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Articles

The effect of STEAM education with tales on problem solving and creativity skills

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References

  • Aguirre-Muñoz, Z., and M. L. Pantoya. 2016. “Engineering Literacy and Engagement in Kindergarten Classrooms.” Journal of Engineering Education 105 (4): 630–654. doi:10.1002/jee.20151.
  • Akcay-Malcok, B., and R. Ceylan. 2021. “The Effects of STEM Activities on the Problem-Solving Skills of 6-Year-old Preschool Children.” European Early Childhood Education Research Journal, Ahead-of-Print, 1–14. doi:10.1080/1350293X.2021.1965639.
  • Apriyani, R., Ramalis, T. R., & Suwarma, I. R. 2019. “Analyzing Student’s Problem Solving Abilities of Direct Current Electricity in STEM-Based Learning.” Journal of Science Learning 2 (3), 85-91. https://eric.ed.gov/?id = EJ1226167
  • Aronin, S., and K. K. Floyd. 2013. “Using an IPad in Inclusive Preschool Classrooms to Introduce STEM Concepts.” Teaching Exceptional Children 45 (4): 34–39. doi:10.1177/004005991304500404.
  • Ayvacı, HŞ, and A. Ayaydın. 2018. “Science, Technology, Engineering, art and Mathematics (Turkish Edition: Bilim, Teknoloji, Mühendislik, Sanat ve Matematik) (STEAM).” In STEM + A+E Education from Theory to Practice [Kuramdan Uygulamaya STEM + A+E Eğitimi], edited by S. Çepni. Ankara: Pegem Akademi.
  • Bagiati, A., and D. Evangelou. 2015. “Engineering Curriculum in the Preschool Classroom: The Teacher's Experience.” European Early Childhood Education Research Journal 23 (1): 112–128.
  • Baker, B. 2012, March 16. “Arts Education.” CQ Researcher 22: 253–276. http://library.cqpress.com/.
  • Banks, F., and D. Barlex. 2014. Teaching STEM in the Secondary School: Helping Teachers Meet the Challenge. New York: Routledge.
  • Becker, K. H., and K. Park. 2011. “Integrative Approaches Among Science, Technology, Engineering, and Mathematics (STEM) Subjects on Students' Learning: A Meta-Analysis.” Journal of STEM Education: Innovations and Research 12 (5–6): 23–37. https://www.jstem.org/jstem/index.php/JSTEM/article/view/1509/1394.
  • Bennett, E. K. 1988. “ Social Validation of a Creativity Measure.” (Unpublished master's thesis), University of Tennessee, Knoxville, Tennessee.
  • Bustamante, A., D. Greenfield, and I. Nayfeld. 2018. “Early Childhood Science and Engineering: Engaging Platforms for Fostering Domain-General Learning Skills.” Education Sciences 8 (3): 144–113. doi:10.3390/educsci8030144.
  • Butcher, J. L., and L. N. Niec. 2005. “Disruptive Behaviors and Creativity in Childhood: The Importance of Affect Regulation.” Creativity Research Journal 172 (2): 181–193. doi:10.1207/s15326934crj1702&3_5.
  • Bybee, R. W. 2013. The Case for STEM Education: Challenges and Opportunities. Arlington: National Science Teachers Association (NSTA) Press.
  • Campbell, C., C. Speldewinde, C. Howitt, and A. MacDonald. 2018. “STEM Practice in the Early Years.” Creative Education 09: 11–25. doi:10.4236/ce.2018.91002.
  • Capraro, R. M., and S. W. Slough. 2013. “Why PBL? Why STEM? Why now? an Introduction to Stem Project-Based Learning: An Integrated Science, Technology, Engineering, and Mathematics (STEM) Approach.” In STEM Project-Based Learning, edited by R. M. Capraro, M. M. Capraro, and J. R. Morgan, 1–5. Rotterdam: Sense.
  • Chappell, S. V., and M. Cahnmann-Taylor. 2013. “No Child Left With Crayons.” Review of Research in Education 37 243–268. doi:10.3102/0091732X12461615.
