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Katherine A. Clements; Kyle T. Vallone; Thomas P. Clements; Elizabeth H. Catania; Lily L. Claiborne; Katherine L. Friedman; Todd R. Graham; Heather J. Johnson; Savanna R. Starko; Tara D. Todd; Jessica Watkins; Cynthia J. Brame – CBE - Life Sciences Education, 2025
Students often experience science, technology, engineering, and mathematics (STEM) courses as competitive, weed-out spaces. Learning Assistants (LAs) have potential to improve students' experiences in these courses. Previously, we elucidated themes describing the impact of LAs on students' sense of STEM belonging and science-related confidence in…
Descriptors: STEM Education, Sense of Belonging, Self Esteem, Teaching Assistants
Lisa B. Limeri – CBE - Life Sciences Education, 2025
Mindset (beliefs about the malleability of intelligence) has been studied in a variety of contexts for decades. Recent research highlights the importance of contextual factors in moderating mindset's impact on student outcomes. The commonly-used original mindset measure is context-general. Recently, a mindset measure that is specific to science…
Descriptors: Science Education, Mathematics Education, Undergraduate Students, Student Attitudes
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
Manthey, Seth; Brewe, Eric – CBE - Life Sciences Education, 2013
University Modeling Instruction (UMI) is an approach to curriculum and pedagogy that focuses instruction on engaging students in building, validating, and deploying scientific models. Modeling Instruction has been successfully implemented in both high school and university physics courses. Studies within the physics education research (PER)…
Descriptors: Physics, Self Efficacy, Curriculum Design, Biology
Using Assessments to Investigate and Compare the Nature of Learning in Undergraduate Science Courses
Momsen, Jennifer; Offerdahl, Erika; Kryjevskaia, Mila; Montplaisir, Lisa; Anderson, Elizabeth; Grosz, Nate – CBE - Life Sciences Education, 2013
Assessments and student expectations can drive learning: students selectively study and learn the content and skills they believe critical to passing an exam in a given subject. Evaluating the nature of assessments in undergraduate science education can, therefore, provide substantial insight into student learning. We characterized and compared…
Descriptors: Physics, Thinking Skills, Student Attitudes, Biology
Lauer, Shanda; Momsen, Jennifer; Offerdahl, Erika; Kryjevskaia, Mila; Christensen, Warren; Montplaisir, Lisa – CBE - Life Sciences Education, 2013
Research in science education has documented achievement gaps between men and women in math and physics that may reflect, in part, a response to perceived stereotype threat. Research efforts to reduce achievement gaps by mediating the impact of stereotype threat have found success with a short values-affirmation writing exercise. In biology and…
Descriptors: Academic Achievement, Physics, Achievement Gap, Biology
Semsar, Katharine; Knight, Jennifer K.; Birol, Gulnur; Smith, Michelle K. – CBE - Life Sciences Education, 2011
This paper describes a newly adapted instrument for measuring novice-to-expert-like perceptions about biology: the Colorado Learning Attitudes about Science Survey for Biology (CLASS-Bio). Consisting of 31 Likert-scale statements, CLASS-Bio probes a range of perceptions that vary between experts and novices, including enjoyment of the discipline,…
Descriptors: Undergraduate Students, Physics, Biology, Likert Scales