• Title/Summary/Keyword: 고등학교 교육

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A Comparative Curriculum Analysis of High School Mathematics in Korea and Australia (우리나라와 호주 고등학교 수학과 해석 영역 교육과정 비교)

  • Ko, Ho Kyoung;Chang, Kyung-Yoon;Shin, Min Kyung
    • School Mathematics
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    • v.18 no.2
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    • pp.349-373
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    • 2016
  • Comparison of curriculum between various countries is a major research method for studying a course and content quoted on Korea's national curriculum. Therefore this research focuses on comparing and analyzing a new curriculum which Australia has announced on 2012 and conducting since 2015. From this research result, we found that Australia's curriculum achievement shows some unique characteristics. Such examples can be dealing a concept with real life context and proposing a mathematical content specifically. Also they introduce the definite integral by defining to the sum of series. There are other characteristics such as modelling motion, and numerical integration which Korea's highschool curriculum achievement doesn't deal with, and the content of vector calculus is handled more deeply. As a result of analyzing Australia's textbook, it fully deals with the supplementary notion to help understand mathematical definition. Hence further research will be needed later on to relieve the aspect of cognitive burden on Korean learners.

Research on a statistics education program utilizing deep learning predictions in high school mathematics (고등학교 수학에서 딥러닝 예측을 이용한 통계교육 프로그램 연구)

  • Hyeseong Jin;Boeuk Suh
    • The Mathematical Education
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    • v.63 no.2
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    • pp.209-231
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    • 2024
  • The education sector is undergoing significant changes due to the Fourth Industrial Revolution and the advancement of artificial intelligence. Particularly, the importance of education based on artificial intelligence is being emphasized. Accordingly, the purpose of this study is to develop a statistics education program using deep learning prediction in high school mathematics and to examine the impact of such statistically problem-solvingcentered statistics education programs on high school students' statistical literacy and computational thinking. To achieve this goal, a statistics education program using deep learning prediction applicable to high school mathematics was developed. The analysis revealed that students' understanding of context improved through experiencing how data was generated and collected. Additionally, they enhanced their comprehension of data variability while exploring and analyzing various datasets. Moreover, they demonstrated the ability to critically analyze data during the process of validating its reliability. In order to analyze the impact of the statistics education program on high school students' computational thinking, a paired sample t-test was conducted, confirming a statistically significant difference in computational thinking between before and after classes (t=-11.657, p<0.001).

The Perception of the Professors and Teachers about the Education on Quadratic Curves in Various Universities (사범대학의 이차곡선 영역 교육에 대한 교수 및 교사의 인식)

  • Yi, Seunghun;Cho, Wan Young
    • School Mathematics
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    • v.16 no.4
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    • pp.827-845
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    • 2014
  • This study aims to investigate how the university educational programs about quadratic curves are operated in relation to the high school curriculum and what their effects may be, and the degree of understanding for the prospective and current teachers of the mathematical content knowledge about quadratic curves. To solve this research questions, we randomly selected three universities and one high school. Then we investigated the curricula of each department of mathematics education, compared them with the high school curricula, and conducted surveys of the professors' and students' conception on how much mathematical content knowledge they need to know about quadratic curves. The study resulted in the following conclusions. First, the curriculum on the subject of quadratic curves in the college of education is closely connected to the high school programs. This study's results showed that the college of education's curriculum includes a series of lectures regarding quadratic curves, and that within them, the mathematical content about quadratic curves associated with high school mathematics was thoroughly covered. Also, a large number of students who attended the lecture reported a significant increase in their understanding in regards to the quadratic curves. Second, it is strongly recommended to strengthen the connection between the college of education's curriculum and the actual high school education field. The prospective teachers think that there is a substantial need to learn about the quadratic curves because it is closely connected with the high school curriculum. But they find it challenging to put what they were taught into practical use in the high school education field, and feel that an improvement in this area is much needed. Third, it is necessary to promote, encourage and support the voluntary efforts to expand the range of the content knowledge in quadratic curves to cover the academic content associated with the high school mathematics.