  • Chesloff, J. D. 2013. “STEM Education Must Start in Early Childhood.” Education Week 32 (23): 27–32.
  • Christensen, L. B., R. B. Johnson, and L. A. Turner. 2015. Research Methods, Design, and Analysis. 12th ed. Édimbourg: Pearson.
  • Clements, D., and J. Sarama. 2016. “Math, Science, and Technology in the Early Grades.” The Future of Children 26 (2): 75–94. doi:10.1353/foc.2016.0013.
  • Cooper, R., and C. Heaverlo. 2013. “Problem Solving And Creativity And Design: What Influence Do They Have On Girls’ Interest In STEM Subject Areas?” American Journal of Engineering Education (AJEE) 4 (1): 27–38. doi:10.19030/ajee.v4i1.7856.
  • Creswell, J. W. 2011. Educational Research: Planning, Conducting, and Evaluating Quantitative and Qualitative Research (3. Edition.). Boston, MA: Pearson Education Inc.
  • Cunningham, C. M., and K. Hester. 2007. “Engineering is Elementary: An Engineering and Technology Curriculum for Children.” Presented at the ASEE annual conference and exposition, Honolulu, HI.
  • Daugherty, M. K. 2013. “The Prospect of an “A” STEM Education.” Journal of STEM Education: Innovations and Research 14 (2): 10–15. http://www.uastem.com/wp-content/uploads/2012/08/The-Prospect-of-an-A-in-STEM-Education.pdf
  • DeJarnette, N. K. 2018. “Implementing STEAM in the Early Childhood Classroom.” European Journal of STEM Education 3(3), 1–9. doi:10.20897/ejsteme/3878.
  • Donegan-Ritter, M. 2017. “STEM for ALL Children.” Young Exceptional Children 20 (1): 3–15. doi:10.1177/1096250614566541.
  • English, L. 2018. “Engineering Education in Early Childhood: Reflections and Future Directions.” In Early Engineering Learning, edited by Lyn English and Tamara Moore, 273–284. Singapore: Springer.
  • Flevares, L. M., and J. R. Schiff. 2014. “Learning Mathematics in two Dimensions: A Review and Look Ahead at Teaching and Learning Early Childhood Mathematics with Children’s Literature.” Frontiers in Psychology 5 (459): 1–12. doi:10.3389/fpsyg.2014.00459.
  • Fox, J. E., and R. Schirrmacher. 2014. Art & creative development for young children. (Turkish edition: Sanat ve yaratıcılığın gelişimi). Translated by Aral, N., & Duman, G. Nobel.
  • Gangi, J. M. 2004. Encountering Children’s Literature. Boston: Pearson Education.
  • Gordon, A., and K. Browne. 2011. “Beginnings & Beyond: Foundations in Early Childhood Education.” Scottsdale, AZ: Holcomb Hathaway Publishers Inc.
  • Griffin, P., E. Care, and B. McGaw. 2012. “The Changing Role of Education and Schools.” In Assessment and Teaching of 21st Century Skills: Methods and Approaches, edited by P. Griffin, and C. Esther, 1–15. Parkville, VIC: Melbourne Graduate School of Education University of Melbourne Parkville Australia.
  • Householder, D. L., and C. E. Hailey. 2012. “Incorporating engineering design challenges into STEM courses.” NCETE Publications. http://digitalcommons.usu.edu/ncete_publications/166.
  • Huck, C., and B. Kiefer. 2004. Children’s Literature ın the Elementary School. Columbus, OH: Mc Graw Hill.
  • Kashani-Vahid, L., G. Afrooz, M. Shokoohi-Yekta, K. Kharrazi, and B. Ghobari. 2017. “Can a Creative Interpersonal Problem Solving Program Improve Creative Thinking in Gifted Elementary Students?” Thinking Skills and Creativity 24: 175–185. doi:10.1016/j.tsc.2017.02.011.
