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Peer reviewedWoloschak, Gayle; And Others – Science Teacher, 1995
Describes experiments to culture cells in a laboratory that provide students with hands-on experience in manipulating cells and a chance to observe cell growth characteristics first hand. Exposes students to sterile technique, cell culture, cell growth concepts, and eukaryotic cell structure. (JRH)
Descriptors: Cytology, Hands on Science, Science Activities, Science Education
Peer reviewedAltman, Thomas C. – Physics Teacher, 1992
Describes a method to create holograms for use in different interferometry techniques. Students utilize these techniques in experiments to study the structural integrity of a clarinet reed and the effects of temperature on objects. (MDH)
Descriptors: High Schools, Higher Education, Holography, Lasers
Damasio, Antonio R., Damasio, Hanna – Scientific American, 1992
Discusses the advances made in understanding the brain structures responsible for language. Presents findings made using magnetic resonance imaging (MRI) and positron emission tomographic (PET) scans to study brain activity. These findings map the structures in the brain that manipulate concepts and those that turn concepts into words. (MCO)
Descriptors: Biology, Classical Conditioning, Concept Formation, Definitions
Peer reviewedWinters, Loren – Physics Teacher, 1992
Describes a photogate electronic flash trigger that synchronizes flash discharge with high-speed events. Presents a photographic study of a high-speed collision demonstrating the passage of a BB through an elastic strip. Provides the schematic of the delay circuit utilized in the trigger. (MDH)
Descriptors: Demonstrations (Educational), Electric Circuits, Electronic Equipment, Motion
Peer reviewedMolitoris, Joseph J. – Journal of College Science Teaching, 1992
Discusses the use of computers in physics education as a tool in individual student research projects for simulating both simple and more complicated phenomena. Reviews IBM compatible software associated with computer-assisted instruction in physics education. (PR)
Descriptors: College Science, Computer Assisted Instruction, Computer Software Reviews, Higher Education
Peer reviewedGreenslade, Thomas B. – Physics Teacher, 1993
Uses diagrams and text to illustrate the use of Lissajous figures (the figures that are traced out when two simple harmonic motions are combined at right angles to each other) in teaching basic physics concepts. Covers the mathematics of the Lissajous Figure; demonstrating Lissajous Figures; and a typical class. (ZWH)
Descriptors: Demonstrations (Science), Diagrams, Geometric Constructions, High Schools
Peer reviewedUretsky, Jack L. – Physics Teacher, 1993
Describes a community-college curriculum that incorporates Socratic Dialogue Inducing (SDI) laboratories into a new calculus-based preengineering physics sequence. SDI allows for group discussion labs that emphasize the concepts being taught in the lectures. (ZWH)
Descriptors: Community Colleges, Group Discussion, Higher Education, Mathematics Instruction
Peer reviewedLindberg, Dormalee Harrington – Childhood Education, 1990
Students who are involved in hands-on science activities are enabled to learn the processes of science, and thus become scientifically literate. (DG)
Descriptors: Classroom Techniques, Discovery Learning, Elementary Education, Elementary School Science
Peer reviewedGooding, David – Science, Technology, & Human Values, 1990
Introduced is a notation to map out an experiment as an active process in a real-world environment and display the human aspect written out of most narratives. Comparing maps of accounts can show how knowledge-construction depends on narrative reconstruction. Emphasized are nonverbal and procedural aspects of discovery and invention. (KR)
Descriptors: College Science, Discovery Processes, Experiments, Higher Education
Peer reviewedBaro, John A.; And Others – Journal of Optometric Education, 1991
InSight, a series of 10 HyperCard stacks, provides optometry students with first-hand experience with a number of visual phenomena and a variety of experimental data acquisition and analysis techniques. Each stack contains background information on the experiment topic, instructions, references to the literature, and questions to be answered.…
Descriptors: Computer Assisted Instruction, Computer Software, Curriculum Design, Data Collection
Peer reviewedLeonard, William H. – Journal of Research in Science Teaching, 1992
An interactive computer/videodisc learning approach to the conventional laboratory approach for learning biology concepts and science process skills were compared. The two approaches appear equivalent when evaluated by traditional learning outcomes, but the interactive videodisc strategy was significantly more time efficient than a traditional…
Descriptors: Biology, Cognitive Development, Concept Formation, Higher Education
Peer reviewedWalker, J. R. L. – Biochemical Education, 1991
Presents a hand-out given to students at the University of Canterbury, New Zealand, concerning expectations and guidelines for finishing laboratory reports. Topics covered are accuracy, data collection, and write-up format that includes introduction, materials utilized, procedures, results, discussion, conclusion, tables and illustrations, units…
Descriptors: College Science, Foreign Countries, Higher Education, Laboratory Experiments
Peer reviewedJones, Brian – Physics Teacher, 1993
Presents a laboratory exercise to reinforce the concepts of conductivity and resistance. Students measure resistance over rolled out Play-Doh of differing lengths and widths using the four-point resistance measurement method. (MDH)
Descriptors: Class Activities, Electricity, High Schools, Learning Activities
Peer reviewedEaly, Julie B. – Science Teacher, 1991
Demonstrations in which glyoxal may be substituted for formaldehyde, a known carcinogen, are presented. An acid-base clock reaction and a copper mirror on the inside of a test tube are described. Directions for the demonstrations and safety precautions are included. (KR)
Descriptors: Chemical Reactions, Chemistry, Demonstrations (Educational), Laboratory Experiments
Peer reviewedDrake, Lon – Journal of College Science Teaching, 1993
Explains that trial and error learning is an important way for children and adults to learn. Open-ended activities have great opportunities for error and eventual feedback for error reduction. (PR)
Descriptors: College Science, Error Correction, Feedback, Higher Education


