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Showing 1 to 15 of 37 results Save | Export
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Gwo-Jen Hwang; Wen-Hua Chuang; Lu-Ho Hsia – Education and Information Technologies, 2024
Many scientific concepts and theorems are often abstract and challenging to relate to real-life problems, making it difficult for students to grasp them. Therefore, some researchers have attempted to enhance students' understanding by employing a contextual learning approach, which allows students to apply scientific knowledge to real situations…
Descriptors: Secondary School Students, Secondary School Science, Chemistry, Science Instruction
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Karonen, Maarit; Murtonen, Mari; Södervik, Ilona; Manninen, Marianna; Salomäki, Mikko – Education Sciences, 2021
Understanding chemical models can be challenging for many university students studying chemistry. This study analysed students' understanding of molecular structures using the Lewis structure as a model, and examined what hinders their understanding. We conducted pre- and post-tests to analyse students' conceptions and changes in them. The…
Descriptors: Heuristics, Problem Solving, Molecular Structure, College Students
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To´thova´, Martina; Rusek, Martin; Chytry´, Vlastimil – Journal of Chemical Education, 2021
This work is focused on upper-secondary school students' ability to use the periodic table of elements to solve problem tasks. Eye-tracking and retrospective think-aloud methods were used to evaluate the reasoning behind the students' (N = 8) performance, i.e., to map the strategies they used and problems they faced when solving the tasks. The…
Descriptors: Secondary School Students, Science Process Skills, Chemistry, Scientific Concepts
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Abdullah, Helmi – Asia-Pacific Forum on Science Learning and Teaching, 2018
One of the fundamental problems for the college students is not being able to solve the multi-concept physics problems. The reason is that the problem solving strategies is limited to known-asked strategy (traditional strategy).Though this strategy can only be used to solve the problems of mono-concept physics. Therefore, this research on the use…
Descriptors: Problem Solving, College Students, Physics, Science Instruction
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Obada, David O.; Bako, Raymond B.; Ahmed, Abdulkarim S.; Anafi, Fatai O.; Eberemu, Adrian O.; Dodoo-Arhin, David; Oyedeji, Ayodeji N.; Salami, Kazeem A.; Samuel, Bassey O.; Samuel, Emmanuel T.; Obada, Israel B. – Education and Information Technologies, 2023
Research and academia have been recently affected by the Coronavirus (COVID-19), and physical classrooms and laboratory experiments have been affected significantly due to the recent laboratory closures. This has led to innovative approaches to curb this problem. To address these difficulties in teaching bioengineering related courses that is of…
Descriptors: Engineering Education, Teaching Methods, Distance Education, Active Learning
Shenk, Lynne M. – ProQuest LLC, 2018
The periodic table is recognized as one of the most powerful tools in science. While it is included in virtually all high school and undergraduate general chemistry curricula, it remains a mystery to many chemistry students who find it impossible to decode. Students are often able to predict periodic trends concerning atomic radius, ionization…
Descriptors: Science Process Skills, Abstract Reasoning, Chemistry, Problem Solving
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Bodé, Nicholas E.; Flynn, Alison B. – Journal of Chemical Education, 2016
Organic synthesis problems require the solver to integrate knowledge and skills from many parts of their courses. Without a well-defined, systematic method for approaching them, even the strongest students can experience difficulties. Our research goal was to identify the most successful problem-solving strategies and develop associated teaching…
Descriptors: Science Instruction, Problem Solving, College Science, Undergraduate Students
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Pals, Frits F. B.; Tolboom, Jos L. J.; Suhre, Cor J. M.; van Geert, Paul L. C. – International Journal of Science Education, 2018
How can science teachers support students in developing an appropriate declarative knowledge base for solving problems? This article focuses on the question whether the development of students' memory of scientific propositions is better served by writing propositions down on paper or by making drawings of propositions either by silent or…
Descriptors: Memorization, Learning Strategies, Science Education, Problem Solving
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Corum, Kimberly; Garofalo, Joe – Journal of Computers in Mathematics and Science Teaching, 2016
Surface area is consistently identified as a curriculum standard for K-12 students and it regularly appears on national and international assessments. Recently, many schools began acquiring digital fabrication and advanced manufacturing equipment. The growing use of digital fabrication in classrooms raises the question of whether or not this…
Descriptors: Elementary School Mathematics, Elementary School Students, Grade 5, Geometric Concepts
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Yerdelen-Damar, Sevda; Elby, Andrew – Physical Review Physics Education Research, 2016
This study investigates how elite Turkish high school physics students claim to approach learning physics when they are simultaneously (i) engaged in a curriculum that led to significant gains in their epistemological sophistication and (ii) subject to a high-stakes college entrance exam. Students reported taking surface (rote) approaches to…
Descriptors: Foreign Countries, High School Students, Secondary School Science, Science Instruction
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Khanam, Wahidun N.; Kalman, Calvin S. – Canadian Journal for the Scholarship of Teaching and Learning, 2017
It has been argued that for novice students to acquire a full understanding of scientific texts, they also need to pursue a recurrent construction of their comprehension of scientific concepts. The course dossier method has students examine concepts in multiple passes: (a) through reflective writing on text before it is considered in the…
Descriptors: Undergraduate Students, Teaching Methods, Science Education, Physics
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Chen, Yi-Chun; Yang, Fang-Ying – International Journal of Science and Mathematics Education, 2014
There were two purposes in the study. One was to explore the cognitive activities during spatial problem solving and the other to probe the relationship between spatial ability and science concept learning. Twenty university students participated in the study. The Purdue Visualization of Rotations Test (PVRT) was used to assess the spatial…
Descriptors: Cognitive Ability, Spatial Ability, Problem Solving, Science Instruction
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Flynn, Alison B. – Chemistry Education Research and Practice, 2014
Organic chemistry has the long-standing reputation as a challenging course, and organic synthesis is an aspect of organic chemistry that requires students to make the most links between concepts and requires the highest order of thinking. One-on-one interviews were conducted with students from a second undergraduate organic chemistry course in…
Descriptors: Undergraduate Students, Organic Chemistry, Problem Solving, Protocol Analysis
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Chu, Hye-Eun; Treagust, David F. – Journal of Science Education and Technology, 2014
This study focuses on elucidating and explaining reasons for the stability of and interrelationships between students' conceptions about "Light Propagation" and "Visibility of Objects" using contextualized questions across 3 years of secondary schooling from Years 7 to 9. In a large-scale quantitative study involving 1,233…
Descriptors: Optics, Secondary School Students, Secondary School Science, Scientific Concepts
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Nokes-Malach, Timothy J.; VanLehn, Kurt; Belenky, Daniel M.; Lichtenstein, Max; Cox, Gregory – European Journal of Psychology of Education, 2013
Research on expertise suggests that a critical aspect of expert understanding is knowledge of the relations between domain principles and problem features. We investigated two instructional pathways hypothesized to facilitate students' learning of these relations when studying worked examples. The first path is through self-explaining how…
Descriptors: Expertise, Knowledge Level, Comparative Analysis, Physics
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