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2022 Conference Publication Transforming a makerspace into a breakerspace: performing dissections of everyday objects with STEM teachers.Rouse, Rob and Torralba, Juan (2022). Transforming a makerspace into a breakerspace: performing dissections of everyday objects with STEM teachers.. International Symposium of Academic Makerspaces, Atlanta, GA, United States, 6-9 November 2022. Atlanta, GA, United States: Georgia Institute of Technology. |
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2022 Journal Article Using human-centered design to enhance the guest experience at the Dallas ArboretumRouse, Rob, Rossi, Dara and Miller, Dustin (2022). Using human-centered design to enhance the guest experience at the Dallas Arboretum. Connected Science Learning, 4 (3). |
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2020 Conference Publication Engagement in Practice: The SMU Maker Education ProjectRouse, Rob, Torralba, Juan, Krummeck, Kathryn and Higginbotham, DiMitri (2020). Engagement in Practice: The SMU Maker Education Project. 2020 ASEE Virtual Annual Conference, Online, 22 - 26 June 2020. Washington, DC United States: American Society for Engineering Education. doi: 10.18260/1-2--34538 |
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2020 Conference Publication Affordances of immersive design challenges in academic makerspaces.Torralba, Juan, Rouse, Rob, Krummeck, Katie and Crum, Rickey (2020). Affordances of immersive design challenges in academic makerspaces.. International Symposium on Academic Makerspaces, Stanford, CA, United States, 3-5 August 2018. Stanford, CA, United States: International Symposium on Academic Makerspaces. |
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2019 Conference Publication Developing an engineering identity through immersive design challenges in academic makerspaces: A qualitative case studyTorralba, Juan and Rouse, Rob (2019). Developing an engineering identity through immersive design challenges in academic makerspaces: A qualitative case study. 2019 ASEE Annual Conference and Exposition, Tampa, FL, United States, 16-19 June 2019. Washington, DC, United States: American Society for Engineering Education. |
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2019 Journal Article Engineering Encounters: Authors and EngineersRouse, Rob and Gillespie Rouse, Amy (2019). Engineering Encounters: Authors and Engineers. Science and Children, 56 (6), 58-63. doi: 10.2505/4/sc19_056_06_58 |
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2018 Conference Publication Extending the reach of academic makerspaces into K-12 schools: delivering maker-based instruction with a mobile makerspace.Rouse, Rob, Krummeck, Katie, Higginbotham, DiMitri and Crum, Rickey (2018). Extending the reach of academic makerspaces into K-12 schools: delivering maker-based instruction with a mobile makerspace.. International Symposium on Academic Makerspaces, Stanford, CA, United States, 3-5 August 2018. |
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2017 Conference Publication University makerspaces as workplaces for K-12 STEM educatorsRouse, Rob, Krummeck, Katie and Crum, Rickey (2017). University makerspaces as workplaces for K-12 STEM educators. International Symposium on Academic Makerspaces, Cleveland, OH, United States, 24-27 September 2017. |
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2017 Conference Publication Designing to support a maker culture in a university makerspaceKrummeck, Katie, Rouse, Rob and Crum, Rickey (2017). Designing to support a maker culture in a university makerspace. International Symposium on Academic Makerspaces, Cleveland, OH, United States, 24-27 September 2017. |
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2011 Journal Article Microfluidics-based diagnostics of infectious diseases in the developing worldChin, Curtis D., Laksanasopin, Tassaneewan, Cheung, Yuk Kee, Steinmiller, David, Linder, Vincent, Parsa, Hesam, Wang, Jennifer, Moore, Hannah, Rouse, Robert, Umviligihozo, Gisele, Karita, Etienne, Mwambarangwe, Lambert, Braunstein, Sarah L., van de Wijgert, Janneke, Sahabo, Ruben, Justman, Jessica E., El-Sadr, Wafaa and Sia, Samuel K. (2011). Microfluidics-based diagnostics of infectious diseases in the developing world. Nature Medicine, 17 (8), 1015-1020. doi: 10.1038/nm.2408 |
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2008 Journal Article Real-time microfluidic system for studying mammalian cells in 3D microenvironmentsLii, Jerry, Hsu, Wern-Jir, Parsa, Hesam, Das, Anshu, Rouse, Robert and Sia, Samuel K. (2008). Real-time microfluidic system for studying mammalian cells in 3D microenvironments. Analytical Chemistry, 80 (10), 3640-3647. doi: 10.1021/ac8000034 |