{"title":"基于工作与能量材料的互动式物理移动学习媒体(PMLM)中理性选择题测试的开发以测量高中生的HOTS","authors":"Mohamad Heru, S. Suparno","doi":"10.30998/FORMATIF.V9I2.3002","DOIUrl":null,"url":null,"abstract":"Received: Revised: Accepted: November 30, 2018 March 12, 2019 March 13, 2019 This research aims to develop a test instrument in form of reasoned multiple choice test in Physics Mobile Learning Media (PMLM) to measure high school students’ HOTS ability. The test instrument developed consists of 20 reasoned multiple choice questions. The validity of the matter conducted by the expert faculty and 5 teachers of physics. Empirical test was conducted on students 250 high school students in serang. The instrument is developed in three steps, which are designing the test, field-testing the test, and assembling the test. The technique of the analysis of the results of the validity of the point about using the criteria Aiken'V. The Empirical test is analyzed by using QUEST and PARSCALE programs. The result of validity test is valid. Based on the empirical test analysis by using the QUEST program, it is found that the 20 items developed are fit to the threshold (INFIT MNSQ) within the range of 0.77 to 1.33. For that reason, the test items are considered valid. Within the items’ difficulty level, there are two question items which exceed the -0.80 to +0.80 threshold, they are the questions number 10 with the value of 1.06 that is in very high difficulty level, and question number 18 with the value of -0.87 that is in very easy difficulty level. Information about items reliability acquired from the PARSCALE program shows that the test instrument developed is more appropriate to be given to respondents with the range of abilities between -2.08 to +2.58. Therefore, the test instrument developed is suitable to measure the students’ HOTS ability.","PeriodicalId":123598,"journal":{"name":"Formatif: Jurnal Ilmiah Pendidikan MIPA","volume":"50 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-06-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"The Development of Reasoned Multiple Choice Test in Interactive Physics Mobile Learning Media (PMLM) of Work and Energy Material to Measure High School Students’ HOTS\",\"authors\":\"Mohamad Heru, S. Suparno\",\"doi\":\"10.30998/FORMATIF.V9I2.3002\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Received: Revised: Accepted: November 30, 2018 March 12, 2019 March 13, 2019 This research aims to develop a test instrument in form of reasoned multiple choice test in Physics Mobile Learning Media (PMLM) to measure high school students’ HOTS ability. The test instrument developed consists of 20 reasoned multiple choice questions. The validity of the matter conducted by the expert faculty and 5 teachers of physics. Empirical test was conducted on students 250 high school students in serang. The instrument is developed in three steps, which are designing the test, field-testing the test, and assembling the test. The technique of the analysis of the results of the validity of the point about using the criteria Aiken'V. The Empirical test is analyzed by using QUEST and PARSCALE programs. The result of validity test is valid. Based on the empirical test analysis by using the QUEST program, it is found that the 20 items developed are fit to the threshold (INFIT MNSQ) within the range of 0.77 to 1.33. For that reason, the test items are considered valid. Within the items’ difficulty level, there are two question items which exceed the -0.80 to +0.80 threshold, they are the questions number 10 with the value of 1.06 that is in very high difficulty level, and question number 18 with the value of -0.87 that is in very easy difficulty level. Information about items reliability acquired from the PARSCALE program shows that the test instrument developed is more appropriate to be given to respondents with the range of abilities between -2.08 to +2.58. 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引用次数: 3
摘要
本研究旨在开发物理移动学习媒体(physical Mobile Learning Media, PMLM)中理性选择题形式的测试工具,以衡量高中生的HOTS能力。开发的测试工具包括20个推理选择题。由专家组和5名物理教师对该问题进行了有效性论证。本研究以雪朗市250名高中学生为研究对象进行实证检验。该仪器的研制分设计、现场测试和组装三个阶段进行。采用艾肯标准对点的有效性结果进行分析的技术。运用QUEST和PARSCALE程序对实证检验进行了分析。效度检验的结果是有效的。利用QUEST程序进行实证检验分析,发现所开发的20个项目在0.77 ~ 1.33的范围内符合阈值(INFIT MNSQ)。因此,测试项目被认为是有效的。在题目的难度等级中,有两个题目的难度值超过了-0.80到+0.80的阈值,分别是难度值为1.06的题目10和难度值为-0.87的题目18,难度值为非常简单。从PARSCALE程序中获得的项目信度信息表明,开发的测试仪器更适合于能力范围在-2.08到+2.58之间的被调查者。因此,所开发的测试仪器适合于测试学生的HOTS能力。
The Development of Reasoned Multiple Choice Test in Interactive Physics Mobile Learning Media (PMLM) of Work and Energy Material to Measure High School Students’ HOTS
Received: Revised: Accepted: November 30, 2018 March 12, 2019 March 13, 2019 This research aims to develop a test instrument in form of reasoned multiple choice test in Physics Mobile Learning Media (PMLM) to measure high school students’ HOTS ability. The test instrument developed consists of 20 reasoned multiple choice questions. The validity of the matter conducted by the expert faculty and 5 teachers of physics. Empirical test was conducted on students 250 high school students in serang. The instrument is developed in three steps, which are designing the test, field-testing the test, and assembling the test. The technique of the analysis of the results of the validity of the point about using the criteria Aiken'V. The Empirical test is analyzed by using QUEST and PARSCALE programs. The result of validity test is valid. Based on the empirical test analysis by using the QUEST program, it is found that the 20 items developed are fit to the threshold (INFIT MNSQ) within the range of 0.77 to 1.33. For that reason, the test items are considered valid. Within the items’ difficulty level, there are two question items which exceed the -0.80 to +0.80 threshold, they are the questions number 10 with the value of 1.06 that is in very high difficulty level, and question number 18 with the value of -0.87 that is in very easy difficulty level. Information about items reliability acquired from the PARSCALE program shows that the test instrument developed is more appropriate to be given to respondents with the range of abilities between -2.08 to +2.58. Therefore, the test instrument developed is suitable to measure the students’ HOTS ability.