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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
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
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
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
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
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
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
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
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
Supanun Pimdee; Thapanee Seechaliao – Journal of Education and Learning, 2025
The research objectives were to 1) study the current conditions, problems, and good practices regarding teaching and learning 2) develop a blended instructional model using problem-based learning with graphic organizers to enhance systems thinking skills in computational science for students in lower secondary school and 3) study the results of…
Descriptors: Blended Learning, Instructional Materials, Secondary School Students, Grade 7
Kartini Herlina; Abdurrahman Abdurrahman; Ahmad Naufal Umam; Ayu Nurjanah; Ghani Fadhil Rabbani; Ficha Aulia Indah Pratiwi – Journal of Technology and Science Education, 2025
Nowadays, physics learning in the classroom should no longer only focus on achieving academics. It must prepare students to face challenges in the future. One of the abilities that are important for learners is problem solving, and the problem-solving ability that is becoming increasingly important in today's digital era is computational thinking…
Descriptors: Computation, Thinking Skills, Skill Development, Worksheets
Yu-Jen Sie; Kuen-Yi Lin – Journal of Baltic Science Education, 2025
Project-based learning (PBL) plays a critical role in fostering interdisciplinary integration within science, technology, engineering, and mathematics (STEM) education. However, its complexity often hinders students' ability to apply knowledge and solve problems, particularly in environments that lack psychological and cognitive support. This…
Descriptors: Resilience (Psychology), Positive Attitudes, STEM Education, Internet
Luthfiana Tarida; Mega T. Budiarto; Agung Lukito – Mathematics Teaching Research Journal, 2025
Functional thinking is essential for maritime vocational college students, particularly when solving mathematical problems related to navigation safety. However, limited studies have explored functional thinking among vocational maritime students. This study aims to explore the functional thinking processes of maritime vocational college students…
Descriptors: Thinking Skills, Marine Education, Foreign Countries, Mathematics Skills
Mathias Norqvist; Bert Jonsson; Johan Lithner – Educational Studies in Mathematics, 2025
In mathematics classrooms, it is common practice to work through a series of comparable tasks provided in a textbook. A central question in mathematics education is if tasks should be accompanied with solution methods, or if students should construct the solutions themselves. To explore the impact of these two task designs on student behavior…
Descriptors: Attention, Algorithms, Creativity, Mathematics Education

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