mark E. – Science Scope, 1996
Presents a fun-filled activity in which students create the perfect Kool-Aid recipe. Incorporates chemistry, cooperative group skills, experimentation, and recording of results. (JRH)
Descriptors: Chemistry, Constructivism (Learning), Cooperative Learning, Middle Schools


