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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
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Downing, Virginia R.; Cooper, Katelyn M.; Cala, Jacqueline M.; Gin, Logan E.; Brownell, Sara E. – CBE - Life Sciences Education, 2020
Student anxiety is a growing concern for colleges and universities. As science classrooms transition from traditional lecture to active learning, researchers have sought to understand how active learning affects undergraduate anxiety. However, although community colleges educate nearly half of all undergraduates, no studies have explored the…
Descriptors: Community Colleges, Two Year College Students, Anxiety, Lecture Method
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Bauer, Angela C.; Coffield, Vernon M.; Crater, Dinene; Lyda, Todd; Segarra, Verónica A.; Suh, Kevin; Vigueira, Cynthia C.; Vigueira, Patrick A. – CBE - Life Sciences Education, 2020
Recent studies demonstrate that significant learning gains can be achieved when instructors take intentional steps to address the affective components of learning. While such efforts enhance the outcomes of all students, they are particularly beneficial for students from underrepresented groups and can reduce performance gaps. In the present…
Descriptors: Equal Education, Outcomes of Education, Biology, Science Instruction
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Bouwma-Gearhart, Jana L.; Ivanovitch, John D.; Aster, Ellen M.; Bouwma, Andrew M. – CBE - Life Sciences Education, 2018
This paper attends to challenges for postsecondary science education improvement initiatives, notably understanding and responding to the realities guiding educators' teaching practices. We explored 16 postsecondary biology educators' instructional planning, providing novel insights into why educators select certain strategies over others,…
Descriptors: Biology, Science Teachers, Postsecondary Education, Faculty Development
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Stoltzfus, Jon R.; Libarkin, Julie – CBE - Life Sciences Education, 2016
SCALE-UP-type classrooms, originating with the Student-Centered Active Learning Environment with Upside-down Pedagogies project, are designed to facilitate active learning by maximizing opportunities for interactions between students and embedding technology in the classroom. Positive impacts when active learning replaces lecture are well…
Descriptors: Active Learning, Lecture Method, Classrooms, Student Centered Learning
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Elliott, Emily R.; Reason, Robert D.; Coffman, Clark R.; Gangloff, Eric J.; Raker, Jeffrey R.; Powell-Coffman, Jo Anne; Ogilvie, Craig A. – CBE - Life Sciences Education, 2016
Undergraduate introductory biology courses are changing based on our growing understanding of how students learn and rapid scientific advancement in the biological sciences. At Iowa State University, faculty instructors are transforming a second-semester large-enrollment introductory biology course to include active learning within the lecture…
Descriptors: Undergraduate Students, College Faculty, Biology, Science Instruction
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Jeno, Lucas M.; Raaheim, Arild; Kristensen, Sara Madeleine; Kristensen, Kjell Daniel; Hole, Torstein Nielsen; Haugland, Mildrid J.; Mæland, Silje – CBE - Life Sciences Education, 2017
We investigate the effects of team-based learning (TBL) on motivation and learning in a quasi-experimental study. The study employs a self-determination theory perspective to investigate the motivational effects of implementing TBL in a physiotherapy course in higher education. We adopted a one-group pretest-posttest design. The results show that…
Descriptors: Cooperative Learning, Teamwork, Learning Motivation, Self Determination
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Gross, David; Pietri, Evava S.; Anderson, Gordon; Moyano-Camihort, Karin; Graham, Mark J. – CBE - Life Sciences Education, 2015
Active-learning environments such as those found in a flipped classroom are known to increase student performance, although how these gains are realized over the course of a semester is less well understood. In an upper-level lecture course designed primarily for biochemistry majors, we examine how students attain improved learning outcomes, as…
Descriptors: Outcomes of Education, Science Instruction, Gender Differences, Grade Point Average
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Linton, Debra L.; Farmer, Jan Keith; Peterson, Ernie – CBE - Life Sciences Education, 2014
Meta-analyses of active-learning research consistently show that active-learning techniques result in greater student performance than traditional lecture-based courses. However, some individual studies show no effect of active-learning interventions. This may be due to inexperienced implementation of active learning. To minimize the effect of…
Descriptors: Active Learning, Peer Groups, Interaction, Meta Analysis
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Maskiewicz, April Cordero; Griscom, Heather Peckham; Welch, Nicole Turrill – CBE - Life Sciences Education, 2012
In this study, we used targeted active-learning activities to help students improve their ways of reasoning about carbon flow in ecosystems. The results of a validated ecology conceptual inventory (diagnostic question clusters [DQCs]) provided us with information about students' understanding of and reasoning about transformation of inorganic and…
Descriptors: Majors (Students), Class Size, Class Activities, Learning Activities
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Linton, Debra L.; Pangle, Wiline M.; Wyatt, Kevin H.; Powell, Karli N.; Sherwood, Rachel E. – CBE - Life Sciences Education, 2014
We investigated some of the key features of effective active learning by comparing the outcomes of three different methods of implementing active-learning exercises in a majors introductory biology course. Students completed activities in one of three treatments: discussion, writing, and discussion + writing. Treatments were rotated weekly between…
Descriptors: Active Learning, Introductory Courses, Biology, Majors (Students)
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Tsaushu, Masha; Tal, Tali; Sagy, Ornit; Kali, Yael; Gepstein, Shimon; Zilberstein, Dan – CBE - Life Sciences Education, 2012
This study offers an innovative and sustainable instructional model for an introductory undergraduate course. The model was gradually implemented during 3 yr in a research university in a large-lecture biology course that enrolled biology majors and nonmajors. It gives priority to sources not used enough to enhance active learning in higher…
Descriptors: Thinking Skills, Active Learning, Biology, Constructivism (Learning)
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Moravec, Marin; Williams, Adrienne; Aguilar-Roca, Nancy; O'Dowd, Diane K. – CBE - Life Sciences Education, 2010
Actively engaging students in lecture has been shown to increase learning gains. To create time for active learning without displacing content we used two strategies for introducing material before class in a large introductory biology course. Four to five slides from 2007/8 were removed from each of three lectures in 2009 and the information…
Descriptors: Active Learning, Biology, Lecture Method, Introductory Courses
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Stanger-Hall, Kathrin F.; Lang, Sarah; Maas, Martha – CBE - Life Sciences Education, 2010
We tested the effect of voluntary peer-facilitated study groups on student learning in large introductory biology lecture classes. The peer facilitators (preceptors) were trained as part of a Teaching Team (faculty, graduate assistants, and preceptors) by faculty and Learning Center staff. Each preceptor offered one weekly study group to all…
Descriptors: Academic Achievement, Learning Strategies, Learning Centers (Classroom), Lecture Method
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Armbruster, Peter; Patel, Maya; Johnson, Erika; Weiss, Martha – CBE - Life Sciences Education, 2009
We describe the development and implementation of an instructional design that focused on bringing multiple forms of active learning and student-centered pedagogies to a one-semester, undergraduate introductory biology course for both majors and nonmajors. Our course redesign consisted of three major elements: 1) reordering the presentation of the…
Descriptors: Instructional Design, Student Attitudes, Problem Based Learning, Student Surveys
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