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Peer reviewedWilliams, Harvey; And Others – Science Teacher, 1979
Discusses briefly Piaget's views on intellectual development as related to science teaching. Describes intellectual activities observed in science classrooms and shows how specific science lessons can be designed to encourage cognitive development. (GA)
Descriptors: Cognitive Development, Cognitive Processes, Experiential Learning, Learning
Peer reviewedVoltmer, Rita K. – Hoosier Science Teacher, 1988
Gives some ideas for studying and growing crystals in the classroom and home as well as some background information to help integrate these ideas into an existing science curriculum. Discusses three activities including common household materials and laboratory procedures. (CW)
Descriptors: Chemistry, Crystallography, Earth Science, Experiential Learning
Peer reviewedRaborn, Diane Torres; Daniel, Mary Jo – TEACHING Exceptional Children, 1999
Describes the use of a mystery substance, Oobleck, in a graduate-level course for secondary special-education teachers that considered ways to teach science. Principles of science instruction, teaching students with diverse disabilities, instructional congruence, student assessment, and modifications are addressed. (DB)
Descriptors: Disabilities, Educational Principles, Experiential Learning, Graduate Study
Oller, Anna R. – American Biology Teacher, 2006
Forensic science courses encompasses the disciplines of biology, chemistry, mathematics, and physics, which provides an opportunity for students to become engaged in all content areas within one course. The inquiry-based learning environment allows visualization of results almost immediately, facilitating student interest. The laboratory…
Descriptors: Hands on Science, Inquiry, Laboratory Experiments, Science Education
Harpole, Sandra H. – 1987
Some researchers have argued that it is important to match teaching styles with students' learning styles, although a relatively small amount of research has been done on learning styles in science. This study focused on the differences between male and female secondary school chemistry students in an effort to determine the relationship of gender…
Descriptors: Academic Achievement, Chemistry, Classroom Communication, Cognitive Style
Peer reviewedKirschner, Paul A. – Science and Education, 1992
Discusses the inherent flaws in considering and using the epistemology of the natural sciences as equivalent to a pedagogic basis for teaching and learning in the natural sciences. Discusses the difference between practicing science and learning to practice science. Concludes with the presentation of three new motives for the use of laboratory…
Descriptors: Epistemology, Experiential Learning, Investigations, Laboratory Experiments
Peer reviewedBeatty, Joseph H. – Journal of Chemical Education, 1986
Describes a high school chemistry student's research project in which limonene was isolated from the oil of lemons and oranges. Outlines the students' tests on the use of this chemical as an insecticide. Discusses possible extensions of the exercises based on questions generated by the students. (TW)
Descriptors: Chemistry, Chromatography, Experiential Learning, Insecticides
Peer reviewedDreyfus, Amos – Research in Rural Education, 1986
The educational potential of agriculture stems from the diversity and tangibility of its components. As a science based human activity, it may provide the educator with a unique combination of educational opportunities in a context which is authentic and accessible to the pupil and to the teacher. (JHZ)
Descriptors: Agricultural Education, Agriculture, Curriculum Development, Experiential Learning
Peer reviewedAtwater, Mary M. – Science Activities, 1988
Presents several fun activities and teacher demonstrations which simplify terms and condense science concepts for teaching about the lever, wedge, wheel and axle, screw, pulley, and the inclined plane. Includes objectives, materials, procedures, suggested follow-up assignments, and diagrams. (RT)
Descriptors: Demonstrations (Educational), Experiential Learning, Laboratory Procedures, Motivation Techniques
Schoen, Jerome; Berman, Paul – 1987
This document provides descriptions of lessons, activities, and laboratory experiments to be used in a course on basic laboratory techniques for students in biology and small animal care. These learning experiences are designed to be completed during one class period daily for approximately 70 days per semester. (It is assumed that this would…
Descriptors: Animals, Biology, Course Content, Course Descriptions
Downs, Gary E. – 1985
Stressing the use of hands-on activities, this guide contains ideas and suggestions for teaching model rocketry to junior high school students. It is intended to be used as a supplemental unit to the existing science curriculum. The unit includes a listing of goals and objectives that are designed to be used by the teacher to correlate this unit…
Descriptors: Aerospace Education, Experiential Learning, School Safety, Science Activities
Peer reviewedBourque, Donald R.; Carlson, Gaylen R. – Journal of Chemical Education, 1987
Reports on a study that examined and compared the cognitive effectiveness of a traditional hands-on laboratory exercise with a computer-simulated program on the same topic. Sought to determine if coupling these formats would provide optimum student comprehension. Suggests hands-on exercises be followed by computer simulations as postlaboratory…
Descriptors: Chemistry, Cognitive Measurement, College Science, Comprehension
Tyler, Vicki, Ed. – 1989
This book, addressed to students for their independent use as well as to teachers as a supplement to the standard texts, contains nearly 100 practical science experiments that cover a wide range of subjects at different grade and ability levels. It is designed to involve students in active scientific experimentation, demonstrations, and projects…
Descriptors: Astronomy, Biology, Botany, Chemistry
Peer reviewedChoi, Byung-Soon; Gennaro, Eugene – Journal of Research in Science Teaching, 1987
Reports on a study which compared the effectiveness of microcomputer simulated experiences with that of parallel, hands-on laboratory instruction for teaching the concept of volume displacement to junior high school students. Results indicated that computer simulated experience were as affective as hands-on laboratory experiences. (TW)
Descriptors: Computer Assisted Instruction, Computer Simulation, Computer Uses in Education, Experiential Learning
Peer reviewedScaife, Charles, W. J. – Journal of Chemical Education, 1986
Describes a two-week concentrated laboratory course in chemistry offered by Union College (New York) for middle school students. Provides the objectives of the course and a listing of experiments done by the students. Promotes the use of experiential approaches rather than lengthy lectures and discussions. (TW)
Descriptors: Chemistry, College School Cooperation, Experiential Learning, Grade 6
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