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Pengembangan Media Pembelajaran Berbasis Moodle pada Matakuliah Fisika Dasar Lovy Herayanti; Habibi Habibi; M Fuaddunazmi
Jurnal Cakrawala Pendidikan CAKRAWALA PENDIDIKAN EDISI JUNI 2017, TH. XXXVI, NO. 2
Publisher : LPMPP Universitas Negeri Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (2193.015 KB) | DOI: 10.21831/cp.v36i2.13077

Abstract

Abstrak: Tujuan penelitian ini adalah mengembangkan media pembelajaran berbasis moodle untuk perkuliahan Fisika Dasar. Penelitian dilakukan dengan model pengembangan 4D selama dua tahun. Tahun pertama, penelitian terfokus pada pengembangan platform moodle melalui fase define, design, dan develop. Tahun kedua dilakukan penyempurnaan dengan revalidasi produk dan diseminasi. Pengembangan desain platform moodle dilakukan secara offline dan online menggunakan software moodle versi 2.0. Pengembangan secara offline dilakukan untuk mengatur story board, page navigation, profile setting, administration settings, dan management course setting. Pengembangan secara online dilakukan agar pembelajaran fisika dasar dapat diakses di manapun sehingga mahasiswa dapat belajar lebih mudah dan fleksibel. Hasil pengembanga divalidasikan kepada pakar pembelajaran dan diujicobakan kepada mahasiswa. Pengumpulan data respon dilakukan lewat angket dan tes dan hasilnya dianalisis dengn statistik deskriptif. Hasil validasi pakar untuk silabus, SAP, dan kelayakan ketiganya masuk kategori sangat baik/layak sehingga dapat dinyatakan layak untuk digunakan untuk mendukung proses pembelajaran. mahasiswa juga memberikan respon yang positif terhadap media yang dikembangkan. Kata Kunci: media pembelajaran, moodle, fisika dasarDEVELOPING MOODLE-BASED LEARNING MEDIA FOR BASIC PHYSICS Abstract: This research developsa moodle-based learning media for Basic Physics lecture. It was conducted using 4D development model and took place for 2 years. The first year was focused on developing the moodle platform through defining, designing, and developing phases. The second year was focused on refinement, revalidation, and dissemination. Thedesign of the moodle platform was developed offline and online using moodle software version 2.0. The offline process comprised designing story boards, page navigation, profile settings, administration settings, and management course settings. The platform was then made online so that Basic Physics learning can be accessed anywhere by students easily and flexibly. The results of the development and field tests show that the developed product is feasible to support the learning process. Students respond positively to the moodle-based media. Keywords: Media Learning, Moodle, Basic Physics
Pengaruh Model Pembelajaran Talking Stick terhadap Keaktifan Belajar Siswa Agustina Novitasari Pour; Lovy Herayanti; Baiq Azmi Sukroyanti
Jurnal Penelitian dan Pengkajian Ilmu Pendidikan: e-Saintika Vol. 2 No. 1: December 2018
Publisher : Lembaga Penelitian dan Pemberdayaan Masyarakat (LITPAM)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36312/e-saintika.v2i1.111

Abstract

[Title: The Effect of a Talking Stick Learning Model on Student Learning Activities]. A fun learning environment, active and meaningful for students need to be created by applying active learning model for students that learning model talking stick. This type of research is quasi-experimental. This research aimed to know there is or no effect of talking stick learning model toward students learning activeness. This research implemented in class VIII SMP Negeri 5 Mataram in academic year 2015/2016 from March to April 2016. The technique of sample using cluster random sampling, in order to obtain first-class VIII I totalling 30 students as an experimental class and class VIII E totalling 30 students as the control class. The results of this research are students’ activeness learning showed by using the instrument is activeness of student learning questionnaire. Based on data analysis showed that t-test was 8.28 and t- table was 2.000 (df = 58). So, t-test > t-table (8.28 > 2.000). This means that there is an effect of talking stick learning model toward students learning activeness.
Pengembangan Perangkat Pembelajaran Berbasis Masalah Meggunakan Media Moodle Untuk Meningkatkan Keterampilan Berpikir Kritis Mahasiswa Pada Materi Gelombang Lovy Herayanti; Syifaul Gummah; Bq Azmi Sukroyanti; Gunawan Gunawan; Muh. Makhrus
Jurnal Pendidikan Fisika dan Teknologi (JPFT) Vol 4 No 2 (2018): Juli-Desember 2018
Publisher : Department of Physics Education, Universitas Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (512.861 KB) | DOI: 10.29303/jpft.v4i2.803

