基于谷歌地球道路分类的地理信息课程路线分析学习模块

Sunar Rochmadi, Bening Jannati Rupi, Nuryadin Eko Raharjo, Nur Hidayat, Wisnu Rachmad Prihadi, Rudi Nur Syamsudin
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引用次数: 0

摘要

由于地理信息学课程的学习资源有限,学生成绩不高,因此开展这项研究对于提高地理信息学课程中专项学习活动的质量非常重要。本研究旨在开发基于谷歌地球道路分类的路线分析学习模块。本研究采用 Thiagarajan 研发(R&D)模式,即 4D 设计。数据收集技术采用问卷调查的方式,根据材料专家、媒体专家和用户的反馈揭示产品的有效性。本研究的成果是采用 4D 研发模式进行的产品开发,包括以下阶段:(1)定义,即基于地理信息学学科能力的需求,特别是在操作谷歌地球应用程序方面的需求;(2)设计,包括四个学习活动,使用 A4 纸大小和 12pt Arial 字体;(3)开发,完成后的验证结果来自材料专家,总计 122 分,平均分为 4.用户可行性结果为 3666 分,平均分为 4.52 分(非常可行);(4)传播阶段,将学习模块分发给地理数学课程的讲师,并将开发的产品上传到 Google Drive 作为学习媒体。本研究的意义将为学习活动提供变革,学习模块的存在有望改善学生的学习成果。
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ROUTE ANALYSIS LEARNING MODULE BASED ON GOOGLE EARTH ROAD CLASSIFICATION FOR GEOMATICS COURSE
Due to limited learning resources and low student grades in the Geomatics course, it is very important to carry out this research to improve the quality of special learning activities in the Geomatics course. This research aims to develop a route analysis learning module based on Google Earth Road Classification. This research uses the Thiagarajan Research and Development (R&D) model, known as 4D design. The data collection technique uses a questionnaire to reveal the validity of the product based on material experts, media experts, and user responses. The result of this research is a product development using a 4D R&D model with stages (1) defining, which refers to needs based on competency in Geomatics subjects, especially in operating the Google Earth application; (2) design, which includes four learning activities on A4 paper size and 12pt Arial font; (3) development, which was completed with validation results from material experts totaling 122 scores with an average of 4.07 (suitable); from media experts, 201 scores with an average of 4.28 (very appropriate); as well as the development stage. user feasibility results of 3666 scores with an average of 4.52 (very feasible); (4) the dissemination stage, which is carried out by distributing learning modules to lecturers in geomatics courses and uploading the products developed to Google Drive to be used as learning media. The implications of this research will provide changes to learning activities, and the existence of learning modules is expected to improve student learning outcomes.
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