An, Gwang-Sik;Bae, Dong-Yun;Park, Rak-Young;Choi, Wansik
대한공업교육학회지
/
v.30
no.2
/
pp.3-11
/
2005
The purpose of this study is to measure the level of the key competencies of industrial high school students and to use it as the basic material so as to improve the key competencies. The subject was 359 industrial high school students(boys: 244, girls: 115) in Seoul, Daejeon, Gwangju, and Busan. The instrument used to measure the key competencies is that developed by Cheol-Young Jeong, which was partly revised with the help of a group of experts. The results of this study showed some of skills were below an average of 3.0, which were writting skill(M=2.85) and speaking skill(M=2.96) in communication skills, logical thinking(M=2.98) in problem solving skills, leadership skill(M=2.88) in interpersonal skills, and self-improvement skill(M=2.96) and the spirit of public service(M=2.93) in self-management and self-improvement skills. But technology skills were above an average of 3.0. And it appeared that technology skills(P=.023) depended on having a certificate or not, and so did communication skills(P=.020) and problem solving skills(P=.034) on the types of a course(employment or entrance into a college). So, to strengthen the key competencies which appeared below an average of 3.0 in this study, not only does the curriculum of industrial high schools need to be reorganized, but systematic strengthening program of key competencies should also be developed.
This study analyzes the requests by the people-in-charge in industries and presents methods to improve field practice systems for technical highschools. Requests from 43 industries in Korea were analyzed. The results about improvement methods for field practices are as follows: First of all, the study suggests the same educational curriculums and number of courses for the 10th grade (National Manditory and Basic Curriculum) and the 11th grade (Elective Program) both in general technical highschools and in "2+1 system" technical highschools. The school offers a dual program: completion and continuation curriculums. In the 12th grade, students choose their careers. Students can participate in field practice as a completion education. In other words, the same curriculums are operated in 10th and 11th grades for students who want to go to college and to get jobs. The different curriculum is arranged for the 12th grade. This system can allow flexibility in curriculum operation for students who want to change their careers or who drop in the middle of filed practice. Students who come back to schools in the middle of field practice are asked to complete technical courses and evaluated like in general technical highschools.
The purpose of this study was to analyze students' expectation for specialized subjects teacher's role of technical high school. The study was carried out through questionnaire survey method. A survey questionnaire was developed by researcher to collect the information needed for the study. It consists of 15 items. 428 questionnaires were used for analysis. A chi squared test was used for data analysis. Major findings of this study were as follows: First, when specialized subjects teachers lecture major theory subject classes, students of technical high school wanted it to be according to their level. Their practical class preference differed depending on their department. For the security guidance method during practical class, students most wanted teachers constantly instructing in class. Second, students of technical high school wanted their teachers to pay attention to personality guidance during student life guidance & counseling time. They hoped that teachers would not discriminate towards wrong doings. Also students wanted career the most as a counseling topic and expected a guidance role from teachers. Third, students of technical high school wanted teachers to work hard to create a harmonious class atmosphere when managing a class. They wanted teachers to have affection for class and students. They wanted teachers making jokes easily with students to get friendly. Fourth, students of technical high school hoped 'employment and entrance higher grade school' the most as a career guidance topic. They wanted teachers to consider their aptitude when they were counseling about finding a job and wanted to learn more about job information during employment instructions.
This study aims at giving examples that can be applied in the real education field, and it develops theme-based integrative education program for Industrial Specialized high school students. It analyzed the models of many scholars about the development of education course, and devised developmental models and procedures of the theme-based integrative education program of engineering specialized high school from those. As a result, it used and reorganized ADDIE model which is the systematic education course development model and the theme-based integrative education development model of Frazee and Rudnitski(1995) as the basic structure, and came to devise theme-based integrative education program of engineering specialized high school while referring to creative engineering design education program development model by Lee Chang-hoon. This study that is theme-based integrative education program for engineering-specialized high school students and is the result of this study has the following characters. First, This theme-based integrative education program that is developed for engineering-specialized high school students can be applied and the initial example that approach the Theme-Based. Second, This Education Program included the Activity project that is "Making Maglev" for the third grade at the engineering-specialized high school and One of the Program's aim is to bring up their attitude that engaged to in the class having the Interest. Third, Theme-based integrative education program for engineering-specialized high school is composed the workbook for the students and the teaching guidance plan for the teachers. Workbook for the students is composed four Units;"Brief about the Maglev","Basic principles about the Maglev","Intensive principles about the Maglev", Activity project about the Maglev". And each unit is made by Learning Purpose, Introducing, Learning Contents(Deepen Learning, Reading Magazines), Assesment etc. Teaching guidance plan for the teachers include that Summary, Purpose, Time Planing & Streaming Map for the class, contents associated Maglev, prerequisite learning, constructure of the education program, flow chart, learning activity, assesment(self-appraiser and peer review).
A pendulum of industrial education begins to shift from one based on industrialized society to one on information-based age. To produce an effective result in this situation, It is necessary that an accurate estimate of a change in the circumstances of industrial high schools of Gyeonggi-do. This study researched the province's characteristics and countermeasures on industrial education adjusting the change of industrial environments by regional groups and suggested the solutions as follows. First, This study classified Gyeonggi-do into 9 regions considering the region's respective industrial structure and suggested the structure adjustment plan. Second, This study suggested '3-type curriculum management plan' based on the structure adjustment plan of industrial high schools. It includes employment-centered curriculum which provides the human resources required by industrial community, foundation-centered curriculum which revitalizes starting up a enterprises and clears up the manpower problems, college preparation-centered curriculum which meets the need of the students who are much interested in going to the next stage of education. Third, this study suggested a solution to a problem of surplus industry teacher. It includes 3 methods: Increasing practical training from 2 ours to 3 hours, assigning teachers for a task of academic-industrial collaboration and career counseling, qualifying industrial teachers for another course by minor. An amicable settlement on these matters requires a systematic administrative and financial support based on closely connected governmental-academic-industrial collaboration.
