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Ayça K. Fackler; Daniel K. Capps – International Journal of Science Education, 2024
The literature on scientific modelling practices in science education has provided a fruitful discussion on how learners tend to view models vs. how and what they should think about them. One approach is to teach students that models are abstractions so that they do not view them as a copy of phenomena they represent. Although teaching students…
Descriptors: Science Education, Scientific Concepts, Models, Science Instruction
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Michael A. Rother – International Journal of Mathematical Education in Science and Technology, 2024
A straightforward experimental set-up, requiring a two-liter bottle, a ruler and a stopwatch, is used to provide data appropriate for modelling with Torricelli's Law in the simplest case, and a more sophisticated differential equation when losses are taken into account and a pipe extension is considered. With only an exit hole included in the…
Descriptors: Science Experiments, Science Education, Scientific Principles, Equations (Mathematics)
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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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Avsar Erumit, Banu; Yuksel, Tugba – International Journal of Science and Mathematics Education, 2023
Raising scientifically literate citizens has been the main concern of the science education community. Socioscientific issues (SSIs) provide a context to facilitate individuals to expand their epistemic understanding and develop scientific reasoning skills such as evidence-based argumentation and consensus building. In this qualitative research,…
Descriptors: Scientific Literacy, Science and Society, Science Education, Science Process Skills
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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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Rieke Ammoneit; Maximilian Felix Göhner; Tom Bielik; Moritz Krell – Science Education, 2024
Definitions of modeling competence in science education do not yet include noncognitive factors. However, noncognitive factors are central to competence and might thus substantially improve our understanding of modeling competence. In this article, we analyze volition during preservice science teachers' engagement with a black-box modeling task…
Descriptors: Models, Science Education, Preservice Teachers, Science Teachers
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Angela Bassoli – Journal of Chemical Education, 2024
Organic molecules are invisible objects, but they can be visualized and manipulated by using molecular models. The object-based learning (OBL) approach, which is an educational tool developed for museums and collection items, is tailored and applied to a first-year bachelor course of organic chemistry. At the beginning of the course, each student…
Descriptors: Organic Chemistry, Science Instruction, Undergraduate Study, College Science
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Horikoshi, Ryo; Shirotani, Dai; Shioyama, Hiroshi – Journal of Chemical Education, 2022
Buckminsterfullerene (C[subscript 60]), along with diamond and graphite, appears in many chemistry textbooks as an example of an allotrope of carbon. This communication describes a hands-on activity to explore the characteristic structure of C[subscript 60] through the construction of a structural model using transistors and plastic tubes…
Descriptors: Chemistry, Science Instruction, Hands on Science, 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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Wong, Chee Leong; Chu, Hye-Eun; Yap, Kueh Chin – Asia-Pacific Science Education, 2021
Studies have shown that inadequate definitions of scientific concepts could complicate the learning of science and could prevent students from understanding the definitions of scientific concepts. The article provides a framework for defining scientific concepts in primary, secondary, and university education by proposing teachers draw attention…
Descriptors: Definitions, Scientific Concepts, Science Education, Elementary School Science
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María Esther Téllez-Acosta; Andres Acher; Scott P. McDonald – Journal of Science Teacher Education, 2024
Learning to plan modeling-based investigations (MBIs) presents significant challenges for pre-service elementary teachers. Although they understand disciplinary core ideas and modeling practices, they address both as competing learning goals and, as novices, they have not experienced how to structure MBIs for their future students. In the context…
Descriptors: Preservice Teachers, Elementary School Teachers, Models, Investigations
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Eric Kincanon – European Journal of Physics Education, 2022
Teaching upper division statistical physics can often be clouded by the theory and complex examples used. To better help students appreciate the fundamental statistical concepts and how they are connected to thermodynamic principles this paper suggests using a simple abstract model. Using Atkins' Model students can see these ideas clearly…
Descriptors: Statistics, Physics, Thermodynamics, Models
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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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Juan Torras – Journal of Chemical Education, 2023
Modeling an inter-ring torsional profile of a simple2,2'-bithiophenemolecule has been used to illustrate the main concepts associated with basic molecular modeling within an introductory course in a master's degree on computational modeling. The methodology proposed in the activity has been used to guide and train the student along the classical…
Descriptors: Chemistry, Molecular Structure, Models, Scientific Concepts
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Luvia R. Nastiti; Widha Sunarno; Sukarmin Sukarmin; Sulistyo Saputro; Luqman Baehaqi – Journal of Baltic Science Education, 2024
The intricacy of real-world challenges in project-based geoscience learning is complex to assess with a STEM approach; hence, research into an effective model is necessary to address current issues in education. Understanding the role of STEM in resolving challenging real-world issues requires integrating STEM literacy that is appropriate for…
Descriptors: STEM Education, Multiple Literacies, Active Learning, Student Projects
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