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Bull, Linda A. – Science Scope, 1993
Describes having students write lab reports that concentrate more on writing and independent thought. Students take the role of scientists writing about their findings for publication. The teacher acts as a journal editor, reading the reports and either accepting them for publication or suggesting ways for improvement. (PR)
Descriptors: Junior High Schools, Learning Activities, Middle Schools, Research Reports

Keller, J. David – Science Activities, 1993
Presents a problem-solving activity in which students determine the effects on the water level in a pool when rocks are removed from a boat floating in the pool and placed into the water. Students discuss the problem, design an experiment to test solutions, conduct the experiment, and draw conclusions. (MDH)
Descriptors: Debate, Density (Matter), Problem Solving, Science Activities
Carlson, Gaylen R. – CSTA Journal, 1998
Describes two science activities concerning water density and shares an idea for combining these activities into a third, completely new activity. Demonstrates the joy of rekindling the spirit of scientific thinking in a typical classroom. (PVD)
Descriptors: Demonstrations (Science), Density (Matter), Hands on Science, Higher Education
Gipps, John – Australian Science Teachers' Journal, 1999
Describes a procedure for the datalogging of microbial population densities. (WRM)
Descriptors: Computer Uses in Education, Foreign Countries, Graphs, High Schools
Lederman, Norman G.; Lederman, Judith S. – Science Teacher, 2004
Current reform documents place a strong emphasis on students' understandings of the nature of science (NOS). Interestingly, the importance of this educational outcome is not new and has been agreed upon as important by most scientists and science educators for the past 100 years. Despite numerous attempts, including the major curricular reform…
Descriptors: Science Education, Curriculum Development, Science Curriculum, Knowledge Level
Gibbons, Patrick C.; McMahon, Ann P.; Wiegers, John F. – Journal of Elementary Science Education, 2003
"Hands-on Current Electricity" gives K-8 teachers the opportunity to experience inquiry learning about current electricity by (1) experimenting with current electricity through a variety of activities, (2) discovering preconceived mental models of electricity used to understand their observations, (3) creating new mental models that have greater…
Descriptors: Concept Formation, Scientific Concepts, Energy, Faculty Development
Donovan, Arthur – 1976
This seminar paper explores the role that historians of technology can play in the reevaluation of the relationship between technical and social change. Historians of technology need to ask questions about the nontechnological aspects of society which have influenced technical change in the past. In the realm of ideas, historians should check…
Descriptors: Cultural Influences, Higher Education, Historiography, Natural Sciences

McCaughan, J. B. T. – Physics Education, 1987
Uses capillarity as an example of a problem in physics which has been explained mathematically in two different ways. Argues that only one explanation is indeed valid and demonstrates this opinion through experimentation and discussions. Proposes that mathematics should be used in physics as a tool to predict, not to explain. (TW)
Descriptors: College Science, Concept Formation, Epistemology, Higher Education

Cross, R. T.; Pitekethly, A. – International Journal of Science Education, 1988
Reports on an attempt to bring about conceptual change in children's concept of speed by the teaching of the science of speed emphasizing an integrated hands-on experience. Reports that it may be possible to modify naive conceptions by teaching that targets particular concepts. (Author/YP)
Descriptors: Cognitive Processes, Concept Formation, Elementary School Science, Foreign Countries

Atwater, 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

Davies, Wayne A. – Chemical Engineering Education, 1989
Described is a reliable and predictable laboratory experiment which represents the result of an integrated approach to design with an emphasis on teaching. Notes the flat-celled rig has logged over 100 hours service in 2 years without any problems. (MVL)
Descriptors: Chemical Analysis, Chemical Engineering, Chemical Reactions, Chemistry

Witenoff, Shalamit; Lazarowitz, Reuven – Research in Science and Technological Education, 1993
Presents samples of educational material adapted for laboratory use on the subject of the pH scale, dilution skills, and their relevance to biology. The experiments were developed for use in both ninth-grade heterogeneous and tracked classes in biology. Students were assessed for academic achievement in relation to their operational reasoning…
Descriptors: Academic Achievement, Biology, Developmental Stages, Educational Research

Benathen, Isaiah A. – American Biology Teacher, 1993
The purposes of this paper are (1) to demonstrate that medical microbiology laboratory exercises should be presented with a focus on medical applications, not just traditional microbiology and (2) that exercises devoted to differential diagnostic decision making can be used to enhance the problem solving of students. (PR)
Descriptors: Bacteria, Biology, College Science, Decision Making
Shevick, Ed; Shevick, Florence, Ed. – 1995
This book contains innovative hands-on science laboratory activities designed to teach 4th- through 9th-graders about the environment. The background materials and instructions included in each activity are written for students to work together in teams. Activities cover subjects such as smog, symbiosis, soil, trees, ecosystems, recycling,…
Descriptors: Air Pollution, Elementary Secondary Education, Environmental Education, Group Activities
Wilson, Karla G. – 1996
This curriculum unit on the ozone is intended for high school students and contains sections on environmental science and chemistry. It has been structured according to a learning cycle model and contains numerous activities, some of which are in a cooperative learning format. Skills emphasized include laboratory procedures, experimental design,…
Descriptors: Air Pollution, Chemical Reactions, Chemistry, Conservation (Environment)