• Title/Summary/Keyword: the aim of education

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An Important Component on Using the What-If-Not Strategy

  • Seo, Hye-Sook
    • Research in Mathematical Education
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    • v.2 no.1
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    • pp.13-19
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    • 1998
  • The What-If-Not strategy as proposed by Brown & Walter (1969) is one of the most effective strategies for problem posing. However, it has focused only on the aspect of algorithms for generating problems. The aim of this strategy and how it is used to accomplish the aim of the challenging phase are not clear. We need to clarify the aim of the What-If-Not strategy and to establish the process of the strategy for accomplishing the aim. The purpose of this article is to offer a new What-If-Not strategy by clarifying the aim of the challenging phase.

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Flourishing as an aim of mathematics education

  • Tye G. Campbell;Sindura Kularajan
    • Research in Mathematical Education
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    • v.27 no.2
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    • pp.211-221
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    • 2024
  • What is the aim of mathematics education? Current aims of mathematics education often lack the multidimensionality needed to account for a successful experience in mathematics. In this short paper, we argue for a multidimensional aim of mathematics education via the construct of flourishing. Flourishing is derived from the notion of eudaimonia, which broadly refers to achieving the "highest good," or living a well-lived life. Building on prior research, we operationalize flourishing as an aggregate of several positive affective, behavioral, cognitive, and social traits, all of which contribute to students' propensities to achieve the "highest good" in mathematics. In particular, we propose five traits which contribute to students' propensities to achieve the "highest good" (i.e., flourish) in mathematics: (1) positive emotions toward mathematics; (2) engagement in mathematics; (3) community in mathematics; (4) meaning in mathematics; (5) perceived competence in mathematics. Thus, we argue that one productive aim of mathematics education is to support students in fulfilling each of these traits, which ultimately leads to flourishing in mathematics. To supplement our theoretical stance, we offer suggestions for measuring flourishing as an aim. We close this short paper by describing the implications that such an aim might suggest for pedagogy, policy, and research.

Searching for the Directions of Open Mathematics Education (열린수학교육의 방향 탐색)

  • 정영옥
    • Journal of Educational Research in Mathematics
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    • v.8 no.2
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    • pp.405-423
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    • 1998
  • This study aims to reflect the origin and the meaning of open education and to derive pedagogical principles for open mathematics education. Open education originates from Socrates who was the founder of discovery learning and has been developed by Locke, Rousseau, Froebel, Montessori, Dewey, Piaget, and so on. Thus open education is based on Humanism and Piaget's psychology. The aim of open education consists in developing potentials of children. The characteristics of open education can be summarized as follows: open curriculum, individualized instruction, diverse group organization and various instruction models, rich educational environment, and cooperative interaction based on open human relations. After considering the aims and the characteristics of open education, this study tries to suggest the aims and the directions for open mathematics education according to the philosophy of open education. The aim of open mathematics education is to develop mathematical potentials of children and to foster their mathematical appreciative view. In order to realize the aim, this study suggests five pedagogical principles. Firstly, the mathematical knowledge of children should be integrated by structurizing. Secondly, exploration activities for all kinds of real and concrete situations should be starting points of mathematics learning for the children. Thirdly, open-ended problem approach can facilitate children's diverse ways of thinking. Fourthly, the mathematics educators should emphasize the social interaction through small-group cooperation. Finally, rich educational environment should be provided by offering concrete and diverse material. In order to make open mathematics education effective, some considerations are required in terms of open mathematics curriculum, integrated construction of textbooks, autonomy of teachers and inquiry into children's mathematical capability.

