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Showing 1 to 15 of 53 results Save | Export
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Thu Anh Nguyen; Thanh-Tan Le; Duc-Hoc Tran; Ruoyu Jin; Navpreet Chohan; Brian H. W. Guo – Journal of Civil Engineering Education, 2025
Building information modeling (BIM) is becoming more widely used in higher education due to changing industry demands. As a digital representation of a facility's characteristics, BIM promotes cost-effective facility planning, interdisciplinary collaboration, and sustainability initiatives. Additionally, it assists educational institutions in…
Descriptors: Architectural Education, Outcomes of Education, Learning Activities, Teaching Methods
McCord, Kieren – ProQuest LLC, 2022
The country is facing infrastructure crises simultaneous with a labor shortage in fields related to construction management and engineering. These challenges necessitate better and quicker preparation of the incoming workforce so they are prepared to take on responsibilities with more skill and efficiency than has been expected previously.…
Descriptors: Computer Simulation, Simulated Environment, Experiential Learning, Vocational Education
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Elmira Saparbayeva; Marzhan Abdualiyeva; Yerlan Torebek; Nurlibay Madiyarov; Abay Tursynbayev – Cogent Education, 2024
This study investigated the impact of integrating design-technological activities on developing mathematical competencies among construction engineering students. A mixed methods approach compared curriculum delivery with and without digital tools across universities in Kazakhstan and Turkey. First, semi-structured interviews of faculty provided…
Descriptors: Educational Technology, Mathematics Instruction, Competence, Construction Industry
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Pukharenko, Yurii Vladimirovich; Petrov, Vladimir Markovich; Norina, Natalia Vladimirovna; Norin, Veniamin Aleksandrovich – Education and Information Technologies, 2017
The paper is devoted to teaching engineering subjects in the field of study "Restoration and renovation of architectural heritage." It demonstrates the necessity of changing the existing approach to teaching engineering design and construction to renovation architects. Based on our experience of teaching Building mechanics, we have…
Descriptors: Architectural Education, Engineering Education, Design, Teaching Methods
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Love, Tyler S.; Salgado, Carlos A. – Technology and Engineering Teacher, 2016
The focus on construction in T&E education has drastically changed. This article presents a series of topics and design-based labs that can be taught at various grade levels to integrate STEM concepts while also increasing students' overall awareness of construction and structural technologies.
Descriptors: Scientific Concepts, Engineering Technology, Engineering Education, Design
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Fjellström, Magnus; Kristmansson, Per – Education & Training, 2016
Purpose: The purpose of this paper is to compare, and identify both similarities and differences in, affordances for vocational learning in two contrasting education systems, for construction worker and shop salesperson apprentices, in Swedish contexts. Design/methodology/approach: Data were collected through interviews and observations in two…
Descriptors: Foreign Countries, Apprenticeships, Comparative Analysis, Affordances
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Wu, Yun-Wu; Wen, Ming-Hui; Chen, Ching-Ming; Hsu, I-Ting – EURASIA Journal of Mathematics, Science & Technology Education, 2016
"Building information technology" and "cost estimating" are two core skills of construction education. However, in traditional education, students learn these two important subjects in separate courses. This study proposes a blended learning environment which can provide students with support for their face-to-face learning…
Descriptors: Models, Blended Learning, Teaching Methods, Specialists
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Technology Teacher, 1990
Presents learning activities for occupations in construction technology, designing a beam, and simple machines. (JOW)
Descriptors: Construction (Process), Construction Industry, Learning Activities, Mechanics (Physics)
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Styhre, Alexander – Journal of Workplace Learning, 2006
Purpose: All workplace learning takes place under specific temporal conditions. In fact, one learns in order to be better equipped to deal with future challenges. At the same time, learning is always embedded in previous experiences. Thus, the notion of time needs to be theoretically integrated into organization and workplace learning. This paper…
Descriptors: Learning Theories, Work Environment, Time Factors (Learning), Construction Industry
Meyer, Hal R.; Trohan, John A. – School Shop, 1973
A description of a program of industrial arts in a junior high school that explores career possibilities as an introduction to career education. (MU)
Descriptors: Career Education, Career Exploration, Construction Industry, Educational Objectives
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1994
This instructor's guide contains the materials required to teach a competency-based introductory course in construction welding to students who have chosen to explore careers in construction. It contains three units: welding materials, welding tools, and applied skills. Each instructional unit includes some or all of the basic components of a unit…
Descriptors: Behavioral Objectives, Building Trades, Competency Based Education, Construction Industry
Center for Occupational Research and Development, Inc., Waco, TX. – 1981
This student module on steel erection safety is one of 50 modules concerned with job safety and health. This module identifies typical jobsite hazards encountered by steel erectors, as well as providing safe job procedures for general and specific construction activities. Following the introduction, 11 objectives (each keyed to a page in the text)…
Descriptors: Accident Prevention, Behavioral Objectives, Construction Industry, Health Education
Mundell, Scott – 1975
The field tested construction industry-related mathematics unit is intended to familiarize seventh grade students with various facets of the construction industry, including the various occupations available and the mathematical abilities and other skills and training necessary to pursue an occupation in the industry. The final set of activities…
Descriptors: Career Education, Construction Industry, Grade 7, Instructional Materials
Texas Education Agency, Austin. Dept. of Occupational Education and Technology. – 1975
The guide for instructors of construction occupations provides instructional suggestions and informational sources for structuring an exploratory program. The program is divided into the following blocks, representing different experiences in construction: (1) wood; (2) finishing; (3) engineering, support, and management services; (4) metal; (5)…
Descriptors: Career Choice, Career Exploration, Construction Industry, Course Content
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1994
This instructor's guide contains the materials required to teach a competency-based introductory course in electricity to students who have chosen to explore careers in construction. It contains three units: electricity materials, electricity tools, and applied skills. Each instructional unit includes some or all of the basic components of a unit…
Descriptors: Behavioral Objectives, Building Trades, Competency Based Education, Construction Industry
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