Research Article

The Impact of COVID-19 on Teachers’ Integration of Digital Technology

Scott A. Courtney 1 * , Mary E. S. Miller 1 , Michael J. Gisondo 1
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1 School of Teaching, Learning, and Curriculum Studies, Kent State University, Kent, OH, USA* Corresponding Author
Contemporary Educational Technology, 14(4), October 2022, ep387, https://doi.org/10.30935/cedtech/12420
Published: 01 September 2022
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ABSTRACT

The coronavirus pandemic impacted all aspects of society, causing countries and local communities to close workplaces, move schools to remote instruction, limit in-person contact, cancel public gatherings, and restrict travel. Attempts to mitigate COVID-19 through remote instruction provided unique opportunities for researchers to examine the resources teachers utilize to drive their practices. We examine the impacts of the pandemic on grades 6-12 mathematics teachers and math interventionists, with particular attention to teachers’ integration of digital resources. Using purposive sampling, we surveyed 50 participants—across urban, suburban, and rural districts—throughout the United States. The descriptive survey focused on six aspects of teachers’ practices with digital resources. Results indicate that challenges encountered and lessons learned included a lack of student engagement and motivation, increased distractions, and varied access to technology. Integration of technology did not positively impact students’ mathematical proficiency across all teachers. Common resources used across planning of lessons, implementation of instruction, and assessment included the Google platform, Desmos, and GeoGebra. Where appropriate, we situate our results within the larger context of recent international research. These findings support teacher practices that constantly attempt to optimize students’ mathematics and social emotional learning, regardless of the environment or situation.

CITATION (APA)

Courtney, S. A., Miller, M. E. S., & Gisondo, M. J. (2022). The Impact of COVID-19 on Teachers’ Integration of Digital Technology. Contemporary Educational Technology, 14(4), ep387. https://doi.org/10.30935/cedtech/12420

