• Title/Summary/Keyword: Instructional Strategy

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Online face-to-face instructional design model for Software Education using Virtual Classroom (버추얼 클래스룸을 활용한 소프트웨어교육 온라인 대면 교수 설계 모형)

  • Seo, SeongChae;Kim, Chul
    • Journal of The Korean Association of Information Education
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    • v.26 no.1
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    • pp.75-84
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    • 2022
  • Currently, education is being conducted through face-to-face classes and instructional design using blended learning, an integrated online and offline model that utilizes online characteristics. As the paradigm of education has changed from face-to-face classes to non-face-to-face classes since COVID-19, teaching methods to respond to changes are required in the educational field. In this paper, as a instructional design model using online, we proposed a instructional design model that conducts online classes in non-real time and then conducts online face-to-face classes using virtual classrooms in real time. In addition, a teaching strategy that can apply the online face-to-face teaching design model using the proposed virtual class room to software classes was presented. The proposed instructional design model will be able to prepare for a paradigm shift in education with a teaching design that can accommodate the characteristics of face-to-face education online.

The Instructional Effect of a Four-stage Problem Solving Approach Visually Emphasizing the Molecular Level of Matter upon Students' Conceptions and Problem Solving Ability (물질의 분자 수준을 시각적으로 강조하는 4단계 문제 해결식 수업이 학생의 개념과 문제 해결 능력에 미치는 효과)

  • Noh, Tae-Hee;Moon, Kyung-Moon
    • Journal of The Korean Association For Science Education
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    • v.17 no.3
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    • pp.313-321
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    • 1997
  • The purpose of this study was to investigate the instructional effect of a four-stage problem solving approach visually emphasizing the molecular level of matter upon students' conceptions and problem solving ability. On the basis of the research results regarding molecular representation in learning chemistry, problem-solving instruction, and the effect of visual materials, the instructional strategy was developed while considering Korean educational situations. The treatment and control groups (2 classes) were selected from a girls' high school in Seoul and taught about stoichiometry, gas, liquid, solid, and solution for 13 weeks. For the treatment group, 52 charts were supplied in order to emphasize the molecular level of matter and/or 4 stage problem solving strategy-understanding, planning, solving, and reviewing. For the control group, traditional instruction was used. Before the instructions, the Group Assessment of Logical Thinking and the Spatial Ability Test were administered, and their scores were used as covariate and blocking variable, respectively. After the instructions, students' conceptions and problem solving ability were measured by the Chemistry Conceptions Test (CCT) and the Chemistry Problem Solving Ability Test (CPSAT), respectively. The results indicated that the CCT scores of the treatment group were significantly higher than those of the control group. The students in the treatment group also exhibited less misconceptions than those in the control group. However, there was not significant difference for the CPSAT scores. No interaction with students' spatial ability was found for both students' conceptions and problem solving ability. Educational implications are discussed.

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Development of the Interdisciplinary - Multistrategic Science Education Program(IMSEP) for the Education of the Gifted in Science (과학 영재 교육을 위한 통합교과적-다중교수전략적 과학 교육 프로그램(Interdisciplinary - Multistrategic Science Education Program: IMSEP) 및 예시의 개발)

  • 배혜경;김훈;안정훈;배새벽;김용주;박선미;심재영;박은영;김충기
    • Journal of Gifted/Talented Education
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    • v.13 no.1
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    • pp.21-42
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    • 2003
  • The Interdisciplinary-Multistrategic Science Education Program(IMSEP) is designed as an efficient program for the education of the gifted in science. An example of the contents is developed, which encompasses mathematics, physics, chemistry, astronomy, and biology. In the program, the complexity(interdisicplinarity) of scientific contents and instructional strategies used to deliver the scientific contents are designed to be correlated to each other in such a way that as the scientific contents gets more complex, the scientific skill to be taught by the instructional strategy becomes deeper. Through the careful balance between the scientific contents and the instructional strategies student's scientific knowledge and scientific skill will develop balanced and the effectiveness of science education will be maximized.

