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Ayalon, Michal; Wilkie, Karina J.; Eid, Katrin Hajjar – Educational Studies in Mathematics, 2022
Argumentative problem solving in mathematics classrooms is a crucial practice that supports important student learning goals via collaborative deliberation and consensus building, but also places substantial cognitive and affective demands on both students and teacher. In this in-depth qualitative study, we considered how students' emotions during…
Descriptors: Persuasive Discourse, Problem Solving, Psychological Patterns, Mathematics Education
Ernest Koranteng – Science Education International, 2024
This study aimed to uncover common difficulties and possible areas for improvement by focusing on the approaches and errors made by 3rd-year undergraduate chemistry students in solving organic synthesis problems. The study employed a purposive sampling technique to select 112 undergraduate chemistry major students to participate in this study.…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Science Instruction
Dilek Girit Yildiz; Esila Müftüoglu – Turkish Journal of Education, 2025
The aim of this study is to reveal and evaluate the attending and interpreting skills of student thinking of prospective teachers, as well as their instructional suggestions as responding skills. The current study was conducted with 29 prospective mathematics teachers (PMTs) within a qualitative design in the context of probability. First, three…
Descriptors: Thinking Skills, Preservice Teachers, Probability, Middle School Students
Wei, Lim Yi – Journal of Science and Mathematics Education in Southeast Asia, 2022
Purpose: The purpose of this action research was to identify students' errors in solving fraction number line and word problems. It also explored the effectiveness of Tik-Tok short videos in improving students' fraction understanding. Methods: The sample for this research consisted of 48 students from Form 1 at SMK SANZAC. In this study, a Check…
Descriptors: Error Correction, Fractions, Mathematics Instruction, Problem Solving
Safadi, Rafi'; Saadi, Sheren – Research in Science Education, 2021
Self-diagnosis activities require students to self-diagnose their solutions to problems they solved on their own by detecting and explaining their errors. Worked examples, a step-by-step demonstration of how to solve a problem, are often used to support students in self-diagnosis activities. However, studies indicate that students often fail to…
Descriptors: Self Evaluation (Individuals), Student Evaluation, Problem Solving, High School Students
Chen, Xingliang; Mitrovic, Antonija; Mathews, Moffat – IEEE Transactions on Learning Technologies, 2020
Problem solving, worked examples, and erroneous examples have proven to be effective learning activities in Intelligent Tutoring Systems (ITSs). However, it is generally unknown how to select learning activities adaptively in ITSs to maximize learning. In the previous work of A. Shareghi Najar and A. Mitrovic, alternating worked examples with…
Descriptors: Problem Solving, Intelligent Tutoring Systems, Learning Activities, Educational Technology
Safadi, Rafi'; Ababsy, Ranin – Physics Education, 2020
Research indicates that troubleshooting activities that require students to reflect on pre-prepared erroneous examples, i.e. erroneous solutions to problems that correspond to common naïve ideas, impact their learning positively. These include asking students to diagnose erroneous examples; in other words, detect the conceptual errors and then…
Descriptors: Troubleshooting, Error Correction, Demonstrations (Educational), Physics
Reinholz, Daniel L. – International Journal for the Scholarship of Teaching and Learning, 2018
Peer assessment has great potential to improve student learning. However, assessment is not an everyday activity for students, and thus providing appropriate guidance to students is a key component of creating a successful peer assessment experience. This paper explores how to structure peer feedback in the guided process Peer-Assisted Reflection…
Descriptors: Peer Evaluation, Feedback (Response), Undergraduate Students, Calculus
Taasoobshirazi, Gita; Bailey, MarLynn; Farley, John – International Journal of Science Education, 2015
The Physics Metacognition Inventory was developed to measure physics students' metacognition for problem solving. In one of our earlier studies, an exploratory factor analysis provided evidence of preliminary construct validity, revealing six components of students' metacognition when solving physics problems including knowledge of cognition,…
Descriptors: Science Instruction, Physics, Metacognition, Problem Solving
Begolli, Kreshnik Nasi; Richland, Lindsey Engle – Journal of Educational Psychology, 2016
Comparing multiple solutions to a single problem is an important mode for developing flexible mathematical thinking, yet instructionally leading this activity is challenging (Stein, Engle, Smith, & Hughes, 2008). We test 1 decision teachers must make after having students solve a problem: whether to only verbally discuss students' solutions or…
Descriptors: Mathematics Instruction, Teaching Methods, Decision Making, Problem Solving