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Miskioglu, Elif Eda; Aaron, Caitlyn; Bolton, Caroline; Martin, Kaela M.; Roth, Madeline; Kavale, Sanjeev M.; Carberry, Adam R. – Journal of Engineering Education, 2023
Background: A defining characteristic of expertise is the use of intuition to navigate tasks. The construct of intuition and its importance is well-studied in other disciplines, but little is known about how it translates to engineering. Existing literature on intuition does not clearly define the construct and its relationship to problem solving,…
Descriptors: Intuition, Engineering, Expertise, Decision Making
Lopes, Aldo Peres Campos e – Teaching Mathematics and Its Applications, 2023
This paper presents results of a study aimed at describing and discussing evidence/features of advanced algebraic thinking processes. To achieve these objectives, we analysed the written production of students enrolled in engineering courses working on mathematical modelling tasks related to differential equations. Our guiding question was as…
Descriptors: Algebra, Mathematics Skills, Cognitive Processes, Equations (Mathematics)
Rajni Singh; Kuldip Singh Sangwan; Devika Sangwan – Journal of Applied Research in Higher Education, 2024
Purpose: This study seeks insights into the engineering undergraduates' knowledge of problem-solving process, teamwork characteristics and communication skills. Design/methodology/approach: The data for the study were collected through consecutive sampling technique from 78 engineering undergraduates at the Birla Institute of Technology and…
Descriptors: Foreign Countries, Knowledge Level, Undergraduate Students, Undergraduate Study
Hsing, Hsiang-Wen; Bairaktarova, Diana; Lau, Nathan – Journal of Engineering Education, 2023
Background: Spatial problem-solving is an essential skill for success in many engineering disciplines; thus, understanding the cognitive processes involved could help inform the design of training interventions for students trying to improve this skill. Prior research has yet to investigate the differences in cognitive processes between spatial…
Descriptors: Eye Movements, Cognitive Processes, Problem Solving, Engineering Education
Paloma Suárez-Brito; Armando Elizondo-Noriega; Jenny Paola Lis-Gutiérrez; Carolina Henao-Rodríguez; María Rubi Forte-Celaya; José Carlos Vázquez-Parra – On the Horizon, 2025
Purpose: The purpose of this paper is to present the results of measuring a sample of engineering students' perceived achievement of complex thinking at different stages of their professional training. This study intended to analyze and predict the differences in the self-perception of achieved complex thinking competency by gender, semester,…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Students, Sex
Tóth, Peter; Pogatsnik, Monika – Hungarian Educational Research Journal, 2023
The task of higher education is twofold: (1) to prepare students to meet the expectations of the labor market; and (2) to create a learning environment and conditions so that as many students can meet the subject requirements as possible, the dropout rate should be the lowest possible. Input and continuous monitoring of students' transversal…
Descriptors: Logical Thinking, Engineering Education, College Students, Educational Environment
Yi Ding; Qian Wang; Ru-De Liu; Jolene Trimm; Jiayi Wang; Shu Feng; Wei Hong; Xian-Tong Yang – SAGE Open, 2024
The paper examined the relations among problem solving, automaticity, and working memory load (WML) by changing the difficulty level of task characteristics through two applications. In Study 1, involving 68 engineering students, a 2 (automaticity) x 2 (WML) design was utilized for arithmetic problems. In Study 2, involving 76 engineering…
Descriptors: Short Term Memory, Cognitive Processes, Difficulty Level, Problem Solving
Akinci-Ceylan, Secil; Cetin, Kristen S.; Ahn, Benjamin; Surovek, Andrea; Cetin, Bora – Journal of Civil Engineering Education, 2022
Solving ill-structured problems is a complex task that is required of engineers who work in industry. To better prepare undergraduate engineering students for this complex task and their future professional careers, this paper provides an analysis of the results of research focusing on the study of problem-solving processes adopted by civil…
Descriptors: Undergraduate Students, College Faculty, Engineering Education, Engineering
Han, Jung; Park, Hyeong Kyun; Kelley, Todd R. – Technology and Engineering Teacher, 2023
Engineering design has been central to technology education. Currently, online collaborative platforms for designers are widely used as digital forms of an engineer's notebook. However, traditional forms are still valued as the medium of engineering design during the conceptual phase of design since a paper notebook and pen or pencil allow…
Descriptors: Engineering Education, Notetaking, Design, Creative Thinking
Kelly Schucker; Mary B. Mcvee; Christopher J. Jarmark; Lynn E. Shanahan – Pedagogies: An International Journal, 2024
Situated in an elementary afterschool Engineering Literacies Club framed around multiliteracies and the engineering design process, this article explores engineering habits of mind and disciplinary literacies. Disciplinary literacies encourage students to read, write, think, and act like historians, mathematicians, scientists, or engineers by…
Descriptors: After School Programs, Elementary School Science, Elementary Schools, Engineering Education
Jum'ah, Laith – ProQuest LLC, 2023
Epistemic beliefs, epistemic cognitions, and self-regulation processes have a significant role in students' learning. Through this study, I investigated the role of mechanical engineering students' epistemic beliefs and epistemic cognitions involved in self-regulation processes while working on tasks with different difficulty levels. In this…
Descriptors: Epistemology, Cognitive Processes, Beliefs, Difficulty Level
Du, Xu; Dai, Miao; Tang, Hengtao; Hung, Jui-Long; Li, Hao; Zheng, Jinqiu – Journal of Computing in Higher Education, 2023
Distance education programs have become the preferred option for most higher education institutions to continue teaching during the COVID-19 pandemic, but the effectiveness of some online courses, especially those engineering courses with experimentation activities, remains disputed. The main challenge is fostering collaborative problem solving…
Descriptors: College Students, Cooperation, Participative Decision Making, Problem Solving
Kadam, Kapil; Mishra, Shitanshu; Deep, Anurag; Iyer, Sridhar – European Journal of Engineering Education, 2021
Engineering Drawing (ED) is one of the fundamental courses for various engineering disciplines. However, first-year engineering undergraduates often face difficulties in learning and solving ED problems that require visualisation of 3D objects. Conventional and modern teaching methods do assist the teaching-learning of a subject but do not…
Descriptors: Engineering Education, Freehand Drawing, Thinking Skills, Spatial Ability
Mehrabi Boshrabadi, Abbas; Hosseini, M. Reza – Assessment & Evaluation in Higher Education, 2021
This paper argues that development of students' evaluative judgement capability, which encapsulates a range of cognitive and social skills, should be considered as a primary objective of the collaborative problem-solving assessment practices in engineering. This is a response to call for preparing job-ready students. To meet the multiple demands…
Descriptors: Cooperative Learning, Problem Solving, Engineering Education, Test Construction
Lippard, Christine. N.; Lamm, Monica H.; Tank, Kristina M.; Choi, Ji Young – Early Childhood Education Journal, 2019
Young children engage in pre-engineering thinking and play in their day-to-day activities. However, early childhood teachers often miss opportunities to facilitate and extend this type of play. In order to support teachers in this undertaking, the current study aimed to answer the question: What does pre-engineering thinking look like in…
Descriptors: Cognitive Processes, Problem Solving, Preschool Children, Engineering Education