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Voronina, Marianna V.; Tretyakova, Zlata O.; Krivonozhkina, Ekaterina G.; Buslaev, Stanislav I.; Sidorenko, Grigory G. – EURASIA Journal of Mathematics, Science and Technology Education, 2019
The relevance and feasibility of this study are determined by the absence of serious, scientific research, as well as teaching materials, when it comes to the use of Augmented Reality (AR) in teaching students and future teachers Descriptive Geometry, Engineering and Computer Graphics (DGECG). The purpose of the study is to examine the current…
Descriptors: Computer Simulation, Geometry, Engineering Education, Computer Graphics
Gilbert, Suze S.; Huddleston, Tracey R.; Winters, J. Jeremy – Social Studies and the Young Learner, 2018
The authors challenged their second grade students to design and build a small house for a Skylander toy character that would be economical, yet able to withstand "the elements of wind and rain." While this social studies (economics)/science/math integrated project was completed with second grade students, the lessons presented in this…
Descriptors: Grade 2, Elementary School Students, Building Design, Cooperative Learning
Kruse, Jerrid; Wilcox, Jesse – Science and Children, 2017
This column presents ideas and techniques to enhance your science teaching. In this issue the authors discuss a design project they have used with upper elementary students (grades 4-6). They note ways to engage students in thinking philosophically about technology to meet engineering design outcomes in the "Next Generation Science…
Descriptors: Science Instruction, Technological Literacy, Elementary School Science, Student Projects
Roman, Harry T. – Technology and Engineering Teacher, 2014
This article presents an interesting design challenge for students, one that will certainly let them integrate subject matter and get a sense of pride for doing something useful in their own community. The author would be willing to bet that the average town or city has some old red brick manufacturing building(s) that have seen much better days.…
Descriptors: Building Design, Buildings, Manufacturing Industry, Engineering Education
Lee, Tammy; Kier, Meredith; Phillips, Kelsey – Science and Children, 2016
To show students how engineering design practices reduce the impacts of a natural hazard, the authors--two science educators and an elementary teacher--taught a three-day 5E lesson that focused on hurricanes. They specifically focused on hurricanes because their students are located near a coastal area and are familiar with the effects of this…
Descriptors: Science Instruction, Elementary School Science, Weather, Natural Disasters
Bush, Sarah B.; Albanese, Judith; Karp, Karen S.; Karp, Matthew – Mathematics Teaching in the Middle School, 2017
Middle school students need relevant, meaningful contexts to apply emerging mathematical ideas. In this project, through the context of an architecture investigation, seventh-grade students engaged in mathematics involving area, surface area, volume, ratios and proportional thinking, number sense, and technology integration. Students, working in…
Descriptors: Middle School Students, Mathematics Instruction, Architectural Education, Teaching Methods
Roman, Harry T. – Technology and Engineering Teacher, 2013
This article invites teachers to let their students' imaginations soar as they become part of a team that will design a whole new kind of living technological museum, a facility that celebrates the world of infrastructure. In this activity, a new two-story building will be built, occupying a vacant corner parcel of land, approximately 150…
Descriptors: Museums, Imagination, Building Design, Structural Elements (Construction)
Soygenis, Sema; Soygenis, Murat; Erktin, Emine – International Journal of Art & Design Education, 2010
This article discusses the process of a study designed to develop university students' sketching skills in schools of architecture. Acknowledging the relationship between cognition and writing, it aims to investigate the role of writing in learning sketching among architecture students and to examine how students regulate their thoughts by writing…
Descriptors: Architectural Education, Elective Courses, Building Design, Architecture
Gilstrap, Tatiana; Sheldon, Peter; Schimmoeller, Peggy – Science and Children, 2010
If scientists know where earthquakes are most likely to occur, then architects and engineers can design safer buildings for such areas and potentially prevent some of the devastating aftereffects. Engineers have met this challenge through the design and use of gigantic shake tables to evaluate the stability of various structures. In this 45-minute…
Descriptors: Science Instruction, Natural Disasters, Building Design, Scientific Concepts
Vande Zande, Robin – International Journal of Art & Design Education, 2010
Sustainable design is a philosophy adopted by people concerned with the health of society and the natural environment. The practice of sustainable design works toward the improvement of the quality of the built environment, while reducing or eradicating the negative impact on the natural environment (McLennan 2004). It is a philosophical approach…
Descriptors: Methods Courses, Building Design, Teacher Education Curriculum, Community Planning
Griffith, Jack – Tech Directions, 2008
This article presents an activity that gives students a practical understanding of how much energy the average home consumes and wastes, and shows how the construction technologies used in home design affect overall energy usage. In this activity, students will outline the cost of a home's electrical system, give a breakdown of how much power the…
Descriptors: Energy Conservation, Electronics, Technology Education, Conservation (Environment)
Troyer, Steve; Griffis, Kurt; Shackelford, Ray – Tech Directions, 2005
In the field of construction, most structures are supported by several groups of truss systems working together synergistically. A "truss" is a group of centered and balanced elements combined to carry a common load (Warner, 2003). Trusses provide strength against loads and forces within a structure. Though a complex field of study, structural…
Descriptors: Building Design, Physics, Construction Materials, Science Activities
Luna, Gene, Ed.; Gahagan, Jimmie, Ed. – National Resource Center for The First-Year Experience and Students in Transition, 2008
In 2004, "Learning Reconsidered" urged educators to think more holistically about student learning and development. "Learning Initiatives in the Residential Setting" provides a framework for putting this call into action at large universities and small colleges alike. Chapters trace the history of learning in residence halls, discuss academic and…
Descriptors: Building Design, Physical Environment, Student Personnel Services, Holistic Approach

Gerber, Brian L.; Marek, Edmund A. – Science Teacher, 1996
Presents an investigation that engages students in constructing models of houses to examine the dynamics of energy flow patterns. Uses the learning cycle procedure that allows students to experience the processes of science and to use higher level thinking skills. (JRH)
Descriptors: Architecture, Building Design, Energy Conservation, Learning Processes

Newcomb, Leonard – Academe, 1991
In one Massachusetts Institute of Technology building, architect I. M. Pei gave up three crucial areas of the project to three other designers for the purpose of artistic experiment: the main public space; the atrium's skin, with its impact on material and color throughout the building; and the site itself. (MSE)
Descriptors: Art Education, Building Design, College Buildings, Cooperation