REFERENCES

  1. Adler, J. (2000). Conceptualizing resources as a theme for teacher education. Journal of Mathematics Teacher Education, 3(3), 205-224. https://doi.org/10.1080/02601370.2021.1874554
  2. Al Salman, S., Alkathiri, M., & Khaled Bawaneh, A. (2021). School off, learning on: Identification of preference and challenges among school students towards distance learning during COVID-19 outbreak. International Journal of Lifelong Education, 40(1), 53-71. https://doi.org/10.1080/02601370.2021.1874554
  3. Anderson, L. W., & Krathwohl, D. R. (Eds.). (2001). A taxonomy for learning, teaching, and assessing: A revision of Bloom’s taxonomy of educational objectives. Longman.
  4. Bushweller, K. (2022). What the massive shift to 1-to-1 computing means for schools, in charts. Education Week. https://www.edweek.org/technology/what-the-massive-shift-to-1-to-1-computing-means-for-schools-in-charts/2022/05
  5. Cárdenas, S., Lomelí, D., & Ruelas, I. (2022). COVID-19 and post-pandemic educational policies in Mexico. What is at stake? In F. M. Reimers (Ed.), Primary and secondary education during COVID-19 (pp. 153-175). Springer.
  6. Clark-Wilson, A., Oldknow, A., & Sutherland, R. (2011). Digital technologies and mathematics education: Executive summary. Joint Mathematical Council of the United Kingdom.
  7. Comas-Forgas, R., Lancaster, T., Calvo-Sastre, A., & Sureda-Negre, J. (2021). Exam cheating and academic integrity breaches during the COVID-19 pandemic: An analysis of internet search activity in Spain. Heliyon, 7(10), e08233. https://doi.org/10.1016/j.heliyon.2021.e08233
  8. Corbin, J., & Strauss, A. (2014). Basics of qualitative research: Techniques and procedures for developing grounded theory. SAGE.
  9. Courtney, S. A. (2022). The impact of remote instruction on mathematics teachers’ practices. In J. Morska & A. Rogerson (Eds.), Building on the past to prepare for the future, Proceedings of the 16th international conference of the mathematics education for the future project (pp. 128-133). https://doi.org/10.37626/GA9783959872188.0.024
  10. DeCoito, I., & Estaiteyeh, M. (2022). Online teaching during the COVID-19 pandemic: Exploring science/STEM teachers’ curriculum and assessment practices in Canada. Disciplinary and Interdisciplinary Science Education Research, 4(1), 1-18. https://doi.org/10.1186/s43031-022-00048-z
  11. Dorn, E., Hancock, B., Sarakatsannis, J., & Viruleg, E. (2020). COVID-19 and student learning in the United States: The hurt could last a lifetime. McKinsey & Company. https://www.mckinsey.com/industries/public-sector/our-insights/covid-19-and-student-learning-in-the-united-states-the-hurt-could-last-a-lifetime
  12. EdWeek Research Center. (2022). Laptops and learning: 5 trends in k-12 education in 5 charts. Editorial Projects in Education.
  13. Fakhrunisa, F., & Prabawanto, S. (2020). Online learning in COVID-19 pandemic: An investigation of mathematics teachers’ perception. In Proceedings of the 2020 the 4th International Conference on Education and E-Learning (pp. 207-213). The Association for Computing Machinery. https://doi.org/10.1145/3439147.3439179
  14. Ford, J. (2018). Digital technologies: Igniting or hindering curiosity in mathematics? Australian Primary Mathematics Classroom, 23(4), 27-32.
  15. Foster, C., Burkhardt, H., & Schoenfeld, A. (2022). Crisis‐ready educational design: The case of mathematics. The Curriculum Journal. https://doi.org/10.1002/curj.159
  16. Hebebci, M. T., Bertiz, Y., & Alan, S. (2020). Investigation of views of students and teachers on distance education practices during the coronavirus (COVID-19) pandemic. International Journal of Technology in Education and Science, 4(4), 267-282. https://doi.org/10.46328/ijtes.v4i4.113
  17. Hertz, M. F., Kilmer, G., Verlenden, J., Liddon, N., Rasberry, C. N., Barrios, L. C., & Ethier, K. A. (2022). Adolescent mental health, connectedness, and mode of school instruction during COVID-19. Journal of Adolescent Health, 70(1), 57-63. https://doi.org/10.1016/j.jadohealth.2021.10.021
  18. Janke, S., Rudert, S. C., Petersen, Ä., Fritz, T. M., & Daumiller, M. (2021). Cheating in the wake of COVID-19: How dangerous is ad-hoc online testing for academic integrity? Computers and Education Open, 2, 100055. https://doi.org/10.1016/j.caeo.2021.100055
  19. Jones, S. E., Ethier, K. E., Hertz, M., DeGue, S., Le, V. D., Thornton, J., Lim, C., Dittus, P. J., & Geda, S. (2022). Mental health, suicidality, and connectedness among high school students during the COVID-19 pandemic—Adolescent behaviors and experiences survey, United States, January-June 2021. Morbidity and Mortality Weekly Report supplements 2022, 71(3), 16-21. https://doi.org/10.15585/mmwr.su7103a3
