Tiny Earth CURE improves student persistence in science
Miller, S.; Aldana, C. C.; Du, W.; Lee, H.; Maldonado, N.; Sandoval, P.; Vong, J.; Young, G.; Handelsman, J.; Broderick, N. A.; Hernandez, P. R.; Estrada, M.
Show abstract
Course-based undergraduate research experiences (CUREs) enhance student retention in STEM, particularly among students who belong to historically excluded communities. Yet the mechanisms by which CUREs contribute to student integration and persistence are poorly understood. Utilizing the Tripartite Integration Model of Social Influence (TIMSI), this longitudinal study examines how Tiny Earth, an antibiotic-discovery CURE, impacts students scientific self-efficacy, scientific identity, endorsement of scientific community values, and intentions to persist in science. The study also explores how gains in TIMSI factors vary as a function of student demographics and course characteristics. Results of pre-and post-course measurements show that scientific self-efficacy and identity increased among students in Tiny Earth, and some student demographics and course characteristics moderated these gains. Gains in scientific self-efficacy, identity, and values correlated with gains in persistence intentions, whereas student demographics and course characteristics did not. Results of this study show that the Tiny Earth CURE enhanced students integration into the scientific community, which was linked to intentions of students of both historically underrepresented and majority groups to persist in STEM. We discuss how courses that provide opportunity to learn science skills in the context of a CURE can contribute toward enlarging and diversifying the STEM workforce.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- "When I talk about it, my eyes light up!" Impacts of a national laboratory internship on community college student success 96%
- Nationally endorsed learning objectives to improve course design in introductory biology 96%
- High school science fair: Experiences of two groups of undergraduate bioscience students 94%
Similar papers in this journal
- A Systems Change Framework for Evaluating Academic Equity and Inclusion in an Ecology & Evolution Graduate Program 95%
- yEvo: a modular eukaryotic genetics and evolution research experience for high school students 93%
- An innovative approach to using an intensive field course to build scientific and professional skills 93%
Similar papers in this journal
- Preprint peer review enhances undergraduate biology students' disciplinary literacy and sense of belonging in STEM 96%
- Flying in the Face of Adversity: A Drosophila-based Virtual CURE Provides Semester-long Authentic Research Opportunity to the Flipped Classroom. 95%
- Remote Learning Barriers and Opportunities for Graduate Student and Postdoctoral Learners in Career and Professional Skill Development: A Case Study 94%
Similar papers in this journal
- Development and Assessment of a Sustainable PhD Internship Program Supporting Diverse Biomedical Career Outcomes 94%
- Female-dominated disciplines have lower evaluated research quality and funding success rates, for men and women 91%
- Addressing cultural and knowledge barriers to enable preclinical sex inclusive research 90%
Similar papers in this journal
- Anticipatory Emotions and Academic Performance: The Role of Boredom in a Preservice Teachers' Lab Experience 95%
- Cloud-controlled microscopy enables remote project-based biology education in Latinx communities in the United States and Latin America 92%
- Self-learning on COVID-19 among medical students and their preparedness to participate in government's COVID-19 response in Bhutan: a cross-sectional study 88%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.