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Parsons, Andrew F. – Journal of Chemical Education, 2021
A series of distinctive gap-fill activities were designed to provide practice and test students' knowledge in retrosynthetic analysis. Developed and tested during the COVID-19 pandemic, the activities allow students to work through authentic multistep syntheses of various organic target molecules. Students were asked to identify appropriate RSA…
Descriptors: Organic Chemistry, Problem Solving, Science Activities, Synthesis
Pöysä-Tarhonen, Johanna; Awwal, Nafisa; Häkkinen, Päivi; Otieno, Suzanne – Research and Practice in Technology Enhanced Learning, 2021
The current article describes an exploratory study that focussed on joint attention behaviour--the basis of interaction predicting productive collaboration--to better understand collaborative problem solving, particularly its social aspects during remote dyadic interaction. The study considered joint attention behaviour as a socio-linguistic…
Descriptors: Attention, Problem Solving, Cooperation, Interaction
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Renelle, Amy; Budgett, Stephanie; Jones, Rhys – Teaching Statistics: An International Journal for Teachers, 2021
Everyone, including teachers, is prone to randomness misconceptions. In this article, we investigate the perceptions of randomness held by New Zealand secondary school teachers. The responses to a question asked in an online, anonymous questionnaire sent to New Zealand teachers will be explored. One question asked participants to create a sequence…
Descriptors: Foreign Countries, Secondary School Teachers, Misconceptions, Problem Solving
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Odden, Tor Ole – Physics Teacher, 2021
What does it mean to "make sense" of physics? It's not a simple question. Most people have an intuitive feeling for when things do (or do not) make sense to them. But putting this feeling into words--especially actionable words--is another task entirely. Generally speaking, there are two ways in which we commonly use the term "make…
Descriptors: Physics, Science Instruction, Teaching Methods, Evaluative Thinking
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McCoy, Bradley K. – Physics Teacher, 2021
In a typical first physics class, homework consists of problems in which numerical values for physical quantities are given and the desired answer is a number with appropriate units. In contrast, most calculations in upper-division undergraduate physics are entirely symbolic. Despite the need to learn symbolic manipulation, students are often…
Descriptors: Physics, Introductory Courses, Undergraduate Students, Problem Solving
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Moala, John Griffith – Mathematics Education Research Journal, 2021
Research shows that though some students can easily find the correct solutions to the problem(s) at hand, the algorithms that these students create are not always ones that would, when implemented, produce the correct solution(s). Towards shedding light on this phenomenon, the present study explicates a mechanism--accounting for features of the…
Descriptors: Mathematics Skills, Problem Solving, Mathematics, Cooperative Learning
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Forringer, Edward – Physics Teacher, 2021
When authoring physics problems, professors may develop an intuition for how much information they need to provide such that the problem has a unique answer and is not over constrained. It is an open question as to whether using intuition leads to a sufficiently broad range of problems. In this paper we discuss a systematic way of authoring…
Descriptors: Motion, Physics, Science Instruction, College Science
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Holton, Derek – Australian Primary Mathematics Classroom, 2021
This article recounts the life of mathematician Leonhard Euler and discusses the use of Graph Theory in student learning.
Descriptors: Mathematics Instruction, Professional Personnel, Educational History, Problem Solving
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Shakya, Anup; Rus, Vasile; Venugopal, Deepak – International Educational Data Mining Society, 2021
Predicting student problem-solving strategies is a complex problem but one that can significantly impact automated instruction systems since they can adapt or personalize the system to suit the learner. While for small datasets, learning experts may be able to manually analyze data to infer student strategies, for large datasets, this approach is…
Descriptors: Prediction, Problem Solving, Intelligent Tutoring Systems, Learning Strategies
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Alexander Natanzon; Evgeny Frishman – European Journal of Physics Education, 2021
In this article we show that the electrostatic field intensity of a uniformly charged straight line equals that of the corresponding arc of a circle charged with the same linear density. This new method greatly simplifies the calculation of the electrostatic field of a system consisting of uniformly charged straight lines.
Descriptors: Problem Solving, Energy, Computation, Measurement
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Noordegraaf-Eelens, Liesbeth; Kloeg, Julien; Noordzij, Gera – Advances in Health Sciences Education, 2019
Problem-based learning (PBL) is an innovative educational approach that dates back to the 1960s. However, the twenty-first century goal of sustainable education poses a challenge to PBL, especially as it relates to isolation. Here we discuss the underlying issue of isolation in three respects. First, the information-processing model of PBL depends…
Descriptors: Problem Based Learning, Sustainability, Cognitive Processes, Problem Solving
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Anders Kristian Munk; Anders Koed Madsen; Mathieu Jacomy – New Perspectives on Learning and Instruction, 2019
Data sprints have emerged as a popular way to involve stakeholders in datawork. In this chapter we discuss what it takes to turn a sprint into a productive situation of inquiry (in the sense of Dewey, 1938). We argue that sprint organizers must work actively to counteract an otherwise docile setting where the preference for agreement between…
Descriptors: Data Analysis, Risk, Research Methodology, Research Problems
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Degrande, Tine; Verschaffel, Lieven; Van Dooren, Wim – Educational Studies in Mathematics, 2020
Previous research demonstrated that some children inappropriately solve multiplicative missing-value word problems additively, while others inappropriately solve additive missing-value word problems multiplicatively. Besides lacking skills, children's preference for additive or multiplicative relations has been shown to contribute to those errors.…
Descriptors: Elementary School Students, Mathematics Skills, Problem Solving, Multiplication
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Cabero-Fayos, Ismael; Santágueda-Villanueva, María; Villalobos-Antúnez, Jose Vicente; Roig-Albiol, Ana Isabel – Education Sciences, 2020
From an early age, understanding proportional reasoning is a fundamental pillar in mathematics education, and therefore, teachers should have a thorough knowledge of it. Despite its significance, there are few studies that analyse the difficulties that student teachers have in understanding proportionality, and even less so inverse…
Descriptors: Foreign Countries, Preservice Teachers, Logical Thinking, Problem Solving
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Kenney, Rachael; An, Tuyin; Kim, Sung-Hee; Uhan, Nelson A.; Yi, Ji Soo; Shamsul, Aiman – International Journal of Science and Mathematics Education, 2020
In linear programming, many students find it difficult to translate a verbal description of a problem into a valid mathematical model. To better understand this, we examine the existing characteristics of college engineering students' errors across linear programming (LP) problems. We examined textbooks to identify the types of problems typically…
Descriptors: Programming, Error Patterns, Engineering Education, Word Problems (Mathematics)
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