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Merve Arik; Mustafa Sami Topçu – International Journal of Technology and Design Education, 2024
This study examined the effects of the engineering design-based activities developed in the context of aircraft engineering on the engineering design process (EDP) skills of students. Through the notebooks that the students provided during the implementation process, their EDP skills for each engineering design phase (identification of the…
Descriptors: Design, Learning Activities, Engineering Education, Aviation Technology
Balogun, Aishat Olere; Miller, Jaime – TechTrends: Linking Research and Practice to Improve Learning, 2022
The primary focus of our project is to create STEM-based learning opportunities for secondary students (grades 6-12) through the out-of-school space that aligns with the workforce needs of two critical STEM-related sectors: National Security and Defense, and Advanced. Manufacturing (ROI, 2017). In this learning environment, students will encounter…
Descriptors: Engineering Education, Employment Potential, Secondary School Students, Extracurricular Activities
Walach, Michael; Harrell, Mark – Technology and Engineering Teacher, 2021
The commercial use of UAS (unmanned aerial systems) more commonly known as "drones" is increasing rapidly in a variety of areas from agriculture to construction (Marshall, 2016). The need for people who can safely operate UAS, understand the legal restrictions and privacy concerns related to UAS use, and build and repair UAS is…
Descriptors: Aviation Technology, Aviation Education, Teacher Education, Teacher Workshops
Pramod Abichandani; Deepan Lobo; Branislav Dimitrijevic; Ashish Borgaonkar; Jaskirat Sodhi; Smit Kabrawala; Daniel Brateris; Moshe Kam – Interactive Learning Environments, 2024
This paper presents a competition-based active learning approach that prepares undergraduate students for careers in the drone industry. The competition-based learning (CBL) approach focuses on preparing students for three key drone industry requirements (1) drone assembly, testing, and validation using commercial off-the-shelf (COTS) parts, (2)…
Descriptors: Active Learning, Competition, Undergraduate Students, Aviation Technology
Bartholomew, Scott R.; Zhang, Liwei; Weitlauf, John – Technology and Engineering Teacher, 2018
Computational thinking, programming, coding, and analytical thinking are high-demand skills in today's educational and occupational arenas (Wing, 2006 & 2014). In addition to these skills, students need the ability to think creatively, work collaboratively, and develop design solutions to complex problems to succeed in school and a…
Descriptors: Engineering, Design, Coding, Thinking Skills
Philip, Thomas M.; Gupta, Ayush; Elby, Andrew; Turpen, Chandra – Journal of the Learning Sciences, 2018
The relationship between ideology and learning remains insufficiently theorized and sparsely investigated in the learning sciences. Drawing on Stuart Hall's theorization of ideology, Judith Butler's notion of the (un)grievability of lives, and Sara Ahmed's construct of stickiness, we illustrate how insights from critical social theory are…
Descriptors: Ideology, Learning Processes, Engineering Education, Ethics
Euphrasio, P. C. S.; Faria, L. A.; Germano, J. S. E.; Hirata, Daisy – IEEE Transactions on Education, 2020
This article describes the implementation of a remote access experiment, called Web-lab 1553B (Digital Data Bus Lab), for courses in the Avionics Systems Program. Its main objective is to present a study about the use of two rotation model subgroups: 1) rotation laboratory and 2) station rotation. In the "rotation laboratory" subgroup,…
Descriptors: Computer Simulation, Educational Technology, Electronic Learning, Teaching Methods

Karayanakis, Nicholas M. – CoED, 1985
Describes a scheme for the mechanization of fixed-wing, lateral/directional dynamics as demonstrated on the EAI 580 analog/hybrid system. A review of the complete six degrees of freedom program is included, along with useful guidelines of aircraft simulation in the engineering laboratory. (Author/JN)
Descriptors: Aviation Technology, Computer Simulation, Engineering, Engineering Education
Federal Aviation Administration (DOT), Washington, DC. – 1969
This directory of colleges and universities offering courses in aviation, aerospace and transport technology indicates which United States institutions offer curricula leading to diplomas, certificates or degrees (associate, bachelor, master, doctor). Forty-four categories of aviation programs are listed, but as the terms used are those used by…
Descriptors: Aviation Technology, College Curriculum, Directories, Engineering Education
Merisotis, Jamie P.; Kee, Arnold M. – Journal of Hispanic Higher Education, 2006
The Model Institutions for Excellence (MIE) Grant, funded by the National Science Foundation and National Aeronautics and Space Administration, enhanced student pathways into science, technology, engineering, and math (STEM). It achieved these results through 10 years of sustained investment and collaborative leadership. Components of the MIE…
Descriptors: Faculty Development, Scholarships, Aviation Technology, Academic Achievement
Tech Educ News, 1969
Descriptors: Aerospace Technology, Aviation Technology, Buildings, Electronics
Tech Educ News, 1969
Descriptors: Aerospace Technology, Aviation Technology, Buildings, Electronics
Haddad, Nick; McWilliams, Harold; Wagoner, Paul – National Aeronautics and Space Administration (NASA), 2007
NASA (National Aeronautics and Space Administration) Engineers at Marshall Space Flight Center along with their partners at other NASA centers, and in private industry, are designing and beginning to develop the next generation of spacecraft to transport cargo, equipment, and human explorers to space. These vehicles are part of the Constellation…
Descriptors: Space Exploration, Space Sciences, Astronomy, Aviation Technology
National Academy of Sciences - National Research Council, Washington, DC. Assembly of Engineering. – 1981
The central task of a 1980 workshop on the role of the National Aeronautics and Space Administration (NASA) in aeronautics was to examine the relationship of NASA's research capabilities to the state of U.S. aviation and to make recommendations about NASA's future role in aeronautics. The findings and recommendations of the Panel on General…
Descriptors: Aerospace Education, Aerospace Industry, Aviation Technology, Engineering Education
National Academy of Sciences - National Research Council, Washington, DC. Assembly of Engineering. – 1981
The central task of a 1980 workshop on the role of the National Aeronautics and Space Administration (NASA) in aeronautics was to examine the relationship of NASA's research capabilities to the state of U.S. aviation and to make recommendations about NASA's future role in aeronautics. Following an introduction, findings and recommendations of the…
Descriptors: Aerospace Education, Aerospace Industry, Aviation Technology, Engineering Education