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Reseach Article

MoMath: An Innovative Design of a Mobile based System for Supporting Primary School Mathematics in Tanzania

by Deo Shao
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 95 - Number 15
Year of Publication: 2014
Authors: Deo Shao
10.5120/16671-6671

Deo Shao . MoMath: An Innovative Design of a Mobile based System for Supporting Primary School Mathematics in Tanzania. International Journal of Computer Applications. 95, 15 ( June 2014), 22-27. DOI=10.5120/16671-6671

@article{ 10.5120/16671-6671,
author = { Deo Shao },
title = { MoMath: An Innovative Design of a Mobile based System for Supporting Primary School Mathematics in Tanzania },
journal = { International Journal of Computer Applications },
issue_date = { June 2014 },
volume = { 95 },
number = { 15 },
month = { June },
year = { 2014 },
issn = { 0975-8887 },
pages = { 22-27 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume95/number15/16671-6671/ },
doi = { 10.5120/16671-6671 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:19:32.034702+05:30
%A Deo Shao
%T MoMath: An Innovative Design of a Mobile based System for Supporting Primary School Mathematics in Tanzania
%J International Journal of Computer Applications
%@ 0975-8887
%V 95
%N 15
%P 22-27
%D 2014
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Mathematics is the most widely used subject in the world. Every career uses some sort of math. It is likely impossible for a country to be successful in science and technology arena without building a solid foundation of mathematics in its educational system. The current trend of performance in mathematics at both levels of educational systems in Tanzania is declining every year. The problem is reported to be at the elementary levels of education. There is a need to improve the consistent level of mathematical skills is Tanzania. The mobile phone penetration among students is very high and there is a need for proof of concept on how those devices could be applied for enhanced learning purposes in formal education. This study explores the use of mobile phones to support students learning activities in mathematics for primary and secondary schools. A MoMath prototype is proposed as blueprint of how SMS and IVR can be leveraged to support students in studying mathematics.

References
  1. MOEVT, "CSEEE?: Report and Analysis of the Results," 2012.
  2. NECTA, "Primary School Pass Rate 2013," National Examination Council of Tanzania, 2014. [Online]. Available: http://www. necta. go. tz/opendata/brn/index. php?mp=5. [Accessed: 28-Apr-2014].
  3. TWAWEZA, "Citizens report on the learning crisis in Tanzania," Dar Es Salaam, 2013.
  4. WORLDBANK, "Only 14% of Tanzanians have electricity. What can be done?," 2013. [Online]. Available: http://blogs. worldbank. org/africacan/only-14-of-tanzanians-have-electricity-what-can-be-done. [Accessed: 02-May-2014].
  5. ELearningAfrica, "Tanzania eLearning project bringing education to 1. 5 million secondary students," 2014. [Online]. Available: http://www. elearning-africa. com/eLA_Newsportal/283/. [Accessed: 02-May-2014].
  6. E. Awang, T. S. , Zakaria, "Integrating Computer Algebra Systems (CAS) into Integral Calculus Teaching and learning at the university," International Journal of Academic Research, vol. 3, no. 3, pp. 397– 401, 2011.
  7. UNESCO, "Adult and Youth Literacy: National, regional and global trends, 1985-2015," 2011.
  8. URT, "Big Results Now ( BRN )," 2013.
  9. ITU, "The World in 2013 ICT Facts and Figures," 2013.
  10. TCRA, "Quartely Telecom Statistics Quarter 2 ( December 2013 ) Report 1 . Voice Prepaid Tariffs ( Without TAX )," 2013.
  11. B. J. Oates, "Researching Information Systems in Computing," in Reviewing the Literature, London: SAGE Publications, 2006, pp. 187–199.
  12. S. T. March and G. F. Smith, "Design and natural science research on information technology," Decision Support Systems, vol. 15, pp. 251–266, 1995.
  13. Z. Amiratashani, "M-learning in high school: The impact of using SMS in mathematics education-an Iranian experience," in Distance Learning and Education (ICDLE), 2010 4th International Conference, 2010, pp. 152 – 154.
  14. V. Kalloo and P. Mohan, "Correlation between Student Performance and Use of an mLearning Application for High School Mathematics," in Advanced Learning Technologies (ICALT), 2011 11th IEEE International Conference, 2011, pp. 174 – 178.
  15. V. Kalloo and P. Mohan, "MobileMath?: An innovative solution to the problem of poor Mathematics performance in the Caribbean," Caribbean Teaching Scholar, vol. 2, no. 1, pp. 5–18, 2012.
  16. M. A. I. N. M. Alaysia, "M-LEARNING?: A New Paradigm of Learning," International journal of computer science & information Technology (IJCSIT), vol. 2, no. 4, pp. 76–86, 2010.
  17. S. Y. Okita and A. Jamalian, "Current challenges in integrating educational technology into elementary and middle school mathematics education," Journal of mathematics education at teachers college, vol. 2, no. 1, pp. 49–58, 2011.
  18. M. V Covington and C. L. Omelich, "Task-oriented versus competitive learning structures: Motivational and performance consequences. ," Journal of Educational Psychology, vol. 76, no. 6, pp. 1038–1050, 1984.
  19. L. Messerschmidt, "Learning to play games using a PSO-based competitive learning approach," Evolutionary Computation, IEEE Transactions, vol. 8, no. 3, pp. 280 – 288, 2004.
  20. J. P. Alan R. Hevner, Sudha Ram, Salavatore T. March, "Design Science Information," MIS Quarterly, vol. 28, no. 1, pp. 75–105, 2004.
Index Terms

Computer Science
Information Sciences

Keywords

Mobile phones Mathematics mLearning Primary schools Secondary schools