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Hisashi Nakahara; Keita Sera; Tetsuya Uenosono; Atsuhiro Katsumoto; Jun Moriyama – Design and Technology Education, 2024
This study investigates junior high school students' perspectives on improving manufactured products and their perceptions as users after participating in materials processing technology learning in Japan. Guided by recent changes in Japanese curriculum guidelines emphasizing real-world application, we conducted a web-based survey collecting 721…
Descriptors: Junior High School Students, Student Attitudes, Manufacturing, Technology
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Maia Lust; Mart Laanpere – Educational Media International, 2023
Since the last curriculum reform in 2011, all Estonian lower-secondary students have to conduct a year-long creative work. Unfortunately, in many cases, it is implemented as an individual written report that has little to do with improving learners' digital competence or Computational Thinking skills. In the new national curriculum (to be in force…
Descriptors: Student Projects, Creativity, Grade 8, Foreign Countries
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Citrohn, Björn; Stolpe, Karin; Svensson, Maria; Bernhard, Jonte – Design and Technology Education, 2022
This study aims to investigate affordances of models and modelling in design projects in technology education. To learn more about affordances when working with models and modelling, four Swedish technology teachers were interviewed using a narrative approach. Despite a small number of informants data were rich, containing detailed descriptions of…
Descriptors: Foreign Countries, Technology Education, Design, Models
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Thanapornsangsuth, Sawaros – AERA Online Paper Repository, 2017
This research presents two case studies on how human-centered design process can help the students find their purpose in making and designing in a constructionist learning-environment. Human-centered design guides students to deeper understanding of others' needs and encourages them to think and act collaboratively and creatively. When the…
Descriptors: Foreign Countries, Middle School Students, Grade 8, At Risk Students
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Barton, Richard – Tech Directions, 2012
"If you build a better mousetrap, the world will beat a path to your door," Ralph Waldo Emerson is often credited with saying. In today's world, that might more likely be "if you build a better cell phone..." or maybe "a better vehicle..." But as an 8th-grade design project, the author challenges his students to build that better mousetrap. In…
Descriptors: Design, Middle School Students, Equipment, Technology Education
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Shealer, Ron; Shealer, Michelle – Technology and Engineering Teacher, 2014
This article describes a cooperative project between eighth graders and first graders called "Going Green in the Neighborhood." The project entailed the first grade students sketching home designs on paper to make a model community, and the eighth grade students taking those drawings and making them into 3D computer models and then…
Descriptors: Design, Class Activities, Cooperative Learning, Grade 1
Schneider, Twila, Ed. – National Aeronautics and Space Administration (NASA), 2010
This educator guide is organized into seven chapters: (1) Overview; (2) The Design Challenge; (3) Connections to National Curriculum Standards; (4) Preparing to Teach; (5) Classroom Sessions; (6) Opportunities for Extension; and (7) Teacher Resources. Chapter 1 provides information about Environmental Control and Life Support Systems used on NASA…
Descriptors: Glossaries, Web Sites, Technological Literacy, Space Sciences
National Aeronautics and Space Administration (NASA), 2010
National Aeronautics and Space Administration (NASA) Engineers at Marshall Space Flight Center, Dryden Flight Research Center, and their partners at other NASA centers and in private industry are currently developing X-33, a prototype to test technologies for the next generation of space transportation. This single-stage-to-orbit reusable launch…
Descriptors: Space Sciences, Astronomy, Engineering, Worksheets
National Aeronautics and Space Administration (NASA), 2007
This student employee handbook offers tips on planning, design process, and presentation of a student Lunar Nautics project. Each section includes mission, task, challenge, and guide questions. With the activities presented, students will learn to design a Lunar Lander, Lunar Miner, and Lunar Base; investigate the geography and geology of the moon…
Descriptors: Geology, Geography, Lunar Research, Hands on Science