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Ruebush, Laura; Sulikowski, Michelle; North, Simon – Journal of College Science Teaching, 2009
Scientific modeling is an integral part of contemporary science, yet many students have little understanding of how models are developed, validated, and used to predict and explain phenomena. A simple modeling exercise led to significant gains in understanding key attributes of scientific modeling while revealing some stubborn misconceptions.…
Descriptors: Misconceptions, Scientific Methodology, Scientific Literacy, Science Experiments
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Cahoon, Lawrence B. – Journal of College Science Teaching, 1996
Describes the use of recently constructed stormwater detention ponds to conduct a set of field and laboratory exercises in an undergraduate limnology course. Provides a number of logistical advantages that can benefit those teaching aquatic sciences. (JRH)
Descriptors: Biology, Higher Education, Marine Biology, Science Activities
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Kakis, Frederic J.; Rossi, Carl J. – Journal of College Science Teaching, 1974
Describes an experiment designed to provide the opportunity for studying some of the parameters affecting the stability of Vitamin C in various environments, and to acquaint the student with an experimental procedure for studying simple reaction kinetics and the calculations of specific rate constants. (Author/JR)
Descriptors: Chemical Reactions, Chemistry, College Science, Laboratory Experiments
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Bent, Henry A.; Teague, Harold J. – Journal of College Science Teaching, 1978
Presents a detailed discussion of the "Drinking Duck" toy and its use to illustrate scientific and technical issues in thermodynamics. Numerous illustrations and equations are included. (MA)
Descriptors: Chemical Equilibrium, Chemistry, Instructional Materials, Learning Activities
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Bermudes, David; And Others – Journal of College Science Teaching, 1993
Describes the use of entomopathogenic bacteria for use in teaching general microbiology. (PR)
Descriptors: Bacteria, College Science, Higher Education, Microbiology
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Rhyne, Pamela J.; Golden, Ben R. – Journal of College Science Teaching, 1986
Offers examples of activities and practical ideas for the instruction of process skills in a laboratory setting. Includes suggestions for the processes of observing, comparing, inferring, collecting data, organizing data, interpreting results, identifying variables, formulating hypotheses, experimenting, predicting, and model building. (ML)
Descriptors: Biology, College Science, Higher Education, Process Education
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Schlenker, Richard M.; Perry, Constance M. – Journal of College Science Teaching, 1983
The Mole Concept is a learning cycle (patterned after University of Nebraska-Lincoln's ADAPT model) for the chemical unit "mole." Discusses objectives and activities involved in each phase of the cycle: exploration, invention, and application. Indicates the cycle is superior to traditional lecture-demonstration for teaching the abstract mole…
Descriptors: Chemistry, College Science, Higher Education, Learning Processes
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Thomulka, Kenneth William; And Others – Journal of College Science Teaching, 1993
Describes an inexpensive, reproducible alternative assay that requires minimal preparation and equipment for water testing. It provides students with a direct method of detecting potentially biohazardous material in water by observing the reduction in bacterial luminescence. (PR)
Descriptors: Bacteria, College Science, Higher Education, Microbiology
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Snyder, John A. – Journal of College Science Teaching, 1981
Describes a lysozyme assay for use in the biology classroom to teach enzymology. Provides background information, materials and methods, sources of lysozyme, and evaluation of the assay. (DS)
Descriptors: Biology, College Science, Culturing Techniques, Higher Education
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Nicholls, Gerald P.; Gleeson, Ronald F. – Journal of College Science Teaching, 1979
Describes a laboratory activity which can be done with equipment normally available for introductory college courses. It measures the ratio of the radioactivity per unit mass of a unicellular alga to the radioactivity per unit mass of the medium in which it grows. (HM)
Descriptors: Biology, College Science, Higher Education, Interdisciplinary Approach
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Tolley, S. Gregory; Everham, Edwin M., III; McDonald, Michael R.; Savarese, Mike – Journal of College Science Teaching, 2002
Uses a university campus as the focus for a study of the entire watershed. Presents a context for incorporating pedagogical elements, interdisciplinary teaching, research experience, and active, collaborative strategies into a useful framework for undergraduate science education. (Author/KHR)
Descriptors: Curriculum Development, Earth Science, Environmental Education, Higher Education
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Cruickshank, Brandon J.; Olander, Julie – Journal of College Science Teaching, 2002
Presents an instrumental analysis laboratory section of a problem-based format that includes elements of authentic, investigative, and cooperative learning. Discusses students' attitudes, achievement, and effects of the problem-based instruction on the learning process and higher order thinking in laboratory students. (KHR)
Descriptors: Chemistry, Cooperative Learning, Higher Education, Inquiry
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Molitoris, Joseph J. – Journal of College Science Teaching, 1992
Discusses the use of computers in physics education as a tool in individual student research projects for simulating both simple and more complicated phenomena. Reviews IBM compatible software associated with computer-assisted instruction in physics education. (PR)
Descriptors: College Science, Computer Assisted Instruction, Computer Software Reviews, Higher Education
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Drake, Lon – Journal of College Science Teaching, 1993
Explains that trial and error learning is an important way for children and adults to learn. Open-ended activities have great opportunities for error and eventual feedback for error reduction. (PR)
Descriptors: College Science, Error Correction, Feedback, Higher Education
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Hopper, Marlon E. – Journal of College Science Teaching, 1993
Describes an experiment where the gram-equivalent mass of an unknown metal is determined by reacting the metal with dilute hydrochloric acid and collecting the evolved gas over water. This simple, reliable experiment routinely gives results within 1% of the accepted value. (PR)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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