Identifying Student Difficulties with Entropy, Heat Engines, and the Carnot Cycle
arXiv:1508.04104 · doi:10.1103/PhysRevSTPER.11.020116
Abstract
We report on several specific student difficulties regarding the Second Law of Thermodynamics in the context of heat engines within upper-division undergraduates thermal physics courses. Data come from ungraded written surveys, graded homework assignments, and videotaped classroom observations of tutorial activities. Written data show that students in these courses do not clearly articulate the connection between the Carnot cycle and the Second Law after lecture instruction. This result is consistent both within and across student populations. Observation data provide evidence for myriad difficulties related to entropy and heat engines, including students' struggles in reasoning about situations that are physically impossible and failures to differentiate between differential and net changes of state properties of a system. Results herein may be seen as the application of previously documented difficulties in the context of heat engines, but others are novel and emphasize the subtle and complex nature of cyclic processes and heat engines, which are central to the teaching and learning of thermodynamics and its applications. Moreover, the sophistication of these difficulties is indicative of the more advanced thinking required of students at the upper division, whose developing knowledge and understanding give rise to questions and struggles that are inaccessible to novices.
Cited by in corpus (7)
- Students' views about the nature of experimental physics
- Development and Validation of a conceptual survey instrument to evaluate introductory physics students' understanding of thermodynamics
- Student Epistemological Framing on Paper-Based Assessments
- Development and validation of a conceptual multiple-choice survey instrument to assess student understanding of introductory thermodynamics
- Investigating graduate student reasoning on a conceptual entropy questionnaire
- Investigating introductory and advanced students' difficulties with change in internal energy, work and heat transfer using a validated instrument
- Physics Computational Literacy: Programming, modeling and collaboration at the journeyman level