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Osuga, Hanako; Foster, Jason; Chowning, Jeanne Ting – Science Teacher, 2022
Increasingly, science teachers are seeking phenomena that will allow them to explore both scientific content and socially relevant issues. The authors describe a series of lessons that (1) model the exoneration of wrongly convicted individuals using the science of DNA analysis and (2) contextualize individual cases within a larger system where…
Descriptors: Genetics, Crime, Social Justice, Laboratory Procedures
Eyster, Linda – Science Teacher, 2010
Although science is a creative endeavor (NRC 1996, p. 46), many students think they are not encouraged--or even allowed--to be creative in the laboratory. When students think there is only one correct way to do a lab, their creativity is inhibited. Park and Seung (2008) argue for the importance of creativity in science classrooms and for the…
Descriptors: Creativity, Problem Solving, Laboratory Experiments, Laboratory Training
Vandermeer, Sarah – Science Teacher, 2010
Electrospinning has been used to create nanofibers for filtration devices, tissue engineering, and protective clothing. Although electrospinning is now widely studied, because of the expensive equipment required and the advanced nature of this topic, it is not commonly found in high school science labs. Through grants from the Ohio State…
Descriptors: Honors Curriculum, Physics, Electromechanical Technology, Laboratory Safety

Olney, David – Science Teacher, 2001
Introduces a chemistry lab activity that is suitable for almost any level of science class. Provides students with five solutions and asks them to determine if they have five distinct compounds or if any are the same. (YDS)
Descriptors: Chemistry, Laboratory Procedures, Problem Solving, Science Activities
Ramsey, Linda; Deese, W. C.; Cox, Cathi – Science Teacher, 2007
A typical card sort is an activity in which students are given a set of cards with a single concept written on each card and asked to organize the cards by grouping related concepts. The nontraditional card sorts described in this article foster critical thinking and add elements of inquiry as students use them to develop flowcharts for complex…
Descriptors: Laboratory Procedures, Critical Thinking, Science Instruction, Scientific Concepts

Demchick, Paul H. – Science Teacher, 1984
Describes an inexpensive and convenient way to solve the problem of maintaining the proper humidity needed in incubation chambers. (JN)
Descriptors: Biology, Botany, Humidity, Laboratory Procedures

Shannon, Dan C. – Science Teacher, 1984
Discusses a laboratory exercise (suitable for the day before spring vacation) involving use of a hard-boiled egg to stimulate student responses to questions on the effect of adding salt to the water, formation of iron sulfide, ease of peeling, and gas laws. Additional experiments are included. (BC)
Descriptors: Chemical Reactions, Chemistry, Laboratory Procedures, Science Experiments

Nelson, Jane B. – Science Teacher, 1998
Describes a research-based activity for high school physics students in which they build an LC circuit and find its resonant frequency of oscillation using an oscilloscope. Includes a diagram of the apparatus and an explanation of the procedures. (DDR)
Descriptors: Electric Circuits, Hands on Science, High Schools, Laboratory Procedures

Adams, Stephen – Science Teacher, 1998
Describes a project in which students create wind machines to harness the wind's power and do mechanical work. Demonstrates kinetic and potential energy conversions and makes work and power calculations meaningful. Students conduct hands-on investigations with their machines. (DDR)
Descriptors: Data Collection, Energy, Hands on Science, Laboratory Procedures

Corner, Thomas R. – Science Teacher, 1984
Errors in determining the effectiveness of mouthwashes, disinfectants, and other household products as antibacterial agents may result from using broth cultures and/or irregularly shaped bits of filter paper. Presents procedures for a better technique and, for advanced students, two additional procedures for introducing quantitative analysis into…
Descriptors: Culturing Techniques, Laboratory Procedures, Microbiology, Science Education

Boynton, John E.; Small, Eugene B. – Science Teacher, 1984
Describes new methods of collecting and examining ciliates, particularly those found in the sediments of lakes, rivers, and estuaries. Discusses extraction methods in preparation for observations in the classroom. Suggests investigations of ciliate ecology as an area of increasing research interest. (JM)
Descriptors: Animals, Biology, Ecology, High Schools

Sumrall, William J.; Richardson, Denise; Yan, Yuan – Science Teacher, 1998
Explains a series of laboratory activities which employ a microwave oven to help students understand word problems that relate to states of matter, collect data, and calculate and compare electrical costs to heat energy costs. (DDR)
Descriptors: Elementary Secondary Education, Hands on Science, Heat, Laboratory Procedures

Lamb, William G. – Science Teacher, 1984
Describes an experiment involving the preparation of copper iodide that gives stoichiometric results. Materials needed and procedures are discussed along with ideas on different ways to analyze the data. Pertinent chemical equations are presented. (BC)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, High Schools

Lamb, William G. – Science Teacher, 1985
Explains a projectile motion experiment involving a bow and arrow. Procedures to measure "muzzle" velocity, bow elastic potential energy, range, flight time, wind resistance, and masses are considered. (DH)
Descriptors: Force, High Schools, Laboratory Procedures, Motion

Strange, Arthur – Science Teacher, 1983
Describes a method of staining that makes details clear and dispenses with the time-consuming use of chemicals. The Rheinberg differential color illumination, (or optical staining) is strikingly beautiful and is especially useful with living or nonliving unstained, transparent specimens. Color photographs of sample specimens are included.…
Descriptors: Biology, Laboratory Procedures, Microscopes, Optics