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Wagner, Carl E.; Marshall, Pamela A. – Journal of Chemical Education, 2010
This laboratory experiment was developed to provide a safe, economical, and effective way to instruct undergraduate organic chemistry students about the unimolecular nucleophilic substitution (S[subscript N]1) reaction. Students treat 2,5-dimethyl-2,5-hexanediol with excess concentrated hydrochloric acid to synthesize…
Descriptors: Organic Chemistry, Laboratory Experiments, Science Instruction, College Science
Vitz, Ed – Journal of Chemical Education, 2010
A handheld digital microscope (HDM) interfaced to a computer with a presentation projector is used to project an out-of-focus yellow patch on the screen, then the patch is brought into focus to show that, paradoxically, there are red and green but no yellow pixels. Chromaticity diagrams are used to discuss this observation and spectroscopic…
Descriptors: Chemistry, Laboratory Equipment, Spectroscopy, Handheld Devices
Chenprakhon, Pirom; Sucharitakul, Jeerus; Panijpan, Bhinyo; Chaiyen, Pimchai – Journal of Chemical Education, 2010
The dissociation constant, K[subscript d], of the binding of riboflavin-binding protein (RP) with neutral red (NR) can be determined by titrating RP to a fixed concentration of NR. Upon adding RP to the NR solution, the maximum absorption peak of NR shifts to 545 nm from 450 nm for the free NR. The change of the absorption can be used to determine…
Descriptors: Science Instruction, Scientific Concepts, Science Process Skills, Scientific Principles
Grober, S.; Vetter, M.; Eckert, B.; Jodl, H.-J. – European Journal of Physics, 2010
The speed of light is an essential topic in the teaching of physics at school and at university, either with respect to the type of experiment or of course with respect to its genuine inherent importance. In reality, the various available experiments are hardly ever performed in class for many reasons. Therefore, we offer this experiment as a…
Descriptors: Science Instruction, Science Experiments, Science Laboratories, Physics
Blanchard, Margaret R.; Southerland, Sherry A.; Osborne, Jason W.; Sampson, Victor D.; Annetta, Leonard A.; Granger, Ellen M. – Science Education, 2010
In this quantitative study, we compare the efficacy of Level 2, guided inquiry-based instruction to more traditional, verification laboratory instruction in supporting student performance on a standardized measure of knowledge of content, procedure, and nature of science. Our sample included 1,700 students placed in the classrooms of 12 middle…
Descriptors: Secondary School Science, Science Teachers, Teaching Methods, Comparative Analysis
Witzig, Stephen B.; Zhao, Ningfeng; Abell, Sandra K.; Weaver, Jan C.; Adams, John E.; Schmidt, Frank J. – Journal of College Science Teaching, 2010
The authors engage students in inquiry-based learning by presenting laboratory exercises as mini-journal articles that mirror the format of a scientific journal article, including a title, authors, abstract, introduction, materials and methods, results, discussion, and citations. Students develop and carry out their follow-up investigation, then…
Descriptors: Inquiry, Active Learning, Laboratory Experiments, Science Laboratories
Maltese, Adam V.; Tai, Robert H.; Sadler, Philip M. – Physics Teacher, 2010
Laboratory experiences play a substantial role in most high school science courses, and many teachers believe the number of labs they offer is a measure of the quality of their curriculum. While some teachers believe labs are meant to confirm concepts taught during lectures, others feel labs should address students' everyday beliefs about the…
Descriptors: Scientific Methodology, Physics, Science Laboratories, Science Instruction
Munera, Hector A. – Physics Teacher, 2010
It has been suggested that Einstein's principle of equivalence (PE) should be introduced at an early stage. This principle leads to the notion of local effective gravity, which in turn defines effective vertical and horizontal directions. Local effective gravity need not coincide with the direction of terrestrial gravity. This paper describes…
Descriptors: Science Activities, Science Instruction, Physics, Scientific Concepts
Supalo, Cary A.; Wohlers, H. David; Humphrey, Jennifer R. – Journal of Science Education for Students with Disabilities, 2011
Students with blindness or low vision are often discouraged from full participation in laboratory science classes due to the inadequacy of current methodological approaches and the lack of sophisticated adaptive technologies. Consequently, these students rarely go on to pursue advanced studies and employment in the sciences. In response to his own…
Descriptors: Blindness, Visual Impairments, Chemistry, Science Education
Walker, Joi Phelps – ProQuest LLC, 2011
To address the need for reform in undergraduate science education a new instructional model called "Argument-Driven Inquiry" (ADI) was developed and then implemented in a undergraduate chemistry course at a community college in the southeastern United States (Sampson, Walker, & Grooms, 2009; Walker, Sampson, & Zimmerman, in press). The ADI…
Descriptors: Video Technology, Persuasive Discourse, Program Effectiveness, Predictor Variables
Gill, Richard – Journal of College Science Teaching, 2011
One critical element of increasing science literacy is student engagement. In this article, I report on the impacts of changing an introductory environmental science class to move away from standard lecture delivery and increase student engagement in science. The class was designed around small-group activities, inquiry labs, and substantial use…
Descriptors: Learner Engagement, Video Technology, Small Group Instruction, Group Activities
Milner, Andrea R.; Templin, Mark A.; Czerniak, Charlene M. – Journal of Science Teacher Education, 2011
The purpose of this study was to describe the influence of constructivist classroom contextual factors in a life science laboratory and a traditional science classroom on elementary students' motivation and learning strategy use. The Constructivist Teaching Inventory was used to examine classroom contextual factors. The Motivated Strategies for…
Descriptors: Constructivism (Learning), Elementary School Science, Learning Strategies, Science Laboratories
Sampson, Victor; Grooms, Jonathon; Walker, Joi Phelps – Science Education, 2011
This exploratory study examines how a series of laboratory activities designed using a new instructional model, called Argument-Driven Inquiry (ADI), influences the ways students participate in scientific argumentation and the quality of the scientific arguments they craft as part of this process. The two outcomes of interest were assessed with a…
Descriptors: Persuasive Discourse, Inquiry, Active Learning, Science Instruction
Díaz-Vázquez, Liz M.; Montes, Barbara Casañas; Echevarría Vargas, Ileabett M.; Hernandez-Cancel, Griselle; Gonzalez, Fernando; Molina, Anna M.; Morales-Cruz, Moraima; Torres-Díaz, Carlos M.; Griebenow, Kai – International Journal for the Scholarship of Teaching and Learning, 2012
The integration of research and education is an essential component of our university's teaching philosophy. Recently, we made a curricular revision to facilitate such an approach in the General Chemistry Laboratory, to teach students that investigative approaches are at the core of sciences. The curriculum revision included new interdisciplinary…
Descriptors: Cooperative Learning, Chemistry, Science Instruction, Learner Engagement
Girault, Isabelle; d'Ham, Cedric; Ney, Muriel; Sanchez, Eric; Wajeman, Claire – International Journal of Science Education, 2012
Many studies have stressed students' lack of understanding of experiments in laboratories. Some researchers suggest that if students design all or parts of entire experiment, as part of an inquiry-based approach, it would overcome certain difficulties. It requires that a procedure be written for experimental design. The aim of this paper is to…
Descriptors: Foreign Countries, Research Design, Research Methodology, Laboratory Manuals

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