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Carlo Chiorri; Pietro Capurro; Chiara Lambruschini; Lisa Moni; Walter Sgroi; Andrea Basso – Journal of Chemical Education, 2023
The basics of organic chemistry nomenclature were introduced in a laboratory organized in a nonformal environment such as a science festival. The laboratory, divided into three distinct but interconnected activities, was aimed not only at secondary school students but also at lay people. The intent was to explain the importance of associating a…
Descriptors: Organic Chemistry, Secondary School Science, Secondary School Students, Science Fairs
Adrienne M. Pesce; Daniel B. King – Journal of Chemical Education, 2023
Novice chemists often struggle with the highly visual nature of some chemistry topics. To make visually demanding concepts, such as isomerism and stereochemistry, more accessible to students, chemistry instructors have long recommended the use of molecular model kits as visual aids. However, studies pertaining to student model usage have shown…
Descriptors: Student Attitudes, Molecular Structure, Science Teachers, Science Instruction
Grace C. Tetschner; Sachin Nedungadi – Journal of Chemical Education, 2023
Resonance is a foundational organic chemistry concept, but it is consistently misunderstood by undergraduate students. The development of a concept inventory--a multiple-choice assessment where the incorrect answer choices stem from commonly held alternate conceptions--on the concept of resonance could help organic chemistry instructors quickly…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Organic Chemistry
Strausser, Shelby; Bietsch, Jonathan; Hodges, Harley; McCoy, Timothy; Stewart, Bryan; Kintz, Hailey; Yeagley, Andrew – Journal of Chemical Education, 2021
A broadly applicable semester-long course-based undergraduate research experience (CURE)-inspired organic II laboratory course was developed from an engaging story supported by the current literature surrounding paraben use in consumer products. The project involves the synthesis of brominated parabens followed by an investigation into the…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Laboratories
Allen, William E.; Hosbein, Kathryn N.; Kennedy, Anthony M.; Whiting, Brandon; Walker, Joi P. – Journal of Chemical Education, 2021
This manuscript describes the implementation of a Course-based Undergraduate Research Experience (CURE) sequence in chemistry that uses research to link a lower division, organic chemistry course to an upper-division, analytical chemistry course. In the CURE sequence, students created a library of modified sugar molecules during CURE-1, Organic,…
Descriptors: Undergraduate Students, Student Research, Scientific Research, Organic Chemistry
Kasprowiak, Amaury; Moitessier, Cle´mence; Cazier-Dennin, Francine; Danjou, Pierre-Edouard – Journal of Chemical Education, 2021
Fractional distillation is part of the essential experimental techniques taught to first-year chemistry students, especially during practical organic chemistry work. The characterization of the distillate generally involves measuring the boiling temperature, the refractive index, or the infrared spectrum. In this paper, an unknown mixture composed…
Descriptors: Spectroscopy, Science Instruction, Undergraduate Students, Abstract Reasoning
Young, Sherri C. – Journal of Chemical Education, 2021
Collaborative experiences have been widely integrated into the classroom and laboratory, with goals to build time management, communication, and team-working skills. Most reported laboratory collaborations occur between students within the same lab section, which could limit the potential benefits of these experiences. Presented herein is an…
Descriptors: Cooperative Learning, Organic Chemistry, Science Experiments, Student Experience
Chen, Patricia; Ong, Desmond C.; Ng, Jessica C.; Coppola, Brian P. – AERA Open, 2021
Self-regulated learners strategically manage physical, technological, online, and social resources for learning--by selecting resources that could be useful, reflecting on how useful these resources have been, and adjusting resource use accordingly. We propose a model that conceptualizes resource management as learners' intentional,…
Descriptors: Grade Prediction, Self Control, College Students, Organic Chemistry
Howitz, William J.; McKnelly, Kate J.; Link, Renée D. – Journal of Chemical Education, 2021
Large, multisection laboratory courses are particularly challenging when managing grading with as many as 35 teaching assistants (TAs). Traditional grading systems using point-based rubrics lead to significant variations in how individual TAs grade, which necessitates the use of curving across laboratory sections. Final grade uncertainty…
Descriptors: Grading, Curriculum Development, Curriculum Implementation, Organic Chemistry
Michael C. Ralph; Blair Schneider; David R. Benson; Douglas Ward – Active Learning in Higher Education, 2024
Institutions of higher education are seeking to support more active learning among faculty, and that support includes the creation of active learning spaces to support more student-centered course activities. However, incremental development of these learning spaces leads to a sorting of students between active and passive learning environments.…
Descriptors: Undergraduate Students, Organic Chemistry, College Science, Science Instruction
Field M. Watts; Solaire A. Finkenstaedt-Quinn; Ginger V. Shultz – Chemistry Education Research and Practice, 2024
Research on student learning in organic chemistry indicates that students tend to focus on surface level features of molecules with less consideration of implicit properties when engaging in mechanistic reasoning. Writing-to-learn (WTL) is one approach for supporting students' mechanistic reasoning. A variation of WTL incorporates peer review and…
Descriptors: Organic Chemistry, Writing Assignments, Design, Peer Evaluation
DeGlopper, Kimberly S.; Schwarz, Cara E.; Ellias, Niall J.; Stowe, Ryan L. – Journal of Chemical Education, 2022
To potentially engage students in "doing organic chemistry", organic chemistry courses should foreground weaving together structure- and energy-related ideas to construct causal accounts for phenomena. Here, we investigate whether enrolling in an organic chemistry course that places substantial emphasis ([approximately]50% of total…
Descriptors: Science Instruction, Organic Chemistry, Scientific Concepts, Concept Formation
Garza, Nicholas F.; Finkenstaedt-Quinn, Solaire A.; Shultz, Ginger V.; Zimmerman, Steven C. – Journal of Chemical Education, 2022
Organic chemistry courses enroll students from many majors with diverse interests. Although instructors may strive to appeal to these interests by relating course content to real life, it is challenging to intrinsically appeal to students at the personal level, particularly in high enrollment courses like organic chemistry. When students identify…
Descriptors: Organic Chemistry, Science Instruction, Course Content, Teaching Methods
Karch, Jessica M.; Sevian, Hannah – Chemistry Education Research and Practice, 2022
Productive problem solving, concept construction, and sense making occur through the core process of abstraction. Although the capacity for domain-general abstraction is developed at a young age, the role of abstraction in increasingly complex and disciplinary environments, such as those encountered in undergraduate STEM education, is not well…
Descriptors: Organic Chemistry, Problem Solving, Undergraduate Students, Thermodynamics
Petritis, Steven J.; Kelley, Colleen; Talanquer, Vicente – Chemistry Education Research and Practice, 2022
Previous research on student argumentation in the chemistry laboratory has emphasized the evaluation of argument quality or the characterization of argument structure (i.e., claims, evidence, rationale). In spite of this progress, little is known about the impact of the wide array of factors that impact students' argumentation in the undergraduate…
Descriptors: Persuasive Discourse, Science Process Skills, Laboratory Experiments, Evidence

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