• Title/Summary/Keyword: Technology and Education

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A Study on the Constituents of Engineering Basic Competency based on the Recognition of Engineers In the Field (공학전문가가 인식하는 공학기초능력의 구성요소에 관한 연구)

  • Kim, Dae-Young;Kim, Ki-Soo;Kim, Pan-Wook;Rho, Tae-Cheon;Ryu, Chang-Yol;Choi, Won-Sik;Choi, Yu-Hyun;Ku, Jin-Hee;Rho, Hee-Jin;Lee, Jin-Woo;Lee, Chang-Hoon;Jung, Su-Jin;Kang, Hyun-Moo
    • Journal of Engineering Education Research
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    • v.9 no.2
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    • pp.34-51
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    • 2006
  • In knowledge based society of 21c, engineers require not only their own speciality but also engineering basic competency such as creative thinking, the ability of working together, the ability of communication. Engineering colleges responsible for educating engineers consider developing curriculum including Engineering Basic Competency which is reflecting the needs of the times. By utilizing the accreditation programs of engineering education, UK-SPEC of UK Engineering Council, EA(Engineering Australia) standards/handbook of the Institute of Engineers Australia, O*NET of U.S. Occupational Network, this study generates core elements of engineering basic competency to prove the capability of engineering basic competency required to desired engineers. Core constituents derived from the study were categorized into 3 major areas of the basic engineering literacy in Humanities and Social Sciences(HSS), the ability of Creativity Engineering Design, Career development and each category and constituents were surveyed and checked by engineers in the field to deduce engineering basic competency that should be educated in the engineering college.

A Study on Four-year College Curriculum for the Education of Radiological Technology in Korea (방사선학과(放射線學科)의 4년제(年制) 대학(大學) 교육과정(敎育課程)에 대한 연구(硏究))

  • Choi, Jong-Hak;Lee, Sang-Suk;Kim, Young-Il;Kwon, Dal-Gwan;Kim, Heung-Tae;Lim, Han-Young
    • Journal of radiological science and technology
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    • v.18 no.2
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    • pp.87-102
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    • 1995
  • The education of radiologic technology began in the regular institute of higher education in Korea in 1963. Up to now from then, our education to bring up the radiologic technologists has developed greatly in quality and quantity, and now departments of radio-technology are founded in the 16 junior colleges in March, 1995. This study was done to verify the necessity and propriety to reform the education system of radiologic technology which was run as two or three year system of college curriculum for 32 years since 1963, and to search for the method to reform in the future. We got the following results from this research. 1. In the survey, on the desirable education year for radiologic technologists, 63.9 % of professors of department of radio-technology and 63.0 % of radiologic technologists chose the 4 year system, 27.9 % of professors and 34.6 % of radiologic technologists chose the 4 year system added to graduate school. 2. In the survey, on the future development of radiologic equipments and technique, 67.2 % of professors of department of radiologic technology and 86.4 % of radiologic technologists have a view of "revolutional development". Also, on the future tasks or roles of radiologic technologists 95.1% of professors and 94.9% of radiologic technologists have a view that "They will increase". 3. On the necessity of extension of education year to 4 years from 3 years, the factor is that development of medical technique and machinery and tools, advance of qualification of radiologic technologists, enlargement and specialization of the business of the radiologic technologists, ballance of education year with other medical sciences, international competitive power and cooperation of radiologic technology, and education continuation of the graduates of department of radiologic technology. 4. They suggested that in the 4 year curriculum of department of radiologic technology, clinical medicine, quality control of radiation and radiologic equipment, related subjects to the radiologic application and computer application should be enforced and clinical practice should be extended more. 5. On the device to found the 4 year college curriculum of radiologic technology, they suggested that first, 4 year curriculum should be founded through the variety of educational year, secondly, department of radiologic technology should be founded in the 4 year health sciences college, thirdly, educational continuation of the radiologic technologists should be systematized on the basis of life-long education.

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Entrepreneurship Education in the United States:Strengths and Opportunities for Growth

  • Pena, Vanessa;Riggieri, Alison
    • STI Policy Review
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    • v.1 no.4
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    • pp.1-20
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    • 2010
  • This paper explores the role of entrepreneurship education in a modern economy and how the government, academic, and nonprofit sectors in the United States have responded to this growing field. There are several sectors that play important roles in the entrepreneurship education landscape in the United States. Over the past decade, there has been increasing participation of Federal and state governments. This recent trend suggests the field may be increasing in maturity and legitimacy, showing promise for expanding the reach of entrepreneurship education programs. Programs sponsored by nonprofit organizations and private foundations complement government initiatives and display an effective means of leveraging knowledge and resources across the relevant sectors. Thus, new initiatives, whether initiated by government or academia, should learn from the successes of this sector as well as be carefully considered within the context of existent programs and services. Nonetheless, the potentially dynamic environment of the entrepreneurship education field in the United States offers a specific opportunity to leverage the experience in mentorship activities at the post-secondary education to address a possible gap in these activities at the secondary education level.

Method of Curriculum System Design and Documentation Including General Education, MSC, and Engineering Design at Chosun University

  • Go, Hyun-Sun;Park, Gil-Moon
    • Journal of Engineering Education Research
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    • v.14 no.6
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    • pp.60-66
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    • 2011
  • The curriculum system and documentation for advanced general education, MSC (Mathematics, Basic Science, Computer Science), and engineering-design courses have been developed to improve the education of advanced undergraduate students in engineering and technology at Chosun University. In this paper, to obtain improved quality of engineering courses, we systemized the education of engineering and technology, which could be designed as the education satisfying students and provide awards for high-quality performance, through efficient management of education courses and establishment of basic and professional courses. In addition, by applying evaluation to the engineering courses and using the model of continuous quality improvement, we could achieve a high-quality education system for the engineering and technology courses.

