Page 152 - Binder2
P. 152
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Binkley, M., Erstad, O., Herman, J., Raizen, S., Ripley, M., MillerRicci, M., & Rumble, M. (2012). Defining
twentyfirst century skills. In Assessment and teaching of 21st century skills (pp. 1766).
Springer, Dordrecht.
Blackley, S., & Howell, J. (2015). A STEM Narrative: 15 Years in the Making. Australian Journal of
Teacher Education, 40(7), 8.
Blum, W., & Niss, M. (1991). Applied mathematical problem solving, modelling, applications, and links
to other subjects—State, trends and issues in mathematics instruction. Educational
studies in mathematics, 22(1), 3768 .
Bower, M., Howe, C., McCredie, N., Robinson, A., & Grover, D. (2014). Augmented Reality in
education–cases, places and potentials. Educational Media International, 51(1), 115.
Brown, R., Brown, J., Reardon, K., & Merrill, C. (2011). Understanding STEM: current perceptions.
Technology and Engineering Teacher, 70(6), 5.
Callanan, M. A., & Jipson, J. (2001). Explanatory conversations and young children’s developing
scientific literacy. In K. Crowley, C. D. Schunn, & T. Okada (Eds.), Designing for science:
Implications from everyday, classroom, and professional science (pp. 21–49).
Mahwah, NJ: Lawrence Erlbaum.
Canessa, E., Fonda, C., Zennaro, M., & Deadline, N. (2013). Low‐cost 3D printing for science, education
and sustainable development. LowCost 3D Printing, 11.
Chickering, A. W., & Gamson, Z. F. (1987). Seven principles for good practice in undergraduate
education. AAHE Bulletin, 39(7), 3–7.
Chien, Y. H., & Chu, P. Y. (2018). The Different Learning Outcomes of High School and College Students
on a 3DPrinting STEAM Engineering Design Curriculum. International Journal of
Science and Mathematics Education, 16(6), 10471064.
Christensen, R., Knezek, G., Darby, D., Den Lepcha, S., Jiang, B., Kuo, A., & Wu, A. (2017, June).
Outcomes from Technology Enhanced Informal Learning Activities: Total Solar Eclipse.
In EdMedia: World Conference on Educational Media and Technology (pp. 10641071).
Association for the Advancement of Computing in Education (AACE).
Christensen, R., Knezek, G., den Lepcha, S., Dong, D., Liu, S., Wang, K., ... & Nzia, H. A. Y. (2018, June).
Outcomes from Technology Enhanced Informal Learning Activities to Increase Middle
School Students’ Interest in STEM. In EdMedia+ Innovate Learning (pp. 13681377).
Association for the Advancement of Computing in Education (AACE).
Christenson, S. L., Reschly, A. L., & Wylie, C. (Eds.). (2012). Handbook of research on student
engagement. Springer Science & Business Media.
Chu, S. K. W., Reynolds, R. B., Tavares, N. J., Notari, M., & Lee, C. W. Y. (2017). Twentyfirst century
skills education in Switzerland: An example of projectbased learning using Wiki in
science education. In 21st Century Skills Development Through InquiryBased Learning
(pp. 6178). Springer, Singapore.
Chung, C. C., Cartwright, C., & Cole, M. (2014). Assessing the impact of an autonomous robotics
competition for STEM education. Journal of STEM Education: Innovations and
Research, 15.)2(
Clarke, D. J., Clarke, D. M., & Lovitt, C. J. (1990). Changes in mathematics teaching call for assessment
alternatives. Teaching and learning mathematics in the, 1, 118129 .
Connell, J. P., & Wellborn, J. G. (1991). Competence, autonomy, and relatedness: A motivational
analysis of selfsystem processes.
Connell, J. P., Spencer, M. B., & Aber, J. L. (1994). Educational risk and resilience in African‐American
youth: Context, self, action, and outcomes in school. Child development, 65(2),
493506.
435