Abstract

E-learning is learning process through electronic media, especially internet. E-learning enables learners to learn or possess science no matter when and where. The goal of this study was to develop Moodle in problem-based learning in order to improve learners’ critical thinking skills. . The study was a research and development (R&D) study conducted in four stages, i.e. preliminary study, developing design, testing Moodle as media for problem-based learning, and result dissemination. Subjects of this study were students of physic education program of Faculty of Mathematics and Science Education of IKIP Mataram who enrolled in Wave course. Data on critical thinking skills is collected through tests, where tests have been validated by experts. The results of the study indicate an increase in students' critical thinking skills. Moreover, students gave positive response towards the use of Moodle developed as media in problem-based learning.
Students’ Problem-Solving Skill in Physics Teaching with Virtual Labs Gunawan Gunawan; Ni Made Yeni Suranti; Nina Nisrina; Lovy Herayanti
International Journal of Pedagogy and Teacher Education Vol 2 (2018): IJPTE Focus Issue July 2018
Publisher : Fakultas Keguruan dan Ilmu Pendidikan, Universitas Sebelas Maret, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (232.697 KB) | DOI: 10.20961/ijpte.v2i0.24952

Abstract

Problem-solving is a high-level ability to find solution to a problem. In the problem-solving process, students have to identify and understand the problems, plan the solutions, execute the plans and review the resolution process. This ability is needed by students to produce meaningful knowledge. This article discusses the effect of virtual labs in physics learning toward student’s problem-solving abilities. The improvement of problem-solving skills was analyzed in each step of the solution process. This quasi-experimental study was conducted at three different senior high schools. There were 165 students participating in this study, all of whom were divided into three experimental groups and three control groups. The research instrument used was five to eight questions of essay test. The results showed that the problem-solving ability of the experimental group was higher than that of the control group at each school. The analysis of each problem-solving step showed that, in each school, the students' ability to identify and define the problem and also to establish goals and objectives show a similar result. Students have an excellent ability in identifying problem up to plan for problem-solving, whereas for the step of analyzing the choice of ideas and step to follow up of problem-solving overall still need to be improved. Students who are unable to complete a particular problem-solving step will not be able to complete the next step well.
Blended Learning Based Inquiry Collaborative Tutorial Model for Physics Students Lovy Herayanti; Wahono Widodo; Endang Susantini; Gunawan Gunawan
JPPS (Jurnal Penelitian Pendidikan Sains) Vol. 8 No. 2 (2019)
Publisher : Universitas Negeri Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26740/jpps.v8n2.p1676-1683

Abstract

Blended learning is basically a combination or mixture found in learning practice. Blended learning is a further development of the e-learning method, namely learning methods that combine e-learning systems with conventional or face-to-face methods. The purpose of this study was to determine the validity of the models and learning devices both in terms of content and model constructs, as well as to find out student responses to the model developed. The model developed was validated through a forum mechanism, namely, focus group discussion (FGD) which was followed by researchers and experts. The suggestions and improvements generated from the validation activities were then followed up to revise the Inquiry Collaborative Tutorial-based blended learning model. Inquiry Collaborative Tutorial-based blended learning model and learning devices developed in this study have met valid criteria in content and construct. Valid content because there are elements of need and novelty, as well as valid constructs because there is consistency between parts of the model and there is relevance between the models developed with learning theories that underlie it. In general, the average student responds positively to the blended learning model based on the Inquiry Collaborative Tutorial. The model applied is considered to provide opportunities for students to actively participate.