NEEDS ANALYSIS OF INTEGRATED DIMENSIONS OF KNOWLEDGE AND COGNITIVE PROCESS LEVEL ON CIRCULAR MOTION MATERIALS FOR PHYSICS LEARNING IN SENIOR HIGH SCHOOL
{"title":"NEEDS ANALYSIS OF INTEGRATED DIMENSIONS OF KNOWLEDGE AND COGNITIVE PROCESS LEVEL ON CIRCULAR MOTION MATERIALS FOR PHYSICS LEARNING IN SENIOR HIGH SCHOOL","authors":"Illyyum Maryumi, A. Putra","doi":"10.24036/12271171074","DOIUrl":null,"url":null,"abstract":"The competencies that students need from each learning in school are the increase in knowledge and changes in attitudes in line with improving their thinking processesHowever, the facts in the field, educators still find various obstacles in analyzing competencies to implement this integration, which is indicated by the description of teacher learning tools that impact the quality of student knowledge competency achievement. The purpose of this research is to produce an analysis model of the integration of the dimensions of Knowledge and Cognitive Process Levels in Circular Motion material for High School Physics Learning, which is poured into the resulting learning device products. This research is included in Research And Development (R and D) by applying the ADDIE model (Analysis, Design, Development, Implementation, and Evaluation), which is only reduced to the development stage. This study involved 6 product validators, 3 UNP Physics Education lecturers as experts, and three education practitioners from physics teachers in Pesisir Selatan Regency. The results of data analysis after product refinement obtained the percentage of device validation values generated for lesson plans, teaching materials, and evaluation instruments according to a team of experts and a team of practitioners, respectively, with final scores of 68.48 and 74.86, which are theoretically included in the valid category. Thus this product can be used in high school physics learning to get the results of the field feasibility test on the aspects of practicality and effectiveness.","PeriodicalId":176296,"journal":{"name":"PILLAR OF PHYSICS EDUCATION","volume":"26 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-07-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"PILLAR OF PHYSICS EDUCATION","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.24036/12271171074","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract
The competencies that students need from each learning in school are the increase in knowledge and changes in attitudes in line with improving their thinking processesHowever, the facts in the field, educators still find various obstacles in analyzing competencies to implement this integration, which is indicated by the description of teacher learning tools that impact the quality of student knowledge competency achievement. The purpose of this research is to produce an analysis model of the integration of the dimensions of Knowledge and Cognitive Process Levels in Circular Motion material for High School Physics Learning, which is poured into the resulting learning device products. This research is included in Research And Development (R and D) by applying the ADDIE model (Analysis, Design, Development, Implementation, and Evaluation), which is only reduced to the development stage. This study involved 6 product validators, 3 UNP Physics Education lecturers as experts, and three education practitioners from physics teachers in Pesisir Selatan Regency. The results of data analysis after product refinement obtained the percentage of device validation values generated for lesson plans, teaching materials, and evaluation instruments according to a team of experts and a team of practitioners, respectively, with final scores of 68.48 and 74.86, which are theoretically included in the valid category. Thus this product can be used in high school physics learning to get the results of the field feasibility test on the aspects of practicality and effectiveness.
学生从学校的每次学习中所需要的能力是知识的增加和态度的改变,与思维过程的改善相一致。然而,在这一领域的事实是,教育工作者在分析能力以实现这种整合方面仍然发现各种障碍,这从影响学生知识能力成就质量的教师学习工具的描述中可以看出。本研究的目的在于建立高中物理圆周运动教材中知识维度与认知过程水平维度整合的分析模型,并将这些维度整合到最终的学习设备产品中。本研究采用ADDIE模型(Analysis, Design, Development, Implementation, And Evaluation)纳入研究与开发(r&d),仅简化到开发阶段。本研究涉及6名产品验证者,3名UNP物理教育讲师作为专家,以及3名来自Pesisir Selatan Regency物理教师的教育从业者。经过产品精化后的数据分析结果,分别得到了专家团队对教案、教材、评估工具产生的器械验证值的百分比,最终得分为68.48分,从业者团队对评估工具产生的器械验证值为74.86分,理论上属于有效范畴。从而将该产品应用于高中物理学习中,在实用性和有效性方面得到了现场可行性测试的结果。