Measuring the impact of conceptual inquiry-based labs
written by
Danny Doucette
Conceptual inquiry-based introductory physics labs deploy PER-informed pedagogical strategies in physics labs with the aim of helping to improve students' understanding of physics concepts. Unlike traditional labs (which tend to be highly-structured and focus on verification of scientific relationships via precision measurements) and skills-based labs (which tend to eschew the aim of helping students learn physics concepts in favor of teaching experimental skills), some studies have suggested that conceptual inquiry-based labs may have a positive impact on student conceptual understanding, as measured by concept inventories. This paper reports on a randomized controlled study that compares student conceptual gains in electricity and magnetism between a conceptual inquiry-based lab and a skills-based lab. Following a difference-in-differences analytical strategy and using hierarchical linear modeling, the result from this study is that the conceptual inquiry-based lab provides no additional benefit to students' conceptual learning gains compared with the skills-based lab. Studies such as these may help physics departments make decisions about the goals and scope of transformations to their introductory lab courses.
Physics Education Research Conference 2022
Part of the PER Conference series Grand Rapids, MI: July 13-14, 2022 Pages 151-156
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![]() <a href="https://www.compadre.org/portal/items/detail.cfm?ID=16224">Doucette, Danny. "Measuring the impact of conceptual inquiry-based labs." Paper presented at the Physics Education Research Conference 2022, Grand Rapids, MI, July 13-14, 2022.</a>
![]() D. Doucette, , presented at the Physics Education Research Conference 2022, Grand Rapids, MI, 2022, WWW Document, (https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593).
![]() D. Doucette, Measuring the impact of conceptual inquiry-based labs, presented at the Physics Education Research Conference 2022, Grand Rapids, MI, 2022, <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593>.
![]() Doucette, D. (2022, July 13-14). Measuring the impact of conceptual inquiry-based labs. Paper presented at Physics Education Research Conference 2022, Grand Rapids, MI. Retrieved May 3, 2025, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593
![]() Doucette, Danny. "Measuring the impact of conceptual inquiry-based labs." Paper presented at the Physics Education Research Conference 2022, Grand Rapids, MI, July 13-14, 2022. https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593 (accessed 3 May 2025).
![]() Doucette, Danny. "Measuring the impact of conceptual inquiry-based labs." Physics Education Research Conference 2022. Grand Rapids, MI: 2022. 151-156 of PER Conference. 3 May 2025 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593>.
![]() @inproceedings{
Author = "Danny Doucette",
Title = {Measuring the impact of conceptual inquiry-based labs},
BookTitle = {Physics Education Research Conference 2022},
Pages = {151-156},
Address = {Grand Rapids, MI},
Series = {PER Conference},
Month = {July 13-14},
Year = {2022}
}
![]() %A Danny Doucette %T Measuring the impact of conceptual inquiry-based labs %S PER Conference %D July 13-14 2022 %P 151-156 %C Grand Rapids, MI %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593 %O Physics Education Research Conference 2022 %O July 13-14 %O application/pdf ![]() %0 Conference Proceedings %A Doucette, Danny %D July 13-14 2022 %T Measuring the impact of conceptual inquiry-based labs %B Physics Education Research Conference 2022 %C Grand Rapids, MI %P 151-156 %S PER Conference %8 July 13-14 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=16224&DocID=5593 Disclaimer: ComPADRE offers citation styles as a guide only. We cannot offer interpretations about citations as this is an automated procedure. Please refer to the style manuals in the Citation Source Information area for clarifications.
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