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Showing 1 to 15 of 23 results Save | Export
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Ahmet Tasdere; Mehmet Fatih Kaya – Science Education International, 2023
The aim of the study was to investigate the effect of the Common Knowledge Construction Model (CKCM) on 10th-grade students' conceptual understanding of the buoyancy and density of liquids topic. Within a pre-experimental (one group pre-test/post-test) research design, this study was conducted with 22 of 10th-grade students. To collect data, the…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Grade 10
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Permatasari, Margaretha Bhrizda; Rahayu, Sri; Dasna, I Wayan – Journal of Science Learning, 2022
The abstractness of the chemistry concept can be understood easily through chemistry learning using multiple representations. This article used the Systematic Literature Review (SLR) method to review eleven articles published from 2012 to 2021 and focused on chemistry learning using various representations. The articles are systematically obtained…
Descriptors: Science Education, Science Instruction, Teaching Methods, Chemistry
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Balabanoff, Morgan E.; Al Fulaiti, Haiyan; Bhusal, Shikshya; Harrold, Archer; Moon, Alena C. – International Journal of Science Education, 2020
Light is used ubiquitously across science and engineering to explore, characterise, understand matter, and catalyse processes. Relative to its utility in science and engineering, very little research has been conducted on how students develop an understanding of light-matter interactions, especially at the quantum level, which is necessary to…
Descriptors: Chemistry, Science Instruction, Light, Student Attitudes
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Ponners, Pamela Jones; Piller, Yulia – TechTrends: Linking Research and Practice to Improve Learning, 2019
Research shows that well before children can verbalize their thoughts, they often create internal visual models of what scientists are and what they do (Farland-Smith 2012). Therefore, discovering, understanding and recording a student's own stereotypical perceptions are crucial to science instructors, as it is believed that perceptions may affect…
Descriptors: Educational Technology, Technology Uses in Education, Science Instruction, Cognitive Structures
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Moutinho, Sara; Moura, Rui; Vasconcelos, Clara – EURASIA Journal of Mathematics, Science & Technology Education, 2017
Model-Based learning is a methodology that facilitates students' construction of scientific knowledge, which, sometimes, includes restructuring their mental models. Taking into consideration students' learning process, its aim is to promote a deeper understanding of phenomena's dynamics through the manipulation of models. Our aim was to ascertain…
Descriptors: Cognitive Structures, Models, Visualization, Teaching Methods
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Srivastava, Anveshna – Biochemistry and Molecular Biology Education, 2016
When students build physical models from prefabricated components to learn about model systems, there is an implicit trade-off between the physical degrees of freedom in building the model and the intensity of instructor supervision needed. Models that are too flexible, permitting multiple possible constructions require greater supervision to…
Descriptors: Models, Biology, Undergraduate Students, Cognitive Structures
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Dolphin, Glenn; Benoit, Wendy – International Journal of Science Education, 2016
At present, quality earth science education in grade school is rare, increasing the importance of post-secondary courses. Observations of post-secondary geoscience indicate students often maintain errant ideas about the earth, even after direct instruction. This qualitative case study documents model-building activities of students as they…
Descriptors: Inquiry, Active Learning, Science Instruction, Earth Science
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Wang, Tzu-Hua; Chiu, Mei-Hung; Lin, Jing-Wen; Chou, Chin-Cheng – British Journal of Educational Technology, 2013
Mental models play an important role in science education research. To extend the effectiveness of conceptual change research and to improve mental model identi?cation and diagnosis, the authors developed and tested the Web-Based Mental Models Diagnosis (WMMD) system. In this article, they describe their WMMD system, which goes beyond the…
Descriptors: Educational Technology, Science Instruction, Models, Foreign Countries
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Kurnaz, Mehmet Altan; Eksi, Cigdem – Educational Sciences: Theory and Practice, 2015
Students often have difficulties understanding abstract physics concepts, such as solid friction. This study examines high school students' mental models of solid friction through a case study of 215 high school students in the ninth through twelfth grades. An achievement test with three open-ended questions was created, with questions limited to…
Descriptors: Physics, Science Instruction, Secondary School Science, High School Students
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Supasorn, Saksri – Chemistry Education Research and Practice, 2015
This study aimed to develop the small-scale experiments involving electrochemistry and the galvanic cell model kit featuring the sub-microscopic level. The small-scale experiments in conjunction with the model kit were implemented based on the 5E inquiry learning approach to enhance students' conceptual understanding of electrochemistry. The…
Descriptors: Grade 12, Cytology, Science Experiments, Energy
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Didis, Nilüfer; Eryilmaz, Ali; Erkoç, Sakir – Physical Review Special Topics - Physics Education Research, 2014
This paper is the first part of a multiphase study examining students' mental models about the quantization of physical observables--light, energy, and angular momentum. Thirty-one second-year physics and physics education college students who were taking a modern physics course participated in the study. The qualitative analysis of data revealed…
Descriptors: Science Instruction, Cognitive Structures, Models, Visualization
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Bächtold, Manuel – Research in Science Education, 2013
This paper aims at shedding light on what students can "construct" when they learn science and how this construction process may be supported. Constructivism is a pluralist theory of science education. As a consequence, I support, there are several points of view concerning this construction process. Firstly, I stress that constructivism…
Descriptors: Constructivism (Learning), Science Instruction, Science Education, Educational Theories
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Gupta, Ayush; Hammer, David; Redish, Edward F. – Journal of the Learning Sciences, 2010
In a series of well-known papers, Chi and Slotta (M. T. H. Chi, 1992, 2005; M. T. H. Chi & J. D. Slotta, 1993; M. T. H. Chi, J. D. Slotta, & N. de Leeuw, 1994; J. Slotta & M. T. H. Chi, 2006; J. D. Slotta, M. T. H. Chi, & E. Joram, 1995) have contended that a reason for students' difficulties in learning physics is that students…
Descriptors: Physics, Scientific Concepts, Models, Expertise
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Kinchin, Ian M. – Journal of Biological Education, 2010
The consideration of threshold concepts is offered in the context of biological education as a theoretical framework that may have utility in the teaching and learning of biology at all levels. Threshold concepts may provide a mechanism to explain the observed punctuated nature of conceptual change. This perspective raises the profile of periods…
Descriptors: Biology, Concept Formation, Models, Academic Achievement
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Ceylan, Eren; Geban, Omer – Hacettepe University Journal of Education, 2009
The main purpose of the study was to compare the effectiveness of 5E learning cycle model based instruction and traditionally designed chemistry instruction on 10th grade students' understanding of state of matter and solubility concepts. In this study, 119 tenth grade students from chemistry courses instructed by same teacher from an Anatolian…
Descriptors: Experimental Groups, Control Groups, Chemistry, Learning Processes
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