참고문헌
- Ahn, J., & Lim, J. (2014). The effects of team personality composition on team creativity in engineering design class. Journal of Engineering Education Research, 17(1), 50-56.
- Atman, C. J., Adams, R. S., Cardella, M. E., Turns, J., Mosborg, S., & Saleem, J. (2007). Engineering design processes: A comparison of students and expert practitioners. Journal of engineering education, 96(4), 359. https://doi.org/10.1002/j.2168-9830.2007.tb00945.x
- Campion, M. A., Medsker, G. J., & Higgs, A. C.(1993). Relationships between work group characteristics and effectiveness: A replication and extension. Personnel Psychology, 49(2), 429-452. https://doi.org/10.1111/j.1744-6570.1996.tb01806.x
- Cho, H., & Chung, K. (2006). The impact of underlying attributes of design team members on the group creativity. Journal of korean society of design science, 19(5), 43-54.
- Cho, K. (2015). Case study on engineering camp program involving engineering design activity and intra-/inter-team works for high school students: Plant factory as main theme. Journal of Engineering Education Research, 18(3), 46-58.
- Choi, J., Moon, Y., Shim, D., Yang, D., & Heo, Y. (2009). The influence of task conflict on project team performance: The moderating effect of team efficacy. Korean Management Review, 38(6), 1599-1623.
- Choi, Y., Park, K., Lim, Y., & Lim, B. (2011). A study on development and application effect of junior engineering team mission project education program and workbook. Journal of Engineering Education Research, 14(3), 15-24. https://doi.org/10.18108/jeer.2011.14.3.15
- Doppelt, Y., Schunn, C. D., Silk, E., Mehalik, M., Reynolds, B., & Ward, E.(2009). Evaluating the impact of a facilitated learning community approach to professional development on teacher practice and student achievement. Research in Science & Technological Education, 27(3), 339-354. https://doi.org/10.1080/02635140903166026
- Gallagher, J, & Gallagher, S. A. (1994). Teaching the gifted child. Boston, Allyn & Bacon.
- Guerra, L., Allen, D. T., Crawford, R. H., & Farmer, C. (2012). A unique approach to characterizing the engineering design process. In American Society for Engineering Education. American Society for Engineering Education.
- Hansen, J. B., & Feldhusen, J. F. (1994). Comparison of trained and untrained teachers of gifted students. Gifted Child Quarterly, 38(3), 115-121. https://doi.org/10.1177/001698629403800304
- Hong, E., Heo, N., & Lee, B. (2016). Investigation of 'Group Scientific Creativity' Factors in Gifted Students' Creative Project Solving Context. Journal of the Korean Association for Research in Science Education, 36(4), 527-538. https://doi.org/10.14697/jkase.2016.36.4.0527
- Hynes, M., Portsmore, M., Dare, E., Milto, E., Rogers, C., & Hammer, D. (2011). Infusing engineering design into high school STEM courses. Retrieved from http://ncete.org/flash/pdfs/Infusing%20Engineering%20Hynes.pdf.
- Kang, K., & Chung, C. (2012). The Perception of Scientifically Gifted Students of a University-Affiliated Gifted Education Center toward Its Educational Programs. Journal of the Korean Association for Research in Science Education, 20(1), 32(4). 751-759. https://doi.org/10.14697/jkase.2012.32.4.751
- Kim, E. (2010). Factors Influencing the Choice of Major for High Achievement Students in High School. Journal of Engineering Education Research, 13(6), 80-86. https://doi.org/10.18108/jeer.2010.13.6.80
- Kim, E., Lee, S., & Jeong, S. (2004). Characteristics and Improvement of Engineering Education Program for Highschool Students in University. Journal of Engineering Education Research, 7(4), 5-15.
- Kim, H., & Lee, Y. (2012). A Study on Core Competencies of Science-Gifted Students Based on Teachers' and Students' Perspectives. Journal of the Korean Association for Research in Science Education, 32(7), 1241-1250. https://doi.org/10.14697/jkase.2012.32.7.1241
- Kim, H., Kamg, N., Kim, M., Maeng, S., Park, J., Baek, Y., Son, J., Shim, K., Oh, P., Lee, K., Lee, B., Chung, E., Han, I., Ha, H., & Han, H. (2017). Basic Research for Next Generation Science Education Standards. Korea Foundation for the Advancement of Science & Creativity and the Ministry of Education. Research results report.
- Kim, K. (2014). Examples of Elementary and Secondary Engineering Education in Korea: Chungnam University Young Talent Technology Talent Center. Engineering education, 50(4), 48-53.
