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한국학교수학회논문집 [Journal of the Korean School Mathematics Society]

간행물 정보
  • 자료유형
    학술지
  • 발행기관
    한국학교수학회 [The Korean School Mathematics Society]
  • pISSN
    1229-0890
  • 간기
    계간
  • 수록기간
    1998 ~ 2025
  • 등재여부
    KCI 등재
  • 주제분류
    자연과학 > 수학
  • 십진분류
    KDC 410 DDC 510
창간호 (22건)
No
1

발간사

김승동

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.1-2

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

2

Digital時代의 2進法의 價値

이화영

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.3-8

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

3

남북한 수학교육과정의 통합문제

강행고, 신현성

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.9-18

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

4

수학과 컴퓨터

이영환

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.19-28

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

5

논리회로를 이용한 추론지도

박기석, 이덕호

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.29-34

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

We proposed the teaching method about the logical inference in highschool using Logic Network. This method that we proposed is better than Vendiagram method because that is able to represent the more conditions in plane. The contents of this paper explained the method that conclusion is drived from given conditions using Logic Network. And we gave some examples of the process of logical inference.

6

탐색전 자료분석과 학교수학에서의 통계지도

김응환

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.35-45

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This paper will present some basic and simple graphical methods of exploratory data analysis for the instrument of data analysis at school mathematics. Human beings perceive visual patterns more readily than patterns in collections of numbers. This is especially important in exploratory data analysis because pictures dramatically reveal things that we did not expect to find in the data set. Here are graphical methods as the stem and leaf plot, the box plot, the star plot and the face plot. These methods impulse the motivation of students in real life. And the subject can be taught in secondary school with several applications. Also It is important for students to get a feel for working with and manipulating data before studying the more theoretical aspects of statistics.

7

數學班 클럽 活動 資料의 開發과 그의 活用에 관한 연구

김승동, 김권호

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.47-57

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This thesis is a research to develop mathematical problems related to every day life, and to apply to mathematical extracurricular activity. The conclusions are as followings; (1) The materials of mathematical extracurricular activity totaling 34 hours' class time were developed and its theaching methods were thought out. (2) Through studying the mathematical problems related to everyday life, we could create a lively atmosphere in the classroom. (3) Through studying the mathematical problems related to everyday life, we could change the learning attitude of students affirmatively and make the students solve the problems for themselves. (4) We could try to build up to the management of mathematical extracurricular activity.

8

初 · 中 · 高校 確率 · 統計의 효율적인 指導에 關한 硏究

오후진, 유병대

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.59-67

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

Probability and statistics is an important section in mathematics which is deeply related to everyday living, natural science and social science. In spite of its importance, many students will throw away it because it becomes very harder as its step(stage) deepens and probability and statistics' relative importance is very small in Korea-SAT(the test of college entrance in Korea). Therefore, by analyzing the involvement carefully between the curriculum in the elementary, middle, high school and the text book, by studying the problem and improvement direction, it is necessary to investigate an effective teaching method. This study intends to give the students the confidence, interests, and accomplishment motive about probability and statistics field and to make a rational and creative decision-making through mathematical speculation by proposing an effective teaching method through analyzing an existing facts in school's probability and statistics field. The contents of this study are composed of four chapters. Chapter three looks into the mathematical curriculum in the elementary, middle, high school and its teaching meaning, the outline of contents, some tips on teaching and problems and presents an effective and concrete teaching method on the basis of the theoretical background in the chapter two. Chapter four is a conclusive part and gives the general improvement and intentional direction in educating the probability and statistics.

9

오일러의 생애와 업적에 관한 연구

노영순, 강덕기

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.69-79

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

My suggestions to the teachers on the basis of my research are as follows: 1. A mathematical curriculum in high school requires an intuitive understanding. I'm sure we can not only improve the student's intuition and imagination by Euler's insight and intellectual investigation, but also induce motive and interest in mathematical learning by increasing the inquiry activities. Therefore, I suggest that we take advantage of teaching aids available from this research by processing the units in the mathematical textbook. 2. We can feel the beauty of mathematics by Euler's symbols and simple formulas. We must take pride in teaching mathematics because the mathematical insight is very useful in the inqury process. 3. We have to model ourselves after Euler's spirit of inquiry and energetic activities.

