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Miranda, Rommel J.; Warren, Cheryl; Mcdougal, Kathryn; Kimble, Steven; Sanchez, Joseph; Norman, Leann; Anderson, Virginia; Hemm, Matthew – Biochemistry and Molecular Biology Education, 2023
We developed a curriculum for an upper-level molecular biology course-based undergraduate research laboratory class funded by a National Science Foundation CAREER grant that focuses on identifying new small proteins in the bacterium, "Escherichia coli." Our CURE class has been continually offered each semester for the last 10 years, with…
Descriptors: Molecular Biology, College Science, Undergraduate Study, Science Instruction
Jinglin Fu; Anthony Monte Carlo; Doris Zheng – Journal of Chemical Education, 2025
The COVID-19 pandemic has accelerated the shift from traditional in-person teaching to remote and online learning, necessitating a more adaptable educational platform to serve the diverse needs of students. Transforming hands-on "wet lab" activities into virtual "dry lab" exercises can promote a more accessible and flexible…
Descriptors: Undergraduate Students, College Science, Science Education, Biochemistry
Soraya Elena Layton Jaramillo; William Ani´bal Villamil Villar; Eva Aguaded Rami´rez; Javier Carrillo Rosu´a – Journal of Chemical Education, 2024
Training in chemistry is essential for undergraduate medical students; however, at the National University of Colombia, basic chemistry courses are associated with high fail rates and low academic performance with regard to first semester students, especially in vulnerable special admission populations. A longitudinal study was carried out via…
Descriptors: Curriculum Development, Instructional Innovation, Teaching Methods, Undergraduate Students
Boyd M. Goodson; Qingfeng Ge; Lichang Wang – Journal of Chemical Education, 2023
Over the past 20 years, significant effort has been devoted to advancing the modular approach to teaching chemistry laboratory courses. The development and implementation of two modules are presented here for teaching a second-semester physical chemistry laboratory course using the modular approach: an inquiry-based module concerning proteins and…
Descriptors: Curriculum Development, Curriculum Implementation, Inquiry, Active Learning
Teasdale, Rachel; Ryker, Katherine; Viskupic, Karen; Czajka, C. Doug; Manduca, Cathryn – International Journal of STEM Education, 2020
Background: The Classroom Observation Project employs direct observations of geoscience teaching across the USA using the Reformed Teaching Observation Protocol (RTOP) to quantify the use of reformed teaching practices. We report on 345 RTOP observations used to evaluate the extent of teaching reform when curricular materials developed as part of…
Descriptors: STEM Education, Higher Education, College Science, Observation
Talanquer, Vicente; Bucat, Robert; Tasker, Roy; Mahaffy, Peter G. – Journal of Chemical Education, 2020
The COVID-19 pandemic has fundamentally changed many aspects of our world including the way we teach chemistry. Our emergence from the pandemic provides an opportunity for deep reflection and intentional action about what we teach, and why, as well as how we facilitate student learning. Focusing on foundational postsecondary chemistry courses, we…
Descriptors: COVID-19, Pandemics, Educational Change, Resilience (Psychology)
Barth, Benjamin S.; Bucholtz, Ehren C. – Journal of Chemical Education, 2017
Introductory chemistry courses are required as part of the undergraduate preparation necessary for entry into an array of professional programs. Given the varied priorities of the student population in these courses, it can be difficult to present the material such that students see their individual future academic priorities represented in each…
Descriptors: Chemistry, Science Instruction, Undergraduate Study, College Science
Ariyo, Oluwunmi; Hagler, Ashely; Armstrong, Melissa; Woodson, Heather Miller – Community College Journal of Research and Practice, 2018
Employment within STEM fields has been escalating at a greater rate than employment in other fields (National Science Foundation, 2010). Unfortunately, the number of college students moving into STEM fields of study are substantially low (Lowell & Regets, 2006). The first two years of STEM education for many students take place at the…
Descriptors: STEM Education, Community Colleges, Two Year College Students, College Science
Harvey, Caylyn; Eshleman, Kristen; Koo, Kyosung; Smith, Kevin G.; Paradise, Christopher J.; Campbell, A. Malcolm – CBE - Life Sciences Education, 2016
The seminal report "Vision and Change" outlined improvements necessary for undergraduate biology courses to accomplish widely recognized learning objectives. Over the past 8 years, we have developed a two-semester introductory biology course that incorporates the core concepts and competencies recommended in "Vision and…
Descriptors: Undergraduate Study, College Science, Biology, Scientific Concepts
Baily, Charles; Finkelstein, Noah D. – Physical Review Special Topics - Physics Education Research, 2015
Most introductory quantum physics instructors would agree that transitioning students from classical to quantum thinking is an important learning goal, but may disagree on whether or how this can be accomplished. Although (and perhaps because) physicists have long debated the physical interpretation of quantum theory, many instructors choose to…
Descriptors: Science Instruction, Mechanics (Physics), Quantum Mechanics, Science Curriculum
Cooper, Melanie M.; Klymkowsky, Michael W. – CBE - Life Sciences Education, 2013
Helping students understand "chemical energy" is notoriously difficult. Many hold inconsistent ideas about what energy is, how and why it changes during the course of a chemical reaction, and how these changes are related to bond energies and reaction dynamics. There are (at least) three major sources for this problem: 1) the way biologists talk…
Descriptors: Chemistry, Energy, Scientific Concepts, STEM Education
Klein, Geoffrey C.; Carney, Jeffrey M. – Journal of Chemical Education, 2014
Communication and critical thinking skills are integral to the undergraduate chemistry major. A bookend, two-course model has been implemented to supplement chemistry subfield knowledge with the development of these skills. The third-year course introduces the chemical literature and addresses these skills through the synthesis of a literature…
Descriptors: Science Instruction, College Science, Undergraduate Study, Chemistry
O'Shea, Brian; Terry, Laura; Benenson, Walter – CBE - Life Sciences Education, 2013
We present outcomes from curricular changes made to an introductory calculus-based physics course whose audience is primarily life sciences majors, the majority of whom plan to pursue postbaccalaureate studies in medical and scientific fields. During the 2011-2012 academic year, we implemented a Physics of the Life Sciences curriculum centered on…
Descriptors: Physics, Majors (Students), Active Learning, Teaching Methods
Cavalli, G.; Hamerton, I.; Lygo-Baker, S. – Chemistry Education Research and Practice, 2015
Following collaboration between two chemistry lecturers and an academic developer an attempt was made to enhance the learning of students within a chemistry module through the adaptation of the delivery of content material. This paper reports a piece of practitioner led research which considered how effective the approach developed was upon the…
Descriptors: Chemistry, Science Instruction, Plastics, Interdisciplinary Approach
Shuster, Michele I.; Preszler, Ralph – International Journal for the Scholarship of Teaching and Learning, 2014
Over the past eight years we have undertaken iterative cycles of course reform in two introductory biology courses: Biology 111 and Biology 211. Our revisions of these formerly "traditional" lecture courses have included in-class case studies with and without peer facilitators and peer-facilitated small-group workshops. Based on analyses…
Descriptors: Introductory Courses, Biology, Science Education, Teaching Methods

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