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Rooserina Kusumaningdyah; Iztok Devetak; Yudhi Utomo; Effendy Effendy; Daratu Putri; Habiddin Habiddin – Center for Educational Policy Studies Journal, 2024
This paper presents an analysis of the use of multimedia and hands-on models on university students' understanding of stereochemistry. The relationship between students' scientific reasoning skills and their understanding of stereochemistry was also determined. Two groups of second-year chemistry students from the State University of Malang taking…
Descriptors: Thinking Skills, Science Process Skills, Multimedia Instruction, Hands on Science
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Jordan M. Renna; Katelyn B. Sondereker; Christopher L. Cors; Sara N. Chaszeyka; Kristin N. Keenan; Michael R. Corigliano; Lindsey A. Milgrom; Jessica R. Onyak; Edward J. Hamad; Maureen E. Stabio – Anatomical Sciences Education, 2024
The reconstruction of two-dimensional (2D) slices to three-dimensional (3D) digital anatomical models requires technical skills and software that are becoming increasingly important to the modern anatomist, but these skills are rarely taught in undergraduate science classrooms. Furthermore, learning opportunities that allow students to…
Descriptors: Anatomy, Undergraduate Students, Science Instruction, Models
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Ebert, James R.; Dolphin, Glenn; Bischoff, Paul – Journal of Geoscience Education, 2023
Three cohorts of six pre-service Earth Science teachers (undergraduate majors in Earth Science Education) participated in summer research experiences focused on developing dynamic physical models of Earth processes to help middle and high school students understand complex concepts and confront misconceptions. The pre-service teachers used…
Descriptors: Undergraduate Students, Student Research, Student Experience, Earth Science
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Geller, Benjamin D.; Tipton, Maya; Daniel-Morales, Brandon; Tignor, Nikhil; White, Calvin; Crouch, Catherine H. – Physical Review Physics Education Research, 2022
A central goal of introductory physics for the life sciences (IPLS) is to prepare students to use physics to model and analyze biological situations, a skill of increasing importance for their future studies and careers. Here we report our findings on life science students' ability to carry out a sophisticated biological modeling task at the end…
Descriptors: Science Instruction, Physics, Science Process Skills, Biological Sciences
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Price, J. A.; Olver, J. – Journal of Biological Education, 2023
Most undergraduate students do not have practical experience working with model organisms despite having theoretical knowledge of their importance. This practical was developed to offer students experience working with three species of nematode, including "Caenorhabditis elegans." In the first task, students prepare slides of three…
Descriptors: Undergraduate Students, Science Instruction, Models, Preferences
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Hoehn, Jessica R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
Students sometimes learn about a model of the "scientific method" that is linear and clear cut. While this approach may have pedagogical advantages, it does not reflect how science is often done in practice. The Experimental Modeling Framework (EMF) describes the complex and iterative process of experimentation in the domain of physics,…
Descriptors: Undergraduate Students, Student Attitudes, Scientific Attitudes, Scientific Methodology
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Dylan K. Smith; Kristin Lauro; Dymond Kelly; Joel Fish; Emma Lintelman; David McEwen; Corrin Smith; Max Stecz; Tharushi D. Ambagaspitiya; Jixin Chen – Journal of Chemical Education, 2022
A physical chemistry lab for undergraduate students described in this report is about applying kinetic models to analyze the spread of COVID-19 in the United States and obtain the reproduction numbers. The susceptible-infectious-recovery (SIR) model and the SIR-vaccinated (SIRV) model are explained to the students and are used to analyze the…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Students
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Muthukumar, N.; Srinivasan, Seshadhri; Subathra, B.; Ramkumar, K. – IEEE Transactions on Education, 2021
Contribution: This article explores how the Industrial Internet of Things (IIoT) could be leveraged to enhance the teaching/learning experience of advanced control techniques [e.g., model-predictive control (MPC)] for complex systems (nonlinear and multivariable) for undergraduate students. Background: The IIoTs' features, such as ubiquitous…
Descriptors: Undergraduate Students, College Science, Science Instruction, Internet
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Mason N. Tedeschi; Lisa B. Limeri – CBE - Life Sciences Education, 2024
Advancing equity and justice in undergraduate biology education requires research to address the experiences of disabled students. Scholars working in disability studies have developed models of disability that inform Discipline-Based Education Research (DBER). To date, DBER literature has been predominantly informed by the medical and social…
Descriptors: Models, Disabilities, Scientific Research, Biology
Nicole Calma-Roddin; Kevin Park; Jacqueline Keighron – Journal of Chemical Education, 2023
The three-dimensional nature of macromolecules is often difficult for undergraduate students to grasp. This leads to difficulties in understanding key concepts in Biochemistry, such as protein function and conformational change. Virtual reality (VR) technologies, which can aid students in three-dimensional visualizations, have been shown to…
Descriptors: Technology Integration, Technology Uses in Education, Museums, Undergraduate Students
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Tugba Yuksel; Lynn A. Bryan; Alejandra J. Magana – International Journal of Science Education, 2024
Quantum physics forms the basis for exciting new technologies, including quantum computers, quantum encryption, and quantum entanglement. The advancement of science and technology highlights the importance of mastering quantum physics and its applications, not only at the college level but also as early as high school. In this multiple case study,…
Descriptors: Undergraduate Students, Models, Quantum Mechanics, Science Instruction
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W. Brian Lane; Daniela Zavala; Gabriella Khazal; Naomi Laird – Physical Review Physics Education Research, 2024
The communities of practice (COP) framework describes learning as a process of navigating one's position of membership within a community of professionals pursuing a set of common goals using established practices. As students navigate their membership within a community like a physics research group, they develop a mental model of the community…
Descriptors: Student Research, Research Training, Physics, Science Instruction
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Atchia, Shakeel M. C. – Journal of Biological Education, 2023
Reflection on current practices is key to the transformation of teachers into reflexive practitioners. This study describes how design thinking was integrated in Schön's 'reflection in and on' model, to transform traditional teaching of Biology into constructivist learning. As a first step, the reflection model was used to identify limitations in…
Descriptors: Design, Thinking Skills, Reflection, Models
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White, Holly; Forbes, Cory T. – Journal of Geography in Higher Education, 2023
Undergraduate students may possess underdeveloped knowledge about water systems, particularly groundwater. The use of models and modeling have been employed in undergraduate classrooms to support students' learning about water. However, effective modeling requires spatial thinking skills, which undergraduate students may also need to develop.…
Descriptors: Undergraduate Students, Water, Environmental Education, College Science
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Sujiyani Kassiavera; A. Suparmi; C. Cari; Sukarmin Sukarmin – Journal of Baltic Science Education, 2024
The challenge of accurately assessing critical thinking in physics education, particularly on topics like work and energy, remains a key issue for educators. The current study aims to address this challenge by exploring students' critical thinking abilities using two-tier test data analyzed through the Rasch model. Data were collected from…
Descriptors: Critical Thinking, Physics, Science Instruction, Foreign Countries
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