scholarly journals Integrating Technology in Teaching and Learning Mathematics

2015 ◽  
Vol 5 (1) ◽  
pp. 31-48
Author(s):  
Paulina Pannen

With the rapid development of ICT and its ramification in our world, especially education, can we envision how education will look like in the future, especially in Indonesia, and in the teaching and learning of mathematics? Employing Zappa’s Envisioning the Future of Educational Technology (2013) and NMC Horizon Report (2014) K-12 Edition, this paper will reflect on the effort of ICT integration in teaching and learning, especially in the teaching and learning of mathematics, in Indonesia. Taking stock of the existing Government’s policy on ICT and ICT in Education, also of the facts and figures of Indonesia’s ICT profile, this paper discusses initiatives, practices, and studies of ICT in Education, integration of ICT in the teaching and learning of mathematics, what technology and how to integrate in the teaching and learning of mathematics, and some future prediction on the evolution of teaching and learning due to emerging technologies.

Author(s):  
Sivapoorani Krishnasamy ◽  
Lew Sook Ling ◽  
Tan Choo Kim

In this 21st century, the rapid development and growth of technology has en-hanced teaching and learning experiences effectively in the delivery of learning contents. However, there are still lacking of integration of information technology (IT) in teaching although IT is pervasive. This study was conducted to determine the relationship between Information Technology (IT) capabilities, learning expe-riences and performance of teaching and learning Mathematics. Multimedia Prob-ability and Statistics System (MMPASS) was developed and used as the IT ca-pability framework to determine the effects on students’ learning experiences to-wards performance of Mathematics. The sample size of this study were 66 stu-dents of foundation programme who are taking Probability and Statistics subject. The subject was delivered to two different groups of students; “with” and “with-out” the MMPASS. Findings showed that students’ learning experiences and performances of their academic achievement have been improved by using MMPASS. Hence, MMPASS is one of the effective IT capability in improving performance of teaching and learning Mathematics.


2013 ◽  
Vol 8 (1) ◽  
pp. 31-50
Author(s):  
Rubí López ◽  
Enrique Castro ◽  
Marta Molina

Actitudes de estudiantes de ingeniería de nuevo ingreso hacia el uso de la tecnología en matemáticasEste trabajo describe tendencias detectadas en las actitudes de estudiantes de ingeniería de nuevo ingreso hacia el uso de la tecnología en la enseñanza y aprendizaje de las matemáticas, mediante opiniones emitidas en un cuestionario sobre actitudes diseñado para tal efecto. Se describe el proceso seguido para establecer categorías para las actitudes hacia el uso de tecnología puestas de manifiesto por los estudiantes en sus respuestas. Los resultados indican una tendencia de actitudes positivas.Undergraduate engineering students’ attitudes towards using technology in mathematicsThis paper describes trends detected in first year engineering students’ attitudes towards the use of technology in teaching and learning mathematics through opinions gathered in a survey about attitudes designed for this purpose. We describe the process followed to establish categories for the attitudes towards the use of technology evidenced by the students in their answers. The results indicate a trend of positive attitudes.Handle: http://hdl.handle.net/10481/27878


Author(s):  
Yeping Li ◽  
Alan H. Schoenfeld

AbstractMathematics is fundamental for many professions, especially science, technology, and engineering. Yet, mathematics is often perceived as difficult and many students leave disciplines in science, technology, engineering, and mathematics (STEM) as a result, closing doors to scientific, engineering, and technological careers. In this editorial, we argue that how mathematics is traditionally viewed as “given” or “fixed” for students’ expected acquisition alienates many students and needs to be problematized. We propose an alternative approach to changes in mathematics education and show how the alternative also applies to STEM education.


1987 ◽  
Vol 71 (458) ◽  
pp. 314
Author(s):  
Paul Ernest ◽  
Peter G. Dean

SAGE Open ◽  
2016 ◽  
Vol 6 (4) ◽  
pp. 215824401667137 ◽  
Author(s):  
Judah Paul Makonye ◽  
Josiah Fakude

The study focused on the errors and misconceptions that learners manifest in the addition and subtraction of directed numbers. Skemp’s notions of relational and instrumental understanding of mathematics and Sfard’s participation and acquisition metaphors of learning mathematics informed the study. Data were collected from 35 Grade 8 learners’ exercise book responses to directed numbers tasks as well as through interviews. Content analysis was based on Kilpatrick et al.’s strands of mathematical proficiency. The findings were as follows: 83.3% of learners have misconceptions, 16.7% have procedural errors, 67% have strategic errors, and 28.6% have logical errors on addition and subtraction of directed numbers. The sources of the errors seemed to be lack of reference to mediating artifacts such as number lines or other real contextual situations when learning to deal with directed numbers. Learners seemed obsessed with positive numbers and addition operation frames—the first number ideas they encountered in school. They could not easily accommodate negative numbers or the subtraction operation involving negative integers. Another stumbling block seemed to be poor proficiency in English, which is the language of teaching and learning mathematics. The study recommends that building conceptual understanding on directed numbers and operations on them must be encouraged through use of multirepresentations and other contexts meaningful to learners. For that reason, we urge delayed use of calculators.


2021 ◽  
Author(s):  
Dragana Glogovac ◽  
◽  
Marina Milošević ◽  
Bojan Lazić ◽  

Modern primary education, especially mathematics, requires constant innovation of teaching practice in order to modernize, rationalize, and efficiently the teaching process. Teaching mathematics should be experienced as a process that promotes learning with understanding, stimulates motivation, active learning, research, critical thinking, analysis, problem solving, drawing conclusions, exchange of experiences. The tendency to improve the quality of mathematics education has resulted in many studies pointing to the benefits of research-based mathematics (IN) teaching, known as inquiry-based learning (IBL), recognized as an essential way of organizing the teaching process to develop key competencies, abilities and skills in 21st century. Тhe aim of this paper is to see, based on a comprehensive theoretical analysis and the results of previous research. The created model of teaching mathematics based on research represents a useful framework for improving the quality of the process of teaching and learning mathematics, and empowers teachers in its application and affirmation, gaining insight into the way of organizing research learning.


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