• Title/Summary/Keyword: Problem Based Educational Project

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An Analysis on the Priority of Educational Needs of Teachers in Charge of Educational Contents of Invention Intellectual Property in Secondary Vocational Education (중등단계 직업교육에서의 발명·지식재산 교육내용에 대한 담당 교사의 교육요구도 우선 순위 분석)

  • Lee, Sang-hyun;Lee, Chan-joo;Lee, Byung-Wook
    • 대한공업교육학회지
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    • v.40 no.2
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    • pp.155-174
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    • 2015
  • The purposes of this study were to analyze the property of educational needs of teachers for educational contents of invention and intellectual property in secondary vocational education and provide fundamental data for the development of job training programs so as to develop the capabilities of teachers, the base for effective education of invention intellectual property in secondary vocational education. To achieve them, educational needs for the educational contents of invention intellectual property and the priority of the educational needs in secondary vocational education based on the recognition of the teachers were analyzed and suggested. Concrete results of this study can be suggested as follows. First, the average of educational needs of the teachers for the educational contents of invention intellectual property in secondary vocational education was 5.02. There were 23 items of the educational contents whose educational needs were higher than the average of the whole items and for those items and the average of each item, there were F4(The average of patent applications) 6.72, F5(Modification and supplementation of specification sheets) 6.46, F2(Writing of patent floor plans) 6.39, F3(Writing of patent specification sheets and abstraction) 6.31, A5(Invention method and activity) 6.27, E6(Invention design project) 6.15, H3(Invention commercialization) 5.97, F1(Patent information and application) 5.90, E5(Design obligation) 5.78, E3(Designing process of inventional design) 5.77, A4(Invention and problem solving) 5.57, G2(Patent investigation and classification) 5.47, C2(Thinking method of inventional problem solution) 5.45, E4(Production of inventional design product) 5.45, B5(Inventional patent project) 5.42, A2(Creativity development) 5.26, C4(Inventional problem solving project) 5.26, H4(Invention marketing) 5.26, H2(Analysis on invention commercialization) 5.20, D4(Invention and management) 5.16, C3(Problem solving activity) 5.14, E2(Inventional design devise and expression) 5.11, B3(Actuality of inventional method) 5.08 in order. Second, for the priority of educational needs of the teachers for the educational contents of invention intellectual property in secondary vocational education, there were 13 items of the educational contents for the first rank, 10 for the second rank and 17 for the third rank. The items of the educational contents for the first rank were A4(invention and problem solving), A5(inventional method and activity), B5(Invention patent project), C2(Thinking method of inventional problem solution), C4(Inventional problem solving project), E3(Inventional design process), E4(Production of inventional design product), E5(Design obligation), E6(Invention design project), F1(Patent information and application), F2(Writing of patent floor plan), F3(Writing of patent specification sheet and abstract), and H3(Invention commercialization. The items of the educational contents for the second rank were A2(Creativity development), B3(Actuality of inventional method), C3(Problem solving activity), D4(Invention and management), E2(Invention design devise and expression), F4(Range of patent demand), F5(Modification and supplementation of specification sheet), G2(Patent investigation and classification), H2(Analysis on invention commercialization), and H4(Invention marketing). The items for the third rank were the educational contents except the ones of the first rank and the second rank.

The Study on the Significance of Social Problem-solving Living Lab Project Class in University and Development of an Toolkit to derive Effective Problem Definition (사회문제 해결형 대학 리빙랩 프로젝트 수업의 의의와 효과적인 문제 정의 도출을 위한 활용 툴킷 개발)

  • Park, Hyung-Woong
    • Journal of Digital Convergence
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    • v.19 no.10
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    • pp.15-20
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    • 2021
  • The crisis of university must be overcome by emphasizing the acquisition and use of knowledge for students to participate in and solve contemporary and diverse social/regional problems through educational method innovation. University classes should be a way of contributing to solving human problems, the UN's Sustainable Development Goals(SDGs) and various issues in the community. This study focused on project-based learning to cultivate socially engaged and problem-solving talents. In addition, a problem definition toolkit model was produced and tested to improve problem solving ability. Through follow-up research, I plan to develop a performance measurement model corresponding to the field application-improvement-feedback of Living Lab project classes, and suggest a method that universities can easily apply to the existing curriculum.