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A Study on the Development and Application of Cryptography Teaching Program for Vocational High School Mathematics (상업 정보 계열 고등학교 암호 교육 프로그램 개발 및 적용에 관한 연구)

  • Park, Joong-Soo;Chung, Sang-Cho
    • Journal of the Korean School Mathematics Society
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    • v.12 no.3
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    • pp.231-245
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    • 2009
  • The purpose of this study is to develop a contents when we are going to introduce cryptography and information security for vocational high school students. For this we do a survey of the students' level for understanding of information security and the 7th curriculum for school mathematics, 2007 revised curriculum for school mathematics, the curriculum for vocational high school, and we search for the material that connects between mathematics subjects and vocational subjects. We develop a text book that introduces information security and cryptography. After we teach vocational high school students by using this developed book, we get the result that learning cryptography with computer programming makes a good motivation of learning mathematics and roles a parameter between mathematics curriculum and vocational curriculum. As a result we propose that the developed contents can be used in 'Practical Mathematics' in the 7th curriculum for school mathematics or 'Application of Mathematics' in 2007 revised curriculum for school mathematics.

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An Analysis of the Statistics Curricula for the High School in Korea and New Zealand (우리나라와 뉴질랜드의 고등학교 통계 교육과정 분석)

  • Shin, Woo Jin;Ko, Ho Kyoung;Noh, Jihwa
    • Journal of the Korean School Mathematics Society
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    • v.25 no.1
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    • pp.19-38
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    • 2022
  • This study aims to find ways to improve the statistics education policy in Korea for the future based on the results from examining the high school statistics curricula in Korea and New Zealand. The statistics curriculum in New Zealand was analyzed comparatively with the corresponding contents of the probability and statistics domain in the Korea 2015 revised national mathematics curriculum. The analysis centered around achievement goals and key ideas of each of the two curricula. This comparative analysis provides implications on finding a direction in line with the global trend in the curriculum for statistics education and ultimately for Korea's statistics education for the future.

The Comparisons of Perception for Operation Form among Science Academy, Science High School, and Ordinary High School : Focusing on Educational Experiences of Beneficiaries of Science-Gifted Education (과학영재학교, 과학고, 일반고의 운영 형태에 대한 인식 비교 - 과학영재교육 수혜자들의 교육 경험을 중심으로 -)

  • Park, Kyeong-Jin;Ryu, Chun-Ryol
    • Journal of The Korean Association For Science Education
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    • v.37 no.4
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    • pp.625-636
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    • 2017
  • The purpose of this study is to compare the differences in the operation form of science academy, science high school, and ordinary high school. We tried to find what kinds of variables differ in operation form based on the perception of the beneficiaries. For this purpose, 288 beneficiaries were surveyed. The groups were divided into three groups according to the high school they graduated from and then the differences among the groups were compared. The results are as follows. First, as a result of comparing the operation form according to high school using the most similar system design, it was confirmed that there are differences in curriculum and teacher variables. Second, as the result of analyzing the perception of curriculum and teacher professionalism based on the education experience of the beneficiary, the satisfaction for science academy was higher, but the satisfaction for science in ordinary high school was lower. Third, the key variables showing the differences in the operation forms between science academy and science high school were the learning contents, learning process and learning environment. The results of this study are expected to be used as basic data for future improvement of gifted education curriculum.

Current status of dietary education in elementary, middle and high school in Gyeonggi province: Comparison according to school level and placement of nutrition teacher (경기도 초·중·고등학교의 식생활 교육 현황 : 학교급 및 영양교사 배치여부에 따른 비교)