- Kim, S., & Paik, S. (2011). The Analysis of the Characteristics of Teaching Strategies of Teachers in Charge of Science-Gifted Middle School Students. Journal of the Korean Association for Research in Science Education, 31(2), 295-313.
- Kim, S., & Yoo, M. (2012). Comparison on the Vocational Values and the Science Career Orientation between Middle School Scientifically Gifted Students and Non-Gifted Students. Journal of the Korean Association for Research in Science Education, 32(7), 1222-1240. https://doi.org/10.14697/jkase.2012.32.7.1222
- Kim, Y., Huh, H., Lee, C., & Kim, K. (2013a). A study on Engineering Professionals' Recognition about Engineering Education in Primary and Secondary School. Korean Institute of Industrial Educations, 38(2), 136-155.
- Kim, Y., Huh, H., Lee, C., & Kim, K. (2013b). Analysis of Elementary and Secondary School Teachers' Recognition about Engineering Education in Elementary and Secondary School. Journal of Educational Technology, 16(5), 9-17.
- Kim, Y., Lee, C., & Kim, K. (2012). Objectives and Contents of 'Engineering Technology' Subject Education perceived by Engineering Professionals. The Korean Journal of Technology Education, 12(2), 221-249.
- Kwon, H., & Park, K. (2009). Engineering Design: A Facilitator for Science, Technology, Engineering, and Mathematics [STEM] Education. Journal of Science Education, 33(2), 207-220. https://doi.org/10.21796/jse.2009.33.2.207
- Lee, J., & Lha, M. (2012). Semantic Network Analysis of Science Gifted Middle School Students' Understanding of Fact, Hypothesis, Theory, Law, and Scientificness. Korean Association Of Business Education, 32(5), 823-840. https://doi.org/10.14697/jkase.2012.32.5.823
- Lee, S. (2015). The Impact of a Science & Engineering Integrated Curriculum on Technical High School Students' Science Attitudes. Master's Thesis. Korea National University of Education, Chung-Buk, Korea.
- Lim, J., Ryu, K., & Kim, B. (2017). An exploratory study on the direction of education and teacher competencies in the 4th industrial revolution. The Journal of Korean Education, 44(2), 5-32.
- Liu, S., & Lederman, N. G. (2002). Taiwanese Gifted Students 'View of Nature of Science'. School Science and Mathematics, 102(3), 114-123. https://doi.org/10.1111/j.1949-8594.2002.tb17905.x
- MOE(Ministry of Education) (2015). 2015 revised curriculum -Science-. Seoul: Ministry of Education.
- Moon, D. (2008). The Development of Pre-Engineering Educational Program Model Based on STEM Integration Approach. Journal of Engineering Education Research, 11(2), 90-101.
- NAE(National Academy of Engineering) (2010). Standards for K-12 Engineering Education?. Washington, D.C.: The National Academies Press.
- NRC(National Research Council) (2009). Engineering in K-12 education : Understanding the status and improving the prospects. Washington, DC : The National Academies.
- NRC(National Research Council) (2013). Next generation science standards. Washington, DC: The National Academies Press.
- Noh, H., & Choi, J. (2017). An Analysis of the Interpersonal Competence of Science-Gifted Students in School and Science-Gifted Education Institute. Journal of the Korean Association for Research in Science Education, 37(2), 383-393.
- Park, H., & Baek, Y. (2014). Content Standards for K-9 Engineering Education. Journal of Engineering Education Research, 17(4), 87-94. https://doi.org/10.18108/jeer.2014.17.4.87
- Park, H., Kim, Y., Noh, S., Jeong, J., Lee, E., Yu, E., Lee, D., Park, J., & Baek, Y. (2012). Developmental Study of Science Education Content Standards. Journal of the Korean Association for Research in Science Education, 32(4), 729-750. https://doi.org/10.14697/jkase.2012.32.4.729
- Park, S., & Kim, K. (2005). Analysis on the Relationship between Gifted Science Students' Thinking Style Types and Academic Achievement and Science Concepts. Journal of the Korean Association for Research in Science Education, 25(2), 307-320.
- Park, S., & Nam, H. (2008). Research on Engineering & Technology Education for Elementary School Student by using F1 in Schools Program. Journal of Engineering Education Research, 11(1), 83-98.
- Park, T. (2009). Status and direction of youth engineering education. Engineering education and technology transfer, 16(2), 39-42.
