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Worrall, Andrew F.; Bergstrom Mann, Patrick E.; Young, Damion; Wormald, Mark R.; Cahill, Samuel T.; Stewart, Malcolm I. – Journal of Chemical Education, 2020
Teaching practical chemistry skills remotely is not a task that would have been high on the agenda only a few months ago. However, in light of the COVID-19 pandemic, students around the world are having to work from home, and the chemistry education community has been forced to adapt to the new circumstances. In response, we discuss the use of…
Descriptors: Science Instruction, Chemistry, Teaching Methods, COVID-19
Witherow, D. Scott – Biochemistry and Molecular Biology Education, 2016
This work describes a 10-week laboratory project studying wild-type and mutant bacterial alkaline phosphatase, in which students purify, quantitate, and perform kinetic assays on wild-type and selected mutants of the enzyme. Students also perform plasmid DNA purification, digestion, and gel analysis. In addition to simply learning important…
Descriptors: Biochemistry, Laboratory Training, Microbiology, Genetics
Cybulskis, Viktor J.; Smeltz, Andrew D.; Zvinevich, Yury; Gounder, Rajamani; Delgass, W. Nicholas; Ribeiro, Fabio H. – Chemical Engineering Education, 2016
Understanding catalytic chemistry, collecting and interpreting kinetic data, and operating chemical reactors are critical skills for chemical engineers. This laboratory experiment provides students with a hands-on supplement to a course in chemical kinetics and reaction engineering. The oxidation of methane with a palladium catalyst supported on…
Descriptors: Kinetics, Fundamental Concepts, Chemical Engineering, Laboratory Experiments
Louhi-Kultanen, Marjatta; Han, Bing; Nurkka, Annikka; Hatakka, Henry – Chemical Engineering Education, 2015
The present work describes an undergraduate laboratory exercise for improving understanding of fundamental phenomena in cooling crystallization. The exercise of nucleation and crystal growth kinetics supports learning of theories and models presented in lectures and calculation exercises. The teaching methodology incorporates precepts the…
Descriptors: Chemical Engineering, Science Laboratories, Scientific Concepts, Laboratory Experiments
Hunnicutt, Sally S.; Grushow, Alexander; Whitnell, Robert – Journal of Chemical Education, 2015
The POGIL-PCL project implements the principles of process-oriented, guided-inquiry learning (POGIL) in order to improve student learning in the physical chemistry laboratory (PCL) course. The inquiry-based physical chemistry experiments being developed emphasize modeling of chemical phenomena. In each experiment, students work through at least…
Descriptors: Inquiry, Science Instruction, Science Experiments, Chemistry
Prigozhin, Maxim B.; Scott, Gregory E.; Denos, Sharlene – Journal of Chemical Education, 2014
In this activity, science education and modern technology are bridged to teach students at the high school and undergraduate levels about protein folding and to strengthen their model building skills. Students are guided from a textbook picture of a protein as a rigid crystal structure to a more realistic view: proteins are highly dynamic…
Descriptors: Computer Simulation, Models, Science Education, Undergraduate Students
Head, S. I.; Arber, M. B. – Advances in Physiology Education, 2013
The fact that humans possess fast and slow-twitch muscle in the ratio of approximately 50% has profound implications for designing exercise training strategies for power and endurance activities. With the growth of exercise and sport science courses, we have seen the need to develop an undergraduate student laboratory that demonstrates the basic…
Descriptors: Exercise Physiology, Sports Medicine, Science Laboratories, Data Collection
Kirik, Ozgecan Tastan; Boz, Yezdan – Chemistry Education Research and Practice, 2012
Learning is a social event and so the students need learning environments that enable them to work with their peers so that they can learn through their interactions. This study discusses the effectiveness of cooperative learning compared to traditional instruction in terms of students' motivation and understanding of chemical kinetics in a high…
Descriptors: Chemistry, Cooperative Learning, Conventional Instruction, Science Process Skills
Darling, Gerald – Science Scope, 2012
In eighth grade, students usually learn about forces in science class and linear relationships in math class, crucial topics that form the foundation for further study in science and engineering. An activity that links these two fundamental concepts involves measuring the distance a spring stretches as a function of how much weight is suspended…
Descriptors: Mathematics Instruction, Fundamental Concepts, Grade 8, Motion

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