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Harris, Gabriel K.; Cvitkusic, Sanja; Draut, Amanda S.; Hathorn, Chelani S.; Stephens, Amanda M.; Constanza, Karen E.; Leonardelli, Michael J.; Watkins, Ruth H.; Dean, Lisa O.; Hentz, Nathaniel G. – Journal of Food Science Education, 2012
Food science laboratory courses are traditionally taught as a series of preplanned laboratories with known endpoints. In contrast, inquiry-guided (IG) laboratories allow students to ask questions, think through problems, design experiments, then adapt and learn in response to unexpected results. This study examined the effects of converting the…
Descriptors: Foods Instruction, Inquiry, Active Learning, Courses
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Morsink, M. C.; Dekter, H. E.; Dirks-Mulder, A.; van Leeuwen, W. B. – Biochemistry and Molecular Biology Education, 2012
In the current laboratory assignment, technical aspects of the polymerase chain reaction (PCR) are integrated in the context of six different bacterial outbreak scenarios. The "Enterobacterial Repetitive Intergenic Consensus Sequence" (ERIC) PCR was used to analyze different outbreak scenarios. First, groups of 2-4 students determined optimal…
Descriptors: Risk, Genetics, Curriculum Development, Communicable Diseases
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Wanser, Keith H.; Mahrley, Steve; Tanner, Joshua – Physics Education, 2012
In this paper we report on the use of two different light to frequency converters, four different light sources, three of which are novel and inexpensive, and a hand held digital multimeter with a frequency counter, suitable for making accurate and rapid determination of the optical inverse square law exponent of -2 to better than [plus or…
Descriptors: Physics, Chemistry, Science Instruction, Optics
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Alvarado, S.; Marin, E.; Juarez, A. G.; Calderon, A.; Ivanov, R. – European Journal of Physics, 2012
The implementation of an automated system based on the hot-wire technique is described for the measurement of the thermal conductivity of liquids using equipment easily available in modern physics laboratories at high schools and universities (basically a precision current source and a voltage meter, a data acquisition card, a personal computer…
Descriptors: Physics, Computer Uses in Education, Measurement Techniques, Data Processing
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Dunbar, Robert L.; Nichols, Marcia D. – Anatomical Sciences Education, 2012
The demand for empathetic health care practitioners requires an academic curriculum suited to that need. Here we describe a series of integrated activities that were designed to foster empathy in undergraduate health science majors. By combining content and pedagogical approaches from the humanities and sciences, we asked students to reconcile…
Descriptors: Undergraduate Students, Majors (Students), Health Sciences, Empathy
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Valls, Cristina; Rojas, Cristina; Pujadas, Gerard; Garcia-Vallve, Santi; Mulero, Miquel – Biochemistry and Molecular Biology Education, 2012
This article presents two integrated laboratory exercises intended to show students the role of [alpha]-amylases (AAMYs) in saliva and detergents. These laboratory practicals are based on the determination of the enzymatic activity of amylase from saliva and different detergents using the Phadebas test (quantitative) and the Lugol test…
Descriptors: Advanced Students, Undergraduate Study, Genetics, Biochemistry
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Fisher, Amanda; Sekera, Emily; Payne, Jill; Craig, Paul – Biochemistry and Molecular Biology Education, 2012
In proteomics, complex mixtures of proteins are separated (usually by chromatography or electrophoresis) and identified by mass spectrometry. We have created 2DE Tandem MS, a computer program designed for use in the biochemistry, proteomics, or bioinformatics classroom. It contains two simulations--2D electrophoresis and tandem mass spectrometry.…
Descriptors: Biochemistry, Computer Software, Spectroscopy, Science Instruction
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Logan, Jennifer L.; Rumbaugh, Craig E. – Journal of Chemical Education, 2012
"The Chemistry of Perfume" is a lab-only course for nonscience majors. Students learn fundamental concepts of chemistry through the context of fragrance, a pervasive aspect of daily life. The course consists of laboratories pertaining to five units: introduction, extraction, synthesis, characterization, and application. The introduction unit…
Descriptors: Nonmajors, Chemistry, Student Attitudes, Science Curriculum
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Shadle, Susan E.; Brown, Eric C.; Towns, Marcy H.; Warner, Don L. – Journal of Chemical Education, 2012
The ability to couple problem solving both to the understanding of chemical concepts and to laboratory practices is an essential skill for undergraduate chemistry programs to foster in our students. Therefore, chemistry programs must offer opportunities to answer real problems that require use of problem-solving processes used by practicing…
Descriptors: Chemistry, Student Problems, Problem Solving, Scientific Concepts
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Kazempour, Mahsa; Amirshokoohi, Aidin – Professional Development in Education, 2014
The success of science education reform initiatives depends considerably on the teachers. Effective professional development opportunities have been shown to encourage and support teachers in their adoption of inquiry-based teaching practices. In particular, it has been argued that an effective means for science teachers to learn about science…
Descriptors: Secondary School Teachers, Science Teachers, Teacher Education, Faculty Development
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Hatch, Daniel L.; Zschau, Tony; Hays, Arthur; McAllister, Kristin; Harrison, Michelle; Cate, Kelly L.; Shanks, Ryan A.; Lloyd, Steven A. – Teaching of Psychology, 2014
This article describes an innovative neuropsychopharmacology laboratory that can be incorporated into any research methods class. The lab consists of a set of interconnected modules centered on observations of methamphetamine-induced behavioral changes in mice and is designed to provide students with an opportunity to acquire basic skills…
Descriptors: Pharmacology, Psychology, Animals, Neurosciences
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Bautista, Nazan Uludag; Schussler, Elisabeth E.; Rybczynski, Stephen M. – International Journal of Science Education, 2014
Science education reform documents identify nature of science (NOS) as a critical component of scientific literacy and call for universities, colleges, and K-12 schools to explicitly integrate NOS learning into science curricula. In response to these calls, this study investigated the classroom practices of nine graduate assistants (GAs) who…
Descriptors: Teaching Assistants, Graduate Students, Teaching Experience, Science Instruction
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Wang, Chia-Yu; Wu, Hsin-Ka; Lee, Silvia Wen-Yu; Hwang, Fu-Kwun; Chang, Hsin-Yi; Wu, Ying-Tien; Chiou, Guo-Li; Chen, Sufen; Liang, Jyh-Chong; Lin, Jing-Wen; Lo, Hao-Chang; Tsai, Chin-Chung – Educational Technology & Society, 2014
Studies that incorporate technologies into school science laboratories have proliferated in the recent two decades. A total of 42 studies published from 1990 to 2011 that incorporated technologies to support school science laboratories are reviewed here. Simulations, microcomputer-based laboratories (MBLs), and virtual laboratories are commonly…
Descriptors: Science Laboratories, Technology Uses in Education, Meta Analysis, Literature Reviews
Chambers, Timothy – ProQuest LLC, 2014
This dissertation presents the results of an experiment that measured the learning outcomes associated with three different pedagogical approaches to introductory physics labs. These three pedagogical approaches presented students with the same apparatus and covered the same physics content, but used different lab manuals to guide students through…
Descriptors: Academic Achievement, Physics, Science Instruction, Science Laboratories
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French, M. M. J.; Hibbert, Michael – Physics Education, 2010
Oxygen is one of the component gases of air at room temperature, making up around 20% of the atmosphere. But can oxygen be liquified? This article details a method for making small amounts of liquid oxygen in the classroom if there is no access to a cylinder of compressed oxygen gas, and two methods for identifying the fact that it is liquid…
Descriptors: Chemistry, Science Instruction, Science Activities, Science Laboratories
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