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The Evaluation on the Execution Results of Middle School Educational Officials' Promotion Policy in Busan Metropolitan City (부산광역시 중등학교 교육공무원 승진정책의 집행결과 평가)

  • Kwon, Hyug-Dong
    • Journal of Fisheries and Marine Sciences Education
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    • v.18 no.2
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    • pp.98-107
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    • 2006
  • This study has been made to see how much the execution results of the promotion policy for middle school teaching staffs succeeded for education development. The objects of the study are 70 physical education teachers in middle school in Busan, 2005, and the method is through questionnaires. The aim of the study is to grasp the propriety, the suitability, the effectiveness, the efficiency and the correspondence on the execution results of the promotion policy of middle schools' educational officials, and to refer to them at the policy. The conclusions are as follows:1. As to the propriety of promotion policy, it shows to have 65.8% support, so the aim selection proves not to be much unreasonable. 2. As to the suitability, it shows to have 52.5% support, so the selection of the policy ways for practicing the policy aim proves to be a little unsuitable. 3. As to the effectiveness, it shows to have 70.7% support, and the rate of support is the highest of the change factors of evaluation, so it proves to be very successful in the achievement of policy aim. 4. As to the efficiency, it shows to have 63.8% support, so the policy drive activity proves to be inefficient. 5. As to the correspondence, it shows to have 46.2% support, and it is the lowest mark of the change factors of evaluation. Therefore it proves that the favor-receiver, the physical education teachers have very low degree of good feeling.

The Aims of Education in the Era of AI (21세기 인공지능시대에서의 교육의 목적)

  • Ree, Sangwook;Koh, Youngmee
    • Journal for History of Mathematics
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    • v.30 no.6
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    • pp.341-351
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    • 2017
  • In the 21st century, the era of artificial intelligence, it is demanded to make a change of the paradigm of education by the recent impact of the 4th industrial revolution. The education up to now has emphasized knowledge, meanwhile the human resources for the future are required to be armed with four C's: critical thinking, creativity, communication and collaboration capability, rather than being equipped with just knowledge. That is because the future society demands such abilities, especially the creativity of each individual. At this point, we are asked to consider the aim of education and teaching methods. In school education, students are to be respected and considered able to develop their potentials by themselves. They shouldn't be estimated by tests in the process of learning as they are now. We reconsider the aim of education here by taking a look at Whitehead's opinions and the present educational situations.

A Study on Required Interior Space in a Preschool for Children's Education Process (유아 교육 과정 영역에 따른 유치원 실내 소요 공간 구성에 관한 연구)

  • 이상호;박준영;우경덕
    • Korean Institute of Interior Design Journal
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    • no.19
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    • pp.83-90
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    • 1999
  • The aim of this study to present useful information on effective space composition by understanding education process of a preschool for children's education and required interior space for this process. The 6th education process of a preschool as the criteria on this study would be classified into 5 spheres as follows : Health life, Social life, Expression life, Language life. survey life. And the required interior space would largely be classified into interesting sphere and home sphere. As a result of analyzing the space composition, we can draw conclusion as follows : First, the interior spaces for properly doing children's education process have close relations. So, each sphere too independent or too unified is not good. That is to say, each sphere has closely organic connection for enhancing efficiency. Secondly, children's service spaces are considered to in children's education process. And the space had better be made for children only considering their physical states. Finally, we have to in advance process. And the space had better be made for children only considering their physical states. Finally, we have to in advance understand educational aim and program because space composition can be changed according to the aim of education process.

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Two Aims of Medical Humanities Education: Good Doctors and Happy Doctors (인문사회의학 교육의 두 목표: 좋은 의사, 행복한 의사)

  • You, Hojong
    • Korean Medical Education Review
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    • v.17 no.2
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    • pp.51-56
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    • 2015
  • Recently, medical humanities education has begun to take up an increased proportion of the Korean medical curriculum. Many people now agree that not only basic medicine and clinical medicine but also medical humanities is needed in medical education. The aims of medical humanities education should dawn now. 'Medical humanities' can be roughly defined as "the interdisciplinary study and activity at the intersection of the humanities, social science, arts, and medicine." People tend to assume that the aim of medical humanities education is to produce good doctors, that is, physicians who contribute to society. Actually, cultivating good doctors is one of the proper aims of medical humanities education. In addition to it, another aim of medical humanities education should be cultivating happy doctors. Nowadays, many of Korea's physicians feel unhappy. In such a situation, medical humanities education should be aimed at developing happiness in medical trainees.