  • Lee, Youngmi;Kwon, Soo Youn;Kim, Ji Hea;Kim, Ok Sun
    • Journal of Nutrition and Health
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    • v.50 no.6
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    • pp.645-654
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    • 2017
  • Purpose: The purpose of this study was to investigate the current status of dietary education carried out by dieticians or nutrition teachers at elementary, middle, and high schools in Gyeonggi province. We compared dietary education status not only among school level but also between dieticians and nutrition teachers. Methods: The survey using self-administered questionnaires was conducted by dieticians or nutrition teachers at 91 schools (43 elementary schools, 33 middle schools, and 15 high schools) in Gyeonggi province in December, 2015. The questionnaire consisted of questions regarding general characteristics of respondents, current status of dietary education, opinion about dietary education methods, and cooperation level of persons concerned. Results: The placement rate of nutrition teachers was 50.5% overall. Only 36 out of 91 schools conducted regular dietary education, and the percentage of schools conducting regular dietary education was significantly different according to school level with the lowest percentage in high schools, equivalent to 20% (p = 0.003). The average annual dietary education time was 12.4 hours, and it was very low in high schools (5.1 hours) and in schools without a nutrition teacher (1.6 hours). The levels of cooperation and support from principals, teachers, parents, and students were significantly lower in high schools than elementary and middle schools (all p < 0.001) and in schools without a nutrition teacher than schools with a nutrition teacher (all p < 0.05). Conclusion: The results show that the level of dietary education is not enough and needs to be improved, especially at middle and high schools and at schools without a nutrition teacher. Government support polices need to be implemented to encourage dietary educational activities.

Analysis of High School Mathematics Curricula of Japan, Taiwan, Hongkong, Finland, and China (고등학교 수학과 교육과정 개선을 위한 외국 교육과정의 탐색 - 일본, 대만, 홍콩, 핀란드, 중국을 중심으로 -)

  • Kim, Sun Hee
    • Journal of Educational Research in Mathematics
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    • v.24 no.4
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    • pp.481-498
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    • 2014
  • This study analyzed Japan, Taiwan, Hongkong, Finland, and China National Mathematics Curriculums to find the implications to improve Korean High school Mathematics curriculum. First, at the aspect of mathematics education goals, we can consider to select the logical thinking, the use of mathematics, and the mathematical inquiry in the cognitive domain and self-confidence, brevity, a sense of accomplishment, and the value of mathematics in the affective domain. Second, when high students consider their course, he/she should be able to select mathematics subjects according to her/his desired career and/or major. Third, I found that sine rule, cosine rule and correlation were included as compulsory contents of Japan, Taiwan and China but not Korea. Finally I suggest that we need to show and explain kindly the range of the contents and to develop the Korean mathematics curriculum model.

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Parent Education in Home Economics Education (가정과 교육에서의 부모교육 - 중·고등학교 교과과정을 중심으로 -)

  • Chung, SoonHwa
    • Journal of Korean Home Economics Education Association
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    • v.29 no.4
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    • pp.15-30
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    • 2017
  • The purpose of this study was to examine the relational components of parent education curriculum for college students and home economics curriculum for middle and high school students in Korea. The continuity and hierarchy of the parent education curriculum for college students and the 'human development and family' domain of home economics curriculum for middle and high school students were examined. The major findings were as follows. First, the components of 'human development and family' domain of middle school home economics curriculum in 2015 revision were considerably related with the components of parent education curriculum for college students. Second, the components of 'human development and family' domain of high school home economics curriculum in 2015 revision were considerably related with the components of parent education curriculum for college students. Third, the components of 'human development and family' domain in middle and high school home economics curriculum in 2015 revision and parent education curriculum for college students showed a hierarchical pattern in range and depth of contents. On the basis of these findings, the effectiveness of teaching parent education in middle and high school curriculum was discussed.

(Problem analysis of the Computer Education Curriculum for Vocational High School) (실업계 고등학교의 컴퓨터 교육과정 문제점 분석)

  • 장순규;이태욱
    • Journal of the Korea Computer Industry Society
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    • v.3 no.8
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    • pp.999-1006
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    • 2002
  • Now Vocational High School have many Problems. The Alternative proposal, to easy go on to university of same tract can not a substitute of the basic cause. Vocational High School is needed to the practical curriculum for her place. This article analyzes the problems of the Computer Education Curriculum for Vocational High School by compared with the demanded Curriculum, haying his or her Career when the student complete the Vocational High School course.

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