Engineering design skills coverage in K-12 engineering program curriculum materials in the USA

被引:14
作者
Chabalengula, Vivien M. [1 ]
Mumba, Frackson [1 ]
机构
[1] Univ Virginia, Curry Sch Educ, Dept CISE, Charlottesville, VA 22903 USA
关键词
Science; engineering design; K-12 engineering curricula; teaching; MIDDLE-SCHOOL SCIENCE; CLASSROOM; EDUCATION; INQUIRY; MODELS; TASKS;
D O I
10.1080/09500693.2017.1367862
中图分类号
G40 [教育学];
学科分类号
040101 ; 120403 ;
摘要
The current K-12 Science Education framework and Next Generation Science Standards (NGSS) in the United States emphasise the integration of engineering design in science instruction to promote scientific literacy and engineering design skills among students. As such, many engineering education programmes have developed curriculum materials that are being used in K-12 settings. However, little is known about the nature and extent to which engineering design skills outlined in NGSS are addressed in these K-12 engineering education programme curriculum materials. We analysed nine K-12 engineering education programmes for the nature and extent of engineering design skills coverage. Results show that developing possible solutions and actual designing of prototypes were the highly covered engineering design skills; specification of clear goals, criteria, and constraints received medium coverage; defining and identifying an engineering problem; optimising the design solution; and demonstrating how a prototype works, and making iterations to improve designs were lowly covered. These trends were similar across grade levels and across discipline-specific curriculum materials. These results have implications on engineering design-integrated science teaching and learning in K-12 settings.
引用
收藏
页码:2209 / 2225
页数:17
相关论文
共 50 条
[21]   Integration of chemical engineering skills in the curriculum of a master course in industrial engineering [J].
Gomez-Coma, Lucia ;
Diaz-Sainz, Guillermo ;
Fallanza, Marcos ;
Ortiz, Alfredo ;
Ortiz, Inmaculada .
EDUCATION FOR CHEMICAL ENGINEERS, 2023, 45 :68-79
[22]   Translanguaging in US K-12 science and engineering education: A review of the literature through the lens of equity [J].
Grapin, Scott E. ;
Borrego, Marisleydi Ramos ;
Navarro, Vijay Gallardo .
JOURNAL OF RESEARCH IN SCIENCE TEACHING, 2025, 62 (01) :15-48
[23]   LGBTQ plus visibility in the K-12 curriculum [J].
Moorhead, Laura .
PHI DELTA KAPPAN, 2018, 100 (02) :22-26
[24]   A Recommended ICT Curriculum for K-12 Education [J].
Chiu-Fan Hu ;
Yu-Tzu Lin ;
Hui-Chi Chuang ;
Cheng-Chih Wu .
2014 INTERNATIONAL CONFERENCE ON TEACHING AND LEARNING IN COMPUTING AND ENGINEERING (LATICE), 2014, :33-36
[25]   K12 Teacher Credentialing Containing Engineering Content in the USA [J].
Ozfidan, Burhan ;
de Miranda, Michael Anthony .
EURASIA JOURNAL OF MATHEMATICS SCIENCE AND TECHNOLOGY EDUCATION, 2018, 14 (01) :3-13
[26]   Design by Thread: The E4USA Engineering for Us All Curriculum [J].
Reid, Kenneth J. ;
Ladeji-Osias, Jumoke Oluwakemi ;
Beauchamp, Cheryl ;
Dalal, Medha ;
Griesinger, Tina ;
Eagle, W. Ethan .
2020 IEEE FRONTIERS IN EDUCATION CONFERENCE (FIE 2020), 2020,
[27]   EdgePrompt: Engineering Guardrail Techniques for Offline LLMs in K-12 Educational Settings [J].
Syah, Riza Alaudin ;
Haryanto, Christoforus Yoga ;
Lomempow, Emily ;
Malik, Krishna ;
Putra, Irvan .
COMPANION PROCEEDINGS OF THE ACM WEB CONFERENCE 2025, WWW COMPANION 2025, 2025, :1635-1638
[28]   Opportunities for environmental science and engineering outreach through K-12 mathematics programs [J].
Hunter, Margaret A. .
ENVIRONMENTAL ENGINEERING SCIENCE, 2006, 23 (03) :461-471
[29]   The Status of Engineering in the Current K-12 State Science Standards (Research to Practice) [J].
Moore, Tamara J. ;
Tank, Kristina Maruyama ;
Glancy, Aran W. ;
Kersten, Jennifer Anna ;
Ntow, Forster D. .
2013 ASEE ANNUAL CONFERENCE, 2013,
[30]   On the Role of Design in K-12 Computing Education [J].
Oleson, Alannah ;
Wortzman, Brett ;
Ko, Amy J. .
ACM TRANSACTIONS ON COMPUTING EDUCATION, 2021, 21 (01)