An augmented reality‐facilitated question‐prompt‐interaction‐evaluation approach to fostering students' case‐handling competence in technical and vocational education.

Background: Cultivating students' problem‐solving knowledge and skills in the workspace has been regarded as a primary goal in technical and vocational education. To this end, students are usually guided to complete the learning of workspace knowledge and skills by following the question, prompt, in...

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Publicado en:Journal of Computer Assisted Learning Vol. 40; no. 6; pp. 3187 - 3201
Autor principal: Chang, Chun‐Chun
Formato: pictorial research tables/charts Journal Article
Publicado: Wiley-Blackwell Dec2024
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Dec2024
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      pub: Wiley-Blackwell
      place: Malden, Massachusetts
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        10.1111/jcal.13063
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        atl: An augmented reality‐facilitated question‐prompt‐interaction‐evaluation approach to fostering students' case‐handling competence in technical and vocational education.
      aug:
        au: Chang, Chun‐Chun
        affil: Department of Nursing, Chang Gung University of Science and Technology, Taoyuan City, Taiwan
      sug:
        subj:
          Augmented Reality
          Vocational Education
          User-Computer Interface
          Problem Solving
          Skill Acquisition
          Student Performance Appraisal
          Human
          Male
          Female
          Young Adult
          Quasi-Experimental Studies
          Experimental Studies
          Self Concept
          Confidence
          Judgment
          Memory
          Descriptive Statistics
          Analysis of Covariance
          Data Analysis Software
          kappa Statistic
          Technology Utilization
          T-Tests
          Male
          Female
      ab: Background: Cultivating students' problem‐solving knowledge and skills in the workspace has been regarded as a primary goal in technical and vocational education. To this end, students are usually guided to complete the learning of workspace knowledge and skills by following the question, prompt, interaction and evaluation (QPIE) procedure. Objective: In conventional instruction, when teachers present questions of real cases to students, most of the class time is spent on the demonstration of relevant techniques and prompts. Meanwhile, trainers in conventional classrooms often have to guide multiple students simultaneously, making it challenging to provide individual guidance. Therefore, the present study proposed an AR (Augmented Reality)‐based QPIE training mode. Method: To show the effectiveness of the proposed mode, this study recruited two classes of students from a technological university as the participants, and conducted an experiment using a unit of a professional training course. One class of 22 learners adopted the AR‐QPIE training mode, while the other class of 22 learners used the conventional QPIE (C‐QPIE) training mode. Results and Conclusions: The results revealed that the AR‐QPIE training mode enhanced learners' learning achievement, self‐confidence, and several dimensions of learning perceptions more than the C‐QPIE training mode. Besides, in terms of the evaluation of case‐handling performance, the AR‐QPIE training mode could also significantly enhance learners' memory, comprehension, judgement, and calculation abilities in comparison with the C‐QPIE training mode. Yet, no significant differences in the application abilities could be found between the two groups. The proposed training mode of this study could train learners' case‐handling performance, and improve their self‐confidence in the workspace. Lay Description: What is already known about this topic?: Cultivating students' problem‐solving knowledge and skills in the workspace has been regarded as a primary goal in technical and vocational education.Instructors in conventional classrooms often have to guide multiple students simultaneously, making it challenging to provide individual guidance. What this paper adds?: An AR (Augmented Reality)‐based QPIE training mode to foster students' case‐handling competence in technical and vocational education is proposed.An experiment was conducted in a vocational university to evaluate the effects of the proposed approach. Implications for practice and/or policy: The AR‐QPIE training mode has great potential in technical and vocational education in terms of promoting students' learning achievement, self‐confidence, and several dimensions of learning perceptions.It is suggested that more experiments can be conducted to apply the AR‐QPIE training mode to other technical and vocational training courses.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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