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How Many Miles per Hour Is That Fan Going? An Experiment to Implement Problem Solving in Grades 5-8.
Peer reviewedCochener, David; Cochener, Debbie – School Science and Mathematics, 1993
Describes the process of problem identification, data collection, and generalization in a mathematical experiment to find the speed at which a bug travels at the end of a fan blade. Presents the learning outcomes of the experiment and possible implications of using this teaching method. (MDH)
Descriptors: Elementary Secondary Education, Experiments, Geometric Concepts, Heuristics
Peer reviewedRogis, Jeanne A. – Science Scope, 1991
Presents a class activity in which students use trigonometry to calculate the height attained by a water rocket. Provides a lesson plan that includes a list of materials needed, procedures to carry out the experiment, suggestions to extend the activity, and a reproducible worksheet for the students to register their calculations. (MDH)
Descriptors: Class Activities, Computation, Integrated Activities, Junior High Schools
Peer reviewedRice, Patricia C. – Anthropology and Education Quarterly, 1990
Describes a number of student-focused laboratory exercises that are inexpensive, yet show the scientific character of archaeology. Describes the environmental laboratory exercise which includes the following analysis topics: (1) pollen; (2) earth core; (3) microfaunal; and (4) microwear. Describes the ceramic laboratory which involves…
Descriptors: Anthropology, Archaeology, Course Organization, Experiential Learning
Peer reviewedSchlenker, Richard M.; And Others – Science Activities, 1993
Uses computers to help students identify variables controlling pendulum period. A program written in BASIC for the Apple computer is provided. The activities are useful for developing science skills, mathematics skills, and computer skills. (PR)
Descriptors: Computer Assisted Instruction, Computer Uses in Education, High Schools, Learning Activities
Peer reviewedHepfer, Carol Ely; And Others – American Biology Teacher, 1993
Provides background information on DNA fingerprinting, and describes exercises for introducing general biology students at the high school or college level to the methodology and applications of DNA fingerprinting. (PR)
Descriptors: Biotechnology, College Science, DNA, Genetics
Peer reviewedHershey, David R. – American Biology Teacher, 1993
Describes how lectures, laboratories, and role playing can be used to introduce students to the importance of water quality of water used for plant growth. (PR)
Descriptors: College Science, High Schools, Higher Education, Learning Activities
Peer reviewedBull, 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
Peer reviewedKeller, 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
Peer reviewedBaier, Stephen W. – American Biology Teacher, 1993
Clarifies the issues of animal rights as they effect animal use in research and education through an examination of the current use of animals, a historical look at animal use, and a consideration of the philosophical underpinnings of the animal rights and pro-use viewpoints. (PR)
Descriptors: Biology, College Science, Ethics, High Schools
Ghosh, Rita – Bioscene, 1999
Discusses possibilities for improving undergraduate-level general-education biology courses, particularly through the development of interesting and focused laboratory presentations. Advocates problem-based learning and improving the communication skills of laboratory teaching assistants. (Author/WRM)
Descriptors: Biology, Communication Skills, Higher Education, Laboratory Experiments
Peer reviewedNewton, Len – Science Education International, 1999
Describes some aspects of practical work in science education which can be supported by information and communications technology (ICT). Presents issues to consider when planning ICT-based practical work. (WRM)
Descriptors: Computer Uses in Education, Educational Technology, Elementary Secondary Education, Information Technology
Peer reviewedFullick, Patrick – Education in Science, 1999
Describes a website designed to allow students to publish their own accounts of school science investigations they have carried out. Makes suggestions for initiating computer-mediated student discussions of the nature of science based on information contained in the website. (WRM)
Descriptors: Computer Mediated Communication, Computer Uses in Education, Foreign Countries, Inquiry
Feldman, Alan; Konold, Cliff; Coulter, Bob – Hands On!, 1999
Presents an excerpt from "Network Science, A Decade Later: The Internet and Classroom Learning", a publication based on four years of research that examines the role of technology in fostering inquiry-based approaches to learning. (Author/NB)
Descriptors: Computer Mediated Communication, Computer Uses in Education, Educational Cooperation, Educational Technology
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
Peer reviewedSprung, Barbara – Young Children, 1996
Discusses the importance of science education in early childhood education and describes different approaches in incorporating physics into the preschool curriculum. Provides examples of experiments and encourages parent participation in children's science activities. Concludes by looking at science as an equity issue and emphasizes that science…
Descriptors: Child Development, Cognitive Development, Creative Thinking, Curriculum Design


