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Ian Descamps; Sophia Jeon; N. G. Holmes; Rachel E. Scherr; David Hammer – Physical Review Physics Education Research, 2024
In introductory physics laboratory instruction, students often expect to confirm or demonstrate textbook physics concepts. This expectation is largely undesirable: labs that emphasize confirmation of textbook physics concepts are generally unsuccessful at teaching those concepts and even in contexts that do not emphasize confirmation, such…
Descriptors: Physics, Science Instruction, Teaching Methods, Personal Autonomy
Verostek, Mike; Griston, Molly; Botello, Jesús; Zwickl, Benjamin – Physical Review Physics Education Research, 2022
Understanding how physicists solve problems can guide the development of methods that help students learn and improve at solving complex problems. Leveraging the framework of cognitive task analysis, we conducted semistructured interviews with theoretical physicists (N=11) to gain insight into the cognitive processes and skills that they use in…
Descriptors: Physics, Science Instruction, Teaching Methods, Troubleshooting
Hoffman, Heather J.; Elmi, Angelo F. – Journal of Statistics and Data Science Education, 2021
Teaching students statistical programming languages while simultaneously teaching them how to debug erroneous code is challenging. The traditional programming course focuses on error-free learning in class while students' experiences outside of class typically involve error-full learning. While error-free teaching consists of focused lectures…
Descriptors: Statistics Education, Programming Languages, Troubleshooting, Coding
Kevin J. Tu; Angela C. Sun; Daniel Levin – Journal of College Science Teaching, 2024
Undergraduate research experiences (UREs) significantly enhance the outcomes of students who participate. Unfortunately, students may face barriers to engaging in UREs, which creates challenges for students' development of essential research skills that may not be covered thoroughly in laboratory classes. Overall, there is a need for a curriculum…
Descriptors: Instructional Design, Molecular Biology, Science Instruction, Teaching Methods
Amin, S.; Sumarmi; Bachri, S.; Susilo, S.; Mkumbachi, R. L.; Ghozi, A. – Online Submission, 2022
Students need to possess sensitivity to the environment in order to behave positively when they notice a problem and find the right solution. This study intends to investigate whether the PBHL model affects the environmental sensitivity of Social Science Education students on environmental issues and conservation materials. The quasi-experimental…
Descriptors: Problem Based Learning, Blended Learning, Teaching Methods, Environmental Education
Moskal, Adon Christian Michael; Wass, Rob – Computer Science Education, 2019
Background and Context: Encouraging undergraduate programming students to think more about their software development processes is challenging. Most programming courses focus on coding skill development and mastering programming language features; subsequently software development processes (e.g. planning, code commenting, and error debugging) are…
Descriptors: Computer Software, Undergraduate Students, Programming, Programming Languages
Ochoa, Stacy D.; Dores, Michael R.; Allen, John M.; Tran, Tuan; Osman, Maryan; Vázquez Castellanos, Nidia P.; Trejo, JoAnn; Zayas, Ricardo M. – Biochemistry and Molecular Biology Education, 2019
Undergraduate research experiences are excellent opportunities to engage students in science alongside experienced scientists, but at large institutions, it is challenging to accommodate all students. To address and engage a larger number of students, we developed a modular laboratory course based on the course-based undergraduate research…
Descriptors: Laboratory Experiments, Science Instruction, Undergraduate Students, Course Descriptions
Van De Bogart, Kevin L. – ProQuest LLC, 2017
Instruction in analog electronics is an integral component of many physics and engineering programs, and is typically covered in courses beyond the first year. While extensive research has been conducted on student understanding of introductory electric circuits, to date there has been relatively little research on student learning of analog…
Descriptors: Electronics, Physics, Science Education, Engineering Education
Dounas-Frazer, Dimitri R.; Van De Bogart, Kevin L.; Stetzer, MacKenzie R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2016
We explore the overlap of two nationally recognized learning outcomes for physics lab courses, namely, the ability to model experimental systems and the ability to troubleshoot a malfunctioning apparatus. Modeling and troubleshooting are both nonlinear, recursive processes that involve using models to inform revisions to an apparatus. To probe the…
Descriptors: Role, Science Instruction, Physics, Outcomes of Education
Byrne, Jason; Furuyabu, Mariko – Teaching English with Technology, 2019
This paper aims to provide teachers with a practical guide to working in an IT enabled classroom. The paper outlines four central practical examples, with teacher reflections, of what was required in starting an actual IT enabled English listening & speaking program. The classroom environment described is board-less, meaning the teacher's…
Descriptors: Troubleshooting, English (Second Language), Second Language Learning, Second Language Instruction
Dounas-Frazer, Dimitri R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2017
In this exploratory qualitative study, we describe instructors' self-reported practices for teaching and assessing students' ability to troubleshoot in electronics lab courses. We collected audio data from interviews with 20 electronics instructors from 18 institutions that varied by size, selectivity, and other factors. In addition to describing…
Descriptors: Electronics, Science Laboratories, Laboratory Training, Science Instruction
Hoare, Todd – Chemical Engineering Education, 2015
The implementation of troubleshooting within a pre-existing expository laboratory is described and evaluated. Student feedback indicated that troubleshooting activities are highly effective in providing a hands-on opportunity to exercise problem-solving skills and gain a better understanding of the whole process in addition to effectively…
Descriptors: Science Instruction, College Science, Chemical Engineering, Science Laboratories
Deschênes, Jean-Sebastien; Barka, Noureddine; Michaud, Mario; Paradis, Denis; Brousseau, Jean – Chemical Engineering Education, 2013
A joint learning activity in process control is presented, in the context of a distance collaboration between engineering and technical-level students, in a similar fashion as current practices in the industry involving distance coordination and troubleshooting. The necessary infrastructure and the setup used are first detailed, followed by a…
Descriptors: Learning Activities, Distance Education, Technical Occupations, Engineering
Bennedsen, Jens; Schulte, Carsten – ACM Transactions on Computing Education, 2010
This article reports on an experiment undertaken in order to evaluate the effect of a program visualization tool for helping students to better understand the dynamics of object-oriented programs. The concrete tool used was BlueJ's debugger and object inspector. The study was done as a control-group experiment in an introductory programming…
Descriptors: Programming, Introductory Courses, Control Groups, Experimental Groups
Simon, Beth; Bouvier, Dennis; Chen, Tzu-Yi; Lewandowski, Gary; McCartney, Robert; Sanders, Kate – Computer Science Education, 2008
We report on responses to a series of four questions designed to identify pre-existing abilities related to debugging and troubleshooting experiences of novice students before they begin programming instruction. The focus of these questions include general troubleshooting, bug location, exploring unfamiliar environments, and describing students'…
Descriptors: Troubleshooting, Teaching Methods, Computer Science Education, Programming
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