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Showing 1 to 15 of 77 results Save | Export
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Chavan, Rajendra; Khandagale, Vidyanand – Online Submission, 2022
Science is a systematic study of natural phenomenon. The natural phenomenon is perceived and understood by an individual based on his/her experience and cultural context. The term misconception is complex in nature and has been conceptualize as alternative conceptions, preconceptions, alternative ideas, conceptual stumbling blocks, erroneous…
Descriptors: Biology, Science Instruction, Misconceptions, Cultural Context
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Vesta Vancugoviene; Jake McMullen; Erno Lehtinen; Ilona Södervik – Journal of Biological Education, 2025
A scientific conceptual understanding of photosynthesis and respiration provides an important basis for understanding nature and the regulations of life. Photosynthesis and respiration are complex processes, and learning about them requires a proper understanding of their various aspects, from molecular biology to the ecosystem level. This study…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Plants (Botany)
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Qian Huangfu; Zhouying Luo; Ying Cao; Weijia Wu – Chemistry Education Research and Practice, 2023
Errors are natural elements of the learning process and provide a high potential to promote students' learning outcomes. In recent years, there has been much research about learning from errors. However, we know little about the relationship between students' error beliefs in chemistry and chemistry learning outcomes at present. Thus, the aim of…
Descriptors: Error Patterns, Learning Processes, Chemistry, Science Instruction
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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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Pazinato, Maurícius S.; Bernardi, Flávia M.; Miranda, Ana Carolina G.; Braibante, Mara Elisa F. – Journal of Chemical Education, 2021
This work aims to evaluate the evolution of chemical bonding concepts of high school students at public schools in southern Brazil. For this, we built the epistemological profile of each student who took part in a teaching-learning sequence (TLS) about this topic, based on the foundations of Bachelard's theory. Following the principles of the…
Descriptors: Foreign Countries, High School Students, Secondary School Science, Science Instruction
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Dayal, Priya Dharshni; Ali-Chand, Zakia – New Zealand Journal of Educational Studies, 2022
This paper discusses the significance of model-based teaching on the topic of ionic and metallic bonding in Year 12 Chemistry in a New Zealand secondary school. Based on the conceptualization of the sub-macro level understanding of the bonding structure and properties of ionic and metallic compounds, models and drawings were used as an effective…
Descriptors: Science Instruction, Teaching Methods, Chemistry, Models
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Gil Llinás, Julia; Tobaja Márquez, Luis Manuel – International Journal of Educational Methodology, 2023
This paper describes an experience based on the use of an active method in which students of a basic physics course prepare multiple choice questions (MCQs) to prepare for exams in the subject. The objective of the research was to provide the students with a method that would enhance their desire to learn physics, and consequently lead to an…
Descriptors: Teaching Methods, Physics, Science Instruction, Multiple Choice Tests
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Christensen, Dana; Lombardi, Doug – Science & Education, 2020
Computational thinking is a contemporary science and engineering practice that has been introduced to the US science classrooms due to its emphasis in the "Next Generation Science Standards" (NGSS). However, including computational thinking into science instruction may be challenging. Therefore, for biological evolution (an essential…
Descriptors: Biology, Evolution, Thinking Skills, Teaching Methods
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Fuchs, Travis T.; Bonney, Kevin M.; Arsenault, Mike – American Biology Teacher, 2021
Students come to science class with many ideas of how the natural world works, some of which do not match the consensus of the scientific community and can lead to misunderstandings. Because a growing body of educational research indicates that these misconceptions can serve as resources for learning, we developed a four-point plan to leverage…
Descriptors: Science Instruction, Biochemistry, College Science, Cytology
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Gunawan; Kosim; Lestari, P. Ayu Suci – International Journal of Instruction, 2020
The purpose of this study is to develop an instructional materials using discovery learning with cognitive conflict approach to improve vocational students understanding of heat concept. This instructional material was developed using the Four D model, namely define, design, develop, and disseminate. Furthermore, data were obtained from the…
Descriptors: Instructional Materials, Discovery Learning, Heat, Scientific Concepts
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Chen, Stefanie H. – Biochemistry and Molecular Biology Education, 2022
The COVID-19 pandemic forced many courses to move online, presenting a particular challenge for hands-on laboratory courses. One such course in our Biotechnology track is an advanced Protein Interactions lecture/laboratory course. This 8-week course typically meets for 5 h a week in the laboratory space. For the Fall 2020 version of the course,…
Descriptors: Distance Education, Laboratory Experiments, Science Instruction, Video Technology
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Liu, Zengze; Pan, Sudong; Zhang, Xiangqun; Bao, Lei – Physical Review Physics Education Research, 2022
Student learning in simple electric circuits has been extensively studied, which has revealed a large number of persistent misunderstandings. This study applies the conceptual framework model to investigate student difficulties in the knowledge integration perspective. The results are used to guide the design of a concept test that targets the…
Descriptors: Physics, Science Instruction, Electronic Equipment, Learning Processes
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Tobler, Samuel; Köhler, Katja; Sinha, Tanmay; Hafen, Ernst; Kapur, Manu – CBE - Life Sciences Education, 2022
Undergraduate biology students' molecular-level understanding of stochastic (also referred to as random or noisy) processes found in biological systems is often limited to those examples discussed in class. Therefore, students frequently display little ability to accurately transfer their knowledge to other contexts. Furthermore, elaborate tools…
Descriptors: Undergraduate Students, Biology, Science Instruction, Molecular Biology
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Miha Slapnicar; Valerija Tompa; Saša A. Glažar; Iztok Devetak – Journal of Baltic Science Education, 2018
Learning and presenting chemical concepts at the triple level of chemical concepts provides opportunities for the development of misconceptions. The research aimed to identify potential misconceptions of chemical concepts: the states of matter, a pure substance, a mixture, an element, a compound, a physical change, and a chemical reaction at the…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Learning Processes
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Morawski, Cynthia M. – Cultural Studies of Science Education, 2017
With a perceptive eye cast on geoscience pedagogy for students labeled as disabled, Martinez-Álvarez makes important contributions to the existing conversation on placed-based learning. It is in our local backyards, from the corner basketball court, to the mud bank of a city lake, to the adjacent field where rocky outcrops spill down to a…
Descriptors: Teaching Methods, Place Based Education, Misconceptions, Concept Formation
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