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Mueller, Jenna L.; Dotson, Mary Elizabeth; Dietzel, Jennifer; Peters, Jenna; Asturias, Gabriela; Cheatham, Amelia; Krieger, Marlee; Taylor, Baishakhi; Broverman, Sherryl; Ramanujam, Nirmala – Advances in Engineering Education, 2020
Background: Engineering design is widely recognized as a field that can generate key innovations for complex problems, such as those elucidated in the Sustainable Development Goals (SDGs). However, engineering design training is not widely accessible to the global community, particularly to people experiencing the challenges that the SDGs are…
Descriptors: Design, Human Factors Engineering, Engineering Education, Sustainable Development
Feille, Kelly; Wildes, Annie; Pyle, Janet; Marshall, Jessica – Science and Children, 2021
At a time when changes in standards and curriculum compound the pressures of fifth-grade state testing, the authors wanted to find an engaging way to involve students in authentic science and engineering. Rather than put their efforts into a traditional science fair that would inevitably lead to inequitable input by parents and students alike,…
Descriptors: Engineering Education, Grade 5, Elementary School Students, Science Education
Dogan, Alev; Kahraman, Emine – International Journal of Curriculum and Instruction, 2021
Recently, potential effects of STEM activities on students in science education are among important research topics. Therefore, in this study, the effect of STEM activity practices on the scientific creativity of middle school students was investigated. The research sample consists of 98 (experimental group = 50 students, control group = 48…
Descriptors: STEM Education, Science Activities, Science Instruction, Instructional Effectiveness
Lesseig, Kristin; Slavit, David; Nelson, Tamara Holmlund – Middle School Journal, 2017
Given the current emphasis on science, technology, engineering, and math (STEM) education and its key attributes, middle school is an optimal time to implement STEM-based curricula. However, the interdisciplinary and open-ended nature of STEM projects often makes implementation difficult. In this article, we describe a professional development…
Descriptors: STEM Education, Middle School Students, Middle School Teachers, Interdisciplinary Approach
Prasa, Anthony R., Jr.; Del Guercio, Ryan – Technology and Engineering Teacher, 2016
Engineers are faced with solving important problems every day and must follow a step-by-step design process to arrive at solutions. Students who are taught an effective design process to apply to engineering projects begin to see problems as an engineer would, consider all ideas, and arrive at the best solution. Using an effective design process…
Descriptors: Engineering Education, Engineering, Secondary School Science, High School Students
Sumrall, William J.; Sumrall, Kristen M. – Science Activities: Classroom Projects and Curriculum Ideas, 2018
The NGSS MS-ETS1 Engineering Design (1-4) is the focus of the article. Development of a challenging problem-based activity that is an improvement over the traditional egg drop competition is emphasized. Quantification of data collected and real-world relevance are two activity components that are viewed as improvements over the egg drop. The…
Descriptors: Engineering, Design, Problem Based Learning, Science Activities
Ward, Lauren; Lyden, Sarah; Fitzallen, Noleine – Australian Mathematics Teacher, 2016
Context based learning (CBL) is a powerful tool that utilises areas of student interest framed in meaningful contexts to foster development of new skills and understanding. For middle school students, engineering activities that relate to real-world problems provide suitable CBL contexts for acquiring conceptual scientific and mathematical…
Descriptors: Engineering Education, Engineering Technology, Middle School Students, Teaching Methods
Perry, Anthony; Estabrooks, Leigh – Science Teacher, 2019
The "Next Generation Science Standards" ("NGSS") emphasize integrating engineering design into the science classroom (NGSS Lead States 2013). Inventing is an authentic and relevant classroom approach, regardless of content area, located at one end of a design continuum opposite from routine problem solving. Invention, at the…
Descriptors: Intellectual Property, Problem Solving, Learner Engagement, Natural Disasters
Vaino, Katrin; Vaino, Toomas; Ottander, Christina – Science Education International, 2018
In this study, middle school students' (8th grade, n = 24) problem-solving processes were investigated while implementing a design-based science learning (DBSL) approach. DBSL tries to incorporate science learning with the processes of engineering design. A DBSL module was developed by the research team within which students were expected to…
Descriptors: Middle School Students, Secondary School Science, Science Process Skills, Problem Solving
Llewellyn, Douglas; Pray, Sandra; DeRose, Rob; Ottman, William – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In this month's issue an upper elementary Science, technology, engineering, and math (STEM) challenge brings an engineer into the classroom while emphasizing cooperation, communication, and creativity. STEM activities come in various shapes and sizes. Some are quite involved…
Descriptors: Science Instruction, Teaching Methods, Elementary School Science, Engineering Technology
Anderson, Andrea Earline; Meier, Jessica A. – Journal of STEM Arts, Crafts, and Constructions, 2018
The integration of art into curricula focused on teaching science is a new perspective in education designed to reach a broader range of students. The current study examined the process of second-grade students participating in science and art activities through qualitative content analysis. The subjects of science and art were not taught to the…
Descriptors: Elementary School Students, Primary Education, Grade 2, Civil Engineering
Wang, Jennifer; Werner-Avidon, Maia; Newton, Lisa; Randol, Scott; Smith, Brooke; Walker, Gretchen – Journal of Pre-College Engineering Education Research, 2013
The Lawrence Hall of Science, a science center, seeks to replicate real-world engineering at the "Ingenuity in Action" exhibit, which consists of three open-ended challenges. These problems encourage children to engage in engineering design processes and problem-solving techniques through tinkering. We observed and interviewed 112…
Descriptors: Engineering Technology, Engineering Education, Design, Exhibits
Cook, Kristin Leigh; Bush, Sarah B.; Cox, Richard – Science and Children, 2015
The power of 3D printing technology has grown exponentially in just the past few years--people around the world are using 3D printers to prepare food, create tailored clothing, build cars and homes, and advance the medical field in ways that never seemed possible. In classrooms across the nation, 3D printers have become increasingly common because…
Descriptors: Elementary School Science, Engineering Technology, Printing, Grade 4
Baldwin, Blake; Koenig, Kathleen; Van der Bent, Andries – Science Teacher, 2016
Integrating engineering and science in the classroom can be challenging, and creating authentic experiences that address real-world problems is often even more difficult. "A Framework for K-12 Science Education" (NRC 2012), however, calls for high school graduates to be able to undertake more complex engineering design projects related…
Descriptors: Environmental Education, Engineering Education, Science Education, Design
Erdogan, Ibrahim; Ciftci, Ayse – International Journal of Environmental and Science Education, 2017
It has given importance to the development of 21st century skills in every aspect of life. STEM (Science, Technology, Engineering, and Mathematics) education has played an important role to improve these skills and teachers are expected to be able to organize learning environments accordingly. The purpose of this research is to examine the…
Descriptors: Preservice Teachers, Science Teachers, STEM Education, Scientific Attitudes

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