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Mnguni, Lindelani; Moyo, Dudrah – EURASIA Journal of Mathematics, Science and Technology Education, 2021
Using external representations (ERs) to foster content understanding in biology education has increased as they allow for the visualization of abstract biological phenomena. However, the extent to which students have visualization skills required to learn from ERs effectively remains an open question. The current quantitative quasi-experimental…
Descriptors: Animation, Biology, Science Instruction, Teaching Methods
Strømme, Torunn Aa.; Mork, Sonja M. – Research in Science Education, 2021
This paper analyses students' conceptual sense-making of two representations of protein synthesis: animations and static visualizations. Even though several studies have focused on the effect of animations versus static visualizations or support aspects that enable students to effectively benefit from animations, existing research has not yet…
Descriptors: Animation, Science Instruction, Units of Study, Visualization
Singh, Garima; Khunyakari, Ritesh – Contemporary Education Dialogue, 2023
Learning about components and processes of complex biological systems is challenging and requires abstraction through mediational tools such as text, visuals, models and visualisation experiences. The 'systems concepts' necessitate building coherent relations and anticipating consequences, requiring greater mediational support. This article…
Descriptors: Biology, Science Instruction, Scaffolding (Teaching Technique), Teaching Methods
Seibert, Johann; Kay, Christopher W. M.; Huwer, Johannes – Journal of Chemical Education, 2019
Given that students are constantly communicating and documenting special experiences in their social and private lives with digital devices, we suggest that this behavior could be used to record and deepen learning experiences-such as visualizing reactions at the molecular level-in a chemistry class. An example would be the creation of stop-motion…
Descriptors: Science Instruction, Chemistry, Science Experiments, Educational Technology
Cheng, Maurice M. W.; Gilbert, John K. – International Journal of Science Education, 2017
This paper proposes a model-based notion of "submicro representations of chemical reactions". Based on three structural models of matter (the simple particle model, the atomic model and the free electron model of metals), we suggest there are two major models of reaction in school chemistry curricula: (a) reactions that are simple…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Models
Haskel-Ittah, Michal; Yarden, Anat – Science & Education, 2017
Previous studies have shown that students often ignore molecular mechanisms when describing genetic phenomena. Specifically, students tend to directly link genes to their encoded traits, ignoring the role of proteins as mediators in this process. We tested the ability of 10th grade students to connect genes to traits through proteins, using…
Descriptors: Science Instruction, Genetics, Grade 10, Secondary School Science
Balta, Nuri – European Journal of Physics Education, 2015
Visualizing physical concepts through models is an essential method in many sciences. While students are mostly proficient in handling mathematical aspects of problems, they frequently lack the ability to visualize and interpret abstract physical concepts in a meaningful way. In this paper, initially the electric circuits and related concepts were…
Descriptors: Science Instruction, Scientific Concepts, Equipment, Visualization
Al-Balushi, Sulaiman
M.; Coll, Richard
Kevin – International Journal of Science Education, 2013
The current study compared different learners' static and dynamic mental images of unseen scientific species and processes in relation to their spatial ability. Learners were classified into verbal, visual and schematic. Dynamic images were classified into: appearing/disappearing, linear-movement, and rotation. Two types of scientific entities and…
Descriptors: Cognitive Style, Visualization, Spatial Ability, Grade 9
Akaygun, Sevil – Chemistry Education Research and Practice, 2016
Visualizing the chemical structure and dynamics of particles has been challenging for many students; therefore, various visualizations and tools have been used in chemistry education. For science educators, it has been important to understand how students visualize and represent particular phenomena--i.e., their mental models-- to design more…
Descriptors: High School Students, Secondary School Science, Grade 10, Grade 11
Ummels, Micha H. J.; Kamp, Marcel J. A.; De Kroon, Hans; Boersma, Kerst Th. – Science Education, 2015
In secondary science education, the learning and teaching of coherent conceptual understanding are often problematic. Context-based education has been proposed as a partial solution to this problem. This study aims to gain insight into the development of conceptual coherence and how context-embedded learning-teaching activities (LT) can promote…
Descriptors: Secondary School Science, Science Education, Scientific Concepts, Biology
Haglund, Jesper; Jeppsson, Fredrik; Hedberg, David; Schönborn, Konrad J. – Physics Education, 2015
Thermal cameras offer real-time visual access to otherwise invisible thermal phenomena, which are conceptually demanding for learners during traditional teaching. We present three studies of students' conduction of laboratory activities that employ thermal cameras to teach challenging thermal concepts in grades 4, 7 and 10-12. Visualization of…
Descriptors: Photography, Teaching Methods, Heat, Science Laboratories
Kurnaz, Mehmet Altan; Emen, Ayse Yagmur – Acta Didactica Napocensia, 2014
Following up on the effects of learning environments is essential to learning. The aim of this study was to examine students' mental models related to the concepts of expansion and contraction of materials. The population of the case study consisted of 155 students in a city center in Turkey. The data was gathered using open-ended questions that…
Descriptors: Foreign Countries, Case Studies, Models, Cognitive Structures
Meyer, Steve – Science Activities: Classroom Projects and Curriculum Ideas, 2006
A two-dimensional weather map is actually a physical representation of three-dimensional atmospheric conditions at a specific point in time. Abstract thinking is required to visualize this two-dimensional image in three-dimensional form. But once that visualization is accomplished, many of the meteorological concepts and processes conveyed by the…
Descriptors: Weather, Maps, Abstract Reasoning, Meteorology