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Showing 16 to 30 of 52 results Save | Export
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Harrison, Timothy G.; Shallcross, Dudley E.; Heslop, William J.; Eastman, John R.; Baldwin, Anthony J. – Acta Didactica Napocensia, 2009
Pre-laboratory work has been shown to be an effective investment at undergraduate level in chemistry at the University of Bristol. A Dynamic Laboratory Manual (DLM) has been developed to allow undergraduate students to rehearse practicals using virtual experiments, video clips and a range of assessment support. The DLM has been shown to be highly…
Descriptors: Foreign Countries, Undergraduate Study, Chemistry, Science Instruction
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Meenakshi, Viswanathan; Babayan, Yelizaveta; Odom, Teri W. – Journal of Chemical Education, 2007
This paper outlines several benchtop nanoscale patterning experiments that can be incorporated into undergraduate laboratories or advanced high school chemistry curricula. The experiments, supplemented by an online video lab manual, are based on soft lithographic techniques such as replica molding, micro-molding in capillaries, and micro-contact…
Descriptors: Chemistry, Laboratory Manuals, Science Instruction, High School Students
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Mickle, James E.; Aune, Patricia M. – Journal of College Science Teaching, 2008
For distance-education students, the requirement for a laboratory course can present a significant hurdle to completing degree requirements. To better serve these nontraditional students, the authors developed a distance version of the laboratory course to provide a hands-on experience similar to that of on-campus students. In order to make the…
Descriptors: Nontraditional Students, Nonmajors, Distance Education, Laboratory Manuals
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Park Rogers, Meredith A.; Abell, Sandra K. – Science Education, 2008
The purpose of this study was to understand one case of undergraduate inquiry-based instruction through the words and actions of students and instructors. The data sources included fieldnotes from 16 of 29 classes, two sets of student and instructor interviews (beginning and end of the semester), and a collection of artifacts, such as the…
Descriptors: College Science, Interdisciplinary Approach, Laboratory Manuals, Instructional Materials
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Volkwyn, Trevor S.; Allie, Saalih; Buffler, Andy; Lubben, Fred – Physical Review Special Topics - Physics Education Research, 2008
Conventional physics laboratory courses generally include an emphasis on increasing students' ability to carry out data analysis according to scientific practice, in particular, those aspects that relate to measurement uncertainty. This study evaluates the efficacy of the conventional approach by analyzing the understanding of measurement of…
Descriptors: Majors (Students), Laboratory Manuals, Data Collection, Data Processing
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Skendzic, Elizabeth M.; Mossman, Catherine A. – American Biology Teacher, 2007
Many plant biologists claim that there is a tremendous bias towards the study of animals in science curricula, however, there is even less attention given to topics on fungi. On average, Biology laboratory manuals will have only one fungi exercise, and most of the time, it is mainly descriptive. As we developed this exercise we realized how much…
Descriptors: Laboratory Manuals, Advanced Placement, Biology, Science Instruction
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Brickman, Peggy; Ketter, Catherine A. Teare; Pereira, Monica – Journal of College Science Teaching, 2005
Although electronic instructional media are becoming increasingly prevalent in science classrooms, their worth remains unproven. Here, student perceptions and performance using CD-ROM delivery of lab materials are assessed. Numerous learning barriers that produced lower lab grades for students using a CD-ROM lab manual in comparison to a print…
Descriptors: Science Instruction, Laboratory Manuals, Computer Peripherals, College Science
1971
This manual describes safety procedures which should be observed in the chemistry laboratory. Accidents which may occur when working with chemicals such as peroxides, phosphorus, heavy metals, acids, etc., need special treatment. Quite suitable descriptions of such treatment are listed for each kind of possible accident in the laboratory.…
Descriptors: Chemistry, Guides, Hazardous Materials, Laboratory Manuals
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Rodriguez, Maria A.; Niaz, Mansoor – Instructional Science: An International Journal of Learning and Cognition, 2004
The objectives of this study are: (1) evaluation of the methodology used in recent search for particles with fractional electrical charge (quarks) and its implications for understanding the scientific research methodology of Millikan; (2) evaluation of 43 general physics textbooks and 11 laboratory manuals, with respect to the oil drop experiment,…
Descriptors: Scientific Research, Physics, Fuels, Scientific Research
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Powell, Richard; And Others – Science Activities, 1988
Introduces and describes the Laboratory Procedure Module (LPM) modified from a task analysis approach used by laboratory technical training programs based on instructional system design model. Overviews the LPM design, including primary goal, enabling objectives, task steps, overview, demonstration, written test, practice, and procedural…
Descriptors: Instructional Design, Instructional Development, Laboratory Manuals, Laboratory Procedures
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Mahan, Eric J.; Nading, Mary Alice – Journal of Chemical Education, 2006
This experiment was designed to help students improve the critical thinking skills that are required to analyze and discuss the results of an organic chemistry experiment in an effective manner. The initial objective indicated in the prelab handout for this puzzle experiment was the synthesis of methyl 4-bromobenzoate using the Fischer…
Descriptors: Organic Chemistry, Laboratory Manuals, Reference Materials, Critical Thinking
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Johnstone, A. H. – Journal of Chemical Education, 1984
Hypothesizes that overloading the working memory may leave no space for thought and organization such that faulty (or even no) learning takes place. Provides examples of this hypothesis and possible remedies. These remedies focus on design of laboratory manuals and equipment and on curriculum content order. (JN)
Descriptors: Chemistry, College Science, Curriculum Design, Higher Education
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Kempa, R. F.; Ward, J. E. – International Journal of Science Education, 1988
Reported are observational limits of detectability for several single stimulus and multi-stimuli observation tasks in secondary level chemistry. Provided are tables of actual results obtained including type of observation, chemical system used, method of determining stimulus magnitude, and observational thresholds. (Author/YP)
Descriptors: Chemistry, Data Interpretation, Experiments, Laboratory Experiments
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Parkinson, Jean; Adendorff, Ralph – Language and Education, 1997
Reports on an ethnographic study of laboratory sessions in the departments of Physics and Chemistry at the University of Natal in Durban, South Africa, with specific focus on the comparison of the function of verbs in three first-year laboratory manuals. Several pedagogical implications are discussed. (JL)
Descriptors: Apartheid, Chemistry, Comparative Analysis, English for Academic Purposes
Summers, R. Joe; Gotwald, Timothy – 1981
Automatic Picture Transmission (APT) images are real-time weather pictures transmitted from satellites on a radio frequency in a video format. Amateur radio enthusiasts and electronic experimenters have for a number of years designed, built, and operated direct readout stations capable of receiving APT photographs. The equipment to receive weather…
Descriptors: Electronic Equipment, High Schools, Laboratory Manuals, Meteorology
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