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Joseph J. Provost – Journal of Chemical Education, 2022
Undergraduate research is an important experience that increases retention, ownership, and learning. Integrating research experiences into the classroom is the focus of course-based undergraduate research education (CUREs) and has become an important tool in curricula of many universities. This article will serve as a guide for those interested in…
Descriptors: Undergraduate Students, Student Research, Chemistry, Curriculum Development
Pence, Harry E.; Pence, Laura E. – Journal of Chemical Education, 2022
Nationally, as the chemical community aspires to become more diverse, it is essential to make students of all races, ethnicities, gender expressions, and physical abilities feel welcomed and represented in the introductory courses in the field. One way to accomplish this goal is to present examples of scientists who are not traditionally included…
Descriptors: Chemistry, Introductory Courses, College Science, Diversity
Dessent, Caroline E. H.; Dawood, Ruhee A.; Jones, Leonie C.; Matharu, Avtar S.; Smith, David K.; Uleanya, Kelechi O. – Journal of Chemical Education, 2022
Discussions on decolonizing the curriculum are common in Humanities and Social Science Faculties but still rare in the Physical Sciences. In this commentary, we describe the work we have conducted to begin decolonizing and diversifying our undergraduate chemistry curriculum. We also discuss what it means to decolonize chemistry and reflect on why…
Descriptors: College Science, Chemistry, Undergraduate Study, Equal Education
Sonia M. Underwood; Alex T. Kararo; Lynmarie A. Posey; Amy M. Pollock; Deborah G. Herrington; Ryan L. Stowe; Justin H. Carmel; Michael W. Klymkowsky; Melanie M. Cooper – Journal of Chemical Education, 2023
It is generally accepted that if a course or curricular transformation is to be implemented with fidelity, the users must understand how and why the transformation is different from their current practices and which aspects of the transformation are essential to achieving comparable student learning outcomes. In this article, we provide a detailed…
Descriptors: Chemistry, Science Curriculum, Curriculum Development, Curriculum Implementation
Williams, Neil A. – Journal of Chemical Education, 2022
Across the United Kingdom Higher Education system, the percentage of white students attaining a first or upper second-class degree exceeds the that of Black Asian Minority Ethnic (BAME) students. This is known as the BAME degree awarding gap. Awarding gaps are also seen at the module level. The BAME module awarding gap is defined as the difference…
Descriptors: College Science, Inclusion, Achievement Gap, Chemistry
Neiles, Kelly Y.; Arnett, Katy – Journal of Chemical Education, 2021
Backward Design is a well-known method for curricular development in which an instructor first identifies desired learning ends and then "works backwards" to determine the necessary means to these ends. Unfortunately, its use in the design of undergraduate chemistry curricular components is not necessarily widespread. This paper will…
Descriptors: Chemistry, Curriculum Development, Undergraduate Students, Instructional Design
Jessica Renee Knight; William Kabasenche – Journal of Chemical Education, 2022
This work is a course proposal for a stronger ethics education component for chemistry undergraduates. We propose that this course should integrate different approaches in ethics with the value-laden and scientifically complex issues that arise in chemistry. Although some programs require that students take some ethics as a core requirement, for…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Course Evaluation
Gee, Harold W., III; Gorton, Elizabeth S.; Cho, Sua; Fynewever, Herb – Journal of Chemical Education, 2022
We have developed and implemented a change to our General Chemistry curriculum that makes the point that "not all chemists are white men." This builds on recent textbook analyses, which showed that General Chemistry textbooks overwhelmingly and unnecessarily focus on the biographies of scientists that are white men. We demonstrate a way…
Descriptors: Chemistry, Science Curriculum, Curriculum Development, Diversity
Tyler M. VanOursouw; Trevor Rottiger; Kiley A. Wadzinski; Brian E. VanderWaal; Madison J. Snyder; Riley T. Bittner; Omar K. Farha; Shannon C. Riha; Joseph E. Mondloch – Journal of Chemical Education, 2023
A two-component undergraduate laboratory experience has been developed by students in a senior level capstone course. The first component is a 3 h laboratory experience dedicated to the rapid synthesis of a metal-organic framework (MOF-808) in aqueous solution using readily available reagents and equipment. During the second component, MOF-808 was…
Descriptors: Curriculum Development, College Science, Science Laboratories, Laboratory Experiments
Stefaniak, Kristina R.; Winfrey, Merrie K.; Curtis, Anna C.; Kennedy, Sarah A. – Journal of Chemical Education, 2021
General chemistry laboratory curriculum reform is underway at a midsized state university through a collaborative, inclusive, and iterative approach. Using a backward design approach, faculty collaborated to actualize a shared vision, define laboratory learning objectives, and outline considerations for inclusivity during summer workshops that…
Descriptors: Curriculum Implementation, Curriculum Development, Cooperative Learning, Inclusion
Jon T. Njardarson – Journal of Chemical Education, 2023
This article describes practical lessons and experiences acquired as part of a journey in teaching a blind student at The University of Arizona to master the written and graphical language of first-semester organic chemistry and its associated concepts. These practical lessons include details on how to adapt an organic chemistry model set (with…
Descriptors: Organic Chemistry, Introductory Courses, Students with Disabilities, Universities
Wu, Meng-Yang M.; Magnone, KatieMarie; Tasker, Roy; Yezierski, Ellen J. – Journal of Chemical Education, 2021
COVID-19 has thrust educators into a period of uncertainty, complicating conventional ways of teaching and learning. We suspect that the pandemic has magnified the challenges that some high school teachers already experience, particularly when they are the sole chemistry teacher at their school. The pandemic has likely inhibited collegial…
Descriptors: Distance Education, Chemistry, Science Teachers, Faculty Development
Emrani, Jahangir; Ahmed, Maryam; Newman, Robert H.; Thomas, Misty D.; Mowa, Chishimba Nathan; Teleha, John – Journal of Chemical Education, 2020
Genome editing has widespread influence in many fields, including medicine, biotechnology, and agriculture. Despite their origins in chemistry laboratories, these techniques are currently under utilized in chemistry curricula. Introducing future generations of chemists to these emerging technologies is essential in chemistry classrooms. The…
Descriptors: College Science, Technological Advancement, Genetics, Ethics
Hongyu Chen; Lu Tian; Meiqin Zhang – Journal of Chemical Education, 2023
Level 3 characteristics are increasingly important for fingerprint identification, particularly when the fingerprints are problematic and lack level 2 details. In practice, no reliable visualization methods for level 3 features are transferred into a course for the general public, forensic students, or investigators. Our group has reported the…
Descriptors: College Students, Identification, Individual Characteristics, Crime
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