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Journal : EDUSAINS

DEVELOPMENT OF SETS-BASED CHEMISTRY LEARNING E-MODULES (SCIENCE, ENVIRONMENT, TECHNOLOGY, SOCIETY) ON COLLIGATIVE PROPERTIES OF SOLUTIONS Rahmawati Maharni; Burhanudin Milama; Rizqy Nur Sholihat
EDUSAINS Vol 13, No 2 (2021): EDUSAINS
Publisher : Faculty of Education and Teacher Training, UIN (State Islamic University) Syarif Hidayatul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15408/es.v13i2.21753

Abstract

DEVELOPMENT OF SETS-BASED CHEMISTRY LEARNING E-MODULES (SCIENCE, ENVIRONMENT, TECHNOLOGY, SOCIETY) ON COLLIGATIVE PROPERTIES OF SOLUTIONSAbstractThis study aims to produce an e-module for learning chemistry based on SETS (Science, Environment, Technology, Society) on the colligative properties of solutions, and to find out students' responses to the e-module. This study uses a 4-D model (define, design, development, and disseminate) which is limited only to the development stage. The instruments used in this research are needs analysis questionnaire, student analysis questionnaire, module content validation sheet, and student response questionnaire sheet. The validation of the content of the module was carried out by 2 instructional review experts and 1 practitioner. Based on the validator's assessment, a valid and worthy module was produced to be tested. The e-module trial phase was carried out on 35 students of class XII MIPA at SMAN 4, South Tangerang City. Based on the student response questionnaire, obtained a percentage of 82.5% in the SETS-based learning aspect which is included in the very good category. Overall, there was a positive response to the developed e-module with an average percentage of 82.93% which was included in the very good category and was suitable for use as a medium and source of learning in the learning process.AbstrakPenelitian ini bertujuan untuk menghasilkan e-modul pembelajaran kimia berbasis SETS (Science, Environment, Technology, Society) pada materi sifat koligatif larutan, serta mengetahui tanggapan siswa terhadap e-modul tersebut. Penelitian ini menggunakan model 4-D (define, design, development, dan disseminate) yang dibatasi hanya sampai tahap development. Instrumen yang digunakan dalam penelitian ini yaitu angket analisi kebutuhan, angket analisis peserta didik, lembar validasi isi modul, dan lembar angket respon siswa. Validasi isi modul dilakukan oleh 2 orang ahli kajian instruksional dan 1 orang praktisi. Berdasarkan penilaian validator, dihasilkan modul yang valid dan layak untuk diuji coba. Tahap uji coba e-modul dilakukan terhadap 35 orang siswa kelas XII MIPA di SMAN 4 Kota Tangerang Selatan. Berdasarkan angket respon siswa, diperoleh presentase sebesar 82,5% pada aspek pembelajaran berbasis SETS yang termasuk kedalam kategori sangat baik. Secara keseluruhan, diperoleh respon positif terhadap e-modul yang dikembangkan dengan presentase rata-rata sebesar 82,93% yang termasuk dalam kategori sangat baik dan layak digunakan sebagai media dan sumber belajar dalam proses pembelajaran.
THE INFLUENCE OF PROBLEM BASED LEARNING MODEL TOWARD SAINS LITERACY ‎SKILL OF STUDENT ON REACTION RATE MATERIALS Dede Fitriani; burhanudin milama; dedi irwandi
EDUSAINS Vol 9, No 2 (2017): EDUSAINS
Publisher : Faculty of Education and Teacher Training, UIN (State Islamic University) Syarif Hidayatul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15408/es.v9i2.1402

Abstract

This study was aimed to know the effect of problem-based learning model on the ability of students scientific literacy in reaction rate material. Scientific literacy that is examined in this study only on competency dimension of science. This research was conducted at SMAN 8 South TangerangCity. The method used was quasi-experimental with nonequivalent control group design. The sample was taken byusing purposive sampling technique. The data was taken by using an essay test of scientific literacy ability in competency dimension of science. The analysis of data used is t-test that obtained tcountvalue totaled 8.27 and ttable on significant level0.05is 1.99, so that thetcount>ttable. So we can concludethat Ho was refuse. This indicatesthatthe application of problem-based learning model provides a significant impact on the ability of students scientific literacy in reaction rate material. Keywords: Problem Based Learning Model; Scientific Literacy; Competency Dimension of Science; reaction Rate. 
DEVELOPMENT OF E-BOOKLET BASED ON PROBLEM BASED LEARNING ON ACID BASE MATERIAL FOR PROBLEM SOLVING ABILITY Burhanudin Milama; Safina Adiliyah; Dila Fairusi
EDUSAINS Vol 15, No 1 (2023): EDUSAINS
Publisher : Faculty of Education and Teacher Training, UIN (State Islamic University) Syarif Hidayatul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15408/es.v15i1.32239

Abstract

Teaching materials are a source of learning for students. For this reason, efforts are needed to develop teaching materials that accommodate the needs of students in terms of ease of access, attractive presentation, and encouraging student activity. This research focuses on the development of electronic booklets (e-booklets) using the "problem-based learning (PBL)" model on acid-base materials. Research and Development (R&D) with the 4-D model consisting of define, design, and develop was used as this research method, but dissemination stages were not conducted because of limited research time. 34 purposively selected students of SMAN 21 Bekasi City were given a questionnaire to determine the need for e-booklet development at the define stage. Meanwhile, the questionnaire that had been developed at the development stage was validated by 4 experts. After the instrument was deemed feasible, the e-booklet was tested on 34 purposively selected students. The research findings showed that the percentage of the results of the trial of teaching materials to students was 81.53% with very good criteria. This study concludes that the teaching materials developed are suitable for use as a learning resource for students in solving problems on acid-base materials.