Ethical Teaching/Learning Methods of Science (과학의 윤리적 특성 교수-학습 방법)

  • Choi, Kyung-Hee;Cho, Hee-Hyung
    • Journal of The Korean Association For Science Education
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    • v.23 no.2
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    • pp.131-143
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    • 2003
  • This study addresses the plan and methods of teaching/learning ethical aspects of science in the secondary schools, which were developed by the authors based on their 3 year research on ethical aspects of science and its teaching/learning. The general teaching/learning plan is composed of the instructional objectives of teaching/learning ethical aspect of science, its teaching/learning method and strategies, curricular content, and assessment. The article also attempted to describe a few words of care to keep in mind when apply the model and methods in the science classrooms.

A Study on the Development of a Modular Multimedia Instruction Materials for the 1.earning of Molecular Unit in Nature Instruction of Elementary School (초등학교 자연과의 분자 단원 학습을 위한 모듈식 멀티미디어 교수학습 자료 개발 연구)

  • 박종욱;김도욱
    • Journal of Korean Elementary Science Education
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    • v.19 no.1
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    • pp.101-112
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    • 2000
  • The purpose of this study was to develop the modular multimedia instructional materials emphasizing the particulate nature on the realm of matter in elementary science classes. Features of the material are as follows: 1 To be in focus on particulate model named 'phenomenal magnifying glasses' in order to change the student's belief system of continuous matter into the belief system of particulate matter . The 'phenomenal magnifying glasses' is a new instructional strategy designed to change into the view of particulate matter through facilitating the reflective thinking resulted from the simultaneous consideration of experimental phenomena(macroscopic world) and particulate model(microscopic world). 2. To introduce modular system into the instructional materials, which was consisted of 14 subunits according to the sequential instruction unit of 'molecule and molecular motion'. Each subunit was composed of 5 types of modules(module 1: motivation, module 2: experimental result, module 3: discussion, module 4: phenomenal magnifying glasses, module 5: related experiment) 3. The multimedia program was composed of 36 kinds of experimental animation and 59 kinds of computer animation materials combined with text resources, photographic materials and sounds.

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Analysis of Learners' Satisfaction in Web-based Instructional Development for Expanding Thinking Power (사고력 신장을 위한 웹 기반 수업방식의 학습자 만족도 분석)

  • Kim, Mi-Ryang;Lee, Joung-Hak
    • Journal of The Korean Association of Information Education
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    • v.7 no.3
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    • pp.275-283
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    • 2003
  • Web-based instructional system gives us the greatest potential for supporting face-to-face classroom instruction in many ways. With the help of the Web in high school setting, all of the participants including teachers can share many different experiences, active interactions, and even learning outcomes. In this paper, web-based instructional strategy based on constructivism for extending the geographical thought is suggested. The results from the formative assessment, as well as the statistical results from regression analysis concerning the learners' satisfaction, are also provided.

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An Analysis on Contents Related to Problem Solving in the 7th Elementary Mathematics Curriculum and Instructional Materials (문제해결과 관련된 제7차 초등학교 수학과 교육과정 및 교과용 도서 분석)

  • Pang, Jeong-Suk;Kim, Sang-Hwa
    • School Mathematics
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    • v.8 no.3
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    • pp.341-364
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    • 2006
  • This paper analyzed contents related to problem solving in the 7th elementary mathematics curriculum in conjunction with main changes in the next curriculum under discussion. This paper then provided detailed analyses of textbooks and workbooks in terms of principal contents, problem solving strategies, content areas, and problem types in order to look closely at how such instructional materials would put the vision of the curriculum into action. It is expected that many issues and suggestions stemming from the analyses will serve basic information to develop next curriculum and its concomitant instructional materials in a way to fostering students' problem solving ability.

