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Tamir, Pinchas; Lunetta, Vincent N. – American Biology Teacher, 1978
Presents task analysis of the laboratory inquiries of the BSCS Yellow Version. Three important deficiencies are identified: (1) Students do not identify and formulate problems; (2) Students get little chance to conduct investigations; and (3) Post-laboratory discussions are not indicated. (MA)
Descriptors: Biology, Curriculum, Laboratory Experiments, Measurement Techniques
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Shacham, Mordechai; Cutlip, Michael B. – Computers and Education, 1988
Discussion of laboratory experiment simulation in science and engineering education focuses on the need for authoring systems that can be used to create simulations. An editor for a simulator model containing variables and mathematical equations is presented, and screen displays and data analysis are discussed. (LRW)
Descriptors: Authoring Aids (Programing), Computer Assisted Instruction, Computer Graphics, Computer Simulation
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Jesberg, Robert O.; Dowden, Edward – Science Teacher, 1986
Explains how computer and game port interfacing reduces the time required for data collection and organization and also stimulates student interest in science laboratory exercises. Illustrates this approach through a description of a population-variation lab. Includes diagrams for the construction of the interface box. (ML)
Descriptors: Computer Assisted Instruction, Ecology, Laboratory Experiments, Problem Solving
Chatfield, Douglas C.; Cruse, Bradley H. – Collegiate Microcomputer, 1986
Describes implementation of computer simulation to aid in training psychology students in research methodology. Four skills required in research are reviewed; the simulation's context and the software used are described; and student activities, including submission of articles to online class journals and students' responses to the method, are…
Descriptors: Computer Simulation, Computer Software, Experimental Psychology, Higher Education
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
In this activity, students conduct several simple lab activities to learn about the five fundamental load types that can act on structures: tension, compression, shear, bending, and torsion. In Part One, students play the role of molecules in a beam subject to various loading schemes. In Part Two, students break foam insulation blocks by applying…
Descriptors: Engineering, Experiential Learning, Force, Hands on Science
2000
This high school physics computer software resource is a systems and control simulator that covers the topics of electricity, electronics, mechanics, and programming. Circuits can easily be simulated on the screen and electronic and mechanical components can be combined. In addition to those provided in Crocodile Technology, a student can create…
Descriptors: Computer Assisted Instruction, Computer Simulation, Demonstrations (Science), Electricity
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Cassen, T.; Forster, Leslie – Journal of Chemical Education, 1973
Describes the basic spirit and details of a one-semester lab-oriented chemistry course designed within a flexible, self-paced format for elementary education majors. Included are a syllabus and a competency measure. (CC)
Descriptors: Chemistry, Competency Based Teacher Education, Course Content, Curriculum Guides
Becht, Paul A. – Sci Educ, 1970
Describes the program in a summer institute for 25 junior high school science teachers. Innovations used in the program included lecture-demonstrations, small group discussions, open-ended laboratories, and viewing physics films. Problems that arose are reviewed. The method of evaluating the teachers is described. (LC)
Descriptors: Course Descriptions, Course Evaluation, Inquiry, Inservice Teacher Education
Pace, Judy; Lau, Richard S. – J Health Phys Educ Recreation, 1969
Descriptors: Basic Skills, Elementary Education, Laboratory Experiments, Lecture Method
Shinn, Glen C.; And Others – Agricultural Education Magazine, 1983
The theme articles present strategies for achieving quality laboratory projects in vocational agriculture. They describe fundamentals of the construction of quality projects and stress the importance of quality instruction. (JOW)
Descriptors: Agricultural Education, Educational Finance, Educational Quality, Laboratory Experiments
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Madrazo, Gerry M., Jr.; Hounshell, Paul B. – American Biology Teacher, 1979
Ideas are given for including fungi in classroom activities for high school biology students. A discussion on the science of taxonomy leads into a discussion on the position of fungi in the five kingdom classification scheme of organisms. Suggestions are given for observing their growth and development. (SA)
Descriptors: Biological Sciences, Classification, Culturing Techniques, Laboratory Experiments
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Rosenthal, Dorothy B. – American Biology Teacher, 1979
Presents a method for teaching high school students about evolution at the genus level as well as at higher taxons. Activities for a laboratory project and laboratory techniques are described. (SA)
Descriptors: Biological Influences, Ecology, Entomology, Evolution
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Fitzgerald, Sallyanne H. – School Science and Mathematics, 1990
Discussed are the growth of partnerships between universities and public schools in the United States, and the need for improvement in science and mathematics education. A five-week program which involved inner-city students in different science experiences in a university environment is described. The results of this program are presented. (CW)
Descriptors: Career Awareness, Educational Improvement, Enrichment Activities, Extracurricular Activities
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Magin, D. J.; Reizes, J. A. – Computers and Education, 1990
Discussion of the use of computer simulation for laboratory experiments in undergraduate engineering education focuses on work at the University of New South Wales in the instructional design and software development of a package simulating a heat exchange device. The importance of integrating theory, design, and experimentation is also discussed.…
Descriptors: Computer Assisted Instruction, Computer Simulation, Computer Software Development, Courseware
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Tomaselli, V. P.; And Others – Journal of Computers in Mathematics and Science Teaching, 1990
Describes a junior-level, one-year optics laboratory course for physics and engineering students. The course offers a range of experiments from conventional geometric optics to contemporary spatial filtering and fiber optics. Presents an example of an experiment with pictures. (Author/YP)
Descriptors: College Science, Computer Assisted Instruction, Computer Interfaces, Computer Software
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