• Title/Summary/Keyword: Technology in education

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Analysis of Elementary and Secondary School Teachers' Recognition about Engineering Education in Elementary and Secondary School (초.중등학교 교사의 초.중등 공학교육에 대한 인식 분석)

  • Kim, Young Min;Huh, Hye Yeon;Lee, Chang Hoon;Kim, Ki Soo
    • Journal of Engineering Education Research
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    • v.16 no.5
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    • pp.9-17
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    • 2013
  • The purpose of this study is to analyze elementary and secondary school teachers' recognition about engineering education in elementary and secondary school. For this, we surveyed elementary and secondary school teachers. The result of this study is as follow. First, most teachers perceived that engineering positively affect national competitiveness and development. They also found that engineering education helps student to select natural science and engineering field career. Moreover, they perceived that engineering contents are not applied in elementary and secondary schools curriculums, hence it does not stimulate interest in engineering. Therefore, they perceived that if engineering education contents are systematically applied in formal curriculum, it will have a positive effect on current engineering education. Second, most teachers perceived that roles of engineering education are to make students learn creative design and problem solving process and inform about the engineering field career. They perceived that the best grade to start engineering education is 4~6 grade in elementary school and the best way to apply engineering education is through distributing engineering education contents to related subjects. They also perceived that technology subject has the most relation to engineering education and science subjects; mathematics subject follow after.

Research Trend Analysis on Practical Arts (Technology & Home Economics) Education Using Social Network Analysis (소셜 네트워크 분석(SNA)을 이용한 실과(기술·가정)교육 분야 연구 동향 분석)

  • Kim, Eun Jeung;Lee, Yoon-Jung;Kim, Jisun
    • Human Ecology Research
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    • v.56 no.6
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    • pp.603-617
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    • 2018
  • This study analyzed research trends in the field of Practical Arts (Technology & Home Economics) education. From 958 articles published between 2010 and 2018 in the Journal of Korean Practical Arts Education (JKPAE), Journal of Korean Home Economics Education Association (JHEEA), and Korean Journal of Technology Education Association (KJTEA), 958 keywords were extracted and analyzed using NetMiner 4. When the general network structure was analyzed, keywords such as practical arts education, curriculum, textbook, home economics education, and students were high in the degree centrality and closeness centrality, and textbook, practical arts education, curriculum, student, home economics education, and invention were high in the node betweenness centrality. The cluster analysis showed that a four-cluster solution was most appropriate: cluster 1, technology and experiential learning activities; cluster 2, curriculum studies and practical problem; cluster 3, relationships; and cluster 4, creativity and character education. The three journals showed differences in the knowledge network structure: The topics of JKPAE and JKHEEA focused on general content knowledge and curriculum, while the topics of KJTEA were spread across invention and creativity education, and curriculum studies.

Technical and Infrastructural Aspects of Mobile Learning Adoption in Iran Higher Education

  • Masrom, Maslin;Hakemi, Aida
    • International Journal of Internet, Broadcasting and Communication
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    • v.11 no.1
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    • pp.1-7
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    • 2019
  • Nowadays learning has developed to a new way of anywhere and anytime by using mobile devices called m-learning which can provide flexibility, independency and creativity in academic environment. Most studies about m-learning are for higher education and the most users of m-learning are higher education students. Although developed countries are using m-learning in educational sectors, most of the Middle East countries are far from m-learning, and facing number of challenges. In Iran m-learning is still in early stage of implementation in higher education and in terms of technical and infrastructural aspects there is a vast gap in compare with developed countries. Although technical and infrastructural difficulties are one of the significant aspects in implementation and integration of m-learning technologies in education, the technology will not be successful if could not adopt with users. Due to the importance of user adoption with m-learning, there are limited studies about m-learning adoption in higher education of Iran. This paper attempts to review on technical and infrastructural aspects that facilitate m-learning which have effect on adoption of Iran higher education system. The review of the trend in the literature provides a reference for higher education institutes for decision making in developing m-learning for their students.