10

인터넷용 중학교 수학과 학습자료 개발

박달원, 이광희

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.81-88

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This article is that we develop a learning materials using on the internet in middle school mathematics. We construct the learning database of middle school mathematics that can be used on the internet and develop the java program for understanding the conceps of mathematics. We service the hompage at internet address (http://math.kongju.ac.kr).

11

TIMSS에 대한 소개와 TIMSS가 한국 수학교육에 주는 시사점

박만구, 전경순, 정인철

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.89-96

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The purpose of this paper was to introduce 'The Third International Mathematics and Science Study'(TIMSS) to the mathematics education society in Korea, and to address current discussion about the TIMSS from the view of three Korean authors who are currently enrolled in an American university. This paper consisted of three parts: (1) The structure and organization of the TIMSS, (2) The analyses on test items from three populations of student groups, curricula and textbooks, questionnaires from students and teachers, video study, and case studies, (3) The discussion of various perspectives for mathematics education in Korea. The authors pointed out that the TIMSS was not just an international comparison study designed for ranking each of the 41 participating countries, but a study providing some insights for Korean mathematics education.

12

정적분 단원에 관한 CAI프로그램 개발 연구

우제환

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.97-109

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The activities of teaching and learning are to try to reach the lesson object most closely in many ways. Considering that the lesson objects are to get the principle or law of a concept, to acquire the mathematical function, to master it through repeated exercises and to solve mathematical problems, we need many ways to reach such objects. Among the many ways, we can first think of one: the students will learn with curiosity and according to their own ability or advancing level in learning when teachers study and prepare necessary contents enough in advance by using computers, showing the right program to learners' needs. For example, defining definite integral by measuration by parts will help understand measuration by parts well and know the meaning of definite integral correctly, In teaching and learning by the use of this program, the educational effects are expected as follows. 1. It is thought that this program will stimulate the desire for and interest in learning because it used animation and acoustic effect. And voluntary and positive thinking activity will be shown. 2. It is expected that the conviction of formulas will be got and the concept of definite integral will be remembered firmly by showing how to measure the width of circle with the use of measuration by parts in various other ways instead of the ways used at present. 3. It is expected that students will feel the pleasure of mathematics in life when they recognize mathematical facts scattered really in our life rather than mathematical difficulties. 4. It is expected that the repeated review of programs already designed will remove the fear of incomplete parts and help review again. 5. It is certain that positive attitude in life will be formed as teacher-centered class is changed into learner-centered class and unwilling study is changed into self-oriented study. However, I think this program is insufficient for humanbeing-centered education given directly in contact with students on the ground of the variety in mathematical education and applications in many ways. And mechanically inhuman computers leave some solutions to be desired

13

數學問題解決 遂行에서의 메타認知에 대한 考察

유승욱

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.111-119

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

So far the studies on mathematical problem-solving education have failed to realize the anticipated result from students. The purpose of this study is to examine the reasons from the metacognitional viewpoint, and to think of making meta-items which enables learners to study through making effective use of the meaning of problem-solving and through establishing a general, well-organized theory on metacognition related to mathematic teaching guiedance. Metacognition means the understanding of knowledge of one's own and significance in the situation that can be reflection so as to express one's own knowledge and use it effectively when was questioned. Mathematics teacher can help students to learn how to control their behaviors by showing the strategy clearly, the decision and the behavior which are used in his own planning, supervising and estimating the solution process himself. If mathematics teachers want their students to be learners not simply knowing mathematical facts and processes, but being an active and positive, they should develop effective teaching methods. In fact, mathematics learning activities are accomplished under the complex condition arising from the factors of various cognition activities. therefore, mathematical education should consider various factors of feelings as well as a factor as fragmentary mathematical knowledge.

14

學習缺捐 補充을 위한 學習資料 開發 · 活用에 관한 硏究

이병길

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.121-130

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The purpose of this study is to enhance the achievement in mathematics by developing compensatory learning materials and applying those to learning. The conclusions of this study are as follows. 1. Solving the learning tasks by cooperative learning guided instruction to learning by students from teaching by teacher, and it made learning effective and students cooperative in personal-relation 2. Learning materials for compensating learning deficit made students motivated and interested in mathematics, and active in learning. 3. By applying the learning materials for compensating prerequisite learning deficit, students could grasp learning contents and learning tasks, and their achievement could be enhanced. On the basis of problems which appeared in the progress of this study, the suggestions are as follows. 1, The necessity of mathematics in agricultural high schools should be recognized by students and various learning materials should be developed. 2. In cooperative learning, the roles of team-chiefs have a great influence on learning mood and problem-solving processes, they, therefore, must be directed beforehand so that they play the roles of leaders.

