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Self-select groups increase stability but reduce collaboration in high school physics

Journal
Physical Review Physics Education Research
ISSN
2469-9896
Date Issued
2025-06-09
Author(s)
Diego Ramírez
Facultad de Gobierno  
Eugenio J. Guzmán-Lavín
Javier Pulgar
CANDIA VALLEJOS, CRISTIAN ESTEBAN  
Facultad de Ingeniería  
Type
journal-article
DOI
10.1103/PhysRevPhysEducRes.21.010157
URL
https://investigadores.udd.cl/handle/123456789/11256
URL Institutional Repository
https://hdl.handle.net/11447/10840
Abstract
Group configurations shape social skills and learning outcomes by fostering student interaction and collaboration. Yet, the factors influencing group formation, social cohesion, and group stability have remained understudied in physics education. Here, we examine these factors in a cohort of 90 students from ninth and tenth grades at a private school in Chile. For a semester-long physics project, students were assigned to groups either through random allocation (control group) or given the autonomy to form their own groups (experimental group). Our findings indicate that the groups formed by choice developed stronger friendship bonds throughout the semester, while the groups formed randomly demonstrated greater levels of cooperation and more frequent changes in membership, suggesting weaker social cohesion. Additionally, tenth-grade students were more likely to stay in their original groups, possibly indicating increased social maturity. These findings emphasize the ongoing challenge in education of balancing student choice in group formation with the need for diverse group compositions that enhance learning. This study provides practical recommendations for physics teachers and researchers.
Project(s)
Temporal Characterization of Cultural Communities: A Computational Social Science Approach to Collective Memory and Attention  
Subjects
learning-performance

; 

network analysis

; 

students

; 

science

; 

technology

; 

cohesion

; 

dynamics

; 

behavior
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