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PENGARUH MODEL DISCOVERY LEARNING TERHADAP MOTIVASI BELAJAR DAN HASIL BELAJAR FISIKA SISWA MAN BONDOWOSO Rizka Hartami Putri; Albertus Djoko Lesmono; Pramudya Dwi Aristya
JURNAL PEMBELAJARAN FISIKA Vol 6 No 2 (2017)
Publisher : FKIP Universitas Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/jpf.v6i2.5017

Abstract

The research focused on the influence of discovery learning. The purposes of this research were to reviewing the effect of discovery learning model to student’s learning motivation in MAN Bondowoso and to knew the effect of discovery learning’s model for student’s physics learning outcomes in MAN Bondowoso. The kind of this research was experiment by posttest only control design. Population of the research was class X at Islamic Senior High School Bondowoso. Technique to collect the data were observation, interview, documentation, test and questionnaire. Technique of data analysis were decriptive and Independent Sample t-test with SPSS 16. The result of independent sample t-test to student’s learning motivation showed value 0,0305≤ 0,05. While the result of independent sample t-test to learning outcomes showed value 0,000 ≤ 0,05. Based on that result could be concluded that: (1) discovery learning model significantly took effect to student’ learning motivation in MA; (2) discovery learning model significantly took effect to student’s physics learning outcomes in MA. Keywords: discovery learning model, learning motivation, student’s learning outcome
PENGEMBANGAN MODUL FISIKA BERBASIS KONTEKSTUAL PADA MATERI ALAT-ALAT OPTIK DALAM PEMBELAJARAN DI KELAS X SMAN 3 LUMAJANG Septian Ari Kususa; Sudarti Sudarti; Pramudya Dwi Aristya
JURNAL PEMBELAJARAN FISIKA Vol 6 No 2 (2017)
Publisher : FKIP Universitas Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/jpf.v6i2.4960

Abstract

The purposes of this research are to know the validity and the effectivity of physics-based contextual modules on optical tools material. This type of research is the development, use research design Borg and Gall. The initial product design phase, a module will go through two stages of validation. The first validation phase is experts’ validation and is obtained the validity of 80,66% with valid enough degree of validity. The second validation phase is users’ validation and is obtained the validity of 88% with very valid degree of validity. The next research phase is the initial testing phase, at this stage will be known the audience ratings of the module. Audience validation involved 6 student and got the validity of 84,44% with very valid degree of validity. The last research phase is the research field to determine the effectiveness of the module. The result of the research field show that the module has been declared as effective modules for students, because they have got a score of 70 as much as 94,44%. Based on the result of this study, it can be concluded that the physics-based contextual learning modules developed valid and effective to be used in teaching in schools. Key word : contextual module, optical tools.
Development of Problem Solving E-Modules to Improve Critical Thinking Skills and Learning Outcomes on Human Body Organ System Material Ita Trisna Prasetyaningrum; Pramudya Dwi Aristya; Bevo Wahono
BIOEDUKASI: Jurnal Biologi dan Pembelajarannya Vol. 23 No. 3 (2025): Vol. 23, No. 3, October 2025
Publisher : PROGRAM STUDI PENDIDIKAN BIOLOGI FAKULTAS KEGURUAN DAN ILMU PENDIDIKAN UNIVERSITAS JEMBER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/bioedu.v23i3.53745

Abstract

This study aims to develop a valid, practical, and effective problem-solving-based e-module on the material of the human body organ system. This study uses the Research and Development (R&D) method with the 4D model. The problem-solving-based e-module shows high validity of 91.4%. The developed e-module gets an average percentage of 87.5% with a very practical category in the small class trial and 88.6% in the large class and is declared practical. The e-module developed in the small class gets a learning outcome test and critical thinking skills with an average n-gain score of 0.76 and 0.77 with a high category. In the large class, it gets a learning outcome test and critical thinking skills with an average n-gain score of 0.75 and 0.78 with a high category. Very good criteria are also obtained in filling out the student response questionnaire by producing an average percentage of 87% in the small class and an average percentage of 86% in the large class. Thus, the problem-solving-based e-module on the material of the human body organ system is considered feasible to be used in the learning process.