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Showing 1 to 15 of 76 results Save | Export
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Andreas Lachner; Leonie Sibley; Salome Wagner – Educational Psychology Review, 2024
In educational research, there is the general trade-off that empirical evidence should be generalizable to be applicable across contexts; at the same time, empirical evidence should be as specific as possible to be localizable in subject-specific educational interventions to successfully transfer the empirical evidence to educational practice.…
Descriptors: Evidence Based Practice, Instructional Effectiveness, Science Instruction, Instructional Design
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Dudas, Cecilia; Rundgren, Carl-Johan; Lundegård, Iann – Science & Education, 2023
Research has shown the importance of dealing with real-life issues and of enabling student encounters with complexity in chemistry education in order to increase student participation. Therefore, this study aims to analyse how complexity evolves in students' discussions and how this complexity relates to aspects of tentativeness in chemistry. In…
Descriptors: Chemistry, Science Instruction, Secondary School Students, Discussion (Teaching Technique)
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Syahri, Wilda; Muhaimin; Syamsurizal; Rusdi, Muhammad – International Journal of Instruction, 2021
The purpose of this study was to develop an instructional design model for physical chemistry courses based on multiple representatives for chemistry education students in Indonesia. In this research, several types of development methods were adopted and conducted during the early stages of development. The Lee's approach was used as a…
Descriptors: Foreign Countries, Instructional Design, Science Instruction, Models
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Grapin, Scott E.; Llosa, Lorena; Haas, Alison; Lee, Okhee – Journal of Science Education and Technology, 2022
Computational models are increasingly being used in K-12 science classrooms to engage students in developing and testing explanations of phenomena. However, research has only begun to consider whether integrating computational models into science instruction could be particularly beneficial to students from diverse backgrounds, including a…
Descriptors: Affordances, Computation, Models, Science Instruction
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Gyeong-Geon Lee; Hun-Gi Hong – Educational Technology Research and Development, 2024
The COVID-19 pandemic has compelled innovations in science teaching and learning, such as blending online sessions with conventional face-to-face classes. We developed and validated the Blended Laboratory and E-learning iNstructional Design (BLEND) model for university-level remote laboratory sessions (RLS) to respond to the fluctuating…
Descriptors: COVID-19, Pandemics, Educational Innovation, Blended Learning
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Roldán-Zafra, Juan; Perea, Carmen; Polo-Blanco, Irene; Campillo, Pedro – International Electronic Journal of Mathematics Education, 2022
The recent increase in the number of mathematics museums has given rise to a need for tools with which to design and assess mathematics educational proposals in this non-formal context. This study proposes the use of the van Hiele model, a benchmark in mathematics instruction, for the design of interactive museum models focusing on mathematics…
Descriptors: Geometry, Mathematics Instruction, Museums, Informal Education
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Qi Wang; Shengquan Yu – Interactive Learning Environments, 2024
Learning resources are quite important for online learning while resource provision based on algorithms could not address learners' ubiquitous needs well. Moreover, the structure and content of resources are pre-defined which makes the "Structure" and "Content" coupled closely and could not easily adjust when learners' needs…
Descriptors: Electronic Learning, Educational Resources, Automation, Models
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Jared P. Canright; Suzanne White Brahmia – Physical Review Physics Education Research, 2024
We report on a study of the effects of laboratory activities that model fictitious laws of physics in a virtual reality environment on (i) students' epistemology about the role of experimental physics in class and in the world; (ii) students' self-efficacy; and (iii) the quality of student engagement with the lab activities. We create…
Descriptors: Physics, Science Instruction, Self Efficacy, Computer Simulation
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Bahng, E. J.; Hauptman, John; Lowery, Jennifer – Journal of College Science Teaching, 2023
This article describes and illustrates a physics course for first-year college students whose only knowledge of physics is that they do not like the subject. The physics content is driven entirely by what appears in the daily newspapers and generally covers most physics topics in a semester. This course was structured as a learning community that…
Descriptors: Physics, College Freshmen, Course Descriptions, Newspapers
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Turan Güntepe, Ebru; Keles, Esra – International Journal of Contemporary Educational Research, 2023
This study aims to design an educational process for teaching scientific concepts during the preschool period based on the instructional design model of Seels and Glasgow and to evaluate its effectiveness. For this purpose, a material set incorporating a teacher's manual and interactive holographic materials was developed. The teacher's manual…
Descriptors: Instructional Design, Science Instruction, Teaching Methods, Scientific Concepts
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Endang Purwaningsih; Wasis; Suyatno Sutoyo; Ahmad Suryadi – Journal of Turkish Science Education, 2024
This study aims to develop, implement, and evaluate an instructional design model to enhance the pedagogical content knowledge (PCK) of physics student teachers. Model development is accomplished in five stages over two years: 1) problem identification, 2) preliminary identification of the product and design concepts, 3) preliminary theories and…
Descriptors: Pedagogical Content Knowledge, Science Teachers, Science Instruction, Lesson Plans
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Saputro, Sigit Dwi; Tukiran, Tukiran; Supardi, Zainal Arifin Imam – Cypriot Journal of Educational Sciences, 2022
Advanced clarification is an essential part of thinking skills relevant to students, which contains the ability evaluate, make decisions and make arguments. This ability is needed to prepare students to face the VUCA era. Clarity Learning Model (CLM) is a formulation of IBL, and the strengthening of reasoning abilities aims to improve advanced…
Descriptors: Physics, Models, Science Instruction, Instructional Design
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Yip Chin Chin; Chua Kah Heng – Malaysian Online Journal of Educational Sciences, 2024
Learning the periodic table of elements can pose a challenge for students due to the complex organization and relationships between the different elements. Game-based interventions have been shown in past studies to be one of the feasible ways to overcome this challenge. In this research, a tabletop game, called "Little Periodic" was…
Descriptors: Science Teachers, Chemistry, Game Based Learning, Instructional Design
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Aydin, Serap Öz; Azizoglu, Nursen; Yilmaz, Fatma Bilgican – Elementary School Forum (Mimbar Sekolah Dasar), 2023
This study aimed at designing instructional material named Biotechnology Instruction Module (BIM) which is enriched with active learning methods to enhance the 8th grade students' learning of the topic. The development of the teaching materials proceeded within the stages of the ADDIE instructional design model. The final form of the instructional…
Descriptors: Active Learning, Biotechnology, Case Studies, Genetics
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Aditya Anupam; Ridhima Gupta; Shubhangi Gupta; Zhendong Li; Nora Hong; Azad Naeemi; Nassim Parvin – International Journal of Designs for Learning, 2020
The abstract nature of quantum mechanics makes it difficult to visualize. This is one of the reasons it is taught in the language of mathematics. Without an opportunity to directly observe or interact with quantum phenomena, students struggle to develop conceptual understandings of its theories and formulas. In this paper we present the process of…
Descriptors: Quantum Mechanics, Science Instruction, Educational Games, Teaching Methods
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