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The Future of Flexible Learning and Emerging Technology in Medical Education: Reflections from the COVID-19 Pandemic (포스트 코로나 시대 플렉서블 러닝과 첨단기술 활용 중심의 의학교육 전망과 발전)

  • Park, Jennifer Jihae
    • Korean Medical Education Review
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    • v.23 no.3
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    • pp.147-153
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    • 2021
  • The coronavirus disease 2019 (COVID-19) pandemic made it necessary for medical schools to restructure their curriculum by switching from face-to-face instruction to various forms of flexible learning. Flexible learning is a student-centered approach to learning that has received interest in many educational sectors. It is a critical strategy for expanding access to higher education during the pandemic. As flexible learning includes online, blended, hybrid, and hyflex learning options, learners have the opportunity to select an instruction modality based on their needs and interests. The shift to flexible learning in medical education took place rapidly in response to the COVID-19 pandemic, and learners, instructors, and schools were not prepared for this instructional change. Through the lens of the technology acceptance model, human agency, and a social constructivist perspective, I examine students, instructors, and educational institutions' roles in successfully navigating the digital transformation era. The pandemic has also accelerated the use of advanced information and communication technologies, such as artificial intelligence and virtual reality, in learning. Through a review of the literature, this paper aimed to reflect on current flexible learning practices from the instructional design and educational technology perspective and explore emerging technologies that may be implemented in future medical education.

Development of Sound Design Strategies for Promoting Self-regulated Learning Behaviors in Mobile Learning Environments

  • KIM, Taehyun
    • Educational Technology International
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    • v.13 no.1
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    • pp.101-144
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    • 2012
  • Students mostly precede their learning without any direct support of instructor in e-learning and mobile educational environment. Many useful strategies and tools to facilitate self-regulated learning behaviors in e-learning environment have been introduced, yet, the limit has been reached by only suggesting self-regulated strategies with visual information in the most researches. Accordingly, this research is intent to propose the sound design strategies that facilitate learner's self-regulated learning behaviors in mobile learning environment. To achieve the objective of the research, two research questions are presented. First, what are the sound design strategies that facilitate the self -regulated learning behaviors in mobile learning environment?. Second, what are the results of evaluating the developed sound design strategies in terms of facilitating self-regulated learning behaviors?. To solve these research questions, the literature reviews on characteristics of mobile learning, concepts and features of self-regulated learning and sound were done to establish the sound design strategies. Through formative research method targeting instructional designers, sound design strategies were modified and supplemented. The research to validate these was performed and to verify the effect of the derived sound design strategies, the usability test aimed at instructional designer and learners was conducted. The final sound design strategies through this research process were six general design strategies and the sixteen detailed strategies. This research is meaningful because this offers the basic research on sound information design which has been lacking and help upgrade the upper limit of instructional design which mainly focused on visual information in mobile learning environment that shows information in a small screen.

The Effect of the Environmental Education Strategy through Personalization of Environment (자기 환경화를 통한 환경교육 전략의 효과)

  • 이선경;장남기
    • Hwankyungkyoyuk
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    • v.5 no.1
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    • pp.71-88
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    • 1993
  • This study was conducted to develop and effective strategy for environmental education. At first, the environmental education strategy through personalization of environment was proposed. Then students in a middle school participated the program according to the strategy and its. effect was investigated. The strategy was designed in basis of the role of the limbic system in brain and involved field-oriented experience such as viewing the non-personal environment as the personal environment. Gokneung stream was selected as the site to conduct this environmental education. Students investigated water quality by senses and biological method. The same content was taught for the classroom group and simple outdoor group selected for the comparison by traditional instructional method. The pre- and post-test by the instrument to test environmental attitude, qualitative questionnaire, cognitive test, the pre- and post-interview were conducted to investigate the effect the program. The achievement of the classroom group(personalization group). But the change of the attitude toward environment of personalization group between pre- and post-test was significantly higher than the classroom group. In qualitative questionnaire and pre- and post-interviews, attitude toward environment differed between two group. The behavioral change to discover and to solve environmental problems was demonstrated in case the personalization group, but was unclear in the classroom group. These results indicated the environmental education strategy through personalization of environment was an effective strategy to change the awareness, attitude and behavior toward the environment compared with a traditional teaching strategy.

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