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Carrie R. Salmon; Paul A. Bonvallet; Yuan Xue; Susan E. Ramlo – Journal of Chemical Education, 2024
General chemistry courses serve as foundational curriculum within most STEM undergraduate curricula, and hence, it is essential to assess student knowledge and application of learning outcomes for courses such as Introduction to Chemistry and Organic Chemistry. Within the United States, paper-and-pencil examinations are typical for measuring…
Descriptors: Organic Chemistry, Chemistry, Undergraduate Students, Undergraduate Study
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Hadi D. Arman; Tu M. Ho; Kaitlyn Varela; Cynthia S. Veliz; Richard B. Zanni; Armando Rodriguez; Zhiwei Wang; Francis K. Yoshimoto – Journal of Chemical Education, 2023
Eleven different laboratory experiments were designed and executed throughout a semester to provide a meaningful research experience for 23 undergraduate biochemistry majors at UTSA. The topic of the semester was based on the idea of exploring new aspects to enhance our understanding of how the human body uses cytochrome P450 enzymes to metabolize…
Descriptors: Biochemistry, Science Laboratories, Undergraduate Students, Undergraduate Study
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Finster, David C.; Jackson, Paul – Journal of Chemical Education, 2021
The variation in curricular approaches to and content of chemical safety instruction in undergraduate programs highlight the need for a more comprehensive, integrative approach. This work describes the efforts of two institutions, Wittenberg University and St. Olaf College, to develop and to implement a chemical safety curriculum across the…
Descriptors: Safety Education, Undergraduate Study, College Science, Chemistry
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Ashley R. Gouger; Jaime E. Mirowsky – Journal of Chemical Education, 2022
Traditional laboratory courses involve students following detailed weekly experimental procedures, culminating in either a laboratory report or handout at the end of each experiment. While this setup teaches basic laboratory skills, it usually does not encourage students to think critically or independently. Therefore, many laboratory instructors…
Descriptors: Active Learning, Student Projects, Water Quality, Laboratory Equipment
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Howitz, William J.; Guaglianone, Gretchen; King, Susan M. – Journal of Chemical Education, 2020
As the SARS-CoV-2 pandemic spread throughout the world, universities were faced with extraordinary challenges. Shelter-in-place orders were given, in-person classes were canceled, and at the University of California Irvine, instructors had less than 2 weeks to convert spring quarter classes from a face-to-face to an online format. A team-based…
Descriptors: Organic Chemistry, Online Courses, College Science, Curriculum Design
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Josephson, Philip; Nykvist, Viktor; Qasim, Wafa; Blomkvist, Björn; Dinér, Peter – Journal of Chemical Education, 2019
Green chemistry and sustainable development have become increasingly important topics for the education of future chemists, but the implementation of green chemistry into the chemistry curriculum requires significant efforts from teachers, especially in laboratory education. A student-driven development of a greener synthesis of Lidocaine was…
Descriptors: Undergraduate Students, College Science, Science Instruction, Sustainable Development
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Scalfani, Vincent F.; Frantom, Patrick A.; Woski, Stephen A. – Journal of Chemical Education, 2016
A new graduate chemistry course was introduced in the Department of Chemistry at The University of Alabama. The new course, CH584-Literature and Communication in Graduate Chemistry, replaced a second year graduate student literature seminar requirement. Course topics included chemical information resources, critical analysis, scientific writing,…
Descriptors: Chemistry, College Science, Graduate Students, Research Skills
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Jandciu, Eric; Stewart, Jaclyn J.; Stoodley, Robin; Birol, Gülnur; Han, Andrea; Fox, Joanne A. – Journal on Excellence in College Teaching, 2015
The authors describe a model for embedding science communication into the science curriculum without displacing science content. They describe the rationale, development, design, and implementation of two courses taught by science faculty addressing these criteria. They also outline the evaluation plan for these courses, which emphasize broad…
Descriptors: Science Curriculum, Undergraduate Students, Integrated Curriculum, Communication Skills
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Cervato, Cinzia; Gallus, William; Flory, Dave; Moss, Elizabeth; Slade, Michael; Kawaler, Steve; Marengo, Massimo; Woo, Keith; Krumhardt, Barbara; Clough, Mike; Campbell, Alexis; Acerbo, Martin – Journal of College Science Teaching, 2015
Lab components of undergraduate science courses typically have students complete highly directed cookbook-like laboratory activities. These experiences rarely engage students in a meaningful manner and do not accurately convey what the work of science entails. With funding from the Howard Hughes Medical Institute (HHMI), we have created more…
Descriptors: Communities of Practice, Undergraduate Students, Student Research, Student Experience
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Hanson, Pamela K.; Stultz, Laura – Journal of College Science Teaching, 2015
Many science educators know of the pedagogical benefits of inquiry- and research-based labs, yet numerous barriers to implementation exist. In this article we describe a faculty development workshop that explored interdisciplinary and inter-institutional collaborations as potential mechanisms for overcoming barriers to curricular innovation.
Descriptors: Higher Education, College Science, Science Instruction, Workshops
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Carmel, Justin H.; Jessa, Yasmin; Yezierski, Ellen J. – Journal of Chemical Education, 2015
A liberal education curriculum requires discipline-specific courses that develop intellectual and practical skills. With this promise of development, it is crucial that instruction focuses on content knowledge as well as the thinking patterns associated with the content. In chemistry, scientific reasoning is one such skill that students should…
Descriptors: Nonmajors, Science Education, College Science, Chemistry
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Davis, Richard A.; Klein, James A. – Chemical Engineering Education, 2012
This paper presents our pedagogy for chemical process safety (CPS) education across the curriculum. Building on a unifying theme of "Conservation of Life" (COL), we have four goals: 1) Make students aware of CPS/COL principles, 2) Promote a culture of safety, 3) Assess student learning, 4) Require minimal resources. We discuss our experience and…
Descriptors: Safety, Chemical Engineering, Curriculum Development, Curriculum Implementation
National Academies Press, 2003
The report discusses incorporating more math, physics, chemistry, engineering and computer science into classes and laboratory work and emphasizing independent research will help undergraduate education reflect real-world science. Schools, professional societies and funding agencies should develop new teaching materials and facilitate faculty…
Descriptors: Undergraduate Study, Biology, College Science, Interdisciplinary Approach