A study on the proof of additive law of sine function using technology - A case study focused on mathematics education for the gifted - (테크놀로지를 활용한 사인함수의 덧셈정리 증명 - 수학영재아를 중심으로 한 사례연구 -)

  • Lee, Heon-Soo;Park, Jong-Youll;Jung, In-Chul
    • The Mathematical Education
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    • v.48 no.4
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    • pp.387-398
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    • 2009
  • In this paper, we investigated the influence of technology, which gave an impact on students through the process of teaching & learning for the proof of an additive law of sine function in the mathematics education for the gifted. We chose students who were taking a course in enrichment mathematics at Science Education Institute for the Gifted in Mokpo National University, and analyzed their processes of a mathematical inference or conjecture, an algebraic description and a proof by visualization using technology. We found the following facts. That is, the visualization using technology is helpful to the gifted students in understanding principles and concepts of mathematics by intuition. Also, it is helpful to ones verifying various cases and generalizing principles. But, using technology can be a factor that disturbs learning of students who are clumsy with operating technology.

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Exploring Direction of Lifelong Education in Age of Science and Technology (과학 기술 시대 평생교육 방향 탐색)

  • Yoon Ok Han
    • The Journal of the Convergence on Culture Technology
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    • v.9 no.5
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    • pp.65-73
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    • 2023
  • With the introduction of lifelong education as a component of national educational policies, public support for it has been expanding more than ever before. The purpose of this study is to explore the direction of lifelong education in the era of science and technology. While various factors need to be considered in determining the orientation of lifelong education in the science and technology era, this study primarily focuses on presenting the directions that are aligned with this era. Firstly, lifelong education is necessary as vocational education. Secondly, lifelong education is needed for digital literacy enhancement. Thirdly, lifelong education is crucial from an ecological transition perspective. It is hoped that these three perspectives will be considered significant in shaping the direction of lifelong education in the era of science and technology, and subsequent discussions will delve into how lifelong education can contribute concretely to these aspects.

The Changes of Self-efficacy Beliefs of Pre-service Teachers for Technology Integration through Programming-based TPACK Educational Program

  • Kim, Seong-Won;Lee, Youngjun
    • Journal of the Korea Society of Computer and Information
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    • v.24 no.4
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    • pp.185-193
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    • 2019
  • In this paper, we propose the effects of programming-based TPACK educational program on the pre-service teacher's self-efficacy beliefs for technology integration. For this study, pre-service teachers who received programming education and TPACK education based on ICT were set as control group and pre-service teachers who received programming-based TPACK education as experimental group. In order to observe the change, the pre-service teachers conducted the test tool to measure the self-efficacy beliefs for technology integration before and after applying the educational program. As a result of the study, only the pre-service teachers who received the programming-based TPACK education showed significant improvement in the self-efficacy beliefs for technology integration. Furthermore, in the post-test, the experimental group showed a significantly higher difference than the control group. Through this study, it was concluded that programming-based TPACK educational program is effective in enhancing pre-service teacher's self-efficacy beliefs for technology integration.

On the design of instruments for integrating general educational technology course and educational technology in mathematics education course (교육공학 관련 교직과목과 교과교육 과목의 연계를 위한 도구)

  • Cho, Han-Hyuk;Song, Min-Ho
    • Communications of Mathematical Education
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    • v.24 no.4
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    • pp.843-864
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    • 2010
  • To get an undergraduate degree from mathematics education department, a student not only take a general educational technology course from education department, but also take an educational technology in mathematics education course from mathematics education department. We believe that these two courses can be integrated for preparing better mathematics teachers. For this purpose, we design an educational technology tool called JavaMAL microworld, and study strategy to integrate two courses harmoniously. This kind of approach is good for internationalization of researches on mathematics education by Korean researchers since most SSCI journal prefer an integrated approach in the educational technology related papers. In short, integrating general educational technology course and educational technology in mathematics education course is not only good to student but to professors. But just integrating two courses is not enough. Students must understand the needs and the usefulness of educational technology tool in the learning and teaching of mathematics, and must have such experience from their mathematics courses.

