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Christof Keebaugh; Emily Marshman; Chandralekha Singh – Physical Review Physics Education Research, 2024
We examine students' challenges in determining the number of distinct many-particle stationary states for a system of noninteracting identical particles, focusing on how these insights guided the design, validation, and evaluation of a quantum interactive learning tutorial (QuILT) to aid students' understanding. Specifically, we focus on systems…
Descriptors: Physics, Scientific Concepts, Science Education, Quantum Mechanics
Rayendra Wahyu Bachtiar; Ralph F. G. Meulenbroeks; Wouter R. Joolingen – Journal of Research in Science Teaching, 2024
Previous studies have documented the promising results from student-constructed representations, including stop-motion animation (SMA), in supporting mechanistic reasoning (MR), which is considered an essential thinking skill in science education. Our current study presents theoretically and empirically how student-constructed SMA contributes to…
Descriptors: Animation, Thinking Skills, Science Education, Skill Development
Riccardi, P.; Prete, G.; Chiappetta, F.; Meringolo, C. – Physics Education, 2023
This work discusses a didactic path aimed at revisiting the first experiments on the transmission and detection of electromagnetic waves, performed by Guglielmo Marconi at the end of the 19th century. With very simple materials it is possible to set-up apparatus that allow to illustrate practically the simple physical picture of wireless…
Descriptors: Telecommunications, Energy, Magnets, Laboratory Equipment
Meng Wang; Jingwen He; Wei Lei; Qianfu Luo; Wenjun Wu; Wei-Hong Zhu – Journal of Chemical Education, 2024
The essence of university courses lies in their scientific rigor, while the enjoyment of learning serves as a motivation. In this regard, we have developed a comprehensive experiment project by incorporating dithienylethene-based photochromic units into sensitizers for renewable energy, specifically dye-sensitized solar cells, through organic…
Descriptors: Undergraduate Study, Student Research, College Science, Scientific Concepts
Shemwell, Jonathan T.; Capps, Daniel K.; Fackler, Ayca K.; Coogler, Carlson H. – Journal of Science Education and Technology, 2023
Big ideas in science education are meant to be interpretive frameworks that empower student learning. Unfortunately, outside of the broad conception of scientific evaluation, there are few theoretical explanations of how this might happen. Therefore, we contribute one such explanation, an instructional concept called integrative analysis wherein…
Descriptors: Science Education, Scientific Concepts, Secondary School Science, Grade 9
Pérgola, Martín; Sacco, Natalia J.; Bonetto, M. Celina; Galagovsky, Lydia; Cortón, Eduardo – Biochemistry and Molecular Biology Education, 2023
Nowadays there is a concern to improve the quality of education by including an interdisciplinary approach of concepts and their integration in the curriculum of scientific disciplines. The development of microbial fuel cells as a potential alternative for production of renewable energies gives undergraduate students the challenge of integrating…
Descriptors: Science Experiments, Science Education, Undergraduate Students, Energy
Tang Wee Teo; Zee Heng Joshua Loh; Lek Ee Kee; Gary Soh; Eugene Wambeck – Research in Science Education, 2024
Science centres are informal learning spaces embedded with artefacts embodying mediational affordances. This exploratory and small-scale mixed methods study juxtaposes eye-tracking technologies and qualitative interviews to examine how visitors to a gallery navigated this space and interacted with different artefacts. A total of 15 visitors to the…
Descriptors: Affordances, Science Education, Informal Education, Eye Movements
White, Gary; Sikorski, Tiffany-Rose; Landay, Justin; Ahmed, Maryam – Physical Review Physics Education Research, 2023
Limiting case analysis (LCA) is important to practicing physicists. Yet, there is little concrete guidance for physics educators, and a lack of consensus in the research community about how to help students learn, and learn from, limiting case analysis. In this study, we first review existing literature to find commonalities and variations in how…
Descriptors: Energy, Magnets, Physics, Science Education
Fiedler, Kristin; Kubsch, Marcus; Neumann, Knut; Nordine, Jeffrey – Physical Review Physics Education Research, 2023
Science education research has repeatedly revealed students' problems with understanding the energy concept, in particular, their understanding of potential energy. Newer research suggests that teaching students fields as a means to store potential energy may promote a more consistent understanding of the energy concept. Yet, it is presently…
Descriptors: Science Education, Energy, Middle School Students, Grade 6
Carla M. Firetto; Emily Starrett; Michelle E. Jordan – Journal of Science Teacher Education, 2024
This study examined the impact of a practice-based approach to in-service science teacher education, using small-group discussions about photovoltaic (PV) science to support teachers' instruction on sustainable energy transitions in response to climate change risks. Ultimately, we aimed to promote teachers' PV science comprehension as well as…
Descriptors: Small Group Instruction, Group Discussion, Science Teachers, Inservice Teacher Education
Mirjana Maricic; Stanko Cvjeticanin; Branko Andic; Mia Maric; Aleksandar Petojevic – Journal of Research on Technology in Education, 2024
This research aimed to determine the effectiveness of applying instructive simulation experiments (SE) to the development of deeper conceptual understanding, retention of static electricity contents, and engagement of 4th-grade students. The correlation between student achievements and engagement was examined. 76 4th graders (10-11 years) were…
Descriptors: Scientific Concepts, Science Education, Energy, Science Experiments
Yeadon, Will; Quinn, Mark – Physics Education, 2021
We present a thermodynamics experiment suitable for first year undergraduate students employing Stirling Engines to create a demonstration of energy transformation and to measure the mechanical efficiency of such engines. Using an inexpensive transparent chambered Stirling Engine, students can connect concepts such as the theoretical…
Descriptors: Thermodynamics, Science Education, Physics, College Science
John O'Donoghue; Natalia Garci´a Dome´nech; Fiona McArdle; Mary Connolly; Yvonne Lang; Niamh McGoldrick – Journal of Chemical Education, 2023
Over the course of the COVID-19 pandemic, school students suffered from a reduction in opportunities to connect with higher education institutions, meet scientific role models in person, discuss scientific career options, and carry out hands-on practical laboratory activities. Current Chemistry Investigators (CCI) is a successful…
Descriptors: Chemistry, Energy, Workshops, Scientists
Samuel Jere; Mamotena Mpeta – Research in Science Education, 2024
One of the critical goals of teaching chemistry is to enable learners to gain conceptual understanding. Traditional instruction has often been associated with rote memorisation, resulting in learners failing to explain observed chemical phenomena, make predictions based on acquired concepts, advance convincing arguments, and engage in meaningful…
Descriptors: Computer Simulation, Concept Formation, Energy, Scientific Concepts
Brian J. Esselman; Aubrey J. Ellison; Nicholas J. Hill – Journal of Chemical Education, 2022
Benzoin, an [alpha]-hydroxy ketone, is stereoselectively reduced by sodium borohydride to yield hydrobenzoin, the stereochemistry of which is determined by acetalization and analysis of the derivative by NMR spectroscopy. This classical experiment has been enhanced by modern spectroscopic and computational analysis to enable students to…
Descriptors: Computation, Chemistry, Science Education, Molecular Structure