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Ruf, Alessia; Zahn, Carmen; Roos, Anna-Lena; Opwis, Klaus – Educational Technology Research and Development, 2023
Videos are an increasingly popular medium for supporting learning in various educational settings. Nowadays, newly designed video-based environments contain enhanced tools that allow for specific interactions with video materials (such as adding annotations and hyperlinks) which may well support generative learning and conceptual understanding.…
Descriptors: Educational Technology, Video Technology, Learning Processes, Concept Formation
Gerit Wagner; Laureen Thurner – Journal of Information Systems Education, 2025
Git, as the leading version-control system, is frequently employed by software developers, digital product managers, and knowledge workers. Information systems (IS) students aspiring to fill software engineering, management, or research positions would therefore benefit from familiarity with Git. However, teaching Git effectively can be…
Descriptors: Computer Science Education, Information Systems, Teaching Methods, Computer Software
Sigal Levy; Yelena Stukalin; Nili Guttmann-Beck – Teaching Statistics: An International Journal for Teachers, 2024
Probability theory has extensive applications across various domains, such as statistics, computer science, and finance. In probability education, students are introduced to fundamental principles which may include mathematical topics such as combinatorics and symmetric sample spaces. Students pursuing degrees in computer science possess a robust…
Descriptors: Programming, Probability, Mathematics Skills, Computer Science Education
Chen, Xuqian; Wei, Ziqian; Li, Ziteng; Clariana, Roy B. – Educational Technology Research and Development, 2023
How does conceptual structure of external representations contribute to learning? This investigation considered the influence of generative concept sorting and of external structure information moderated by perceived difficulty. In Study 1, undergraduate students completed a perceived difficulty survey and comprehension pretest, then a sorting…
Descriptors: Undergraduate Students, Comprehension, Concept Formation, Difficulty Level
Christof Keebaugh; Emily Marshman; Chandralekha Singh – Physical Review Physics Education Research, 2025
We discuss how research on student difficulties was used as a guide to develop, validate, and evaluate a Quantum Interactive Learning Tutorial (QuILT) to help students learn how to determine the completely symmetric bosonic or completely antisymmetric fermionic wave function and be able to compare and contrast them from the case when the particles…
Descriptors: Physics, Science Instruction, Teaching Methods, Quantum Mechanics
Renske Weeda; Sjaak Smetsers; Erik Barendsen – Computer Science Education, 2024
Background and Context: Multiple studies report that experienced instructors lack consensus on the difficulty of programming tasks for novices. However, adequately gauging task difficulty is needed for alignment: to select and structure tasks in order to assess what students can and cannot do. Objective: The aim of this study was to examine…
Descriptors: Novices, Coding, Programming, Computer Science Education
Thabiso Khemane; Padayachee Pragashni; Shaw Corrinne – IEEE Transactions on Education, 2024
This study investigates the challenges faced by second-year undergraduate engineering students in understanding Stokes' theorem in vector calculus, focusing on the misconceptions found in interconnected concepts that form its foundation. Stokes' theorem involves the application of line integrals, surface integrals, the curl of a vector field, and…
Descriptors: Calculus, Misconceptions, Mathematical Concepts, Concept Formation
Martina Cíhalová; Tomáš Hubálek; Zuzana Cieslarová – European Journal of Education, 2025
The paper deals with the issue of critical areas in the philosophy as part of the subject Basics of Social Sciences in the Czech Republic from the perspective of teachers. The critical areas are components of the curriculum that are difficult, challenging and problematic for educational practice. They can be on the side of both teachers and…
Descriptors: Teacher Attitudes, Teaching Methods, Social Sciences, Philosophy
Yusuke Uegatani; Hiroki Otani; Shintaro Shirakawa; Ryo Ito – Mathematics Education Research Journal, 2024
Due to the learning paradox, students cannot have real difficulty in understanding a mathematical concept that they have not yet understood. There is a gap between real difficulties, directly experienced by students, and illusionary ones, only observed by researchers. This paper aims to offer a critical reflection on our understanding of the term…
Descriptors: Mathematics Education, Concept Formation, Mathematical Concepts, Difficulty Level
Kit W. Cho – Psychology Learning and Teaching, 2024
The present study explored the accuracy of participants' (N = 317) metacognitive awareness (self-reported difficulty and confidence) of psychology concepts and the moderating effects of their psychology background (academic major, number of psychology courses completed, and overall psychology course grades). Participants first rated the difficulty…
Descriptors: College Students, Psychology, Concept Formation, Metacognition
Rickard Östergren; Ulf Träff; Jessica Elofsson; Hugo Hesser; Joakim Samuelsson – Scandinavian Journal of Educational Research, 2024
The study set out to explore different mathematical difficulties among 877 second-grade children and to test the effect of memorization versus conceptual practices with number combinations. It used a latent profile analysis of baseline measurements of digit writing speed, number combination fluency, multidigit calculation, and number sense skills…
Descriptors: Grade 2, Elementary School Mathematics, Difficulty Level, Mathematical Concepts
Karen Zwanch; Heather Carlile Carter; Jianna Davenport – Research in Mathematics Education, 2024
This case study investigated the relationship between five undergraduate interior design students' reasoning with numerical units and reasoning about length and area. The multiplicative concepts frame participants' coordination of numerical units. Differences were found between participants' reasoning about length and area, based on their…
Descriptors: Undergraduate Students, Interior Design, Correlation, Mathematics Skills
Wiegand, R. Paul; Bucci, Anthony; Kumar, Amruth N.; Albert, Jennifer; Gaspar, Alessio – ACM Transactions on Computing Education, 2022
In this article, we leverage ideas from the theory of coevolutionary computation to analyze interactions of students with problems. We introduce the idea of "informatively" easy or hard concepts. Our approach is different from more traditional analyses of problem difficulty such as item analysis in the sense that we consider Pareto…
Descriptors: Concept Formation, Difficulty Level, Computer Science Education, Problem Solving
Khatin-Zadeh, Omid; Farsani, Danyal; Yazdani-Fazlabadi, Babak – Cogent Education, 2022
In this article, we discuss the process of understanding continuity, which is one of the most fundamental concepts in mathematics. The continuity of mathematical functions is formally defined in terms of abstract symbols and operations. This representation of continuity is very abstract or dis-embodied. Therefore, it is difficult to acquire a…
Descriptors: Mathematical Concepts, Mathematics, Symbols (Mathematics), Concept Formation
Awaah, Fred; Okebukola, Peter; Shabani, Juma; Arkorful, Helen – Cogent Education, 2023
Studies on reasons accounting for the difficulties in learning public administration is relatively new in the public administration literature though many findings exist regarding students' difficulties in the study of different subject areas. This paper examines whether the perceived reasons in other subjects are real in the study of public…
Descriptors: Public Administration, Undergraduate Students, Course Descriptions, Concept Formation