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Tufan Inaltekin; Tolga Saka – Journal of Baltic Science Education, 2025
In science, one of the most crucial representations for constructing meaning about physical events is graphs. The first graph students encounter in science class is the constant velocity motion graph. Therefore, examining students' understanding of structuring and interpreting these graphs for the relationship between distance, time, and velocity…
Descriptors: Science Instruction, Graphs, Motion, Scientific Concepts
Wenyuan Yang; Sihang Chen; Cheng Liu – American Biology Teacher, 2024
Modeling is a core practice in science and is a meaningful way to learn the subject. This article introduces a modeling-based approach that highlights the idea that modeling is an iterative process and integrates the fundamental parts of scientists' work and key suggestions for teaching through modeling. The lesson "The Structure and Function…
Descriptors: Models, Middle School Students, Biology, Science Instruction
Shachar Boublil; David Blair; David F. Treagust – International Journal of Science and Mathematics Education, 2024
The most famous equation in physics, E = mc[superscript 2], is rarely introduced in middle school physics curricula. Recent research has shown that teaching Einsteinian concepts at the middle school level is feasible and beneficial. This paper analyses an Einsteinian energy teaching module for Year 8 students (13-14 years old), which encompasses…
Descriptors: Physics, Science Instruction, Energy, Grade 8
Ifeyinwa Uke; Jazlin Ebenezer; Osman Nafiz Kaya – Research in Science Education, 2024
This mixed-methods research study aimed to observe the changes in relational conceptual changes and achievement in photosynthesis and cellular respiration in 15 seventh-grade students using the variation theory of learning, a framework for contextual distinctions, and supports the Common Knowledge Construction Model (CKCM) for science education.…
Descriptors: Grade 7, Scientific Concepts, Science Achievement, Cytology
Feyza Turk; Nagihan Yildirim – Journal of Theoretical Educational Science, 2025
This study used a case study, one of the qualitative research methods, with the aim of developing guidance materials based on the argumentation-based science learning (ABSL) approach for concepts in the 6th grade unit "Sound and Its Properties" and to examine students' argumentation levels and conceptual understanding. The activity…
Descriptors: Persuasive Discourse, Science Instruction, Grade 6, Scientific Concepts
Chun-Hsin Kuo; Meng-Jun Chen; Robasa Nababan; Hsiao-Ching She – IEEE Transactions on Learning Technologies, 2024
Game-based learning (GBL) has long been recognized as an effective way to engage students in learning through games, but little emphasis has been placed on scaffolding support for students, which hinders their learning. Therefore, our design of Space Adventure GBL ties games closely to scaffolds at every stage and investigates what role games and…
Descriptors: Game Based Learning, Scaffolding (Teaching Technique), Grade 8, Instructional Effectiveness
Slimane Omari; Mhamed Ben Ouahi; Mohammed Habib; Nadia Benjelloun – Science Education International, 2024
To address the challenge of improving the understanding of chemistry concepts, particularly pH, this study explored the impact of integrating educational robotics on students' motivation and learning outcomes. A total of 160 3rd-year middle school students from a public school in Meknes, Morocco, participated in the study, which was divided into…
Descriptors: Student Motivation, Chemistry, Science Instruction, Middle School Students
Tamar Fuhrmann; Leah Rosenbaum; Aditi Wagh; Adelmo Eloy; Jacob Wolf; Paulo Blikstein; Michelle Wilkerson – Science Education, 2025
When learning about scientific phenomena, students are expected to "mechanistically" explain how underlying interactions produce the observable phenomenon and "conceptually" connect the observed phenomenon to canonical scientific knowledge. This paper investigates how the integration of the complementary processes of designing…
Descriptors: Mechanics (Physics), Thinking Skills, Scientific Concepts, Concept Formation
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
Yi Zou; Xinyu Xue; Lizhen Jin; Xiao Huang; Yanbing Li – Physical Review Physics Education Research, 2024
Developing a deeper understanding of scientific concepts is one of the primary goals of science education. To improve students' conceptual understanding, it is necessary to explore the major characteristics of their learning process. Informed by previous work on conceptual understanding, this study focuses on the concept of evaporation, exploring…
Descriptors: Concept Formation, Scientific Concepts, Physics, Science Instruction
Valerie Amacker; Hendrik Lohse-Bossenz; Markus Wilhelm; Dorothee Brovelli – International Journal of Science Education, 2024
The field of geometrical optics features a broad knowledge base concerning conceptual learning difficulties and student conceptions. However, in contrast to other areas of physics, no widely used standard test instrument exists to assess middle school students' conceptual knowledge of geometrical optics. This is even more true for other areas of…
Descriptors: Foreign Countries, Middle School Students, Physics, Science Instruction
Thomas H. Linz; Mario A. Cornejo; Courtney E. Cunningham; Hao T. Mai; Shakila H. Peli Thanthri – Journal of Chemical Education, 2024
A collection of four activities for science outreach events was developed to teach middle school students about the temperature dependence of scientific phenomena. Procedures are described for four interactive demonstrations on phase changes, fluorescence, viscosity effects on diffusion, and conductivity. Each hands-on activity helps students…
Descriptors: Middle School Students, Science Instruction, Climate, Scientific Concepts
Merryn Cole; Thomas Ryan; Jennifer Wilhelm – Taboo: The Journal of Culture and Education, 2023
While scientific vocabulary is important, it can often become problematic for students. Sometimes, those words can become a barrier to participation or act as a gatekeeper to success in the science classroom. Under the Next Generation Science Standards, middle school students are expected to model Earth-Moon-Sun motions to explain Moon phases,…
Descriptors: Middle School Students, Science Instruction, Vocabulary, Astronomy
Gabriela L. Schmitz; Luana E. Joras; Pablo A. Nogara; Maria Eduarda A Galiciolli; Bruna C. Piccoli; Fernanda Davila da Silva; Cláudia S. Oliveira; João B. T. Rocha – Journal of Biological Education, 2024
Proteins are essential for cell function, and their biological performance depends on three-dimensional (3D) structures. Insulin is made up of 51 amino acids and is a critical hormone involved in glycaemia regulation. In basic education, concepts involving proteins (synthesis, structure, interactions, and function) are abstract and difficult for…
Descriptors: Science Instruction, Grade 9, Models, Physiology
Brooke A. Moore; Steve J. Skoczek; Hannah W. Wince – Advocate, 2024
Students with learning disabilities deserve high-quality science instruction that supports them in constructing scientific explanations as a means toward building their science content knowledge. We examined written scientific explanations of 66 middle-school students with learning disabilities from rural Kansas school districts, comparing them…
Descriptors: Middle School Students, Students with Disabilities, Learning Disabilities, Science Instruction