• Title/Summary/Keyword: Preservice teacher education

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The Influence of Preservice Teachers' Experience and Beliefs Related to Technology Use in Mathematics Class on Their Technology-related Knowledge (예비 교사의 수학 수업에서 테크놀로지 사용에 관한 경험과 신념이 그들의 테크놀로지 관련 지식에 미치는 영향)

  • Kim, Somin
    • Journal of the Korean School Mathematics Society
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    • v.19 no.4
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    • pp.459-478
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    • 2016
  • With the proven benefits of and increased interest in using technology in education, the role of teachers has become more important in integrating technology into mathematics classroom. Thus, it is important to improve preservice teachers' technological, pedagogical, and content knowledge (TPACK), which are influenced by their beliefs. This study examines how preservice secondary mathematics teachers' experience and beliefs related to technology use in the mathematics classrooms impact their TPACK. The results of this study show that preservice teachers who have more experience using technology and who hold student-centered beliefs towards technology use display higher levels of technology-related knowledge than preservice teachers who have little experience and who hold teacher-centered beliefs. Understanding the relationships between preservice teachers' TPACK and beliefs provides insights into how teacher education programs can support preservice teachers to develop TPACK and integrate technology into their future mathematics instruction.

Teaching Definitions without Definitions: How Can Preservice Teachers Teach Differently? (정의 없이 정의 가르치기: 예비교사는 어떻게 자신이 배웠던 방식과 다르게 가르칠 수 있는가?)

  • Lee, Ji Hyun
    • Journal of Educational Research in Mathematics
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    • v.24 no.3
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    • pp.311-331
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    • 2014
  • For preservice teachers' instrumental-to-relational pedagogical content knowledge transformations, this research designed several didactical tasks based on Kinach's cognitive strategies. The researcher identified preservice teachers' understanding about what is a definition and how to teach it. By challenging their fixed ideas about definitions, the researcher could motivate them to embrace the new teaching approach which guides reinvention of definitions. The PCK development was not the simple process of filling their tabular rasa PCK with theories of mathematics education, but the dialectical process of identifying, challenging, changing and extending preservice teachers' existent PCK. This research will contribute to explore new directions of mathematics teachers' PCK development and the method of teacher education.

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Preservice Biology Teachers' Learning to Teach Science through Science Methods Courses

  • Kim, Sun Young
    • Journal of The Korean Association For Science Education
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    • v.32 no.9
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    • pp.1427-1442
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    • 2012
  • This study tracked the changes of preservice biology teachers' pedagogical knowledge along with science teaching efficacy throughout sequentially developed science methods course I and II over two consecutive semesters. Two courses, science methods course I and II, aimed these preservice teachers to discuss the notion of science teaching with teaching and learning theories, to learn science instructional models, to design lessons utilizing science instructional models, and to eventually implement microteaching. The preservice teachers were mainly engaged in cooperative instructional planning activities through science methods course I, and engaged in cooperative microteaching activities through the science methods course II. This study revealed that preservice teachers successfully developed pedagogical knowledge and science teaching efficacy after two science methods courses. The science methods course I where cooperative instructional planning activities occurred helped the preservice teachers to improve pedagogical knowledge but not science teaching efficacy. Based on their pedagogical knowledge development, then, these preservice teachers increased science teaching efficacy belief after completion of the science methods course II.

Influence of Technology Integration Course on Preservice Teachers' Technological Pedagogical and Content Knowledge (TPACK) (예비교사들의 테크놀로지 내용교수지식 변화에 관한 연구: 테크놀로지 활용 교과목을 중심으로)

  • Shin, Won-Sug;Han, In-Sook;Eom, Mi-Ri
    • Journal of The Korean Association of Information Education
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    • v.16 no.1
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    • pp.71-80
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    • 2012
  • This study aimed to investigate technological pedagogical and content knowledge(TPACK) model, and to apply this model to preservice education. To perform this study, TPACK survey instrument was distributed to 142 preservice teachers who took technology integration course. The result showed that technology and content knowledge improved significantly, and pedagogical and pedagogical content knowledge did not show meaningful differences among 7 sub-categories. Based on the result of this study, we discussed the improvement of technological and content knowledge, and pedagogical knowledge. Also, we suggested that (preservice) teacher education should consider the combination of technological, pedagogical, and content knowledge in Korea.