15

모델링을 活用한 問題의 硏究 - 一般數學을 中心으로 -

김동현

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.131-138

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The aims of mathematical education are to improve uniformity and rigidity, and to apply to an information age which our society demands. One of the educational aims in the 6th educational curriculum emphasizes on the expansion of mathematical thought and utility, But, The change of contents in the text appears little. This means that mathematical teachers must actively develop the new types of problems. That the interests and concerns about mathematics lose the popularity and students recognize mathematics burdensome is the problems of not only teaching method, unrealistically given problems but abstractiveness and conceptions. Mathematical Modeling is classified exact model, almost exact theory based model and impressive model in accordance with the realistic situation and its equivalent degree of mathematical modeling. Mathematical Modeling is divided into normative model and descriptive model according to contributed roles of mathematics. The Modeling Applied Problems in the present text are exact model and stereotyped problems. That the expansion of mathematical thought in mathematics teaching fell into insignificance appears well in the result of evaluating students. For example, regardless of easy or hard problems, students tend to dislike the new types of mathematical problems which students can solve with simple thought and calculation. The ratings of the right answer tend to remarkably go down. If mathematical teachers entirely treat present situation, and social and scientific situation, students can expand the systematic thought and use the knowledge which is taught in the class. Through these abilities of solving problems, students can cultivate their general thought and systematic thought. So it is absolutely necessary for students to learn the Modeling Applied Problems.

16

自作問題 發表方式이 數學科 學力伸張에 미치는 影響

류재환

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.139-149

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The purpose of this study is to check out whether the method that students make problems and anouence them to both students and teacher in the next class influence on the students' intersts, attitudes, logical thinking ability and lerning achievement in mathematics. The following is the experimental design and procedure. First, the author divided students into two groups. One is the experimental group and the other is the control group. These two groups' students consist of the advanced level, the intermediate level and the elementary level according to the students' learning proficiency Second, the author used the different teaching method between the experimental group and the control group. The author gave the experimental group's students the learning assignment problems according to their three levels and made students present the problems to the instructor and classmates in the next class. On the other hand, the author gave the control group's students learning assignment problems according to their three levels, and made them only submit their assingment to the instructor. The results of this study are as follows : 1)The method of solving and presenting the self-made problems on the basis of the informations to solve the given preceding model learning problems according to students' levels made students' learning attitudes more positive even though the method couldn't enhance the students' interests in mathematics. 2)The method of solving and presenting the self-made problems was effective to improve the logical thinking ability for especially the intermediate level's students among the three levels. In addition, the intermediate level's students showed great positive changes in their improvements of the learning achievment. It is assumed that this result is caused by two major factors(reasons). One is students' confidence that they can solve the fundamental problems without difficulty. And the other is students' desire to solve the problems of the intermediate level or more advanced level.

17

중학교 수학과 CAI 프로그램 개발 연구 - 이차함수의 그래프를 중심으로 -

장세민

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.151-163

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

In mathematics education, teaching-learning activity can be divided largely into the understanding the mathematical concepts, derivation of principles and laws, acquirement of the mathematical abilities. We utilize various media, teaching tools, audio-visual materials, manufacturing materials for understanding mathematical concepts. But sometimes we cannot define or explain correctly the concepts as well as the derivation of principles and laws by these materials. In order to solve the problem we can use the computer. In this paper, character and movement state of various quadratic function graph types can be used. Using the computers is more visible than other educational instruments like blackboards, O.H.Ps., etc. Then, students understand the mathematical concepts and the correct quadratic function graph correctly. Consquently more effective teaching-learning activity can be done. Usage of computers is the best method for improving the mathematical abilities because computers have functions of the immediate reaction, operation, reference and deduction. One of the important characters of mathematics is accuracy, so we use computers for improving mathematical abilities. This paper is about the program focused on the part of "the quadratic function graph", which exists in mathematical curriculum the middle school. When this program is used for students, it is expected the following educational effect. 1, Students will have positive thought by arousing interests of learning because this program is composed of pictures, animations with effectiveness of sound. 2. This program will cause students to form the mathematical concepts correctly. 3. By visualizing the process of drawing the quadratic function graph, students understand the quadratic function graph structually. 4. Through the feedback, the recognition ability of the trigonometric function can be improved. 5. It is possible to change the teacher-centered instruction into the student-centered instruction. For the purpose of increasing the efficiencies and qualities of mathmatics education, we have to seek the various learning-teaching methods. But considering that no computer can replace the teacher′s role, tearchers have to use the CIA program carefully.