4PBL model proposal for education of Game Design (게임 교과목 교육을 위한 4PBL모델 제안 연구)

  • Lee, Dong-Eun
    • Journal of Korea Game Society
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    • v.18 no.5
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    • pp.93-102
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    • 2018
  • This article aims to present an effective and systematic learning methodology of game curriculum which is oriented convergence education. In particular, I will present the 4PBL model reflecting the trend of the changing times from teacher-centered learning to learner-centered learning environment. The 4PBL model consists of Personal based Learning, Problem based Learning, Project based learning and Performance based Learning. In this article, I will explain the concepts and characteristics of PBLs at each stage by providing concrete examples of game education courses. Such an attempt may have a meaningful value in that it can suggest a learning environment in which knowledge can be structured subjectively in a changing educational paradigm.

An Analysis on Educational Needs of Creative Engineering Design Ability of Engineering Students (공과대학생의 창의공학설계능력 교육요구도 분석)

  • Park, Shin Young;Lee, Yunso;Kim, Kyeong Eon;Kang, Seung Chan
    • Journal of Engineering Education Research
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    • v.21 no.2
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    • pp.7-16
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    • 2018
  • The purpose of this study is to develop and implement engineering education program by drawing out the educational needs creative engineering design ability. The importance and current level of creative engineering ability were surveyed and analyzed by using 29 sub - factors of creative engineering design ability presented by Kim Dae young et al(2006). from 234 engineering students in 6 universities. As a result, students recognized that all items of creative engineering design ability were important, and their level was generally recognized. The educational needs for creative ability and creative problem solving ability was high and the educational needs for creative engineering design project was relatively low. Based on these results, it is necessary to develop an educational program to enhance creative engineering design ability by considering learner's perception and professional and industrial recognition.

Development and Effectiveness of an AI Thinking-based Education Program for Enhancing AI Literacy (인공지능 리터러시 신장을 위한 인공지능 사고 기반 교육 프로그램 개발 및 효과)

  • Lee, Jooyoung;Won, Yongho;Shin, Yoonhee
    • Journal of Engineering Education Research
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    • v.26 no.3
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    • pp.12-19
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    • 2023
  • The purpose of this study is to develop the Artificial Intelligence thinking-based education program for improving AI literacy and verify its effectiveness for beginner. This program consists of 17 sessions, was designed according to the "ABCDE" model and is a project-based program. This program was conducted on 51 first-year middle school students and 36 respondents excluding missing values were analyzed in R language. The effect of this program on ethics, understanding, social competency, execution plan, data literacy, and problem solving of AI literacy is statistically significant and has very large practical significance. According to the result of this study, this program provided learners experiencing Artificial Intelligence education for the first time with Artificial Intelligence concepts and principles, collection and analysis of information, and problem-solving processes through application in real life, and served as an opportunity to enhance AI literacy. In addition, education program to enhance AI literacy should be designed based on AI thinking.

A Value-For-Money Model of BTL Projects for Educational Facilities (교육시설 BTL 사업의 투자가치 평가모형 구축)

  • Kim, Jang-Young;Son, Ki-Young;Kook, Dong-Hoon;Kim, Sun-Kuk
    • Proceedings of the Korean Institute Of Construction Engineering and Management
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    • 2006.11a
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    • pp.87-91
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    • 2006
  • After reformation of 'the law of private investment on social infrastructure' on January 2005, BTL of educational facilities can improve the education circumstance at early stage, however there are trial and error, problems of execution as well. The key of this problem is not only related to whether BTL project is more reasonable, but it also leads to the proper performance of eligibility analysis on BTL. Therefore, it lead to the proper carryout of eligibility analysis on BTL. In order to promote effective BTL project of educational facilities, this study analyzes problems of existing model and creates the evaluation model for solving this problem. In this study, the evaluation model of investment on BTL has more quick ,accuracy and useful effect than previous one, if it is applied on eligibility stage. Moreover, this method could be applied to public building, SOC facilities effectively based on being modified as each characteristics of structure suitably.