An Improvement of the Computer Curriculum of the Middle School through the Analysis of 2007 Revised Curriculum (2007개정 교육과정 분석을 통한 중학교 컴퓨터 교육과정 개선)

  • Ha, Tai-Hyun;Shin, Dong-Sook
    • Journal of Digital Convergence
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    • v.7 no.2
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    • pp.21-33
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    • 2009
  • The aim of this study is to find out problems between the '7th National Curriculum' and '2007 Revised National Curriculum' that would initially apply from 2009 and then to suggest better ways to improve computer education in Middle schools. A survey was carried out with a questionnaire. Based on the result, a comparison was made and a suggestion has been derived: Firstly, the computer subject should not be treated as a rival to others anymore, rather it should be considered as an essential subjects. Secondly, teachers who take computer subjects as their major should be allocated to middle schools. Thirdly, computer subjects should be taught systematically from elementary and be continued throughout in order to promote the level of the computer science education. Fourthly, the advantages of computer utilisation should be taken into account to layout the computer curriculum that is practicable and learner-centered. Finally, teachers should recognise the main aim of computer education and teach computer subjects to be useful in education. Though the revised version is not perfect the more the curriculums are revised, the better they might be expected to be developed. Consequently, whenever the newly revised computer curriculum emerges, the defects should be identified and addressed in order to achieve the aim of the computer curriculum.

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An Analysis on the Factors that Causes the Difference between Teachers and Students on the Perception of the Laboratory Class Aims in Elementary School (초등학교 과학 수업에서 교사와 학생 간에 과학 실험 목적 인식의 차이가 발생하는 원인 분석)

  • Lim, Jae-Keun;Lee, So-Ri;Kim, Ju-Young;Yang, Il-Ho
    • Journal of Science Education
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    • v.34 no.2
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    • pp.359-368
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    • 2010
  • The purpose of this study was to find out the factor that causes the difference on understanding the aim and perception of laboratory activities between teachers and students. For this study, in-depth interview was conducted for sixth grade students and teachers of 10 classes. The questionnaire of the interview can be divided into 3 sections: the aim of laboratory activities, whether teachers present the aim of laboratory activities, the method of laboratory class progress and the evaluation method. The factors that bring about the difference between the teachers and the students on perception of the aim are the absence of proper guidance on the aim of laboratory activities, the laboratory classes that the progress out of teachers' intention and evaluation method that is the performed without any relationship with the aim of the laboratory activities. Because the teacher-intended aim of laboratory activities is not properly presented, students can't percept the accurate aim. Even though teachers recognize the importance of the improvement of science process skill acquired through laboratory activities, this is not delivered practically in the class and students also can't percept the importance of science process skill.

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A Study of Intrinsic Values in Dewey's Educational Aim (듀이 교육목적의 내재적 가치에 대한 탐구)

  • Kwon, Jeong-Son;Heo, Gyeong-Seop;Kim, Hoy-Yong
    • Journal of Fisheries and Marine Sciences Education
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    • v.25 no.5
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    • pp.1088-1101
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    • 2013
  • The purpose of this study is to investigate intrinsic values with respect to the nature of aim from the viewpoint of Dewey. The intrinsic values have been recognized as values independent of activities or the content that preexist before embodied into activities. But from the perspective of Dewey, intrinsic values can be revealed only through the activity. Because they are inherent in the activities. Dewey suggested that the educational aim that is influenced by the traditional metaphysics should be meaningless in that it is given from outside and not related to human activities. The educational purpose that influenced by modern metaphysics and contemporary theories also can be regarded external, because the content and value of learning are assumed ahead activities. In the view of Dewey, the concepts of values are exposed through activities, so they can not exist independently. According to his own metaphysics that organism and its environment interact each other, all values c an be formed only in the course of activities. Thus, the intrinsic value of Dewey is a process per se, as the intrinsic value cannot be assumed ahead activities but can be exposed through activities. Bringing meaning to life through experience is Dewey's concept of growth as an educational aim. Education under such a purpose, would give the foundation to cultivate talent who are creative, proactive and communicate with their neighbors as a member of a democratic society.