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Baher Amouzgar – ProQuest LLC, 2022
Organizations advance and grow by solving problems one at a time, and management graduates should possess critical thinking and problem-solving capacities to be effective business managers and creative engineers. The problem was that critical thinking and creative problem solving are operationally ill-defined in engineering and management…
Descriptors: Critical Thinking, Problem Solving, Business Administration Education, Engineering Education
Anna Ehrlin; Daniel Sundmark – International Journal of Work-Integrated Learning, 2025
Engineering education must not only be scientifically based, but also relevant to the future job market. Education incorporating elements of work-integrated learning (WIL) aims to achieve this by combining academic learning with practical work experience. This literature review examines WIL's impact on engineering education. Through a snowballing…
Descriptors: Engineering Education, Work Based Learning, Educational Benefits, Higher Education
Anu Singh – ProQuest LLC, 2024
Critical thinking is one of the most desired skills in the workplace, as it assists an individual in solving complex problems and making informed decisions, resulting in their workplace success. Argumentation is one instructional approach that provides students an opportunity to engage in higher-order thinking and improve their communication…
Descriptors: Undergraduate Students, Engineering Education, Persuasive Discourse, Critical Thinking
Das, Dillip Kumar – African Journal of Research in Mathematics, Science and Technology Education, 2021
Attainment of competency is crucial for civil engineering students to solve socio-economic and environmental challenges and contribute to the development of a sustainable society by using engineering principles. Consequently, competency has become the measure of engineering graduates for which deep learning is essential. Constructive alignment has…
Descriptors: Undergraduate Students, Engineering Education, Civil Engineering, Alignment (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
Steven Higbee; Sharon Miller; Karen Alfrey – Biomedical Engineering Education, 2025
Challenge: The Hodgkin-Huxley membrane conductance model has been featured in biomedical engineering (BME) curricula for decades. A typical BME assignment might require students to apply the relevant equations and parameters to model the generation of action potentials; however, there is opportunity for students to build and explore both…
Descriptors: Scientific Concepts, Biomedicine, Engineering Education, Models
Marley Belot – Online Submission, 2025
Space exploration requires individuals who can think critically, adapt to uncertainty, and learn in cognitively complex environments. This paper examines how Human Systems Engineering (HSE) and cognitive design principles can enhance both astronaut training and STEM education on Earth. The same methodologies that help astronauts manage stress,…
Descriptors: Human Factors Engineering, Cognitive Processes, STEM Education, Aerospace Education
Weng, Chunmeng; Chen, Congying; Ai, Xianfeng – International Journal of Technology and Design Education, 2023
This paper illustrates the design-based learning (DBL) approach to promoting the deep learning of students and improving the quality of teaching in engineering design education. We performed three aspects of research with students in a typical educational activity. The first study investigated students' deep learning before and after the DBL…
Descriptors: Learning Processes, Teaching Methods, Educational Quality, Design
Linda Oktaviani; Ullu Yandi Aulia; Mukhamad Murdiono; Suharno Suharno – Journal of Education and Learning (EduLearn), 2024
This study aims to provide a comprehensive analysis of the implementation of Pancasila learning with the goal of improving critical thinking skills through the application of the six thinking hats model. The research adopts a descriptive approach utilizing qualitative methods. The study was conducted at the Faculty of Engineering, Universitas…
Descriptors: Critical Thinking, Thinking Skills, Skill Development, Active Learning
Ni Cheng; Siti Zuraidah Md Osman – Journal of Education and e-Learning Research, 2025
This study explores the current status of computational thinking (CT) skills among first-year university students and examines whether any differences exist across genders, geographic backgrounds and academic disciplines with programming learning experience given the growing interest in computational thinking (CT) in recent years. It also…
Descriptors: Computation, Thinking Skills, College Freshmen, Algorithms
Vo, Tina; Hammack, Rebekah – Journal of Science Teacher Education, 2022
National reform documents and shifts in educational standards have continued to highlight the importance of engineering and engineering practices within science literacy. High-quality engineering opportunities must be present in formal education due to their association with problem-solving and critical thinking. Given this directive to reach…
Descriptors: Academic Standards, Engineering, Scientific Literacy, Educational Quality
Shen Zhan; Ling Wang – Education Research and Perspectives, 2024
The rapid integration of artificial intelligence (AI) in higher education has been significantly propelled by developments in generative AI tools, which hold considerable promise for transforming teaching and assessment methodologies. This paper explores the distinctive opportunities and challenges associated with the incorporation of generative…
Descriptors: Artificial Intelligence, Technology Uses in Education, Evaluation Methods, Engineering Education
Chen Huei Leo; Nachamma Sockalingam; Mei Xuan Tan; Yajuan Zhu; Xiaojuan Khoo – Biomedical Engineering Education, 2025
Challenge Statement: Laboratory classes are indispensable in the teaching of biomedical engineering education, offering students invaluable hands-on experience and opportunities for practical application of theoretical knowledge. However, without a deep understanding of the underlying principles, students may find themselves merely going through…
Descriptors: Instructional Design, Inquiry, Active Learning, Biomedicine
Angi Stone-MacDonald; Kristen Wendell; Anne Douglass; Mary Lu Love; Amanda Wiehe Lopes – Brookes Publishing Company, 2024
Boost young children's problem-solving skills and set them up for long-term success with the second edition of this practical guidebook! Enhanced with new lessons and timely topics--including equity and the use of makerspaces--this book will help you get all children ready for kindergarten by teaching them basic practices of engineering design and…
Descriptors: Young Children, Infants, Toddlers, Preschool Children
Abebayehu Yohannes; Hsiu-Ling Chen – Education and Information Technologies, 2024
Flipped learning has attracted increasing attention in all grade levels in recent years and becomes an alternative to the traditional model. Even though there is a large body of research on flipped classrooms, they usually ignore the learning theories that were used to construct the curriculum and instead concentrate on the degree to which using…
Descriptors: Flipped Classroom, Mathematics Education, Engineering Education, Conventional Instruction

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