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Development of AI education program based on Design Thinking (디자인 씽킹 기반 인공지능 교육 프로그램 개발)

  • Lee, Jaeho;Lee, Seunghoon
    • 한국정보교육학회:학술대회논문집
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    • 2021.08a
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    • pp.31-36
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    • 2021
  • In the era of the 4th industrial revolution represented by AI technology, various AI education is being conducted in the education field. However, AI education in the educational field is mostly one-off project education or teacher-centered education. In order to practice student-centered, field-oriented education, an artificial intelligence education program was developed based on design thinking. The AI education program based on design thinking will improve understanding and ability to use AI through the process of solving everyday problems with AI, and will develop the ability to create new values beyond understanding AI. It is expected that various AI education will take place in the educational field through design thinking-based artificial intelligence education programs.

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The Development of Pre-Engineering Educational Program Model Based on STEM Integration Approach (STEM 통합 접근의 사전 공학 교육 프로그램 모형 개발)

  • Moon, Dae-Young
    • Journal of Engineering Education Research
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    • v.11 no.2
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    • pp.90-101
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    • 2008
  • This study was conducted to develop pre-engineering educational program model based on STEM integration approach. To accomplish this purpose literature review and content validity ratio survey were carried out. The main results of this study were as follows: First, the conceptual model of STEM integration approach was constituted. Second, the conceptual model of pre-engineering educational program model based on STEM integration approach was proposed. Third, the formation steps of inquiry project activity, problem solving activity, and creative engineering design activity were developed to structure the educational program.

The Effect of Interdisciplinary Cooperation Project Learning on Communication, Problem-Solving, and Self-Directed Learning Ability of University Students (전공 간 협력 프로젝트 학습이 대학생의 의사소통, 문제해결, 자기주도적 학습능력에 미치는 효과)

  • Kim, Keun-Kon;Yoon, Jin;Choi, Kyeong-Yoon;Park, Sun-Young;Bae, Jin-Hee
    • The Journal of Korean Academic Society of Nursing Education
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    • v.14 no.2
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    • pp.252-261
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    • 2008
  • Purpose: The purpose of this study was to explore how an educator can empower students by fostering communication, problem-solving, and self-directed learning ability. Method: In order to accomplish this purpose, 136 students who were attending J University and 105 students attending M University participated in the questionnaire. The students were freshman in the nursing or social welfare departments, There were 136 in the control group and 105 in the experimental group. The control group was given an applicable class of project learning. On the other hand, the experimental group was given traditional lessons once a week for 15 weeks. The research instrument used the measuring instruments developed by KEDI for communication and problem-solving and self-directed learning ability. Data was analysed by ANCOVA with SPSS/PC. Result: The results of analysis show that communication, problem-solving, and self-directed learning ability significantly increased in the experimental group. Conclusion: Based on the research finding, project learning has an educational value. Interdisciplinary cooperation project learning is effective for communication, problem-solving, and self-directed learning ability.

The Development of Project-Based instructional Model for Promoting the creative convergent Competency (창의융합역량향상을 위한 프로젝트 수업 모형개발)

  • Kim, Youngmi
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.20 no.11
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    • pp.2172-2180
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    • 2016
  • As increasing the emphasis of competence-based learning, Project-base instruction is adopted more with frequency at the educational field. This study focuses on developing the methodology of project-based instructional system. The first one is to manage the project independently not to link with any module. The second one is to link a project to a module. And the third one is to link a project to the more than two major modules. Also It suggests the tool for project based instruction. Before & after class conducting the inspection for increasing satisfaction of instruction by the systematic management and improvement, the project base instruction shows the positive effect to promote the creative personality and problem solving ability. The contentment of the class increases 7% more at the 2nd year than the 1st. As a result, it can derive the evaluation of the pupils' higher achievement rate.