- Pirola-Merlo, A., & Mann, L. (2004). The relationship between individual creativity and team creativity: Aggregating across people and time. Journal of Organizational Behavior, 25(2), 235-257. https://doi.org/10.1002/job.240
- Reid, C., & Romanoff, B. (1997). Using multiple intelligence theory to identify gifted children. Educational Leadership, 55(1), 71-74.
- Renzulli, J. S. (2000). New Directions in Creativity: Mark A. Mansfield Center, CT, Creative Learning Press, Inc.
- Renzulli, J. S. (2002). Expanding the conception of giftedness to include cocognitive traits and to promote social capital. The Phi Delta Kappan, 84(1), 33-58. https://doi.org/10.1177/003172170208400109
- Robinson, A., Shore, B. M. & Enerson, D. (2007). Best Practices in Gifted Education. Waco, Texas : Purfock Press Inc.
- Schffner, M. F. & Newsome, D. W. (2001). Identity development of gifted female adolescents: The influence of career development, age, and life-long salience. The J. of Secondary Gifted Education, 14(4), 201-211.
- Shim, K., So, K., Kim, H., & Chang, N. (2001a). Study on the Interest in Science of Science Gifted / Talented Middle School Students 1 - Comparison between Gifted / Talented and General Students. Journal of the Korean Association for Research in Science Education, 21(1), 122-134.
- Shim, K., So, K., Kim, H., & Chang, N. (2001b). Study on the Interest in Science of Science Gifted / Talented Middle School Students 2 - By Gifted / Talented Division. Journal of the Korean Association for Research in Science Education, 21(1), 135-148.
- Shim, K., So, K., Kim, H., & Chang, N. (2003). Preference of Science Gifted/Talented and General Students for Study Course and Occupation. Biology Education, 31(4), 292-298.
- So, K., Shim, K., Lee, H & Chang, N. (2000). Study on Attitude of Science Gifted and Talented Middle School Students toward Science. Journal of the Korean Association for Research in Science Education, 20(1), 166-173.
- Son, S. (2007). K-12. Engineering education and technology transfer, 14(4), 7-9.
- Son, S. (2008). Introduction to the UK youth exploration program. Engineering education and technology transfer, 15(2), 16-19.
- Song, S., & Shim, K. (2012). Study on Perception of Science High School Students about Composing Laboratory Reports by Grade. Journal of Science Education, 36(2), 303-312. https://doi.org/10.21796/jse.2012.36.2.303
- Song, S., & Shim, K. (2015). An Analysis of Writing Characteristics of Scientifically Gifted Students about Biological Sciences. Journal of Science Education, 39(1), 88-98. https://doi.org/10.21796/jse.2015.39.1.88
- Song, S., & Shim, K. (2017). A Study on the Perception of Scientifically Gifted High School Students about Designing an Experiment and Discussing Activity. Biology Education, 45(1), 81-91.
- Song, S., Kil, J., & Shim, K. (2015). A Case Study on the Evaluation of Scientific Inquiry Ability of Elementary Scientifically Gifted Students : Observing and Inferring, Designing an Experiment, and Concluding. Journal of Science Education, 39(3), 376-388. https://doi.org/10.21796/jse.2015.39.3.376
- Sternberg, R. J., & Lubart, T. I. (1991). Creating creative minds. The Phi Delta Kappan, 72(8), 608-614.
- Sung, E., & Na, S. (2012). The Effects of the Integrated STEM Education on Science and Technology Subject Self-efficacy and Attitude toward Engineering in High School Students. The Korean Journal of Technology Education, 12(1), 255-274.
- UBS (2016). Extreme automation and connectivity: The global, regional, and investment implications of the Fourth Industrial Revolution. UBS White Paper for the World Economic Forum, Annual Meeting 2016.
- Van Tassel-Baska, J., Bass, G., Ries, R., Poland, D., & Avery, L. (1998). A national study of science curriculum effectiveness with high ability students. Gifted Child Quarterly, 42(4), 200-211. https://doi.org/10.1177/001698629804200404
- Woodman, R. W. & Schoenfeldt, L. F. (1990). An interactionist model of creative behavior. The Journal of Creative Behavior, 24(4), 279-290. https://doi.org/10.1002/j.2162-6057.1990.tb00549.x
- Yang, T., Bae, M., Han, G., & Park, I. (2003). Scientifically Gifted Students' Science Related Attitudes and Its Relationships with Intelligence and Science Process Skills. Journal of the Korean Association for Research in Science Education, 23(5), 531-543.