Journal Publications and Book Chapters
[18] Hira, A., Gemski, J., & Henriques, J. (2024). Assistive Technology and Human-Centered Engineering Design: Partnership between a school that serves students with extensive support needs and a human-centered engineering program. International Journal for Engineering Education. (in press)
[17] Woods, P., Anderson, E., & Hira, A (2024). Exploring the Impact of COVID-19 on the Grammar of Schools in Project-Based Learning Contexts. Journal of Educational Change. (in press)
Prior to HER lab
[7] Anderson, E., & Hira, A. (2020). Loss of brick-and-mortar schooling: how elementary educators respond. Information and Learning Sciences, 121(5/6), 411-418.
[6] Hira, A., & Hynes, M. M. (2018). People, Means, and Activities: A Conceptual Framework for Realizing the Educational Potential of Makerspaces. Education Research International, 1–10.
[5] Hira, A., & Hynes, M. M. (2017). Design-based research to broaden participation in pre-college engineering: research and practice of an interest-based engineering challenges framework. European Journal of Engineering Education, 44(1–2), 103–122.
[4] Hynes, M., Joslyn, C., Hira, A., J. Holly, J., & Jubelt, N. (2016). Exploring Diverse Pre-College Students’ Interests and Understandings of Engineering to Promote Engineering Education for All. International Journal of Engineering Education, 32(5B), 2318–2327.
[3] Hira, A. (2015). An ontological approach towards the next generation engineer: What it means to become and be an engineer. Journal of Engineering Education Transformations, 28(2&3), 179–184.
[2] Hira, A., Kansal, V., Jindal, T. K., Kansal, J., & Ganju, A. (2012). Harnessing wind energy in cryospheric regions. International Journal of Electrical Engineering & Technology, 3(2), 313–319.
[1] Hynes, W., Hynes, M., & Hira, A. (2015). Applying the makerspace model to the K-12 classroom. Educational Facility Planner, 49(1), 35–38.
Peer-Reviewed Conference Proceedings
[25] Hira, A., Gemski, J., & Henriques, J. (2023). Assistive Technology and Human-Centered Engineering Design: Partnership between a school that serves students with extensive support needs and a human-centered engineering program. In Clive L Dym Mudd Design Workshop.
[24] Shah, A., Phatak, J., Hira, A., Zhang, H., & Barnett, A. (2023). Tech Demo: “Smart Greenhouse” Project: Combining Physical Computing with Plant Science. In International Society of the Learning Sciences 2023 Conference.
[18] Hira, A., Bhattacharya, S., Gaudette, G. & Govindasamy, S., (2021). Designing a design-driven human-centered engineering program. In Clive L Dym Mudd Design Workshop.
Prior to HER lab
[16] Hira, A., Beebe, C., Maxey, K., & Hynes, M. (2018). “But, What Do You Want Me to Teach?”: Best Practices for Teaching in Educational Makerspaces (RTP). In ASEE 2018 Annual Conference. Salt Lake City, UT.
[15] Hynes, M., Beebe, C., Hira, A., & Maxey, K (2018). Make-an-Engineer Introduction to Engineering Activity (P12 Resource/Curriculum Exchange). In ASEE 2018 Annual Conference. Salt Lake City, UT.
[14] Hira, A., Salah, S., Hurt, C., & Hynes, M. (2017). Broadening the contexts of engineering to broaden participation: A multi-method study of an interest-based engineering challenges framework. In ASEE 2017 Annual Conference.Colombus, OH.
[13] Rush, J., Hira, A., & Hynes, M. (2017). The role of gender in pre-college students’ perceptions of engineering. In ASEE 2017 Annual Conference. Colombus, OH.
[12] Beebe, C., Sarwar, U., Jubelt, N., Hira, A., & Hynes, M. (2016). MAKER: A Game to Make Engineering. In ASEE 2016 Annual Conference. New Orleans, LA.
[11] Hira, A., & Hynes, M. (2016a). A thematic analysis of the maker movement in cyberspace across cultural contexts. In ASEE 2016 Annual Conference. New Orleans, LA.
[10] Hira, A., & Hynes, M. M. (2016b). Impromptu reflection as a means for self-assessment of design thinking skills. In ASEE 2016 Annual Conference. New Orleans, LA.