  • Katz, L. G. 2010. “STEM in the Early Years.” Early Childhood Research and Practice 12 (2): 11–19. https://ecrp.illinois.edu/beyond/seed/katz.html
  • Kennedy, T. J., and M. R. L. Odell. 2014. “Engaging Students in STEM Education.” Science Education International 25 (3): 246–258. https://files.eric.ed.gov/fulltext/EJ1044508.pdf
  • Keulen, V. H. 2018. “STEM in Early Childhood Education.” European Journal of STEM Education 3 (3): 1–3. doi:10.20897/ejsteme/3866.
  • Kirszner, L., and S. Mandel. 2004. Literature: Reading, Reacting Writing. Boston: Thompson Publishing.
  • Kostelnik, M. J., A. K. Soderman, and A. P. Whiren. 2019. Developmentally appropriate curriculum: best practices in early childhood education. (Turkish edition: Gelişime uygun eğitim programı- erken çocukluk eğitiminde en iyi uygulamalar), Translated by Ahmetoğlu, E. & Acar, İ. H. Nobel.
  • Lai, E. R., and M. Viering. 2012. “Assessing 21st Century Skills: ıntegrating Research Findings.” Paper presented at the annual meeting of the national council on measurement in education, Vancouver.
  • Lange, A., K. Brenneman, and H. Mano. 2019. Teaching STEM in the Preschool Classroom Exploring big ıdeas with 3- to 5-Year-Olds. Colombia: Teachers College Press.
  • Liao, C. 2016. “From Interdisciplinary to Transdisciplinary: An Arts-Integrated Approach to STEAM Education.” Art Education 69 (6): 44–49. doi:10.1080/00043125.2016.1224873.
  • Luedtke, M., and K. Sorvaag. 2017. “Using Children’s Literature to Enhance Math Instruction in K-8 Classrooms.” In Transdisciplinarity in Mathematics Education, edited by L. Jao and N. Radakovic, 47–71. Springer.
  • Lukens, R. J. 2004. A Critical Handbook of Children’s Literature. Paper Collins.
  • Malone, K. M., V. Tiarani, K. E. Irving, R. Kajfez, H. Lin, T. Giasi, and B. W. Edmiston. 2018. “Engineering Design Challenges in Early Childhood Education: Effects on Student Cognition and Interest.” European Journal of STEM Education 3 (3): 1–18. doi:10.20897/ejsteme/3871.
  • McClure, E. R., L. Guernsey, D. H. Clements, S. N. Bales, J. Nichols, N. Kendall-Taylor, and M. H. Levine. 2017. STEM Starts Early: Grounding Science, Technology, Engineering, and Math Education in Early Childhood. New America: The Joan Ganz Cooney Center at Sesame Workshop.
  • Moomaw, S. 2013. Teaching STEM in the Early Years: Activities for Integrating Science, Technology, Engineering, and Mathematics. St. Paul, MN: Redleaf Press.
  • Oğuz, V., and A. Köksal-Akyol. 2014. “Problem-Solving Skills Scale (PSSS) Validity and Reliability.” Cukurova University Faculty of Education Journal 44 (1): 105–122. doi: 10.14812/cufej.2015.006
  • Oner, A. T., S. B. Nite, R. M. Capraro, and M. M. Capraro. 2016. “From STEM to STEAM: Students’ Beliefs About the use of Their Creativity.” STEAM 2 (2): 1–14. doi:10.5642/steam.20160202.06.
  • Patton, M. Q. 2015. Qualitative Research and Evaluation Methods. Thousand Oaks, CA: Sage.
  • Phillips, J. A., K. W. Clemmer, J. E. B. McCallum, and M. Z. Thomas. 2017. “A Problem-Solving Framework to Assist Students and Teachers in STEM Courses.” Journal of College Science Teaching 046 (4): 33–39. doi:10.2505/4/jcst17_046_04_33.
  • Portsmore, M., and E. Milto. 2018. “Novel Engineering in Early Elementary Classrooms.” In Early Engineering Learning, 203–223. Singapore: Springer.
