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Tinker, Robert F. – Physics Teacher, 1981
Discusses the use of microcomputers as a universal instrument to replace more expensive instrumentation in many traditional labs. Describes the availability of microcomputers as inexpensive educational tools which can be used successfully in labs with minimal requirements on the computer. (SK)
Descriptors: College Science, Computer Oriented Programs, Computers, Higher Education

Gottlieb, Herbert H., Ed. – Physics Teacher, 1981
Describes a set of equipment which can be mounted on magnetic chalkboards or other ferromagnetic surfaces, useful for both experiments and demonstrations in mechanics, including center of mass experiments, and force vector experiments using string, spring scales, weights, and pulleys. (SK)
Descriptors: Chalkboards, College Science, Demonstrations (Educational), Display Aids

Dwyer, Terry M.; Fleming, John; Randall, James E.; Coleman, Thomas G. – Advances in Physiology Education, 1997
Presents two examples of laboratory exercises using the World Wide Web for first-year medical students. The first example introduces the physical laws that apply to osmotic, chemical, and electrical gradients and a simulation of the ability of the sodium-potassium pump to establish chemical gradients and maintain cell volume. The second module…
Descriptors: Active Learning, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education

Luft, Julie A.; And Others – Science Scope, 1997
Describes a unit that applies constructivist teaching methods to a science concept. Contains mini-lessons in math that present to students information that they need to know in order to perform their experiments. Gives students the opportunity to construct their own knowledge about the natural phenomenon of light as they apply their mathematical…
Descriptors: Constructivism (Learning), Integrated Curriculum, Interdisciplinary Approach, Intermediate Grades

Albee, David; Jones, Edward – Journal of Chemical Education, 1989
Discusses the use of computers in chemistry courses at the United States Military Academy. Provides two examples of computer projects: (1) equations of state, and (2) solving for molar volume. Presents BASIC and PASCAL listings for the second project. Lists 10 applications for physical chemistry. (MVL)
Descriptors: Chemical Nomenclature, Chemistry, College Science, Computer Software

Hilkowitz, Marlene A.; Dowden, Edward – American Biology Teacher, 1989
Describes a science experiment in which the heartbeats of mammals can be counted and graphed as measurable data by the computer. Provides information on materials needed, pre-lab activity worksheet, and follow-up activities. (RT)
Descriptors: Biology, Computer Uses in Education, Experiential Learning, Laboratory Procedures

Roffia, Sergio; And Others – Journal of Chemical Education, 1988
Reports two electrochemical demonstrations. Uses a hydrogen-oxygen fuel cell to power a clock. Includes description of methods and materials. Investigates the "potato clock" used with different fruits. Lists emf and current for various fruit and electrode combinations. (ML)
Descriptors: Chemical Reactions, Chemistry, College Science, Demonstrations (Educational)

Murphy, Patricia – Physics Education, 1988
Describes the Assessment of Performance Unit (APU) Science project. Discusses the findings including perceptions of problems, procedural understanding, control of variables, and measurement strategies. Suggests a change from traditional learning strategies to more student-centered ones. (YP)
Descriptors: Elementary School Science, Elementary Secondary Education, Foreign Countries, Laboratory Experiments

Welke, Ed; Henderson, Bobbie – Science Activities, 1992
Presents an activity that models the changes in the concentration of carbon dioxide gas in the atmosphere during the last 200 years as determined from glacial records. (PR)
Descriptors: Earth Science, Environmental Education, Junior High Schools, Learning Activities

Brown, Vernon Max; Harrell, James Anthony – Journal of Geological Education, 1991
A new classification of rocks that requires no tools other than a hand lens and that is both comprehensive and informative is described. Each of the three main rock groups is treated in two-dimensional, rectangular charts with additional appended boxes that provide optional mineralogical and textural terms that can be used in rock names. (PR)
Descriptors: Classification, College Science, Earth Science, Field Trips

Kutscher, Eugene – Science Activities, 1993
Describes an activity where students generate a plan and test their ideas on trying to cope with a small oil spill. (PR)
Descriptors: Biology, Earth Science, Elementary Secondary Education, Environmental Education

Kelly, Paul R. – Journal of Educational Technology Systems, 1998
Discusses computer simulations in science education and presents the results of a study of 39 ninth-grade earth-science students to determine the effects of computer-simulated mineral identification activities on test performance. Results indicated no difference in test scores between the group using real minerals and the group using a computer…
Descriptors: Academic Achievement, Comparative Analysis, Computer Assisted Instruction, Computer Simulation

Toth, Eva Erdosne; Klahr, David; Chen, Zhe – Cognition and Instruction, 2000
Developed and tested a cognitive theory-based intervention teaching a procedure for designing simple controlled experiments to fourth graders. Found that the intervention produced significant gains in students' ability to create controlled experiments, provide valid justifications for their experiments, and evaluate experiments designed by others.…
Descriptors: Classroom Techniques, Educational Research, Educational Theories, Elementary Education

Linn, Marcia C.; Eylon, Bat-Sheva – Journal of Science Education and Technology, 2000
Contrasts spontaneous and reflective knowledge integration instruction delivered using a computer learning environment to enhance understanding of displaced volume. Distinguishes the impact of instruction on students who believed scientific phenomena are governed by principles (cohesive beliefs) versus students who believed that science is a…
Descriptors: Animation, Attitudes, Computer Software, Evaluation
Sharp, Janet; Hoiberg, Karen; Chumbley, Scott – Science and Children, 2003
This standard lesson on identifying salt and sugar crystals expands into an opportunity for students to develop their observation, questioning, and modeling skills. Although sugar and salt may look similar, students discovered that they looked very different under a magnifying glass and behaved differently when dissolved in water. In addition,…
Descriptors: Chemistry, Science Curriculum, Grade 5, Teaching Methods