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Showing 1 to 15 of 44 results Save | Export
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Kilde Löfgren, Sebastian; Weidow, Jonathan; Enger, Jonas – Science Education, 2023
The creation and use of models in science is of great importance for knowledge production and communication. For example, toy models are often used as idealized explanatory models in physics education. Models can be a powerful tool for exploring phenomena in ways that facilitate learning. However, careful consideration of instruction and…
Descriptors: Physics, Science Instruction, Laboratory Experiments, Learning Processes
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Meli, Kalliopi; Koliopoulos, Dimitrios; Lavidas, Konstantinos – Science & Education, 2022
Teaching and learning introductory thermodynamics has drawn considerable research attention over the last two decades, especially in several disciplines of higher education. Under particular investigation is the First Law of Thermodynamics (FLT), which offers an expression of energy conservation in thermodynamic systems, as the evidence shows that…
Descriptors: Thermodynamics, Science Instruction, Scientific Principles, Teaching Methods
Myungsoo Yoo – ProQuest LLC, 2024
Spatio-temporal processes are ubiquitous and prevalent across disciplines. Understanding the mechanisms underlying processes and integrating this information into models is of great interest, as it can improve forecasting accuracy and align with scientific motivation. Examples of such models include Partial Differential Equation (PDE) Models or…
Descriptors: Physics, Teaching Methods, Spatial Ability, Accuracy
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Özdemir, Erdogan; Coramik, Mustafa – Physics Education, 2022
It is often necessary to enrich the teaching environment in order for students to learn optics in depth and to interpret the real optical situations with the information they have learned. In this study, a virtual teaching environment was developed using by Algodoo, a 2D simulation software. An eye model was created in order to explain the…
Descriptors: Light, Physics, Teaching Methods, Models
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Semilarski, Helen; Soobard, Regina; Holbrook, Jack; Rannikmäe, Miia – International Journal of STEM Education, 2022
Background: The goal of this research was to determine students' perceived self-efficacy in science classes through involving students in expanding disciplinary core idea (DCI) and interdisciplinary core idea (ICI) maps, as a method to visualize knowledge (utilizing mind mapping and concept mapping) to support students to integrate…
Descriptors: Self Efficacy, Science Education, Interdisciplinary Approach, Concept Mapping
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Prayogi, Saiful; Yuanita, Leny; Wasis – Journal of Turkish Science Education, 2018
Teaching critical thinking (CT) to prospective teachers has been a concern for a long time, and prospective teacher training becomes an appropriate period for interventions that promote CT ability. Therefore, it is necessary to develop a model of learning that accommodates aspects of prior knowledge, motivation, and CT. This study aims to develop…
Descriptors: Preservice Teachers, Physics, Critical Thinking, Thinking Skills
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Laliyo, Lukman Abdul Rauf; Hamdi, Syukrul; Pikoli, Masrid; Abdullah, Romario; Panigoro, Citra – European Journal of Educational Research, 2021
One of the issues that hinder the students' learning progress is the inability to construct an epistemological explanation of a scientific phenomenon. Four-tier multiple-choice (hereinafter, 4TMC) instrument and Partial-Credit Model were employed to elaborate on the diagnosis process of the aforementioned problem. This study was to develop and…
Descriptors: Learning Processes, Multiple Choice Tests, Models, Test Items
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Korsun, Igor – Asia-Pacific Forum on Science Learning and Teaching, 2018
The aim of article is to prove the advisability of using the learning models in physics teaching. According to created general structure of physics teaching, we proposed to use the learning models for explanation of physical phenomena, concepts, laws and theories. The examples of material and thought models have been demonstrated. The requirements…
Descriptors: Science Instruction, Physics, Models, Learning Processes
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Mashood, K. K.; Khosla, Kamakshi; Prasad, Arjun; V., Sasidevan; Ashefas CH, Muhammed; Jose, Charles; Chandrasekharan, Sanjay – Physical Review Physics Education Research, 2022
Recent educational policies advocate a radical revision of science curricula and pedagogy, to support interdisciplinary practices, a distinguishing feature of contemporary science. Computational modeling (CM) is a core methodology of interdisciplinary science, as such models allow intertwining of data and theoretical perspectives from multiple…
Descriptors: Teaching Methods, Undergraduate Students, Science Instruction, Science Curriculum
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D'Eon, Marcel; Yasinian, Maryam – Higher Education Research and Development, 2022
In this article, we propose a new model of student workload. We conducted an extensive literature review of student workload, its impact on students' lives, factors influencing student workload, objective and subjective measurements. The previous conceptualizations of student workload conflate student work and course workload, two related but…
Descriptors: Physics, Science Instruction, Learning Processes, Barriers
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Bahtaji, Michael Allan A. – Journal of Baltic Science Education, 2021
5E instructional model is commonly utilized in science teaching to promote conceptual learning. However, the benefit of 5E instructional model cannot be fully attained if the knowledge and skills essential to learning were not properly established from past. Similarly, the development of new concepts cannot be fully attained if the important…
Descriptors: Physics, Science Instruction, Models, Mathematics Instruction
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Kusairi, Sentot; Noviandari, Lelitha; Parno; Pratiwi, Hastiningtyas Yuli – International Journal of Instruction, 2019
This study aims to analyze the students' understanding of motion in straight line concepts and their difficulties after the learning process. The research method is a mixed method with an embedded experimental design. The research was conducted in one of the public senior high schools in Malang City Indonesia with 34 students consisting of 20…
Descriptors: Physics, Motion, Public Schools, High School Students
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Langbeheim, Elon; Ben-Eliyahu, Einat; Adadan, Emine; Akaygun, Sevil; Ramnarain, Umesh Dewnarain – Chemistry Education Research and Practice, 2022
Learning progressions (LPs) are novel models for the development of assessments in science education, that often use a scale to categorize students' levels of reasoning. Pictorial representations are important in chemistry teaching and learning, and also in LPs, but the differences between pictorial and verbal items in chemistry LPs is unclear. In…
Descriptors: Science Instruction, Learning Trajectories, Chemistry, Thinking Skills
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Andreotti, Erica; Frans, Renaat – Physics Education, 2019
In this paper we describe the STEAM pedagogy developed under the European Union's Horizon 2020 project iMuSciCA (interactive music science collaborative activities). We present the pedagogical model this interdisciplinary pedagogy is based on and we give a concrete example of lesson scenario in which this pedagogy is applied. In particular we show…
Descriptors: STEM Education, Art Education, Physics, Engineering
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Seveno, R.; Dufay, T.; El Gibari, M.; Guiffard, B.; Li, H. W.; Morsli, S.; Pichon, A.; Tanguy, E. – Physics Education, 2018
Lecturer-researchers, because of the duality of their profession, can introduce students directly to their research. Stimulating student interest through practical research topics enables students to see the relevance of the teaching/learning process and thereby enhance their motivation. As a major societal issue, research on renewable energies is…
Descriptors: Physics, Science Instruction, Energy, Models
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