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Showing 1 to 15 of 41 results Save | Export
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Sebastian Björnhammer; Iann Lundegård; Jakob Gyllenpalm – Cultural Studies of Science Education, 2024
In science education, students need to work with laboratory elements that create conditions for them to learn to do science and experience the value of making meaning in this process. However, students rarely get to carry out investigations that resemble actual scientific practices. More often, they are encouraged to follow an already given…
Descriptors: Science Education, Scientific Concepts, Active Learning, Inquiry
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Minchul Kim; Sangwoo Ha – Science & Education, 2024
Although Ohm's law contains various possibilities in teaching and learning scientific inquiry, it is rare for students to experience an authentic inquiry. Thus, we designed an open-ended in-depth inquiry about Ohm's law and made students conduct it. To do this, we developed a laboratory activity for students following a standard method of Ohm's…
Descriptors: Physics, Scientific Concepts, Concept Formation, Science Instruction
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Yan Wang; Peng He; Jinling Geng; Zhiwei Zhu – Journal of Chemical Education, 2025
This paper presents an innovative teaching approach that integrates photoelectric technology with analytical chemistry instruction through inquiry-based learning (IBL), using cerium as a selected analyte. With the advancement of science and technology, a strong foundation of basic knowledge and methodologies is crucial in analytical chemistry…
Descriptors: Instructional Innovation, Chemistry, Science Instruction, Active Learning
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Chuan-Jun Yue; Li-Ping Gu – Journal of Chemical Education, 2022
Organic chemistry is the study of organic compounds containing hydrocarbons and their derivatives. It is similar to inorganic chemistry in terms of the cognitive model. However, the vast number of organic compounds has added to the difficulty in learning organic chemistry with compressed class hours in engineering majors. The integration of the…
Descriptors: Organic Chemistry, Scientific Concepts, Engineering Education, Learning Processes
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Al Mamun, Md Abdullah; Lawrie, Gwendolyn – Smart Learning Environments, 2023
Technological innovations and changing learning environments are influencing student engagement more than ever before. These changing learning environments are affecting the constructs of student behavioural engagement in the online environment and require scrutiny to determine how to facilitate better student learning outcomes. Specifically,…
Descriptors: Instructional Design, Student Behavior, Inquiry, Learner Engagement
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Prain, Vaughan; Xu, Lihua; Speldewinde, Christopher – Research in Science Education, 2023
There is a long tradition of teaching science through inquiry, with broad agreement about the form it should take. Students should investigate researchable questions; gather and analyse data; and develop and represent evidence-based claims. Authoritative teacher or textbook representations are generally used to guide this learning (Buckley &…
Descriptors: Science Instruction, Mathematics Instruction, Teaching Methods, Inquiry
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Onur Bakir – Analytic Teaching and Philosophical Praxis, 2024
Although teachers are eager to facilitate community of inquiry (CoI) in their classrooms, they also fear being unable to convey the necessary knowledge to their students in an inquiry due to the inherent involvement of conflicting views, confusion, and a lack of strict definitions about the concepts. The author argues that the banking model of…
Descriptors: Teaching Methods, Educational Philosophy, Conflict, Banking
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Calalb, Mihail – International Baltic Symposium on Science and Technology Education, 2021
A new didactical approach named "Learning by Being" (LBB) is proposed and its correlation with current educational paradigms in science teaching is analysed. The key idea in LBB is the assumption by the students of cognitive goals, and three components are mandatory in LBB: a) student's personal learning effort, b) student-teacher mutual…
Descriptors: Science Education, Goal Orientation, Learning Processes, Correlation
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Cardace, Amy; Wilson, Mark; Metz, Kathleen E. – Education Sciences, 2021
This paper gives an example of how to address the challenge of designing a learning progression that describes student thinking, with the necessary specificity to align instructional opportunities and assessment tools. We describe the Conceptual Underpinnings of Evolution project and the iterative process of developing a novel learning progression…
Descriptors: Evolution, Science Instruction, Elementary School Science, Elementary School Students
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Chen, Ching-Huei; Huang, Kun; Liu, Jun-Han – Asia-Pacific Education Researcher, 2020
This quasi-experimental study investigated the effects of enhancing digital game-based science learning with the predict-observe-explain (POE) inquiry scaffolds. One hundred twenty seventh-grade students were assigned to either an experimental group or a control group. The two groups of students played the same game, but the experimental group…
Descriptors: Game Based Learning, Teaching Methods, Science Instruction, Student Behavior
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Kotul'akova, Katarina – Chemistry Education Research and Practice, 2020
Today, science education demands preparation of scientifically literate people, emphasizing more the process of working with information than owning it. Such a task requires a deep understanding of pedagogical content knowledge by science teachers. This study focuses on revealing the beliefs of prospective chemistry teachers during their teaching…
Descriptors: Preservice Teachers, Student Attitudes, Science Teachers, Chemistry
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Anwar, Yunita Arian Sani – Biochemistry and Molecular Biology Education, 2020
Biochemistry learning in higher education not only aims to allow students to remember the concepts learned, but also to achieve meaningful learning. This study examines the implementation of the multilevel inquiry approach in order to achieve meaningful biochemistry learning. Such as approach begins with a structured inquiry, leading to a guided…
Descriptors: Biochemistry, Science Instruction, Teaching Methods, Higher Education
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Hardman, Mark – School Science Review, 2017
Doing science involves the development and evaluation of models. These models are not objective truths but can be understood as explanations, which scientists use to explore and reason about an aspect of the world. Learning science involves students expressing and engaging with models in the classroom. However, this learning should not be seen as…
Descriptors: Models, Science Education, Learning Strategies, Learning Processes
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Brenner, Daniel G.; Matlen, Bryan J.; Timms, Michael J.; Gochyyev, Perman; Grillo-Hill, Andrew; Luttgen, Kim; Varfolomeeva, Marina – Technology, Knowledge and Learning, 2017
This study investigated how the frequency and level of assistance provided to students interacted with prior knowledge to affect learning in the "Voyage to Galapagos" ("VTG") science inquiry-learning environment. "VTG" provides students with the opportunity to do simulated science field work in Galapagos as they…
Descriptors: Learning Processes, Prior Learning, Online Courses, Science Education
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Ghirardi, Marco; Marchetti, Fabio; Pettinari, Claudio; Regis, Alberto; Roletto, Ezio – Journal of Chemical Education, 2014
A novel didactic sequence is proposed for the teaching of chemical equilibrium. This teaching sequence takes into account the historical and epistemological evolution of the concept, the alternative conceptions and learning difficulties highlighted by teaching science and research in education, and the need to focus on both the students'…
Descriptors: Science Instruction, Secondary School Science, Chemistry, Scientific Concepts
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