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Jessica K. Kisunzu – Journal of Chemical Education, 2023
Discussions of the primary literature are an important part of undergraduate education, and much work has been done to develop methods of integrating the literature into the curriculum. Examples include individual single-article discussion activities, literature-based courses, and regular journal club events. While many published examples focus on…
Descriptors: Undergraduate Students, College Science, Advanced Courses, Organic Chemistry
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Mariur Rodriguez Moreno; Nye C. Johnson; Christopher B. Stewart; Mary L. Setelin; Adam X. Wayment; Braxton M. Felix; Scott R. Burt; David J. Michaelis – Journal of Chemical Education, 2024
We describe a three-day advanced organic laboratory experience that includes the solid-phase synthesis of an unknown three amino acid polypeptide for junior/senior undergraduate chemistry majors. Students conduct a series of 1D and 2D NMR experiments (HSQC, HMBC, TOCSY) and analyze the data to identify the side chain residues of the peptide and…
Descriptors: Scientific Concepts, Science Education, Undergraduate Students, Undergraduate Study
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Milicaj, Jozafina; Dodda, Vasudeva R.; Patel, Kaelan R.; Aragon, Ingrid Rodriguez; O'Connell, Timothy; Muthyala, Ramaiah; Taylor, Erika A.; Sham, Yuk Y. – Journal of Chemical Education, 2022
Research has shown that the use of practical examples in undergraduate education promotes the retention of historically underrepresented students in STEM majors and lowers achievement gaps within courses. Since many students of color and women aspire toward careers in healthcare and the pharmaceutical industry, efforts to incorporate medicinal…
Descriptors: College Science, Chemistry, Medicine, Undergraduate Study
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Nicholas A. Bowman; Federick J. Ngo; Jeongmin Ji – Review of Higher Education, 2025
Research has frequently demonstrated negative effects of placing students into developmental education, but very little inquiry has considered the impact of placing students into different levels of non-developmental coursework. The present study explored this issue within sequenced pairs of STEM gateway courses using doubly-robust propensity…
Descriptors: Student Placement, STEM Education, Outcomes of Education, Undergraduate Students
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Katherine A. Clements; Kyle T. Vallone; Thomas P. Clements; Elizabeth H. Catania; Lily L. Claiborne; Katherine L. Friedman; Todd R. Graham; Heather J. Johnson; Savanna R. Starko; Tara D. Todd; Jessica Watkins; Cynthia J. Brame – CBE - Life Sciences Education, 2025
Students often experience science, technology, engineering, and mathematics (STEM) courses as competitive, weed-out spaces. Learning Assistants (LAs) have potential to improve students' experiences in these courses. Previously, we elucidated themes describing the impact of LAs on students' sense of STEM belonging and science-related confidence in…
Descriptors: STEM Education, Sense of Belonging, Self Esteem, Teaching Assistants
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Victoria S. Farrar; Montserrat Valdivia Medinaceli; Nicholas T. Young; Emily Bonem; Chris Mead; Rebecca L. Matz; Natalia Caporale – CBE - Life Sciences Education, 2025
Disparate grade outcomes across various axes of student identities are prevalent in introductory science, technology, engineering, and mathematics (STEM) courses, including in the biological sciences, yet few studies have examined outcome disparities in upper-division courses. Those that have present mixed findings. Rooted in a critical approach…
Descriptors: Biology, Advanced Courses, Genetics, Cytology
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Christof Keebaugh; Emily Marshman; Chandralekha Singh – Physical Review Physics Education Research, 2024
We examine students' challenges in determining the number of distinct many-particle stationary states for a system of noninteracting identical particles, focusing on how these insights guided the design, validation, and evaluation of a quantum interactive learning tutorial (QuILT) to aid students' understanding. Specifically, we focus on systems…
Descriptors: Physics, Scientific Concepts, Science Education, Quantum Mechanics
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Shalaunda M. Reeves; Charlotte A. Bolch; Richard T. Bex II; Kent J. Crippen – Interactive Learning Environments, 2024
Recently, interest in understanding the prospects of virtual environments, specifically virtual reality laboratories (VR Lab) -- those that involve a first-person practica experience via a desktop computer or head-mounted display -- in science education has increased. Seemingly ingrained in the process of implementing a VR Lab is a supposition of…
Descriptors: Student Experience, Student Motivation, Student Attitudes, Beliefs
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Ursula Holzmann; Sulekha Anand; Alexander Y. Payumo – Advances in Physiology Education, 2025
Generative large language models (LLMs) like ChatGPT can quickly produce informative essays on various topics. However, the information generated cannot be fully trusted, as artificial intelligence (AI) can make factual mistakes. This poses challenges for using such tools in college classrooms. To address this, an adaptable assignment called the…
Descriptors: Artificial Intelligence, Technology Uses in Education, Natural Language Processing, Thinking Skills
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Johnson, Kristen C.; Sabel, Jaime L.; Cole, Judith; Pruett, Christin L.; Plymale, Ruth; Reyna, Nathan S. – Biochemistry and Molecular Biology Education, 2022
The need for changing how science is taught and the expansion of undergraduate research experiences is essential to foster critical thinking in the Natural Sciences. Most faculty research programs only involve a small number of upper-level undergraduate students each semester. The course-based undergraduate research experience (CURE) model enables…
Descriptors: Undergraduate Students, College Science, Science Education, Science Instruction