18

高等學校 問題解決 능력 신장을 위한 敎授 學習 방법 硏究

김용규

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.165-174

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This is the study on a teaching method for improving problem-solving ability in mathematics. If this method is performed step by step in solving problems, learners can approach problems in a variety of ways. This step-by-step teaching method will create some changes among learners. The purpose of this experiment was to determine what effects resulted from this method, especially which effects arose in the affective areas of learning math. For the experiment, learning materials were divided into 73 parts. And the subjects, who are low-leveled and have negative attitudes towards mathematics, were divided into two groups. One group was exposed to this method for four months (treatment group), and the other group(control group) was not. According to the result, though there were few changes, the treatment group came to be more interested in math than before and also negative attitudes towards math were reduced gradually, as compared with the control group. In this study, three factors were investigated: interest in math, attitudes toward math, and learning -achievement in math. Significant changes were found in two factors: interest in math and learning-achievement in math. No significant changes were found in the area of attitudes towards math. In conclusion, if this method is adopted and performed regularly, it is likely that the problem-solving skills will be improved and the negative attitudes towards math will be reduced.

19

Van Hiele 理論에 依한 實業系 高等學生들의 幾何 水準 考察

정영철

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.175-184

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

The purpose of this study is that the Van Hiele theory can be applied to even vocational high school students. Through the comparison of Van Hiele level distribution of middle school students and high school students, it is that the aims of this study is to study the geomatric level of vocational high school students and to analize them, even so it can be to find for them the effective method of Geomatric education The subject of study is three kinds of vocational high school - commercial high school, industrial high school, fisheries high school - boys (240), girls (120) in Boryeong city, Chungchong Nam Do. We referred to Kim Mi-cheong′ thesis(1994) and Cheong Yean-sok′s thesis(1992) and compared my result with them. The method and the process of the study were based on the th method of CDASSG project. And we used Van Hiele Level Test as an instrument of measurement. We got the following conclusion as the result of the study 1. The 86% of the subject of the study was applied to the theory of Van Hiele - "Any students can reach level n just through level n-1." Even so the propriety of the theory proved to be from this study again. 2. The 88% of the subject of the study is applicable to below level 2. So if the proof is introduced to them in the class, it was very difficult for them to understand it. 3. The geometric level of vocational high school students is the same as the second grade of middle school. But we think to be desirable that a basic concept puts first in importance through recomposed teaching materials, because 68% of the students is seldom changed at level 1.

20

中學校의 近似값 指導를 위한 敎授-學習 資料 硏究

조성범

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.185-196

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This study is undertaken to clarify the evolution of the mathematics regarding the ratio, square root, trigonometric ration which are dealing by approximate value according to the curriculum of Korean Middle School and its subsequent growth of methods for attaining the approximate value. Furthermore a brief survey has been thought for assessing the significance of the core of approximate value and its utility which will be given a guide line to many young learners. I'd better teach these historical background to the students and it makes clear the approximate value and the content about the approximate value. This research should help to improve the student's ability of solving a problem by making them think it mathematically through the life and the effort of the mathematician.

21

協力學習을 통한 數學科 學力伸張에 관한 硏究

이상구

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.197-205

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This study aims to examine how cooperative teaming of small ability level groups influences the enhancement of their scholastic achievement in mathematics. The conclusions are as follows; 1. The students which participate in cooperative learning in small ability level groups demonstrate academic improvement over those that participate in non-cooperative learning groups. 2. In particular, this method is more effective for high-level classes, than for middle or low-level students. 3. The learners' perception, interest and attitude towards mathematics has not changed through their placement in small ability groups involved in cooperative activities.

22

입회원서

한국학교수학회 한국학교수학회논문집 창간호 1998.11 pp.206-207

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

 
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