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Qian Wang; Yi Ding; Jiayi Wang; Qiong Yu – Journal of Civil Engineering Education, 2025
The main goals of this study were to utilize an explicit instruction approach to develop mini modules to teach principles and techniques involved in spatial visualization skills to college engineering students. Mini modules were developed to enhance the spatial visualization skills of engineering students enrolled in the course Introduction to…
Descriptors: Direct Instruction, Spatial Ability, Engineering Education, College Students
Eduardo Reyes de Luna; Rubén Fuentes-Álvarez; Iván García-Kerdan; Marco Cruz-Sandoval; Jorge Membrillo-Hernández – Educational Process: International Journal, 2025
Background/purpose: Teaching complex concepts in STEM areas has led education researchers to innovate in teaching models. In this report, we present a study of engineering teaching on the geotechnical structure of Mexico City, which is characterized by highly compressible clayey soils and significant seismic activity, which, for the discipline,…
Descriptors: Foreign Countries, Civil Engineering, Geographic Regions, Seismology
Ana Ester Garcia de Paiva Pinheiro; Ana Regina Mizrahy Cuperschmid; Felipe Corres Melachos – Turkish Online Journal of Educational Technology - TOJET, 2025
Furniture assembly is often perceived as a confusing and demotivating task, especially when relying on traditional manuals and/or online videos, which can be mis. Do It Yourself (DIY) furniture manufacturing can be even more challenging, as it requires not only assembly steps but also material fabrication stages, often demanding access to advanced…
Descriptors: Furniture, Computer Simulation, Manufacturing, College Students
García-Segura, Tatiana; Montalbán-Domingo, Laura; Sanz-Benlloch, Amalia; Domingo, Alberto; Catalá, Joaquín; Pellicer, Eugenio – Journal of Civil Engineering Education, 2023
This paper describes a teaching innovation project that adopts the project-based learning approach to introduce civil engineering students to their future professional roles and tasks throughout the infrastructure life cycle. The successful development of the whole process and completion of the infrastructure in the best technical and sustainable…
Descriptors: Civil Engineering, Engineering Education, Active Learning, Student Projects
Dong Zhao; Zhiting Chen; George Berghorn; Lei Shu; Cornelia Asiedu-Kwakyewaa – Journal of Civil Engineering Education, 2025
In civil engineering and construction management programs, student collaboration is important for their skill building, but its relationship with student engagement remains elusive. This study explored this relationship by examining the structure and characteristics of student collaboration networks. The results underscore the significance of…
Descriptors: Civil Engineering, Construction Management, College Students, Learner Engagement
Andrea Fedorová – Acta Educationis Generalis, 2025
Introduction: This study explores the application of the flipped classroom approach in teaching professional English to Civil Engineering students at the Technical University of Košice. This pedagogical shift aims to improve language proficiency, engagement, and critical thinking. Methods: A flipped classroom approach was implemented over one…
Descriptors: Foreign Countries, Flipped Classroom, Civil Engineering, Second Language Instruction
Yasmany García-Ramírez – International Society for Technology, Education, and Science, 2024
Road design education faces challenges in effectively bridging theoretical knowledge with realworld applications. Traditional classroom-based teaching methods often fall short in preparing engineering students for the complexities encountered in practical scenarios. To address this gap, innovative pedagogical strategies, such as micro-field trips,…
Descriptors: Civil Engineering, Engineering Education, Field Trips, Learning Experience
Drake, Riley; Poleacovschi, Cristina; Faust, Kasey M.; True-Funk, Arie; Kaminsky, Jessica – Journal of Engineering Education, 2023
Background: Civil engineers design systems that have the potential to impact existing oppressive societal conditions. Critical action--the ability to recognize and act against oppressive conditions--is an obligation for civil engineers committed to building a more just world. Purpose/Hypothesis: History reveals that civil engineers often do not…
Descriptors: Civil Engineering, Engineering Education, College Students, Culturally Relevant Education
Rokooei, Saeed; Vahedifard, Farshid; Belay, Solomon – Journal of Civil Engineering Education, 2022
Civil engineering and construction (CEC) are among primary higher education programs preparing the next generation of subject experts and decision makers working on different aspects of infrastructure resilience, which is a key component of community resilience. However, in the curriculum of most CEC programs, there is no well-established approach…
Descriptors: College Students, Civil Engineering, Construction Management, Resilience (Psychology)
Lester, Danielle – European Journal of Engineering Education, 2022
A qualitative study is presented to answer the research questions of (1) What are the main factors influencing the decision-making behaviours of civil engineering students and (2) What role could education play in enhancing the decision making of both students and practitioners. A pilot co-curricular intervention programme is described that blurs…
Descriptors: Civil Engineering, College Students, Decision Making, Student Behavior
Tonmoy Sarker; Cristina Poleacovschi; Toby N. T. Nelson; Katy Swalwell; Joseph Svec; Mollie H. Appelgate; Christa Jackson; Kristen Cetin – Journal of Civil Engineering Education, 2024
Civil engineering students in the United States rarely receive instruction about how their work affects social inequities. Indeed, research reveals that most engineering students lack critical consciousness and fail to recognize and analyze real social inequity challenges as they arise in engineering contexts. As history demonstrates, this can…
Descriptors: Civil Engineering, Engineering Education, Social Bias, Social Justice
Boon Hoe Goh; Hui Ling Wong; Fang Yenn Teo – Journal of Educators Online, 2024
The COVID-19 pandemic accelerated the adoption of technology and greatly transformed the way humans communicate. Since the start of the pandemic, the delivery of lectures and workshops shifted from face-to-face to online. However, this shift in the mode of teaching may or may not suit learners. This study was conducted to determine the students'…
Descriptors: COVID-19, Pandemics, Civil Engineering, Distance Education
Sampaio, Alcínia Zita – International Journal of Higher Education, 2022
Building Information Modelling (BIM) enables the Civil engineers professional to accomplish the digital requirements and also the integration and collaboration on the elaboration of projects and maintenance of buildings. BIM methodology is currently the main subject of investigation and application in the construction industry and the education…
Descriptors: Computer Software, Civil Engineering, Engineering Education, College Students
Claudia Calle Müller; Piyush Pradhananga; Mohamed ElZomor – International Journal of Sustainability in Higher Education, 2024
Purpose: The built environment is responsible for approximately 40% of the world's energy consumption, 30% of raw material use, 25% of solid waste, 25% of water use, 12% of land use and 33% of greenhouse gas emissions. Thus, environmental improvement and decarbonization are becoming increasingly critical objectives for the construction industry.…
Descriptors: Conservation (Environment), Sustainability, Construction Industry, Construction Management
Vigneshkumar Chellappa – Education and Information Technologies, 2025
Construction ergonomics is crucial for developing strategies to prevent workplace injuries and enhance worker well-being. However, this critical topic is often overlooked or inadequately addressed in civil engineering education programs. To bridge this knowledge gap, a mobile application (app) was developed to facilitate learning about…
Descriptors: Construction Industry, Human Factors Engineering, Civil Engineering, Engineering Education

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