The purpose of this study is to develop a STEAM program based on reverse engineering. To achieve the purpose of this study, STEAM program was developed on the subject of autonomous vehicle. The results of this study are summarized as follows. The program was developed based on STEAM program development model based on reverse engineering. Developed in a five step procedure (analysis, design, development, implementation, evaluation) with the subject of autonomous vehicle. First, in the analysis step, we explored the definition, goal, content area, and teaching and learning methods of STEAM based on reverse engineering. We extracted the goals and content areas to be included in the educational program. Second, in the design step, topics were selected through consultation with experts. At this time, based on the linkage between the 2015 revised curriculum and the STEAM curriculum, we selected and organized educational goals and learning contents. Third, in the development step, we developed a teacher 's guidebook and student' s textbook, and applied the program to 71 students in the second grade of OO middle school in Seoul. Fifth, at the evaluation stage, the evaluation was made by experts and students based on the program that was implemented, and revised and supplemented based on the results.
Chemical batteries are indispensable materials, and technologies related to chemical batteries are important as they are linked to various social problems; further, they directly affect our lives. Thus, the topic of chemical batteries is suitable for industrial education. However, there has not been sufficient educational use of chemical batteries in Korea, and existing research materials do not correspond with the present curriculum. The STS teaching-learning materials about chemical batteries in this study were developed by the curriculum development model (preparation, development, improvement) for chemical engineering students in specialized vocational high schools. In the preparation stage, the study topic and the learning objective were selected by analyzing previous research about the STS and chemical battery. At the development stage, STS class plan and teaching-learning materials were developed. In the improvement stage, The STS curriculum plan and the teaching-learning materials were verified by a group of specialists and a survey regarding student satisfaction was conducted. As a result of conducting the class with the teaching-learning materials developed in this study, a positive effect in terms of students' perceptions, understanding and interest.
This study investigated perception of first-year college students who recently experienced technology education in their secondary education for describing contemporary technology classrooms. To accomplish this goal, survey and in-depth interview on their technology classrooms were employed. Participants in this study were 427 first-year college students who began their college life in 2013 and consisted of 224 students enrolled in 10 departments of educational major and 203 students who enrolled in 9 departments of other colleges. The instrument of this study consisted of preference toward technology classrooms and teachers, experience in the secondary technology classrooms, perception toward technology teachers, and suggestions for technology classrooms with five point Likert scales and open-ended questionnaires. And individual in-depth interviews with 22 volunteers who answered the instrument and consented the interview process were conducted. Based on the collected data, statistical and theme analyses were performed and the key findings were as follows. First-year students' experiences for technology classrooms were described with the theme of 'learning contents or activities'(54.4%). And the negative perception toward technology classrooms(29.1%) was larger than he positive perception(16.5%). The perception toward technology classrooms was also presented with two themes of teaching methods and subject interest. The perception toward technology teachers presented a medium level preference with several themes of teachers' teaching methods, teachers' personality, and subject interest. Lecture style method(60.48%) was largely used in the participants' technology classrooms and problem solving or collaborative methods was not frequent(19.31%). The participants indicated a need for improving teaching methods in technology education and suggested sufficient administration and curriculum supports and transitions of the learning contents. Further studies investigating the diverse public's perception toward technology and technology classrooms could be recommended.
The purpose of this study was to develop 'energy education' program for Creative Activities in middle school. The subject of this study was carried out with secondary student of middle school in Daegu. The development of 'energy education' program for middle school creative activies was carried out preparation, development and application. The details of each phase are as follows; The preparation phase was consised of collecting and research datas, energy education programs andliterature review for development of program. The development phase was developed through program that based on setting goals, designing of teaching-learning plans, development of materials of teaching and evaluation. The improvement phase was to modufy energy education instructional materials by running CD validity test of the expert, (2) preliminary tests and field trials of students. More than 65% of students to take class of this program agreed with the program of 'energy education' in class of creative activities was appropriate.
With recent advancement in informational sciences, educational systems are undergoing a revolutionary facelift on how students attain their education. These developments have diminished the traditional method of teaching and learning and have improved the overall quality of the educational environment. They have also ignited the birth of cyber-education in which students have the flexibility and responsibility on what and when to study, thus providing a greater freedom to control one's education. Cyber-educational environment not only requires physical hardware but also an organizational structural component and most importantly, a software component that drives and gives the student management power to tailor their studies based upon their educational requirements. Due to the fact that individuals learn and develop at different rates, one of the important features of a cyber-educational program will be its ability to adjust and customized to individual needs and requirements. In this thesis, a novel software which encompasses these ideas was designed and developed. This program allows the individual more flexibility and management of courses based on their ability and needs. Because the software customizes to one's ability and it allows the student to advance at a more comfortable pace, it boosts the student's confidence and desire to learn. In the future, new and improved programs similar to the one developed here will further enhance the cyber-educational environment and will undoubtedly improve the overall quality of student's education.
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