• Title/Summary/Keyword: Inguiry

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SDR(Software Defined Radio) - FCC의 Nol(Notice of Inguiry)에 대한 SDR 포럼 의견서를 중심으로 -

  • 이서영;김재명
    • TTA Journal
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    • s.72
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    • pp.137-145
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    • 2000
  • 본 고에서는 지난 3월 FCC가 발표한 NOI(Notice of Inquiry)에 대한 SDR포럼 의견을 분석$\cdot$정리하였다. 지면관계상 전체 27개의 질문가운데 SDR기술 현황에 관한 5가지의 질문에 대한 SDR포럼 의견을 분석하였다. 아울러 지난 9월 파리에서 열린 제20회 SDR 포럼 회의결과에 대해서도 간단히 언급하였다.

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Evaluation of Inquiry Activities in High School Biology Curricula of Korea (제5차 교육 과정에 따른 고등학교 과학I (상) 생물 교과서의 탐구 활동에 대한 분석)

  • Chung, Kun-Sang;Hur, Myung
    • Journal of The Korean Association For Science Education
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    • v.10 no.1
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    • pp.77-94
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    • 1990
  • The Inquiry Activities the newly developed Korean High Schol Biology Textbooks were evaluated using SIEI(Seientific Inquiry Evaluation Inventory). The textbook evaluated are five Introductory Biology books and five Advanced Biology books developed in 1990. The instrument, SIEI, was developed by Myung Hur in his doctoral study at Columbia University in 1984. The major findings of the study are summarized below. 1. The inquiry activities in the textbooks are focusing on the low level science process skills 2. Students are rarely asked to formulate a hypothesis or to design an experiment. 3. The structure of the Inguiry Activities are mostly competitive, thus inhibiting the inquiry achievement of students. 4. The Inquiry Indices of the textbooks are between 14 and 16, meaning only 14 to 16 percent of the total instructional time are to be devoted to inquiry activities.

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Analysis of Inquiry Activity of the 7th Grade Science Textbook Based on the 7th Curriculum (7차 교육과정에 따른 7학년 교과서의 탐구활동 분석 -물질 영역을 중심으로-)

  • Jongseok Park;Jaehyun Kim;Haiil Ryu
    • Journal of the Korean Chemical Society
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    • v.47 no.1
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    • pp.67-71
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    • 2003
  • The present study examined the inquiry type, process, and context of activities presented in the matter field of the 7th grade science textbook based on the 7th curriculum. It was to investigate for educational suggestions in instruction and development of science textbook. Three units of ‘three states of matter', ‘motion of molecule', ‘the state change and energy' were analyzed. The result indicated that the types, processes and skills, and context of inquiry were not balanced, and learners should be educated with complementary inquiry activities. It is proposed that the inquiry activities presented in science textbooks be examined, and the framework to evaluate inquiry activities be reflected on the standard of science textbook authorization for development of the science textbook to accord with aims and objectives of curriculum.

An Analysis of the Competency Exam for College Education : Area of Science Inguiry (대학수학능력시험 실험 평가 문제의 분석 : 과학 탐구를 중심으로)

  • Kim, Eun-Jin;Kim, Young-Soo
    • Journal of The Korean Association For Science Education
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    • v.12 no.1
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    • pp.75-92
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    • 1992
  • The purpose of this study was to point out the problems of the competency exam for college education, a new college entrance exam, and to suggest the improvement ideas for it For this purpose, the test items of science inquiry were taken from the first, the second and the third pilot studies of the competency exam for college education which National Institute of Educational Evaluation had done. These tests were administered to 1,223 students of the general high school(422 for the 1st 400 for the 2nd, and 401 for the 3rd test). Also, those students' and the high school science teacher's opinions about the tests and the new college entrance exam were surveyed. The evaluation objectives of those test items were analyzed and the test item analyses were done. The results were as follows; (1) The evaluation objective analysis showed that most of the test The purpose of this study was to point out the problems of the competency exam for college education, a new college entrance exam, and to suggest the improvement ideas for it For this purpose, the test items of science inquiry were taken from the first, the second and the third pilot studies of the competency exam for college education which National Institute of Educational Evaluation had done. These tests were administered to 1,223 students of the general high school(422 for the 1st, 400 for the 2nd, and 401 for the 3rd test). Also, those students' and the high school science teacher's opinions about the tests and the new college entrance exam were surveyed. The evaluation objectives of those test items were analyzed and the test item analyses were done. The results were as follows; (1) The evaluation objective analysis showed that most of the test items were constructed based on the evaluation framework which was composed of scientific inquiry thinking ability, science concept, and scientific inquiry context dimensions. But, those items were unevenly distributed into a few areas of the evaluation framework. (2) The boys had higher mean scores than the girls in all of the tests, but these differences were not statistically significant. The natural science course students had significantly higher mean than the humanities course students in all of the test:(1st, F=12.643, p=0.0004 ; 2nd, F=45.757, p=0.0001 ; 3rd, F=36.162, p=0.0001). A significant interaction of sex and course was found in only 1st test( F=11.352. p=0.0008). (3) Most students answered the test was difficult and they needed more time to finish it Also, they added they had to study in a different way from the traditional one in order to prepare the new college entrance exam. Science teachers answered that those evaluation objectives of the tests corresponded well with the educational objectives of high school science and that the tests were suitable as measuring instruments of the scientific thinking abilities. But they pointed out it would be very difficult for them to teach students for preparing the exam under the exsting educational conditions. To carry out successfully the competency exam for college education, the following improvements were suggested. (1) Good evaluation methodology should be developed. (2) In-service science teacher training models on evaluation should be put in force. (3) Effective teaching models and strategies should be developed.(4) The high school science curriculum should be revised.

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