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Kuntzleman, Thomas S.; Annis, Jezrielle; Anderson, Hazel; Kenney, Joshua B.; Doctor, Ninad – Journal of Chemical Education, 2020
When Mentos candies are dropped into a bottle of Diet Coke, a foamy fountain jets out of the beverage container. It has previously been argued that ingredients found in Mentos candies significantly enhance this fountaining effect. Other previous work has demonstrated that the kinetics of foam production can be quantitatively monitored using a…
Descriptors: Elementary School Science, Chemistry, Kinetics, Science Experiments
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Barrera, Luis A.; Alma C. Escobosa; Alsaihati, Laila S.; Noveron, Juan C. – Journal of Chemical Education, 2019
Herein we present a modified iodine clock experiment which replaces starch with cellulose paper. This provides the reaction with a white solid surface in which color change can be clearly observed and reduces reagent amounts required to 540 µL per group. After data acquisition, students are required to calculate reaction orders and the reaction…
Descriptors: Science Experiments, Chemistry, Kinetics, Science Laboratories
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Allen, Bradley – Physics Teacher, 2017
One challenge for the introductory physics teacher is incorporating calculus techniques into the laboratory setting. It can be difficult to strike a balance between presenting an experimental task for which calculus is essential and making the mathematics accessible to learners who may be apprehensive about applying it. One-dimensional kinematics…
Descriptors: Introductory Courses, Mechanics (Physics), Calculus, Kinetics
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Finberg, Ethan Abraham; Griffin, David Michael; Shiflett, Mark Brandon – Chemical Engineering Education, 2020
A Unit Operations Laboratory (UOL) is fundamental to undergraduate chemical engineering education. This article discusses a new course structure for the University of Kansas UOL and details for three new experiments covering the fundamentals of vapor-liquid equilibrium, fluid mechanics, and kinetics. Students apply knowledge from these courses as…
Descriptors: Chemical Engineering, Science Laboratories, College Science, Science Instruction
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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
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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
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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
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Vondracek, Mark – Science Teacher, 2013
Students who do not progress to more advanced science disciplines in college generally do not realize that seemingly simple physical systems are--when studied in detail--more complex than one might imagine. This article presents one such phenomenon--the hydraulic jump--as a way to help students see the complexity behind the seemingly simple, and…
Descriptors: Science Instruction, Water, Scientific Concepts, Scientific Research
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Szalay, L.; Tóth, Z. – Chemistry Education Research and Practice, 2016
This is the start of a road map for the effective introduction of inquiry-based learning in chemistry. Advantages of inquiry-based approaches to the development of scientific literacy are widely discussed in the literature. However, unless chemistry educators take account of teachers' reservations and identified disadvantages such approaches will…
Descriptors: Foreign Countries, Science Education, Science Instruction, Chemistry
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Davidhazy, Andrew – Tech Directions, 2012
Sir Isaac Newton determined that the acceleration constant for gravity was 32 ft./per/sec/sec. This is a fact that most students become familiar with over time and through various means. This article describes how this can be demonstrated in a technology classroom using simple photographic equipment. (Contains 5 figures.)
Descriptors: Program Descriptions, Scientific Concepts, Photography, Physics
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Barton, Janice S. – Journal of Chemical Education, 2011
This article describes a comprehensive treatment of experimental enzyme kinetics strongly coupled to electronic data acquisition and use of spreadsheets to organize data and perform linear and nonlinear least-squares analyses, all in a manner that promotes development of important reasoning skills. Kinetic parameters are obtained for the stable…
Descriptors: Kinetics, Biochemistry, Science Instruction, Science Experiments
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Pantaleao, Ines; Portugal, Ana F.; Mendes, Adelio; Gabriel, Joaquim – Journal of Chemical Education, 2010
A pedagogical experiment is described to examine the physical absorption of gases, in this case carbon dioxide, in a hollow fiber membrane contactor (HFMC) where the absorption concentration profile can be followed by a color change. The HFMC is used to teach important concepts and can be used in interesting applications for students, such as…
Descriptors: Chemistry, Laboratory Experiments, Science Experiments, Scientific Concepts