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Reider, Roy – J Chem Educ, 1970
Descriptors: Fire Protection, First Aid, Laboratory Safety, Safety
Arnold, R. W. – South Australian Science Teachers Journal, 1971
Descriptors: Demonstrations (Educational), Instructional Materials, Science Facilities, Science Laboratories
Peer reviewedDuffin, W. J. – Physics Education, 1971
Presented is an assessment of the restructuring of a college freshman physics course. Details of the organization of the lab activities, grouping of the students, and strengths and weaknesses of the arrangements are discussed. (DS)
Descriptors: College Science, Course Organization, Curriculum, Instruction
Peer reviewedStull, Daniel R. – Journal of Chemical Education, 1971
Descriptors: Chemistry, College Science, Laboratory Safety, Safety
Aldridge, Bill G.; Feldker, Paul – Phys Teacher, 1969
Descriptors: College Science, Community Colleges, Computer Science, Educational Objectives
Peer reviewedRoeper Review, 1979
Descriptions of four gifted programs are offered in articles titled "Career Education for Gifted Students in Illinois" (J. Ellis and B. Ford); "Interage Program for Critical Thinking" (H. Masterson); "Talcott Mountain Science Center" (D. LaSalle); and "Project L.O.G.I.C.--Nurturing the Mathematically Gifted" (W. Foley and B. Spack). (SBH)
Descriptors: Career Education, Gifted, Mathematical Enrichment, Peer Teaching
Peer reviewedSpears, Jacqueline; Zollman, Dean – Journal of Research in Science Teaching, 1977
College physics students' understanding of the process of science, as measured by the Science Process Inventory, was better for students in a traditional, structured laboratory than in an inquiry laboratory that covered the same experiments. (MLH)
Descriptors: College Science, Educational Research, Higher Education, Inquiry
Peer reviewedO'Shea, Mark R. – NASSP Bulletin, 1977
Reviews research findings on the relative effectiveness of the laboratory approach versus the lecture-demonstration method of elementary-secondary science education, and concludes that while lab instruction effectively teaches students how to use the laboratory, it does not facilitate science content acquisition and retention. (JG)
Descriptors: Academic Achievement, Educational Research, Elementary Secondary Education, Literature Reviews
Peer reviewedMcKelvy, George M. – Journal of Chemical Education, 1998
Explains how to prepare a permanent, portable, and easy to use device for flame-test demonstrations. (DKM)
Descriptors: Chemical Analysis, Chemistry, Demonstrations (Science), Higher Education
Peer reviewedMiller, K. Machele; Hage, David S. – Journal of Chemical Education, 1995
Evaluates the long-term use of integrated laboratories in undergraduate chemistry programs. Reports that this approach offers a number of advantages over conventional laboratories, including an improvement in the amount of student knowledge and experience gained, better preparation of students for research, and more efficient utilization of lab…
Descriptors: Chemistry, Educational Strategies, Higher Education, Integrated Activities
Peer reviewedErtepinar, Hamide; Geban, Omer – Educational Research, 1996
In a science class of 43 Turkish eighth-graders, an experimental group performed investigative lab activities; controls used worksheets. Although the pretest showed similar logical thinking ability, after 5 weeks of instruction the experimental group had significantly higher science achievement scores. (SK)
Descriptors: Foreign Countries, Grade 8, Inquiry, Investigations
Peer reviewedLi, Edwin; Barnett, Stanley M.; Ray, Barbara – Journal of Chemical Education, 2003
Explains how to manage waste after a classroom laboratory experiment which generally has the potential to generate large amounts of waste. Focuses on pollution prevention and the selection processes to eliminate or minimize waste. (YDS)
Descriptors: Chemistry, Higher Education, Laboratory Safety, Pollution
Peer reviewedWellman, Whitney E.; Noble, Mark E. – Journal of Chemical Education, 2003
Compares the revised Blue Bottle formulation to the classical Blue Bottle. Indicates that the revised formulation gives a somewhat bluer solution, but initially slower reduction when compared to the classical formulation. (Author/KHR)
Descriptors: Chemical Reactions, Chemistry, Higher Education, Science Activities
Peer reviewedBaird, Colette – Education in Science, 1997
Describes the development of new laboratory-based assessments to promote the professional development of technicians in education. Discusses defining standards, the new Scottish/National Vocational Qualifications, and awarding Arrangements. (JRH)
Descriptors: Elementary Secondary Education, Evaluation, Foreign Countries, Laboratory Technology
Peer reviewedMarshall, Rick – Physics Education, 2002
Describes the open-ended investigative approach implemented in science laboratories and provides guidelines for how to run and supervise laboratory-based coursework for A-level students. Identifies suitable topics and explains the teacher's role, time management, and instructional strategies. (Author/YDS)
Descriptors: Educational Strategies, Foreign Countries, Physics, Science Instruction


