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Bau, Haim H. – Engineering Education, 1987
Describes a course recently developed at the University of Pennsylvania in mechanical engineering which emphasizes computer applications to laboratory instruction. Discusses the course objectives and explains the computer simulations and experiments utilized in the course. (TW)
Descriptors: College Science, Computer Assisted Instruction, Computer Simulation, Computer Uses in Education
Peer reviewedChew, V. K. – School Science Review, 1986
Reviews the collection of science teaching apparatus that has been acquired by the British Science Museum since its request for such equipment in 1979. Describes the current acquisitions and discusses their use with regard to the historical development of science education. Mentions certain apparatus still being sought for the collection. (TW)
Descriptors: College Science, Foreign Countries, Higher Education, Measurement Equipment
Peer reviewedSievers, Dennis, Ed. – Journal of Chemical Education, 1986
Describes apparatus for use in high school chemistry instruction. Provides instructions and lists of materials needed for building a homemade sand bath for use in experiments that demonstrate the slow evaporation of a solvent. Plans for the construction of a low-cost conductivity apparatus are also included. (TW)
Descriptors: Chemical Reactions, Chemistry, Demonstrations (Educational), Electric Batteries
Peer reviewedDreisbach, Joseph H. – Journal of Chemical Education, 1986
Describes a new biochemistry laboratory course offered at the University of Scranton (Pennsylvania) which is designed to promote scientific curiosity and creativity. Uses a problems-oriented approach which provides students with independent learning experiences. Provides a listing of some of the course's laboratory exercises. (TW)
Descriptors: Biochemistry, College Science, Course Descriptions, Experiential Learning
Peer reviewedLawrenz, Frances; Munch, Theodore W. – Journal of Research in Science Teaching, 1984
Determined if grouping preservice elementary teachers (N=91) in physical science laboratories by their formal reasoning ability affected: (1) their science content achievement; (2) the learning environment in the laboratory; (3) their formal reasoning ability; and (4) the relationship between individuals in a particular group. (Author/JN)
Descriptors: Abstract Reasoning, Academic Achievement, Classroom Environment, Elementary School Teachers
Taris, James Robert; Taris, Louis James – Jossey-Bass, An Imprint of Wiley, 2006
In "Hands-On Science Mysteries for Grades 3-6," the authors connect science to real-world situations by investigating actual mysteries and phenomena, such as the strange heads on Easter Island, the ghost ship "Mary Celeste," and the "Dancing Stones" of Death Valley. The labs are designed to encourage the development…
Descriptors: Scientific Concepts, Investigations, Hands on Science, Elementary School Science
Harley, Diane; Henke, Jonathan; Lawrence, Shannon; McMartin, Flora; Maher, Michael; Gawlik, Marytza; Muller, Parisa – Center for Studies in Higher Education, 2003
As colleges and universities nationwide anticipate enrolling more than two million new students over the next decade, UC Berkeley is exploring options for serving more students, more cost effectively, in large lecture courses. This research project analyzes economic and pedagogical questions related to the use of on-line lecture and laboratory…
Descriptors: Chemistry, Science Laboratories, Enrollment Trends, Cost Effectiveness
Peer reviewedBatata, Al – Journal of Medical Education, 1979
Wright State University School of Medicine uses community pathologists as unpaid volunteers to team teach pathology courses, making possible a small-group approach in the laboratory. The organization of the course and faculty teams, student evaluation, and results of this approach are discussed. (JMD)
Descriptors: College Faculty, Course Organization, Higher Education, Instructional Improvement
Peer reviewedHoward, Robert E.; And Others – Journal of Chemical Education, 1989
Describes a year long laboratory program for third, fourth, and fifth graders. States the goal of the program is to demonstrate what chemistry is, how it is done, and why it is fun and interesting. Provides a syllabus of the experiments and lists educational objectives. (MVL)
Descriptors: Chemical Reactions, Chemistry, Curriculum Development, Elementary Education
Peer reviewedRoychoudhury, Anita; Roth, Wolff-Michael – Journal of Science Teacher Education, 1992
Investigates the use of collaborative learning groups in a physical science course designed for elementary education majors (n=54). Data for the study were 20 video-taped laboratory sessions, the instructor's journal, and the students laboratory reports. Among the conclusions is that the collaborative science laboratories provided insightful…
Descriptors: Cooperative Learning, Education Courses, Education Majors, Educational Research
Peer reviewedSmith, Edward L.; And Others – Journal of Research in Science Teaching, 1993
Teaching strategies associated with a conceptual change model of science teaching were examined in a study of seventh-grade life science teachers (n=13). Greater use of conceptual change teaching strategies was associated with use of the special instructional materials, not with the training. Students in classes where teachers were provided with…
Descriptors: Biology, Concept Formation, Concept Teaching, Educational Research
Sunal, Cynthia Szymanski; Karr, Charles L.; Sunal, Dennis W. – School Science and Mathematics, 2003
Students' conceptions of three major artificial intelligence concepts used in the modeling of systems in science, fuzzy logic, neural networks, and genetic algorithms were investigated before and after a higher education science course. Students initially explored their prior ideas related to the three concepts through active tasks. Then,…
Descriptors: Cooperative Learning, Course Content, Genetics, Science Laboratories
Tweedy, Maryanne E.; Hoese, William J. – Journal of Biological Education, 2005
Many have called for reform of the science curriculum to incorporate the process of inquiry: this has been shown to improve student understanding of biological concepts. Laboratory activities provide excellent opportunities to incorporate inquiry in to the curriculum. This study used a modified version of the Laboratory Task Analysis Instrument…
Descriptors: Task Analysis, Laboratory Manuals, Science Curriculum, College Instruction
Waldrip, Bruce G.; Giddings, Geoffrey J. – 1993
The study reported in this paper, combined qualitative (observation, interview and case study techniques) and quantitative (questionnaire and survey instruments) methods (n=3,182 Grade 10 students). The study (1) examined the relationship of current teaching practices to a number of variables that affected students' learning in science laboratory…
Descriptors: Academic Achievement, Classroom Research, Developing Nations, Foreign Countries
Consumer Product Safety Commission, Washington, DC. – 1982
This investigation of formaldehyde exposure in school laboratories, where its principal source is from preserved biological specimens, was undertaken because of concern over exposure levels reported in the literature. Information was obtained in two ways. A limited survey of schools was conducted to determine extent of students' use of preserved…
Descriptors: Biology, Chemical Industry, College Science, Consumer Protection

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