Development and Application of Artificial Intelligence Convergence Education Program Based on Decision Tree: Focusing on Unplugged Activities (의사결정 트리 기반 인공지능 융합교육프로그램 개발 및 적용: 언플러그드 활동을 중심으로)

  • Sung-ae Kim
    • Journal of Practical Engineering Education
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    • v.14 no.3
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    • pp.459-469
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    • 2022
  • The purpose of this study is to explore the educational effect by developing and applying a decision tree-based artificial intelligence convergence education program. To achieve the purpose of this study, the study was conducted through a three-step process of preparation, development, and improvement. In addition, it consisted of four stages of the creative problem-solving process: 'Understanding the problem', 'Idea search and development', 'realization' and 'evaluation'. In particular, the artificial intelligence convergence education program developed in this study is an unplugged activity that does not include programming. Therefore, it is very noteworthy that artificial intelligence convergence education was implemented in subjects other than technology and home economics education, and information education, which are part of junior engineering education, and practical arts education in elementary education, which is a subject that learns Artificial Intelligence technology including programming during class time. In other words, it shows that AI technology can be integrated and taught in most subjects, not specific subjects and has great significance in that it can utilize the concepts and principles of artificial intelligence technology when teaching the concept of classification, which is included in the curriculum.

Development of TPACK-P Education Program for Improving Technological Pedagogical Content Knowledge of Pre-service Teachers

  • Kim, Seong-Won;Lee, Youngjun
    • Journal of the Korea Society of Computer and Information
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    • v.22 no.7
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    • pp.141-152
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    • 2017
  • As the importance of technology increases, so too does its use in various areas. In education, technology is often used. However, due to teachers' lack of knowledge about technology, they often remain at the level of simple utilization, without applying it to learning. Thus, there is a growing need for Technological Pedagogical Content Knowledge (TPACK), which enables teachers to have knowledge about technology and use it appropriately given the content. Although TPACK studies are underway in many subjects, they suffer from the limited functionality of the included technology. To solve this problem, in this study, the range of technology in TPACK was extended to programming, and a TPACK-P model was developed to teach this expanded TPACK to pre-service teachers. To verify the effectiveness of this model, the TPACK-P training program developed during the 15th classes was applied to 19 pre-service teachers. We used Park and Kang (2014) as a tool to measure these teachers' TPACK before and after treatment to observe any changes. The results showed that the TPACK-P education program showed statistically significant improvement in all areas except Pedagogical Content Knowledge(PCK). Compared with the ICT-based TPACK training program, which was administered to a control group, the TPACK-P training program proved to be more effective in the development of Technological Pedagogical Knowledge(TPK) and TPACK among pre-service teachers.

Policy Reform of Special Education Technology to Expand the Learning Opportunities of the Disabilities (장애학생의 학습기회 확대를 위한 특수교육정보화 정책 개선 방안)

  • Lee, Kyung-Soon
    • The Journal of Korean Association of Computer Education
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    • v.10 no.1
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    • pp.55-66
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    • 2007
  • To improve access to the learning opportunities of students with disabilities, this study is to identify the potential of the information communication technology in education for the disabilities and to suggest the policy reforms for the special education technology. To answer it, the related literatures of other developed countries and Korea were collected and analyzed by desirability and feasibility as criteria. From the view of the desirability, this study found that the policies of special education in Korea were still regarded as subsidiary and separated from the general students. Moreover, from the view of the feasibility, the law and financial support was relatively insufficient than other countries to implement the policy more effectively and stably. To solve these problems, this study suggests the policy reforms in Korea as five areas and seven tasks.

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An Experimental Study on the Motor-Core Die Development of HEV Traction Motor (하이브리드(HEV) 구동 모터용 모터-코어 금형 개발에 관한 실험적 연구)

  • Hong, Kyeong-Il;Kim, Se-Hwan;Choi, Kyeo-Gwang;Jung, Hyun-Suk;Lim, Se-Jong
    • Design & Manufacturing
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    • v.9 no.2
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    • pp.34-37
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    • 2015
  • The HEV Traction Motor Core manufacturing technology is a core component of HEV Traction Motor Core (Iron Core) is a key technology for the manufacture of eco-friendly automotive industry is essential for the competitiveness of the country must obtain the technology. In this study, the HEV Motor Core of the Rotor manufacturing technology, the Stator manufacturing technology applied to Press Lamination Die and Core(Iron Core) was developed and the results are discussed.

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The Direction of Information Technology in Education for Pre-service Teachers Training (교육대학의 정보화 교육의 발전 방향)

  • Kim, Young-Gi
    • Journal of The Korean Association of Information Education
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    • v.3 no.2
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    • pp.54-71
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    • 2000
  • There has been important issues of improving pre-service teacher training how to use information technology in education. The main purpose of the paper is to find out what would be sound solutions of pre-service teacher training of information technology in education. The characteristics and curriculum of NUEs(National Universities of Education) as well as current situations were analyzed and summarized for this purpose. As a result, the study suggested what are some sound solutions to teach information technology in education at NUEs.

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