Engineering design processes: A comparison of students and expert practitioners CJ Atman, RS Adams, ME Cardella, J Turns, S Mosborg, J Saleem Journal of engineering education 96 (4), 359-379, 2007 | 1087 | 2007 |
Students' ways of experiencing human‐centered design CB Zoltowski, WC Oakes, ME Cardella Journal of Engineering Education 101 (1), 28-59, 2012 | 357 | 2012 |
Comparing freshman and senior engineering design processes: an in-depth follow-up study CJ Atman, ME Cardella, J Turns, R Adams Design studies 26 (4), 325-357, 2005 | 355 | 2005 |
Elementary teachers’ views about teaching design, engineering, and technology MC Hsu, S Purzer, ME Cardella Journal of Pre-College Engineering Education Research (J-PEER) 1 (2), 5, 2011 | 241 | 2011 |
Conceptions of the engineering design process: An expert study of advanced practicing professionals S Mosborg, R Adams, R Kim, C Atman, J Turns, M Cardella 2005 Annual Conference, 10.337. 1-10.337. 27, 2005 | 145 | 2005 |
Which mathematics should we teach engineering students? An empirically grounded case for a broad notion of mathematical thinking ME Cardella Teaching Mathematics and Its Applications: International Journal of the IMA …, 2008 | 121 | 2008 |
Mapping between design activities and external representations for engineering student designers ME Cardella, CJ Atman, RS Adams Design Studies 27 (1), 5-24, 2006 | 116 | 2006 |
Assessing information literacy skills demonstrated in an engineering design task REH Wertz, Ş Purzer, MJ Fosmire, ME Cardella Journal of Engineering Education 102 (4), 577-602, 2013 | 82 | 2013 |
A framework for analyzing feedback in a formative assessment system for mathematical modeling problems HA Diefes‐Dux, JS Zawojewski, MA Hjalmarson, ME Cardella Journal of Engineering Education 101 (2), 375-406, 2012 | 77 | 2012 |
Engineering in pre-college settings: synthesizing research, policy, and practices Ş Purzer, J Strobel, ME Cardella Purdue University Press, 2014 | 72 | 2014 |
Computational thinking embedded in engineering design: Capturing computational thinking of children in an informal engineering design activity H Ehsan, AP Rehmat, ME Cardella International Journal of Technology and Design Education 31 (3), 441-464, 2021 | 66 | 2021 |
Students with differing design processes as freshmen: Case studies on change ME Cardella, CJ Atman, J Turns, RS Adams International Journal of Engineering Education 24 (2), 246, 2008 | 65 | 2008 |
Engineering design education: Research, practice, and examples that link the two C Atman, J Borgford-Parnell, J McDonnell, O Eris, M Cardella Cambridge University Press, 2014 | 62 | 2014 |
A psychometric re‐evaluation of the Design, Engineering and Technology (DET) survey TAO Hong, ŞE Purzer, ME Cardella Journal of Engineering Education 100 (4), 800-818, 2011 | 59 | 2011 |
Capturing the design thinking of young children interacting with a parent BL Dorie, M Cardella, GN Svarovsky | 57 | 2014 |
Timescales and ideaspace: An examination of idea generation in design practice K Shroyer, T Lovins, J Turns, ME Cardella, CJ Atman Design Studies 57, 9-36, 2018 | 56 | 2018 |
Instructional strategies to promote computational thinking for young learners AP Rehmat, H Ehsan, ME Cardella Journal of Digital Learning in Teacher Education 36 (1), 46-62, 2020 | 40 | 2020 |
Mathematical modeling in engineering design projects ME Cardella Modeling Students' Mathematical Modeling Competencies: ICTMA 13, 87-98, 2013 | 40 | 2013 |
IGNOREDPOTENTIAL T Fletcher, M Ross, DL Tolbert, J Holly, M Cardella, A Godwin, J DeBoer The National Society for Black Engineers, 2017 | 38 | 2017 |
Engineering mathematics: an investigation of students' mathematical thinking from a cognitive engineering perspective ME Cardella University of Washington, 2006 | 38 | 2006 |