  20. Lancaster, T., & Cotarlan, C. (2021). Contract cheating by STEM students through a file sharing website: A COVID-19 pandemic perspective. International Journal for Educational Integrity, 17(3), 1-16. https://doi.org/10.1007/s40979-021-00070-0
  21. Mailizar, A., Abdulsalam, M., & Suci, B. (2020). Secondary school mathematics teachers’ views on e-learning implementation barriers during the COVID-19 pandemic: The case of Indonesia. EURASIA Journal of Mathematics, Science & Technology Education, 16(7), 1-9. https://doi.org/10.29333/ejmste/8240
  22. McClain, C., Vogels, E. A., Perrin, A., Sechopoulos, S., & Rainie, A. L. (2021). The Internet and the pandemic. Pew Research Center. https://www.pewresearch.org/internet/2021/09/01/the-internet-and-the-pandemic/
  23. Meinck, S., Fraillon, J., & Strietholt, R. (2022). The impact of the COVID-19 pandemic on education: International evidence from the responses to educational disruption survey. UNESCO.
  24. OECD. (2020). Learning remotely when schools close: How well are students and schools prepared? Insights from PISA (OECD policy responses to coronavirus, COVID-19). Organisation for Economic Co-operation and Development. https://www.oecd.org/coronavirus/policy-responses/learning-remotely-when-schools-close-how-well-are-students-and-schools-prepared-insights-from-pisa-3bfda1f7/
  25. OECD. (2021). Coronavirus special edition: Back to school (trends spotlight # 21). Organisation for Economic Co-operation and Development. https://www.oecd.org/education/ceri/Spotlight-21-Coronavirus-special-edition-Back-to-school.pdf
  26. Pepin, B., & Gueudet, G. (2020). Curriculum resources and textbooks in mathematics education. In S. Lerman (Ed.), Encyclopedia of mathematics education (pp. 172-176). Springer. https://doi.org/10.1007/978-3-030-15789-0_40
  27. Puentedura, R. R. (2005). SAMR: A brief introduction. Hippasus.
  28. Rauf, D. (2020). Coronavirus pushes schools closer to a computer for every student. Education Week. https://www.edweek.org/technology/coronavirus-pushes-schools-closer-to-a-computer-for-every-student/2020/06
  29. Reimers, F. M. (2022). Learning from a pandemic. The impact of COVID-19 on education around the world. In F. M. Reimers (Ed.), Primary and secondary education during COVID-19 (pp. 1-37). Springer. https://doi.org/10.1007/978-3-030-81500-4
  30. Rothstein, R. (2020, April 13). The coronavirus will explode achievement gaps in education. Shelterforce. https://shelterforce.org/2020/04/13/the-coronavirus-will-explode-achievement-gaps-in-education/
  31. Tay, L. Y., Lee, S. S., & Ramachandran, K. (2021). Implementation of online home-based learning and students’ engagement during the COVID-19 pandemic: A case study of Singapore mathematics teachers. The Asia-Pacific Education Researcher, 30(3), 299-310. https://doi.org/10.1007/s40299-021-00572-y
  32. Thomas, A. (2017). Screencasting to support: Effective teaching practices. Teaching Children Mathematics, 23(8), 492-499. https://doi.org/10.5951/teacchilmath.23.8.0492
  33. UNESCO. (2020). Half of world’s student population not attending school: UNESCO launches global coalition to accelerate deployment of remote learning solutions. United Nations Educational, Scientific and Cultural Organization. https://en.unesco.org/news/half-worlds-student-population-not-attending-school-unesco-launches-global-coalition-accelerate
  34. UNESCO. (2021). Education: From disruption to recovery. United Nations Educational, Scientific and Cultural Organization. https://en.unesco.org/covid19/educationresponse
  35. UNICEF & ITU. (2020). How many children and young people have internet access at home? Estimating digital connectivity during the COVID-19 pandemic. United Nations Children’s Fund and International Telecommunication Union.
  36. United Nations Children’s Fund. (2021). COVID-19 and school closures: One year of education disruption. UNICEF. https://data.unicef.org/wp-content/uploads/2021/03/COVID19-and-school-closures-report.pdf
  37. Van der Spoel, I., Noroozi, O., Schuurink, E., & van Ginkel, S. (2020). Teachers’ online teaching expectations and experiences during the COVID-19-pandemic in the Netherlands. European Journal of Teacher Education, 43(4), 623-638. https://doi.org/10.1080/02619768.2020.1821185
  38. Vollstedt, M., & Rezat, S. (2019). An introduction to grounded theory with a special focus on axial coding and the coding paradigm. In G. Kaiser, & N. Presmeg (Eds.), Compendium for early career researchers in mathematics education (pp. 81-100). Springer. https://doi.org/10.1007/978-3-030-15636-7_4