  • Roberts, A. 2012. “A Justification for STEM Education.” Technology and Engineering Teacher 7 (8): 1–5. https://www.iteea.org/File.aspx?id = 86478&v = 5409fe8e
  • Root-Bernstein, R. 2015. “Arts and Crafts as Adjuncts to STEM Education to Foster Creativity in Gifted and Talented Students.” Asia Pacific Education Review 16 (2): 203–212. doi:10.1007/s12564-015-9362-0.
  • Sharkawy, A. 2012. “Exploring the Potential of Using Stories About Diverse Scientists and Reflective Activities to Enrich Primary Students’ Images of Scientists and Scientific Work.” Cultural Studies of Science Education 7 (2): 307–340. doi:10.1007/s11422-012-9386-2.
  • Silva, E.. 2009. “Measuring Skills for 21st-Century Learning.” Phi Delta Kappan 90 (9): 630–634. doi:10.1177/003172170909000905.
  • Stohlmann, M., T. J. Moore, and G. H. Roehrig. 2012. “Considerations for Teaching Integrated STEM Education.” Journal of Pre-College Engineering Education Research 2 (1): 28–34. doi:10.5703/1288284314653.
  • Stone-MacDonald, A. S., K. Wendell, A. Douglass, and M. L. Love. 2015. Engaging Young Engineers Teaching Problem-Solving Skills Through STEM. Boston: Paul H. Brookes Publishing.
  • Sullivan, A., and M. U. Bers. 2018. “Dancing Robots: Integrating art, Music, and Robotics in Singapore’s Early Childhood Centers.” International Journal of Technology and Design Education 28 (1): 325–346. doi:10.1007/s10798-017-9397-0.
  • Tabachnick, B. G., and L. S. Fidell. 2007. Using Multivariate Statistics. Allyn & Bacon/Pearson Education.
  • Texley, J., and R. M. Ruud. 2018. Teaching STEM literacy: A constructivist approach for ages 3 to 8. Redleaf Press.
  • Treffinger, D., E. Selby, and S. Isaksen. 2008. “Understanding Individual Problem-Solving Style: A key to Learning and Applying Creative Problem Solving.” Learning and Individual Differences 18: 390–401. doi:10.1016/j.lindif.2007.11.007.
  • Tunkham, P., S. Donpudsa, and P. Dornbundit. 2016. “Development of STEM Activities in Chemistry on “Protein” to Enhance 21st Century Learning Skills for Senior High School Students.” Silpakorn University Journal of Social Sciences 15 (3): 217–234. https://www.thaiscience.info/journals/Article/SUIJ/10984822.pdf
  • Tyagi, T. 2016. “Is There a Causal Relation Between Mathematical Creativity and Mathematical Problemsolving Performance?” International Journal of Mathematical Education in Science and Technology 47 (3): 388–394. doi:10.1080/0020739X.2015.1075612.
  • Üret, A., and R. Ceylan. 2021. “Exploring the Effectiveness of STEM Education on the Creativity of 5-Year-old Kindergarten Children.” European Early Childhood Education Research Journal 29 (6): 842–855. doi:10.1080/1350293X.2021.1913204.
  • Wang, H., T. J. Moore, G. H. Roehrig, and M. Park. S. 2011. “STEM Integration: Teacher Perceptions and Practice.” Journal of Pre-College Engineering Education Research 1 (2). doi:10.5703/1288284314636.
  • Watts, T. W., G. J. Duncan, R. S. Siegler, and P. E. Davis-Kean. 2014. “What’s Past Is Prologue.” Educational Researcher 43 (7): 352–360. doi:10.3102/0013189X14553660.
  • Yıldız-Çiçekler, C., D. Alakoç Pirpir, and N. Aral. 2020. “Turkish Standardization of Early Childhood Creativity Scale.” İlköğretim Online 19 (2): 817–830. doi:10.17051/ilkonline.2020.695260.
  • Yılmaz, E., Ural, O., & Güven, G. 2018. “The Development And Analysis Of Reliability-Validity Of Social Problem Solving Skills Scale For 48-72 Month Old Children.” Kastamonu Education Journal 26 (3): 641–652. doi:10.24106/kefdergi.411752

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