[9] Holly, J., Joslyn, C., Hira, A., Hynes, M., & Beebe, C. (2016). What do you like to do? Exploring pre-college students’ career aspirations and perceptions of engineering (Work in progress). In ASEE 2016 Annual Conference. New Orleans, LA.
[8] Hira, A., Holly, J., & Hynes, M. (2015) Implementation of an Interest-based Engineering Challenges Framework: A Design Research Approach (Work in progress). In Translating Research to Practice. REES. Dublin Institute of Technology, Ireland.
[7] Hynes, M. M., Joslyn, C. H., & Hira, A. (2015). Underrepresented students’ interests and how they relate to engineering. In NARST Annual International Conference. Chicago, IL.
[6] Hira, A., & Hynes, M. M. (2015). Broadening participation in engineering: Making in the K-12 Classroom following an interest-based framework. ASEE Annual Conference. Seattle, WA.
[5] Streveler, R. A., Pitterson, N. P., Hira, A., Rodriguez-Simmonds, H., & Alvarez, J. O. (2015). Learning about engineering education research: What conceptual difficulties still exist for a new generation of scholars?. In IEEE Frontiers in Education Conference Proceeedings (pp. 1-6). El Paso, TX.
[4] Hira, A., Joslyn, C. H., & Hynes, M. M. (2014). Classroom makerspaces: Identifying the opportunities and challenges. In IEEE Frontiers in Education Conference Proceedings (pp. 1677–1681). Madrid, Spain.
[3] Fila, N. D., Hess, J., Hira, A., Joslyn, C. H., Tolbert, D., & Hynes, M. M. (2014). The people part of engineering: Engineering for, with, and as people. In IEEE Frontiers in Education Conference Proceedings (pp. 727–735). Madrid, Spain.
[2] Hira, A., Jain, N., Chhjed, S., & Sarkar, S. (2013). Lift generation characteristics of an airfoil in hover with time dependent gust models. In 9th International Conference on Intelligent Unmanned Systems. Jaipur, India.
[1] Hira, A., Kapoor, A., Joseph, D., & Das, S. (2010). Flying cars: A dream or reality. In National Aerospace Olympiad (Aeronautical Society of India). Chandigarh, India.
Conference Presentations without peer-reviewed proceedings
[8] Stuopis, I., Ramos, K. A., Hancock, C., Louime, E. J., & Hira, A. (2024, June). Board 222: CAREER: Engineering in Youth-led Technology-rich Settings: Promoting Belonging and Preventing Harm. In 2024 ASEE Annual Conference & Exposition.
[7] Shah, A., Phatak, J., Zhang, H., Hira., A, & Barnett, M. (2024) Smart Greenhouse: Bridging Physical Computing, Plant Science, and Data Literacy. In SIGCSE Technical Symposium 2024 program.
[6] Shah, S A, Raphael, D, Phatak, J, Hira, A, Zhang, H, & Barnett, M. (2024) Cultivating science identity: An automated table-top greenhouse project with middle school students. National Association for Research in Science Teaching (NARST)
[5] Raphael, D, Shah, S A, Phatak, J U, Hira, A, Zhang, H, & Barnett, M. (2024) Enhancing middle-school students’ interest in coding through a tabletop automated greenhouse project [iPoster]. American Educational Research Association
[4] Shah, S. A., Phatak, J. U., Hira, A., & Zhang, H. (2023, June). Board 304: HighSchoolers’ Understanding about “Engineering” and Their Perception of the Coding-Engineering Relationship. In 2023 ASEE Annual Conference & Exposition.
[3] Woods, P., Anderson, E., & Hira, A. (2022) Failing to Reset: A Critical Examination of COVID-19’s Impact on the Grammar of Schooling. American Educational Studies Association.
[2] Hira, A., Zhang, H., & Barnett, M. (2022) Engaging families in growing their own food through home-based STEM learning experiences. Science Educators for Equity, Diversity, and Social Justice Annual Conference.
[1] Brady, S., Kang, E., Louime, E., Naples, S., Katz, A., Hira, A. (2021, December 5-8). Emerging Learning Technologies for Education on Sustainability Topics [Conference Presentation]. Research in Engineering Education Symposium & Australasian Association for Engineering Education Conference, Perth, WA, Australia.