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Shardula Gawankar; Susan J. Masten – Journal of Chemical Education, 2023
A laboratory experiment was designed and implemented in a STEM teaching laboratory at Michigan State University to engage students in an activity that not only introduced an innovative nitrate detection technique but also addressed one of the negative impacts of climate change, that is, the eutrophication of water bodies. The adverse effects of…
Descriptors: Laboratory Experiments, STEM Education, Science Activities, Climate
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Marincean, Simona; Scribner, Steven L. – Journal of Chemical Education, 2020
University of Michigan--Dearborn offers a one semester, two credit, stand-alone Organic Chemistry Laboratory course aimed at students with an interest in health-related careers. The COVID-19 pandemic led to a campus closure and a subsequent transition to a partially remote laboratory curriculum developed on-the-fly for the Winter 2020 semester…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Laboratories
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Wu, Nancy; Kubo, Tomohiro; Hall, Ariana O.; Zurcher, Danielle M.; Phadke, Sameer; Wallace, Rachel L.; McNeil, Anne J. – Journal of Chemical Education, 2020
Although teaching laboratories offer students the opportunity to act and think like chemists, in many cases students simply follow written procedures to generate predetermined outcomes. In recent years, there has been a movement toward inquiry-, problem-, and discovery-based learning. In a similar vein, the first-semester introductory organic…
Descriptors: Organic Chemistry, College Science, Introductory Courses, Laboratory Experiments
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Cooper, Melanie M.; Stowe, Ryan L.; Crandell, Olivia M.; Klymkowsky, Michael W. – Journal of Chemical Education, 2019
The fundamental structure of a typical mainstream two-semester organic chemistry course, populated mostly by life science majors and taught at universities throughout the United States, has changed little since the 1970s. However, much of the research on learning in organic chemistry has been devoted to characterizing student difficulties of…
Descriptors: Organic Chemistry, College Science, Undergraduate Study, Curriculum Design
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Baldwin, Bruce W.; Kuntzleman, Thomas S. – Journal of Chemical Education, 2018
The separation of chamazulene from hydrophilic contaminants present in blue tansy oil provides a visually engaging example of two common techniques: extraction and thin-layer chromatography (TLC). This application uses liquid CO[subscript 2] as a lipophilic solvent to pull a brilliant blue hydrocarbon molecule, chamazulene, out of or through a…
Descriptors: Science Instruction, Science Laboratories, College Science, Organic Chemistry
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Rebecca C. Fantone; Ina Zaimi; Krista Meserve; Eleni K. Geragosian; Christian O. A´lvarez-Sa´nchez; Jeffrey L. Spencer; Ginger V. Shultz – Journal of Chemical Education, 2023
Graduate teaching assistants (GTAs) are crucial facilitators of undergraduate education, yet many begin their teaching appointments with minimal knowledge of teaching practices. Chemistry Instructional Coaching offers GTAs at the University of Michigan an opportunity to develop their instructional practice through a collaborative, nonevaluative,…
Descriptors: Chemistry, Faculty Development, Teaching Assistants, Graduate Students
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Buckley, Paul; Fahrenkrug, Eli – Journal of Chemical Education, 2020
This work developed the Flint, Michigan water crisis as a modular case study for teaching traditional analytical chemistry concepts through the medium of environmental justice, power, and equity. An interdisciplinary framework was used to design, implement, and assess the case study in an effort to understand how the deliberate presence of…
Descriptors: Urban Areas, Water Pollution, Chemistry, Case Studies
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Cersonsky, Rose K.; Foster, Leanna L.; Ahn, Taeyong; Hall, Ryan J.; van der Laan, Harry L.; Scott, Timothy F. – Journal of Chemical Education, 2017
Despite the prevalence of polymers in modern everyday life, there is little introduction to the topic in science education throughout primary or secondary schooling in the United States. Of the few states that do include polymer education, this is only found at the high school level, primarily in biology or chemistry. Over the past year, we have…
Descriptors: Chemistry, Introductory Courses, Elementary School Science, Secondary School Science
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Stowe, Ryan L.; Cooper, Melanie M. – Journal of Chemical Education, 2017
Organic chemistry is often promoted as a course designed to cultivate skill in scientific "ways of thinking." Expert organic chemists perceive their field as one in which plausible answers to complex questions are arrived at through analytical thought processes. They draw analogy between problem solving in organic chemistry and diagnosis…
Descriptors: Organic Chemistry, Science Instruction, Critical Thinking, Undergraduate Students
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Cooper, Melanie M.; Posey, Lynmarie A.; Underwood, Sonia M. – Journal of Chemical Education, 2017
In this paper we discuss how and why core ideas can serve as the framework upon which chemistry curricula and assessment items are developed. While there are a number of projects that have specified "big ideas" or "anchoring concepts", the ways that these ideas are subsequently developed may inadvertently lead to fragmentation…
Descriptors: Science Instruction, Chemistry, College Science, Student Centered Learning
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Chaytor, Jennifer L.; Al Mughalaq, Mohammad; Butler, Hailee – Journal of Chemical Education, 2017
Online prelaboratory videos and quizzes were prepared for all experiments in CHEM 231, Organic Chemistry I Laboratory. It was anticipated that watching the videos would help students be better prepared for the laboratory, decrease their anxiety surrounding the laboratory, and increase their understanding of the theories and concepts presented.…
Descriptors: Undergraduate Students, Organic Chemistry, Science Laboratories, Web Based Instruction
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Wu, Nancy; Hall, Ariana O.; Phadke, Sameer; Zurcher, Danielle M.; Wallace, Rachel L.; Castañeda, Carol Ann; McNeil, Anne J. – Journal of Chemical Education, 2019
Introductory-level laboratory courses provide students with hands-on experience using the discipline's tools and theories. These courses often rely on recipe-based experiments due to the constraints of large enrollments, short lab periods, and the desire to minimize complexity. In addition, covering a breadth of topics can lead to a fragmented…
Descriptors: Science Instruction, Learning Strategies, Undergraduate Students, Laboratory Experiments
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Paige Prizlow; Madelyn Quirk; Kylie J. Schache; Sonia Bhakkad; Emily C. Laub; Emily L. Xu; Sophie Hill – Journal of Chemical Education, 2022
Gender disparities in STEM fields emerge starting in the fourth grade, when girls are less likely than boys to express interest in STEM fields. Outreach events targeted to girls during this crucial developmental period can foster a sense of belonging in STEM. Women+ Excelling More in Math, Engineering, and the Sciences (F.E.M.M.E.S.) is a…
Descriptors: STEM Education, Outreach Programs, Elementary Secondary Education, Online Courses
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Kirk, John S.; Fahlman, Bradley D. – Journal of Chemical Education, 2020
Because of COVID-19 precautions, instructors worldwide were required to introduce a variety of virtual instruction modes to complete the Spring 2020 semester. Herein we describe parallel efforts in contextualized chemistry courses at two institutions--Carthage College and Central Michigan University. These courses are primarily designed for…
Descriptors: Chemistry, College Science, Concept Teaching, Online Courses
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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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