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Moore, Grace J. – Science and Children, 1991
Students conducted an experiment to study the plant growth of three Amaryllis plants. Students examined the speed and amount of growth, cross-pollinated the plants to produce seeds, and compared the growth of amaryllis seeds to the growth of onion seeds, a plant in the same family, Amaryllidaceae. (MDH)
Descriptors: Biology, Elementary Education, Plant Growth, Plants (Botany)
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Brehmer, Berndt; Dorner, Dietrich – Computers in Human Behavior, 1993
Discusses experimental work with computer-simulated microworlds as a means for overcoming the tension between laboratory research and field research in psychology. Topics addressed include characteristics of microworlds; examples of microworlds; and three approaches to research with microworlds, including the individual differences approach, case…
Descriptors: Case Studies, Computer Simulation, Field Studies, Individual Differences
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Strader, Marlene K.; Katz, Barry M. – Journal of Social Psychology, 1990
Uses Martin Fishbein's Theory of Reasoned Action to formulate a persuasive communication to influence unclassified U.S. college students to consider a career as a registered nurse. Finds the experimental group shows a significant positive change in beliefs, attitudes, and intentions, unlike the control group exposed to a neutral message only. (NL)
Descriptors: Attitudes, Behavior Theories, Beliefs, Career Choice
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Brown, Judy; Loeb, Marcia J. – American Biology Teacher, 1994
Students establish simple cell developmental cultures to observe the process of spermatogenesis, mitosis, and meiosis in living cells. Using the background information, hints for further exploration, and experimental procedures provided, teachers can easily modify this experiment to suit their students needs. (ZWH)
Descriptors: Biology, Culturing Techniques, Cytology, Insects
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Cherif, Abour – Science Teacher, 1993
Presents and discusses the following six questions to focus students' inquiry experiences: (1) What do you think will happen? (2) What actually happened? (3) How did it happen? (4) Why did this happen? (5) How can we find out which of these hypotheses is the most reasonable? (6) How can you relate the investigation to your daily life? (PR)
Descriptors: High Schools, Inquiry, Learning Activities, Science Activities
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Pankiewicz, Philip R. – Science Teacher, 1992
Presents five hands-on activities that allow students to detect, measure, reduce, and eliminate moisture. Students make a humidity detector and a hygrometer, examine the effects of moisture on different substances, calculate the percent of water in a given food, and examine the absorption potential of different desiccants. (MDH)
Descriptors: Earth Science, Humidity, Measurement, Meteorology
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Thomasson, Kathryn; Lofthus-Merschman, Sheila; Humbert, Michelle; Kulevsky, Norman – Journal of Chemical Education, 1998
Describes several experiments to teach different aspects of the statistical analysis of data using household substances and a simple analysis technique. Each experiment can be performed in three hours. Students learn about treatment of spurious data, application of a pooled variance, linear least-squares fitting, and simultaneous analysis of dyes…
Descriptors: Chemistry, Higher Education, Introductory Courses, Relevance (Education)
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Pich-Otero, Augusto; Molina-Ortiz, Sara; Delaplace, Laura; Castellani, Oscar; Hozbor, Daniela; Sorgentini, Delia; Lodeiro, Anibal – Biochemical Education, 1998
Evaluates the traditional method of intercalating theoretical and seminar classes with laboratory practical work. Proposes a new schedule where students get problem-based learning of theoretical concepts during the first half of the course, and plan and execute a laboratory project during the second half. (Author/CCM)
Descriptors: Biochemistry, Curriculum Development, Higher Education, Laboratory Experiments
Berry, Amanda; Mulhall, Pam; Gunstone, Richard; Loughran, John – Australian Science Teachers' Journal, 1999
Reports on how science teachers might work to improve their students' use of science process skills in ways that will contribute to their meaningful learning during laboratory activities. (Author/WRM)
Descriptors: Foreign Countries, Laboratory Experiments, Learning Strategies, Science Instruction
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Liprandi, Domingo A.; Reinheimer, Orlando R.; Paredes, Jose F.; L'Argentiere, Pablo C. – Journal of Chemical Education, 1999
Presents a relatively short, simple, safe, and visual method for student preparation of chlorine, bromine, and iodine using reactants and glassware that are easy to obtain and handle. (WRM)
Descriptors: Chemical Reactions, Chemistry, Laboratory Equipment, Laboratory Experiments
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Chalmers, Alan – Science and Education, 1999
Discusses recent science studies that focus on experimentation and the implications of these studies for the philosophy of science. Argues that the results of scientific experiments are practical productions that embody practical solutions to some of the key problems that have worried science philosophers. (Author/WRM)
Descriptors: Epistemology, Higher Education, Science Experiments, Science History
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Kamenicek, J.; Melicharek, M. – Journal of Chemical Education, 2000
Describes some simple experiments related to the properties of crystals. Illustrates isomorphism using single crystals of alum. Presents experiments for determining how various mixture compositions affect the growth of salt crystals. (WRM)
Descriptors: Chemistry, Crystallography, Demonstrations (Science), Matter
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Montana, Angel M.; Grima, Pedro M. – Journal of Chemical Education, 2000
Presents a homemade, safe, effective, and inexpensive reactor vessel for ultrasonic horns with applications in microscale experiments in teaching and research laboratories. The reactor vessel is designed for an ultrasonic probe that allows reactions to be run at the microscale level at a wide range of temperatures and under inert atmosphere.…
Descriptors: Chemical Reactions, Chemistry, Higher Education, Instructional Materials
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Sinacore, Joseph; Graf, Erlend H. – Physics Teacher, 2000
Describes equipment used for a magnetic force experiment that is capable of producing precise results but rugged enough to withstand handling by several hundred undergraduate students per year. (WRM)
Descriptors: Demonstrations (Science), Force, Higher Education, Instructional Materials
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Cadmus, Robert R., Jr. – American Journal of Physics, 1999
Describes a procedure that allows undergraduate students to determine the approximate age of the universe using their own data. The experiment requires a relatively small telescope with a modest spectrograph. Includes sample data and calculations. (Contains 11 references.) (Author/WRM)
Descriptors: Astronomy, Evolution, Higher Education, Physical Sciences
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