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Peer reviewedMorris, Paul – Journal of College Science Teaching, 1990
Discussed are some of the reasons for and arguments against teaching the history of physics to physics majors. The course goals, philosophy, and content are described. Sources of material are listed. An outline of the course content, and a bibliography used to develop the course are included. (CW)
Descriptors: College Science, Course Descriptions, Educational Improvement, Educational Objectives
Peer reviewedScience and Children, 1990
Reviewed are seven computer software packages for IBM and/or Apple Computers. Included are "Windows on Science: Volume 1--Physical Science"; "Science Probe--Physical Science"; "Wildlife Adventures--Grizzly Bears"; "Science Skills--Development Programs"; "The Clean Machine"; "Rock Doctor";…
Descriptors: Computer Assisted Instruction, Computer Software Reviews, Computer Uses in Education, Earth Science
Peer reviewedSandin, T. R. – Physics Teacher, 1990
Defines and discusses jerk, the time rate of change of the acceleration. Presents some cases of jerk with mathematical expressions. Provides questions and problems for classroom use. Lists seven references. (YP)
Descriptors: Acceleration (Physics), College Science, Higher Education, Laboratory Experiments
Peer reviewedGoldberg, Howard; Wagreich, Philip – Science and Children, 1989
Describes a lesson in science in which students conduct an experiment involving quantitative variables. Outlines the scientific method and the use of ratios to solve proportional reasoning problems. (RT)
Descriptors: Elementary School Mathematics, Elementary School Science, Graphs, Interdisciplinary Approach
Peer reviewedShirah, Sue; Dorman, Mildred M. – Science and Children, 1989
Described are science activities in which students concentrate on their senses and make discoveries with their eyes, ears, noses, mouths, and hands. Suggested experiments include activities involving cooking, tasting, observing, floating and sinking objects, making rain, and stringed musical instruments. (RT)
Descriptors: Biological Sciences, Elementary School Science, Experiential Learning, Interdisciplinary Approach
Peer reviewedBarrow, Lloyd H. – Science and Children, 1989
Describes the purpose and preparation of a science unit box which contains materials, ideas, and resources for more effective science teaching. Lists and explains the 14 basic components that each box should contain including behavioral objectives, manipulatives, science concept and process list, and lesson plans. (RT)
Descriptors: Curriculum Development, Elementary School Science, Experiential Learning, Instructional Improvement
Peer reviewedScience and Children, 1989
Describes an underwater expedition which will allow students to participate in activities without being physically present. Provides a list of participating museums and examples of activities from curriculum materials which include a poster, bathymetric map, and 25 lessons. (RT)
Descriptors: Biological Sciences, Elementary School Science, Energy, Experiential Learning
Peer reviewedShaw, G. W.; And Others – School Science Review, 1989
Provides a reading list for A- and S-level biology. Contains several experiments and demonstrations with topics on: the intestine, bullock corneal cells, valences, the science of tea, automated hydrolysis, electronics characteristics, bromine diffusion, enthalpy of vaporization determination, thermometers, pendulums, hovercraft, Bernoulli fluid…
Descriptors: Astronomy, Biology, Chemical Nomenclature, Chemistry
Peer reviewedMagyar, Elaine; Magyar, James G. – Journal of Chemical Education, 1989
Investigates the four week chemistry program in a summer program in science and mathematics. Identifies weekly topics for the program: (1) color and visible spectroscopy; (2) UV spectroscopy, fluorescence, and chemiluminescence; (3) IR and NMR spectroscopy; and (4) lists 12 individual projects. (MVL)
Descriptors: Chemical Analysis, Chemistry, Course Content, Gifted
Peer reviewedSpellman, Susan O. – Science and Children, 1989
Outlines steps for involving problem students in discovery-oriented science activities. States that planning is the basis for an effective lesson. (RT)
Descriptors: Class Organization, Classroom Techniques, Elementary School Science, Experiential Learning
Peer reviewedWhipple, Nona; Whitmore, Sherry – Science and Children, 1989
Presents a many-faceted learning approach to the study of crystals. Provides instructions for performing activities including crystal growth and patterns, creating miniature simulations of crystal-containing rock formations, charcoal and sponge gardens, and snowflakes. (RT)
Descriptors: Crystallography, Earth Science, Elementary School Science, Experiential Learning
Peer reviewedVanderZee, Chester – American Biology Teacher, 1989
Presents a demonstration that gives students an opportunity to observe how the composition of food can be analyzed. Outlines materials, directions, and background enrichment information. Cites additional references for use. (RT)
Descriptors: Biology, Chemistry, Experiential Learning, Food
Peer reviewedDaoyi, Zhang – Impact of Science on Society, 1988
Describes how well-known scientists in China are attempting to win the understanding and trust of the general public as well as gaining prestige and social influence while promoting the cause of science. Measures employed include: the establishment of science institutions; professional organizations; events; the media; and science promotion…
Descriptors: College Science, Exhibits, Foreign Countries, Futures (of Society)
Peer reviewedOlesen, Dorte – Impact of Science on Society, 1988
Describes the diversity of channels through which the cause of science is being promoted and the special efforts being made to involve females in science and technology. Topics include the background of science popularization, tradition, innovation, television programs, science museums, the role of universities, youth activities, computers, and…
Descriptors: College Science, Females, Foreign Countries, Futures (of Society)
Peer reviewedGoh, N. K.; And Others – Journal of Chemical Education, 1989
Provided is a model to depict how the development of process skills can be systematically achieved and in turn determine the students' achievement in science practicals. Modified laboratory instruction is compared with conventional laboratory instruction. The results of field testing on 164 ninth grade subjects are described. (MVL)
Descriptors: Chemistry, Grade 9, Instructional Effectiveness, Laboratories


