Araştırma Makalesi

Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework

Cilt: 10 Sayı: 3 13 Aralık 2019
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Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework

Öz

The main goal of STEM education is to provide students with knowledge and skills in science, technology, mathematics, and engineering through interdisciplinary approaches. However, perspective on the nature of STEM approaches and how it should be implemented in the classrooms without losing discipline integrity are still not uncovered and stay as important challenges for both educators and researchers. In this paper, we introduce a theoretical framework that can shed light on how to engage students effectively in STEM education by providing mathematical modeling as a tool for integrating different disciplines. Thus, this framework is for designing, implementing, and evaluating mathematical modeling thinking within an interdisciplinary nature. Furthermore, we provide an example of the interdisciplinary mathematical modeling task with hypothetical student engagement in the process and analyzed the student's thinking with our framework. Although the focus of this paper is mainly about integrating mathematics and science, we believe that our framework can be applied to all STEM disciplines.  We conclude that interdisciplinary mathematical modeling framework might be an important tool to overcome some of the challenges that stressed in the literature since it increases the transfer capacity of STEM-focused knowledge and skills to real-world scenarios by presenting problem situations in a real-world context.

Anahtar Kelimeler

Kaynakça

  1. Berry, M. R., Chalmers, C., & Chandra, V. (2012). STEM futures and practice, can we teach STEM in a meaningful and integrated way. 2nd International STEM in Education Conference. Beijing, China.
  2. Berry, J., & Houston, K. (1995). Students using posters as a means of communication and assessment. Educational Studies in Mathematics, 29(1), 21-27.
  3. Bowman, K. (2010). Background paper for the AQF Council on generic skills. Australian Qualification Framework Council: Canberra, Australia.
  4. 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), 37-68.
  5. Bybee, R. W. (2013). The case for STEM education: Challenges and opportunities. NSTA press.
  6. Common Core State Standards for Mathematics, (2011). Retrieved from “http://www.corestandards.org/wp-content/uploads/Math_Standards1.pdf”, [ 15- January- 2017]
  7. Chan, J. K. (2001). A curriculum for the knowledge age: The Singapore approach. In Eighth Annual Curriculum Corporation Conference, Sydney, Australia.
  8. CPDD (2006), Mathematics Syllabus: Primary 2007, Curriculum Planning and Development Division, Ministry of Education, Singapore.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

13 Aralık 2019

Gönderilme Tarihi

25 Aralık 2018

Kabul Tarihi

26 Kasım 2019

Yayımlandığı Sayı

Yıl 2019 Cilt: 10 Sayı: 3

Kaynak Göster

APA
Doğan, M. F., Gürbüz, R., Çavuş Erdem, Z., & Şahin, S. (2019). Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework. Turkish Journal of Computer and Mathematics Education (TURCOMAT), 10(3), 628-653. https://doi.org/10.16949/turkbilmat.502007
AMA
1.Doğan MF, Gürbüz R, Çavuş Erdem Z, Şahin S. Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework. Turkish Journal of Computer and Mathematics Education (TURCOMAT). 2019;10(3):628-653. doi:10.16949/turkbilmat.502007
Chicago
Doğan, Muhammed Fatih, Ramazan Gürbüz, Zeynep Çavuş Erdem, ve Seda Şahin. 2019. “Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework”. Turkish Journal of Computer and Mathematics Education (TURCOMAT) 10 (3): 628-53. https://doi.org/10.16949/turkbilmat.502007.
EndNote
Doğan MF, Gürbüz R, Çavuş Erdem Z, Şahin S (01 Aralık 2019) Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework. Turkish Journal of Computer and Mathematics Education (TURCOMAT) 10 3 628–653.
IEEE
[1]M. F. Doğan, R. Gürbüz, Z. Çavuş Erdem, ve S. Şahin, “Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework”, Turkish Journal of Computer and Mathematics Education (TURCOMAT), c. 10, sy 3, ss. 628–653, Ara. 2019, doi: 10.16949/turkbilmat.502007.
ISNAD
Doğan, Muhammed Fatih - Gürbüz, Ramazan - Çavuş Erdem, Zeynep - Şahin, Seda. “Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework”. Turkish Journal of Computer and Mathematics Education (TURCOMAT) 10/3 (01 Aralık 2019): 628-653. https://doi.org/10.16949/turkbilmat.502007.
JAMA
1.Doğan MF, Gürbüz R, Çavuş Erdem Z, Şahin S. Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework. Turkish Journal of Computer and Mathematics Education (TURCOMAT). 2019;10:628–653.
MLA
Doğan, Muhammed Fatih, vd. “Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework”. Turkish Journal of Computer and Mathematics Education (TURCOMAT), c. 10, sy 3, Aralık 2019, ss. 628-53, doi:10.16949/turkbilmat.502007.
Vancouver
1.Muhammed Fatih Doğan, Ramazan Gürbüz, Zeynep Çavuş Erdem, Seda Şahin. Using Mathematical Modeling for Integrating STEM Disciplines: A Theoretical Framework. Turkish Journal of Computer and Mathematics Education (TURCOMAT). 01 Aralık 2019;10(3):628-53. doi:10.16949/turkbilmat.502007