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Zachary McLeod – ProQuest LLC, 2024
Undergraduate general chemistry courses are often perceived in a negative light by students. Student attitudes towards chemistry play a significant role in their success in chemistry and retention in STEM altogether. Research has shown in K-12 classrooms that care-based instruction strategies can help to improve student attitudes towards…
Descriptors: Undergraduate Students, College Science, Science Education, Chemistry
Alex K. Manda – Journal of Geoscience Education, 2025
This study explores the relationship between the self-confidence and content knowledge of undergraduate students in a large enrollment geoscience course following an active-learning think-pair-share (TPS) activity, and whether high confidence necessarily leads to overconfidence. We used a pre-experimental, one group pre-test -- post-test design,…
Descriptors: Undergraduate Students, Active Learning, Cooperative Learning, Large Group Instruction
Catherine Mata; Katharine Meyer; Lindsay Page – Annenberg Institute for School Reform at Brown University, 2024
This article examines the risk of crossover contamination in individual-level randomization, a common concern in experimental research, in the context of a large-enrollment college course. While individual-level randomization is more efficient for assessing program effectiveness, it also increases the potential for control group students to cross…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Large Group Instruction
Mary Tess Urbanek; Benjamin Moritz; Alena Moon – Chemistry Education Research and Practice, 2023
While uncertainty is inherent to doing science, it is often excluded from science instruction, especially postsecondary chemistry instruction. There are a variety of barriers to infusing uncertainty into the postsecondary chemistry classroom, including ensuring "productive" struggle with uncertainty, evaluating student engagement with…
Descriptors: Chemistry, Science Instruction, Student Attitudes, Persuasive Discourse
Michael Edward Goodwin – ProQuest LLC, 2024
While the number of students with disabilities in postsecondary programs has increased over the past few decades, they earn lower grades and are less likely to graduate. Academic outcomes are also worse for those with invisible disabilities such as ADHD and learning disabilities, especially as younger college students. Large, intro level courses…
Descriptors: Academic Achievement, Outcomes of Education, Undergraduate Students, Learning Disabilities
Ted M. Clark; Rebecca Ricciardo; Daniel A. Turner – Journal of Chemical Education, 2024
Active learning has often been reported to improve student outcomes in STEM courses. However, there are barriers to its implementation, and it is challenging to include this approach in large classrooms with fixed seating. This investigation explores the development of a novel approach in which the class contact time was reallocated for a general…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Class Size
Wang, Jianlan; Wang, Yuanhua; Wipfli, Kyle; Thacker, Beth; Hart, Stephanie – Physical Review Physics Education Research, 2023
Learning assistants (LAs) play an important role in inquiry-oriented physics instruction in large classrooms. LAs increase the teacher-student ratio and provide timely support to student exploration. Questioning is believed to be an advantageous strategy for LAs to scaffold student learning and maintain students as the agent of knowledge…
Descriptors: Inquiry, Science Instruction, Physics, Large Group Instruction
Paary Balakumar; Heather Fice; Samuel Richer; Tamara L. Western; Jacqueline Yao – International Journal for Students as Partners, 2024
Introductory science courses can be a struggle for instructors and students not only because of the challenging nature of the material, but also due to differences in the background knowledge of students. Provision of pre-lecture resources reviewing or introducing key concepts is recommended to support diverse students. In this paper, we describe…
Descriptors: Introductory Courses, Genetics, Science Instruction, Student Attitudes
Ruder, Suzanne M.; Stanford, Courtney – Journal of Chemical Education, 2020
Active learning environments are ideal settings to help students develop process skills such as teamwork, critical thinking, and problem solving. However, implementing active learning pedagogies where students have the opportunity to develop these skills can be challenging in large enrollment courses. With the assistance of undergraduate teaching…
Descriptors: Undergraduate Students, Teaching Assistants, Skill Development, Large Group Instruction
Hakim, Amir; Ricketts, William; Pfeffer, Paul; Ashworth, Rachel – Advances in Physiology Education, 2023
Medical graduates are expected to apply scientific principles and explain the processes underlying common and important diseases. Evidence shows that integrated medical curricula, which deliver biomedical science within the context of clinical cases, facilitate student learning in preparation for practice. However, research has also shown that the…
Descriptors: Physiology, Science Instruction, Clinical Experience, Medical Education
Sarah L. Cresswell; Wendy A. Loughlin; Tak H. Kim – Chemistry Education Research and Practice, 2024
The rise of technology and online approaches has challenged the traditional learning and teaching model for first year chemistry of formal face-to-face lectures and in-person laboratory sessions. The COVID-19 pandemic since 2020 has created a rapidly changing environment in assessment and learning experiences for students and led to rapid adoption…
Descriptors: Chemistry, Science Instruction, Online Courses, Teaching Methods
Man-Yin Tsang; Lisa Tutty; Carl-Georg Bank – Journal of College Science Teaching, 2023
Quantitative reasoning, although included in most science courses, can be challenging to teach. In this article, we explore whether cooperative learning may help instructors teach quantitative reasoning and enhance students' understanding and learning experience. Our lesson was taught in a large introductory geoscience course. The lesson required…
Descriptors: Cooperative Learning, Learning Experience, Comprehension, Large Group Instruction
McNeal, Karen S.; Zhong, Min; Soltis, Nick A.; Doukopoulos, Lindsay; Johnson, Elijah T.; Courtney, Stephanie; Alwan, Akilah; Porch, Mallory – CBE - Life Sciences Education, 2020
This study measured student engagement in real time through the use of skin biosensors, specifically galvanic skin response (GSR), in a large undergraduate lecture classroom. The study was conducted during an intervention in an introductory-level biology course (N = 420) in which one section of the course was taught with active-learning approaches…
Descriptors: Measurement Equipment, Learner Engagement, Large Group Instruction, Science Instruction
Essop, M. Faadiel; Beselaar, Leandrie – Advances in Physiology Education, 2020
Physiology students grapple with large amounts of subject content and hence memorize facts to pass examinations. In parallel, students display limited critical-thinking and creative skills, integration abilities, and/or a deeper engagement with subject content. This study aimed to assess the feasibility of introducing active learning methods…
Descriptors: Physiology, Science Instruction, Cooperative Learning, Active Learning
Prashanth Ramesh Rao; Ashok Belle Upadhyaya; Meera Nanjundan – International Journal of Teaching and Learning in Higher Education, 2023
In Cell Biology, a sophomore/junior undergraduate-level high-enrollment core course, students areexpected to develop a broad and detailed understanding of the functioning of eukaryotic cells. Forexample, some of the more challenging biological concepts include machinery involved in thereplication and translational processes, protein…
Descriptors: Cytology, Biology, Science Instruction, Scientific Concepts