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Nicole T. Appel; Ammar Tanveer; Sara Brownell; Joseph N. Blattman – CBE - Life Sciences Education, 2024
Course-based undergraduate research experiences (CUREs) offer students opportunities to engage in critical thinking and problem solving. However, quantitating the impact of incorporating research into undergraduate courses on student learning and performance has been difficult since most CUREs lack a comparable traditional course as a control. To…
Descriptors: Undergraduate Students, Student Research, Critical Thinking, Problem Solving
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Lane, A. Kelly; Meaders, Clara L.; Shuman, J. Kenny; Stetzer, MacKenzie R.; Vinson, Erin L.; Couch, Brian A.; Smith, Michelle K.; Stains, Marilyne – CBE - Life Sciences Education, 2021
Student impressions formed during the first day of class can impact course satisfaction and performance. Despite its potential importance, little is known about how instructors format the first day of class. Here, we report on observations of the first day of class in 23 introductory science, technology, engineering, and math (STEM) courses. We…
Descriptors: Teacher Student Relationship, Introductory Courses, STEM Education, Student Attitudes
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Upchurch, Allison M.; Kirkwood-Watts, Dana L.; Brazeal, Kathleen R.; Wheeler, Lorey A.; Couch, Brian A.; Johnson, Gabrielle B.; Spier, Sarah K. – CBE - Life Sciences Education, 2022
Instructors use a variety of online formative assessment (FA) activities to support learning outside class. Previous studies have revealed barriers for students in online courses, but little is known about the barriers students experience when completing online FA assignments. Understanding these barriers to access is critical to fostering more…
Descriptors: Computer Assisted Testing, Formative Evaluation, Undergraduate Students, Biology
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Foster-Hartnett, Dawn; Mwakalundwa, Gwantwa; Bofenkamp, Lisa; Patton, Liz; Nguyen, Richard; Goodman-Mamula, Patricia – CBE - Life Sciences Education, 2022
The increase in online learning brought on by the COVID-19 pandemic will likely result in a greater availability of online and hybrid course offerings. In this study, students enrolled in parallel sections of a microbiology lab course with in-person labs and either face-to-face (F2F) or all-online lectures (hybrid, H). Course material and method…
Descriptors: Course Organization, Instructional Design, Cooperative Learning, Science Achievement
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Wilton, Mike; Gonzalez-Niño, Eduardo; McPartlan, Peter; Terner, Zach; Christoffersen, Rolf E.; Rothman, Joel H. – CBE - Life Sciences Education, 2019
Integration of active-learning approaches into increased-structure postsecondary classrooms significantly improves student academic outcomes. We describe here two parallel sections of Introductory Biology that shared learning objectives and content but varied in course structure. The large-enrollment traditional course consisted of four 50-minute…
Descriptors: Introductory Courses, Biology, Course Organization, College Science
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Smolinski, Tomasz G. – CBE - Life Sciences Education, 2010
Computer literacy plays a critical role in today's life sciences research. Without the ability to use computers to efficiently manipulate and analyze large amounts of data resulting from biological experiments and simulations, many of the pressing questions in the life sciences could not be answered. Today's undergraduates, despite the ubiquity of…
Descriptors: Computer Literacy, Biology, Undergraduate Students, Scientific Research
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Wiegant, Fred; Scager, Karin; Boonstra, Johannes – CBE - Life Sciences Education, 2011
This article reports on a one-semester Advanced Cell Biology course that endeavors to bridge the gap between gaining basic textbook knowledge about cell biology and learning to think and work as a researcher. The key elements of this course are 1) learning to work with primary articles in order to get acquainted with the field of choice, to learn…
Descriptors: Undergraduate Students, Scientific Research, Advanced Courses, Cytology
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Eddy, Sarah L.; Hogan, Kelly A. – CBE - Life Sciences Education, 2014
At the college level, the effectiveness of active-learning interventions is typically measured at the broadest scales: the achievement or retention of all students in a course. Coarse-grained measures like these cannot inform instructors about an intervention's relative effectiveness for the different student populations in their classrooms or…
Descriptors: College Students, Active Learning, Intervention, Academic Achievement
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Freeman, Scott; Haak, David; Wenderoth, Mary Pat – CBE - Life Sciences Education, 2011
We tested the hypothesis that highly structured course designs, which implement reading quizzes and/or extensive in-class active-learning activities and weekly practice exams, can lower failure rates in an introductory biology course for majors, compared with low-structure course designs that are based on lecturing and a few high-risk assessments.…
Descriptors: Evidence, Tests, Biology, Introductory Courses
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Goldey, Ellen S.; Abercrombie, Clarence L.; Ivy, Tracie M.; Kusher, Dave I.; Moeller, John F.; Rayner, Doug A.; Smith, Charles F.; Spivey, Natalie W. – CBE - Life Sciences Education, 2012
We transformed our first-year curriculum in biology with a new course, Biological Inquiry, in which greater than 50% of all incoming, first-year students enroll. The course replaced a traditional, content-driven course that relied on outdated approaches to teaching and learning. We diversified pedagogical practices by adopting guided inquiry in…
Descriptors: Majors (Students), Teaching Methods, Biology, Undergraduate Study
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Allen, Deborah; Tanner, Kimberly – CBE - Life Sciences Education, 2007
This article discusses a systematic approach to designing significant learning experiences, often referred to as the "backward design process," which has been popularized by Wiggins and McTighe (1998) and is included as a central feature of L. Dee Fink's model for integrated course design (Fink, 2003). The process is referred to as backward…
Descriptors: Units of Study, Instructional Design, Integrated Curriculum, Science Curriculum