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Preservice Teachers' Beliefs and Practices: Project Approach in Classroom Context (반성적 사고를 통해 나타난 예비유아교사의 신념과 실천: 프로젝트접근법을 통해)

  • Ahn, Hyo-Jin
    • Journal of the Korean Home Economics Association
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    • v.44 no.2 s.216
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    • pp.13-23
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    • 2006
  • The purpose of this study was to explore 6 preservice teachers's perceptions and practices on children and teaching while they implemented the Project Approach. Using qualitative research, data were collected from individual and group reflections, interviews, classroom observations, and videotaping. Results showed that preservice teachers recognized the importance of observing children in context and the meaning of learning through the Project Approach. Preservice teachers developed their identities through reflective thinking on their theories and practices.

Analysis of Teacher-Students Interactions in the Image of Science Class by Elementary Preservice Teachers (초등학교 예비교사들의 과학 수업 이미지에 나타난 상호작용 분석)

  • Jeon, Kyungmoon
    • Journal of Science Education
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    • v.43 no.3
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    • pp.318-328
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    • 2019
  • The purpose of this study is to investigate the teacher-students interactions shown in the images of elementary science class by preservice teachers. We applied nine analysis criteria in three domains such as emotional support (climate, regard for student perspectives, teacher sensitivity), classroom organization (instructional learning formats, behavior management, productivity), and instructional support (quality of feedback, language modeling, concept development) in the aspects of positive or negative interactions The results show that majority of student-teachers tended to prefer positive interactions especially regarding instructional learning formats or concept development. For the image of avoided class, they tended to show negative interactions related to instructional learning formats or regard for student perspectives. However, they showed extremely lower frequencies for some categories of negative interactions. Female preservice teachers tended to have slightly higher frequencies for some positive interactions than their counterpart. The findings indicate possible approaches to teachers' professional development and further research.

Influence of Video Clip-based Pedagogical Reasoning Activity on Elementary Preservice Teachers' Science Lesson Planning (비디오 클립을 활용한 교육적 추론 활동이 초등 예비교사의 과학 수업 계획에 미치는 영향)

  • Song, Nayoon;Yoon, Hye-Gyoung
    • Journal of Korean Elementary Science Education
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    • v.43 no.1
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    • pp.170-184
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    • 2024
  • This study focused on the practical research needed to improve elementary school science lesson plans. Specifically, a video clip-based pedagogical reasoning activity that included elementary student misconceptions was presented and the influences of this activity on preservice teachers' science lesson planning were assessed. First, the eight preservice teacher participants were asked to write a lesson plan for a dissolution and solution unit, after which a first semi-structured interview was conducted. Then, the participants participated in a video clip-based pedagogical reasoning activity. Based on the activity results, the participants revised their previously planned lessons, and second semi-structured interviews were conducted. The data from the preservice teachers' lesson plans and interview transcripts were analyzed using a constant comparative method to investigate the lesson plan changes. It was found that after the video clip-based pedagogical reasoning activity, the preservice teacher tightened the activity or changed the material to understand the students' thinking processes. In addition, they supplemented their goals and assessment criteria to accommodate the diverse students' thinking. Some also specified motivational strategies that considered student interests, motivation, and possible misconceptions. However, some preservice teachers still set goals that did not sufficiently account for student misconceptions and some planned the student assessments based only on the learning goals rather than the students' thinking. The few preservice teachers were able to develop motivational strategies that considered interest, motivation, and misconceptions. The preservice teachers claimed that they had difficulty predicting the misconceptions and connecting these to the lesson content. Discussions were then held to assist the preservice teachers to consider possible student misconceptions when planning their lessons.

