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de la Pen~a, Lisandro Herna´ndez – Journal of Chemical Education, 2016
The solution of simple kinetic equations is analyzed without referencing any topic from differential equations or integral calculus. Guided by the physical meaning of the rate equation, a systematic procedure is used to generate an approximate solution that converges uniformly to the exact solution in the case of zero, first, and second order…
Descriptors: Kinetics, Chemistry, Problem Solving, Equations (Mathematics)
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Antuch, Manuel; Ramos, Yaquelin; Álvarez, Rubén – Journal of Chemical Education, 2014
SCILAB is a lesser-known program (than MATLAB) for numeric simulations and has the advantage of being free software. A challenging software-based activity to analyze the most common linear reversible inhibition types with SCILAB is described. Students establish typical values for the concentration of enzyme, substrate, and inhibitor to simulate…
Descriptors: Science Instruction, College Science, Undergraduate Study, Chemistry
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Turanyi, Tamas; Toth, Zoltan – Chemistry Education Research and Practice, 2013
The misunderstandings related to thermodynamics (including chemical equilibrium) and chemical kinetics of first and second year Hungarian students of chemistry, environmental science, biology and pharmacy were investigated. We demonstrated that Hungarian university students have similar misunderstandings in physical chemistry to those reported in…
Descriptors: Chemistry, Kinetics, Thermodynamics, Misconceptions
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de Levie, Robert – Journal of Chemical Education, 2012
A fast and generally applicable alternative solution to the problem of determining the useful shelf life of medicinal solutions is described. It illustrates the power and convenience of the combination of numerical simulation and nonlinear least squares with a practical pharmaceutical application of chemical kinetics and thermodynamics, validated…
Descriptors: Spreadsheets, Kinetics, Least Squares Statistics, Thermodynamics
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Iler, H. Darrell; Brown, Amber; Landis, Amanda; Schimke, Greg; Peters, George – Journal of Chemical Education, 2014
A numerical analysis of the free radical addition polymerization system is described that provides those teaching polymer, physical, or advanced organic chemistry courses the opportunity to introduce students to numerical methods in the context of a simple but mathematically stiff chemical kinetic system. Numerical analysis can lead students to an…
Descriptors: Science Instruction, Organic Chemistry, Kinetics, Scientific Concepts
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Nalliah, Ruth E. – Journal of Chemical Education, 2015
A demonstration of the degradation of food coloring dyes by oxidation via the Fenton reaction can be substituted with a simpler demonstration using the oxidant oxone with iron(II) ions as an activator. The addition of small amounts of solid oxone and iron(II) sulfate to solutions containing mixtures of food coloring results in successive…
Descriptors: Science Instruction, Secondary School Science, High Schools, College Science
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Sattsangi, Prem D. – Journal of Chemical Education, 2011
A microscale laboratory for teaching chemical kinetics utilizing the iodine clock reaction is described. Plastic pipets, 3 mL volume, are used to store and deliver precise drops of reagents and the reaction is run in a 24 well plastic tray using a total 60 drops of reagents. With this procedure, students determine the rate of reaction and the…
Descriptors: Kinetics, Chemistry, Science Instruction, Science Laboratories
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Kaliakin, Danil S.; Zaari, Ryan R.; Varganov, Sergey A. – Journal of Chemical Education, 2015
Teaching fundamental physical chemistry concepts such as the potential energy surface, transition state, and reaction path is a challenging task. The traditionally used oversimplified 2D representation of potential and free energy surfaces makes this task even more difficult and often confuses students. We show how this 2D representation can be…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
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Vié, Clotilde; Fattaccioli, Jacques; Jacq, Philippe – Journal of Chemical Education, 2019
This activity introduces droplet-based millifluidics and the usage of aqueous droplets as independent chemical microreactors for reaction-kinetics studies. Students build their own droplet generators from common macroscopic glassware and connecting parts to create trains of millimeter-sized droplets in which a redox reaction takes place. The…
Descriptors: Chemistry, Kinetics, Undergraduate Students, College Science
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Mack, Michael R.; Towns, Marcy H. – Chemistry Education Research and Practice, 2016
We report the results of a phenomenographic analysis of faculty beliefs about the purposes for teaching upper-division physical chemistry courses in the undergraduate curriculum. A purposeful sampling strategy was used to recruit a diverse group of faculty for interviews. Collectively, the participating faculty regularly teach or have taught…
Descriptors: College Science, Science Education, Chemistry, Undergraduate Study
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Chairam, Sanoe; Somsook, Ekasith; Coll, Richard K. – Research in Science & Technological Education, 2009
Chemical kinetics is an extremely important concept for introductory chemistry courses. The literature suggests that instruction in chemical kinetics is often teacher-dominated at both the secondary school and tertiary levels, and this is the case in Thailand--the educational context for this inquiry. The work reported here seeks to shift students…
Descriptors: Inquiry, Kinetics, Chemistry, Active Learning
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Cernusca, Dan; Mallik, Sanku – Quarterly Review of Distance Education, 2018
The focal course for this study, Pharmaceutics I, is a foundational course for the first year students (P1) enrolled in the in the PharmD program. It focuses on helping students create integrative bridges between the prepharm chemistry courses and the clinical courses in the PharmD curriculum. The main expected outcome of this course is that…
Descriptors: Academic Failure, Active Learning, Student Improvement, Science Achievement
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Quesada, Víctor – Biochemistry and Molecular Biology Education, 2020
The recent COVID-19 pandemic has led to widespread lock-down strategies that force universities to perform all educational activities remotely. In this context, laboratory lessons pose a significant challenge. Here, I present an on-line tool that simulates the kinetics of chemical reactions. Enzymatic mechanisms can be easily modeled and followed…
Descriptors: Computer Simulation, Science Laboratories, Distance Education, College Students
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Capela, Emanuel V.; Santos, João H. P. M.; Boal-Palheiros, Isabel; Carvalho, Pedro J.; Coutinho, João A. P.; Ventura, Sónia P. M.; Freire, Mara G. – Chemical Engineering Education, 2019
Through the experiments described in this article, students become acquainted with the principles behind ternary liquid-liquid systems and/or Aqueous Two-Phase Systems (ATPS), and their characterization by the determination of the binodal curve, tie-lines, tie-line lengths and critical point, as well as in applying the non-random two-liquid model…
Descriptors: Chemistry, Science Instruction, Science Experiments, Scientific Concepts
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Hladky, Paul W. – Journal of Chemical Education, 2011
College students encounter a variety of first-order phenomena in their mathematics and science courses. Introductory chemistry textbooks that discuss first-order processes, usually in conjunction with chemical kinetics or radioactive decay, stop at single, discrete dose events. Although single-dose situations are important, multiple-dose events,…
Descriptors: Textbooks, Kinetics, Chemistry, Radiation
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