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Jessica T. Boette; Kira M. Daniel; Josephine W. Lietzke; Shawn M. Amorde; Sean T. Roberts – Journal of Chemical Education, 2023
The addition of research-focused experiences to undergraduate chemistry laboratory courses has been shown to bolster student learning, enhance student retention in STEM, and improve student self-identity as scientists. In the area of synthetic organic chemistry, the preparation of libraries of compounds with novel optical and electronic properties…
Descriptors: Community Colleges, Undergraduate Students, Organic Chemistry, Student Research
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Stephanie J. H. Frost; Guizella A. Rocabado; Justin M. Pratt; Daniel Cruz-Rami´rez de Arellano; Kimberly B. Fields; Jeffrey R. Raker – Journal of Chemical Education, 2024
Transfer students are a growing population at four-year higher education institutions, especially in STEM degree programs. Though much work has explored the broad transfer student experience, the experience of these students within specific courses is understudied. Furthermore, knowledge of how transfer students approach STEM courses and their…
Descriptors: College Transfer Students, Community College Students, Organic Chemistry, Introductory Courses
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Sabrina Barakat; MaryKay Orgill – Chemistry Education Research and Practice, 2024
Resonance is a fundamental chemistry concept first introduced to students in General Chemistry I (GCI), reintroduced in Organic Chemistry I (OCI), and then utilized throughout other higher-level chemistry courses. Student difficulties with resonance are well documented. Instruction is one potential source of student difficulties. What instructors…
Descriptors: Organic Chemistry, Science Instruction, Teaching Methods, Scientific Concepts
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Wong, Carrie H. S.; Tsang, Ken C. K.; Chiu, Wang-Kin – Journal of Chemical Education, 2021
The promotion of spatial skills is essential in chemistry education. However, the process of acquiring these skills can be monotonous if learning is limited to the memorization of Newman projections or 3D molecular kits. Existing approaches to learning using visualizing tools require physical models which limit learning activities to within the…
Descriptors: Computer Simulation, Technology Integration, Science Instruction, Instructional Effectiveness
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Zdanovskaia, Maria A.; Schwarz, Cara E.; Habib, Asif D.; Hill, Nicholas J.; Esselman, Brian J. – Journal of Chemical Education, 2018
The use of computational molecular modeling to enhance the teaching of chemical concepts is becoming commonplace. Incorporation of this technique into the curriculum, however, typically requires financial investment. This reality poses a problem for institutions where funding and associated resources are scarce and has a potential negative impact…
Descriptors: Science Instruction, Molecular Structure, Teaching Methods, Community Colleges
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Mills, Nancy S.; Shanklin, Michael – Journal of Chemical Education, 2011
Students at two-year colleges and small four-year colleges have often obtained their exposure to NMR spectroscopy through "canned" spectra because the cost of an NMR spectrometer, particularly a high-field spectrometer, is prohibitive in these environments. This article describes the design of a NMR site at Trinity University in which…
Descriptors: Community Colleges, Colleges, Spectroscopy, Science Instruction
Lloyd, Patrick M.; Eckhardt, Ronald A. – Science Educator, 2010
Almost one half of U.S. students receiving B.S. and M.S. science degrees attend community colleges during their academic careers, yet for the large majority of community college students in the sciences, a four-year degree in a STEM discipline remains an unrealized goal. The authors describe methods intended to improve student learning, retention,…
Descriptors: College Students, Community Colleges, Graduation Rate, Sciences