An Analysis on argumentation structure development of preservice teachers through argumentative writing on earth science related SSI (지구과학 관련 사회적 문제(socio-scientific issue)와 관련된 논증적 글쓰기를 통해 알아본 예비교사들의 논증구조 발달 분석)

  • Wee, Soo-Meen;Yoon, Ji-Young;Lim, Sung-Man
    • Journal of the Korean Society of Earth Science Education
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    • v.7 no.1
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    • pp.11-23
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    • 2014
  • The purpose of this study is to analyze the degree of argumentation structure development and factors of development of preservice teachers through SSI related argumentative writings. The study was conducted with 16 preservice teachers that students taking elementary science education theory class in K university located in Chungbuk. The testees wrote six SSI related argumentative writings (once a week), and we examined the degree of argumentation structure development and the change in the recognition of SSI of the preservice teachers by comparing the writings before and after the experiments. The experimental results showed that argumentation structure of the preservice teachers'writings improved and argument level (argument capability) of them also increased as the number of writing was increased. Factors that affect the argumentation structure improvement are mainly argumentation structure education, a number of writings, feedbacks, and subjects related to SSI. In this aspect, the argumentative writing on SSI has the effect of developing scientific sophistication and enhancing the decision-making power of students, and it has positive impacts in science education.

Preservice Secondary Mathematics Teachers' Situational Understanding of Functional Relationship (중등 예비교사의 함수 관계 상황 표현 능력에 대한 조사 연구)

  • 차인숙;한정순
    • The Mathematical Education
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    • v.43 no.2
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    • pp.199-210
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    • 2004
  • This study investigates 55 preservice secondary mathematics teachers' situational understanding of functional relationship. Functional thinking is fundamental and useful because it develops students' quantitative thinking about the world and analytical thinking about complex situations through examination of the relations between interdependent factors. Functional thinking is indispensable for understanding natural phenomena, for investigation by science, and for the technological inventions in engineering and navigation. Therefore, it goes without saying that teachers should be able to represent and communicate about various functional situations in the course of teaching and learning functional relationships to develop students' functional thinking. The result of this study illustrates that many preservice teachers were not able to appropriately represent and communicate about various functional situations. Additionally, it shows that most preservice teachers have limited understanding of the value of teaching function.

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Preservice Teachers' Beliefs about Integrating Artificial Intelligence in Mathematics Education: A Scale Development Study

  • Sunghwan Hwang
    • Research in Mathematical Education
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    • v.26 no.4
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    • pp.333-349
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    • 2023
  • Recently, AI has become a crucial tool in mathematics education due to advances in machine learning and deep learning. Considering the importance of AI, examining teachers' beliefs about AI in mathematics education (AIME) is crucial, as these beliefs affect their instruction and student learning experiences. The present study developed a scale to measure preservice teachers' (PST) beliefs about AIME through factor analysis and rigorous reliability and validity analyses. The study analyzed 202 PST's data and developed a scale comprising three factors and 11 items. The first factor gauges PSTs' beliefs regarding their roles in using AI for mathematics education (4 items), the second factor assesses PSTs' beliefs about using AI for mathematics teaching (3 items), and the third factor explores PSTs' beliefs about AI for mathematics learning (4 items). Moreover, the outcomes of confirmatory factor analysis affirm that the three-factor model outperforms other models (a one-factor or a two-factor model). These findings are in line with previous scales examining mathematics teacher beliefs, reinforcing the notion that such beliefs are multifaceted and developed through diverse experiences. Descriptive analysis reveals that overall PSTs exhibit positive beliefs about AIME. However, they show relatively lower levels of beliefs about their roles in using AI for mathematics education. Practical and theoretical implications are discussed.