Direction of Elderly Education in the Age of Science and Technology (과학기술 시대 노인교육의 방향)

  • Yoon Ok Han
    • The Journal of the Convergence on Culture Technology
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    • v.10 no.2
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    • pp.1-10
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    • 2024
  • The purpose of this study is to explore the direction of elderly education in the age of science and technology. The research contents to achieve the research purpose are, first, to examine the current status of elderly education, and second, to suggest the direction of elderly education in the age of science and technology. Due to the current status of education for the elderly, education for the elderly continues to change and develop, and various programs and activities are provided to help the elderly enjoy a richer retirement life. According to the survey report on the elderly, 11.9% of all elderly people participate in learning activities. Senior welfare centers accounted for the largest number of institutions conducting learning activities for elderly education learning activities participants at 35.5%. First, in the direction of elderly education in the age of science and technology, education on the use of digital technology and information is necessary in the composition of elderly education contents. Second, in the case of elderly education methods, customized elderly education methods are needed. Third, in the case of operating elderly education institutions, specialized education centers for elderly education must be further strengthened and supported. The international community is already forming a consensus that the establishment of new social systems and financial investment due to the increase in the elderly population should be considered a new growth engine rather than a social crisis. Although there is a burden on the social security sector due to the increase in the elderly population, there is a shift in the direction of recognizing the potential capabilities and experiences of the elderly and returning them to social resources. Elderly education in the age of science and technology needs to change to a direction that can build a healthy and progressive society in the future.

Ion-Imprinted Polymers Modified Sensor for Electrochemical Detection of Cu2+

  • An, Zhuolin;Liu, Weifeng;Liang, Qi;Yan, Guang;Qin, Lei;Chen, Lin;Wang, Meiling;Yang, Yongzhen;Liu, Xuguang
    • Nano
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    • v.13 no.12
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    • pp.1850140.1-1850140.9
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    • 2018
  • An electrochemical sensor ($Cu^{2+}$-IIPs/GCE) was developed for detection of $Cu^{2+}$ in water. $Cu^{2+}$-IIPs/GCE was prepared by dispersing $Cu^{2+}$ imprinted polymers ($Cu^{2+}$-IIPs) on a preprocessed glassy carbon electrode. $Cu^{2+}$-IIPs were synthesized on the surface of modified carbon spheres by ion imprinting technology. The electrochemical performance of $Cu^{2+}$-IIPs/GCE was evaluated by differential pulse voltammetry method. The response of $Cu^{2+}$-IIPs/GCE to $Cu^{2+}$ was linear in $1.0{\times}10^{-5}mol/L$ to $1.0{\times}10^{-3}mol/L$. The detection limit was $5.99{\times}10^{-6}mol/L$ (S=N = 3). The current response value of $Cu^{2+}$-IIPs/GCE was 2.14 times that of the nonimprinted electrode. These results suggest that $Cu^{2+}$-IIPs/GCE can detect the concentration of $Cu^{2+}$ in water, providing a new way for heavy metal ions adsorption and testing.

Development and Effect of Biomimicry Robot Education Program based on Technology Education (기술 교육 기반의 생체 모방 로봇 교육 프로그램 개발 및 적용 효과)

  • Kim, Sung-Ae
    • Journal of Convergence for Information Technology
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    • v.9 no.4
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    • pp.109-117
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    • 2019
  • In this study, it developed and applied a biomimicry robot education program based on technology education, and to examine its effects. To do this, We were developed a biomimetic robot education program and was applied to gifted education in the technology fields to examine changes of the effects along with satisfaction. The results are as follow: First, the biomimicry robot education program conducted over 15 hours in total, comprised of technological problem solving steps. Second, satisfaction as a quantitative research of this program was higher than average, and as a qualitative research also showed positive satisfaction. Third, the changes in the propensity for technological problem solving and attitudes toward robots were statistically significant after participation in the program.