A mixed methods assessment of students' flow experiences during a mobile augmented reality science game
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[1] Chris Dede,et al. "Neomillennial" Learning Styles Propagated by Wireless Handheld Devices , 2007 .
[2] M. Struwig,et al. A gaming approach to learning medical microbiology: students’ experiences of flow , 2007, Medical teacher.
[3] Kurt Squire,et al. Augmented Reality Simulations on Handheld Computers , 2007 .
[4] E. Guba,et al. Naturalistic inquiry: Beverly Hills, CA: Sage Publications, 1985, 416 pp., $25.00 (Cloth) , 1985 .
[5] Britt Lindahl,et al. A longitudinal study of students' attitudes towards science and choice of career , 2007 .
[6] Kursat Cagiltay,et al. Flow experiences of children in an interactive social game environment , 2007, Br. J. Educ. Technol..
[7] M. Csíkszentmihályi,et al. Middle School Students’ Motivation and Quality of Experience: A Comparison of Montessori and Traditional School Environments , 2005, American Journal of Education.
[8] Brian C. Nelson,et al. Designing for real-world scientific inquiry in virtual environments , 2010 .
[9] David J. Shernoff,et al. Student engagement in high school classrooms from the perspective of flow theory. , 2003 .
[10] Piet Kommers,et al. Exploring the influence of gender and gaming competence on attitudes towards using instructional games , 2007, Br. J. Educ. Technol..
[11] Rae A. Earnshaw,et al. Designing Augmented Reality Games for Mobile Learning Using an Instructional-Motivational Paradigm , 2009, 2009 International Conference on CyberWorlds.
[12] C. J. Walker. Experiencing flow: Is doing it together better than doing it alone? , 2010 .
[13] Kurt Squire,et al. Environmental Detectives: PDAs as a window into a virtual simulated world , 2002, Proceedings. IEEE International Workshop on Wireless and Mobile Technologies in Education.
[14] Kurt Squire,et al. Mad City Mystery: Developing Scientific Argumentation Skills with a Place-based Augmented Reality Game on Handheld Computers , 2007 .
[15] P. Gardner,et al. Attitudes to Science : A Review , 1975 .
[16] Robert H. Tai,et al. Planning Early for Careers in Science , 2006, Science.
[17] L. Nadelson,et al. Motivational engagement and video gaming: a mixed methods study , 2010 .
[18] Eric Rosenbaum,et al. On Location Learning: Authentic Applied Science with Networked Augmented Realities , 2007 .
[19] Hokyoung Ryu,et al. To Flow and Not to Freeze: Applying Flow Experience to Mobile Learning , 2010, IEEE Transactions on Learning Technologies.
[20] Karen Cooper,et al. Go with the flow: engagement factors for learning in Second Life , 2010, SpringSim.
[21] Elizabeth Eason Folta. Investigating the Impact on Student Learning and Outdoor Science Interest through Modular Serious Educational Games: A Design-Based Research Study , 2010 .
[22] Chris Dede,et al. Affordances and Limitations of Immersive Participatory Augmented Reality Simulations for Teaching and Learning , 2009 .
[23] Annemarie S. Palincsar,et al. Social constructivist perspectives on teaching and learning. , 1998, Annual review of psychology.
[24] Claudia Medina,et al. Engaging girls with computers through software games , 2000, Commun. ACM.
[25] Darryl Charles,et al. Toward an understanding of flow in video games , 2008, CIE.
[26] David Kirk,et al. Savannah: experiential learning through mobile gaming , 2004 .
[27] T. Lyons,et al. Different Countries, Same Science Classes: Students’ experiences of school science in their own words , 2006 .
[28] Wilfried Admiraal,et al. The concept of flow in collaborative game-based learning , 2011, Comput. Hum. Behav..
[29] Daphne Bavelier,et al. The effect of action video game experience on task-switching , 2012, Comput. Hum. Behav..
[30] David S. Kirk,et al. Savannah: mobile gaming and learning? , 2004, J. Comput. Assist. Learn..