会议论文详细信息
International Seminar on Mathematics, Science, and Computer Science Education 2016
Development of Two-Tier Diagnostic Test Pictorial-Based for Identifying High School Students Misconceptions on the Mole Concept
数学;自然科学;计算机科学
Siswaningsih, W.^1 ; Firman, H.^1 ; Zackiyah^1 ; Khoirunnisa, A.^1
Department of Chemical Education, Universitas Pendidikan Indonesia, Jl. Dr. Setiabudi No. 229, Bandung
40154, Indonesia^1
关键词: Avogadro's number;    Chemical equations;    Cronbach's alphas;    Diagnostic tests;    High school students;    Molecular formula;    Senior high school students;    Student misconceptions;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/812/1/012117/pdf
DOI  :  10.1088/1742-6596/812/1/012117
来源: IOP
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【 摘 要 】

The aim of this study was to develop the two-tier pictorial-based diagnostic test for identifying student misconceptions on mole concept. The method of this study is used development and validation. The development of the test Obtained through four phases, development of any items, validation, determination key, and application test. Test was developed in the form of pictorial consisting of two tier, the first tier Consist of four possible answers and the second tier Consist of four possible reasons. Based on the results of content validity of 20 items using the CVR (Content Validity Ratio), a number of 18 items declared valid. Based on the results of the reliability test using SPSS, Obtained 17 items with Cronbach's Alpha value of 0703, the which means that items have accepted. A total of 10 items was conducted to 35 students of senior high school students who have studied the mole concept on one of the high schools in Cimahi. Based on the results of the application test, student misconceptions were identified in each label concept in mole concept with the percentage of misconceptions on the label concept of mole (60.15%), Avogadro's number (34.28%), relative atomic mass (62, 84%), relative molecule mass (77.08%), molar mass (68.53%), molar volume of gas (57.11%), molarity (71.32%), chemical equation (82.77%), limiting reactants (91.40%), and molecular formula (77.13%).

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