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PENINGKATKAN LITERASI SAINS SISWA MENGGUNAKAN TES PISA DENGAN MENERAPKAN PEMBELAJARAN KONTEKSTUAL BERBANTUAN LMS Yolanda, Yaspin; Pribadi, Imam Arif
Pascal: Journal of Physics and Science Learning Vol 9, No 1 (2025)
Publisher : Universitas Islam Sumatera Utara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30743/pascal.v9i1.11161

Abstract

Permasalahan berawal dari rendahnya angka melek sains siswa dan indeks literasi sains siswa tergolong rendah di sekolah. Penelitian ini bertujuan (1). Mengukur literasi sains siswa dan (2) Mengindentifikasi upaya sekolah dalam menimgkatkan literasi sains siswa. Penelitian dilaksanakan dari Januari s.d Mei 2025 melibatkan 48 siswa jenjang SMP di Wilayah Kota Lubuklinggau. Jenis penelitian yakni penelitian kuantitatif eksperimen semu menggunakan One Group Pretest-Posttest Design. Penelitian ini menerapkan model pembelajaran kontekstual berbantuan LMS (Learning Management System) yang dilakukan secara hybrid (daring dan luring) dengan fitur materi PDF, video pembelajaran dan latihan soal-soal PISA. Instrumen yang digunakan berupa tes sains PISA (Programme for International Student Assessment). Pengumpulan data menggunakan observasi, wawancara dan dokumentasi. Analisa data menggunakan uji N-Gain. Hasil penelitian menunjukkan bahwa literasi sains siswa kategori literasi nominal dengan capaian 80%, literasi sains siswa kategori literasi fungsional dengan capaian 80%, literasi sains siswa kategori literasi konseptual/prosedural dengan capaian 75% dan literasi sains siswa kategori literasi multidimensional dengan capaian 70% sehingga rata-rata nilai N-Gain sebesar 0,82 kategori tinggi. Selanjutnya berdasarkan hasil FGD bersama guru menghasilkan upaya sekolah dalam meningkatkan literasi sains siswa dengan cara (1). Memperbanyak latihan-latihan soal PISA tahun sebelumnya. (2). Menerapkan strategi pembelajaran yang berpusat pada siswa, melibatkan siswa dalam kegiatan ilmiah. (3). Memanfaatkan teknologi informasi dan mengintegrasikan materi menggunakan lingkungan belajar yang mendukung untuk mengaitkan sains dengan kehidupan sehari-hari. (4). Meningkatkan pengetahuan dan keterampilan guru melalui pelatihan menyusun soal -soal berbasis literasi sains.
GAMIFIKASI PEMBELAJARAN PERUBAHAN IKLIM MENERAPKAN PROBLEM BASED LEARNING UNTUK MENINGKATKAN LITERASI DIGITAL DAN LITERASI SAINS Yolanda, Yaspin; Pribadi, Imam Arif
Pascal: Journal of Physics and Science Learning Vol 9, No 1 (2025)
Publisher : Universitas Islam Sumatera Utara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30743/pascal.v9i1.11121

Abstract

Penelitian ini bertujuan mengukur literasi digital dan literasi sains mahasiswa dengan menerapkan gamifikasi pembelajaran berbasis masalah (PBL). Sampel penelitian melibatkan 30 mahasiswa mahasiswa Pendidikan fisika Universitas PGRI Silampari di semester V yang diambil secara Purposive Sampling yang mengambil mata kuliah media pembelajaran di semester genap. Penelitian selama satu semester dari Agustus 2024 s.d. Januari 2025. Jenis penelitian deskriptif. Teknik pengumpulan data menggunakan triangulasi yakni tes literasi digital, tes literasi sains, survey dan wawancara. Selanjutnya data hasil temuan di deskripsikan berdasarkan tahap indentifikasi kebutuhan, tahap reduksi data, tahap penyajian data dan tahap simpulan. Untuk mengukur peningkatan kompetensi literasi digital mahasiswa menggunakan uji N-Gain Skor. Hasil asesmen awal dan akhir penelitian menunjukkan bahwa terdapat (1). Peningkatan literasi digital mahasiswa dengan N-Gain 0.89 kategori tinggi. (2). Peningkatan literasi sains mahasiswa dengan N-Gain 0.82 kategori tinggi. Sehingga gamifikasi pembelajaran berbasis masalah mampu meningkatkan literasi digital dan literasi sains mahasiswa. Selanjutnya gamifikasi pembelajaran berbasis Problem Based Learning mampu keterlibatan mahasiswa dalam menemukan solusi, sehingga mereka lebih aktif, termotivasi dan bertanggung jawab atas proses pembelajaran.
TRANSFORMATION SCIENCE CLASSES WITH ARTIFICIAL INTELLIGENCE AND THE TRADITION OF “SEDEKAH BUMI”: LEARNING ABOUT RENEWABLE ENERGY IN CONTEXT Yolanda, Yaspin; Pribadi, Imam Arif
Jurnal Ilmiah Ilmu Terapan Universitas Jambi Vol. 10 No. 1 (2026): Volume 10, Nomor 1, February 2026
Publisher : LPPM Universitas Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22437/jiituj.v10i1.45003

Abstract

The lack of scientific literacy among students requires teachers to design interesting lessons and foster students' curiosity about renewable energy. Physics lessons based on ethnoscience through the tradition of “Sedekah Bumi” integrated with Artificial Intelligence are expected to improve scientific process skills. The objectives of this study are (1) to determine the validity of the worksheets in relation to students’ learning barriers, and (2) to determine the improvement in students’ scientific process skills. This study involved 40 students from a senior high school. The research was conducted from April to November 2025. The type of research used was Design Research, consisting of the Preparing for the Experiment, Design Experiment, and Retrospective Analysis stages. Implementation in 3 cycles through Lesson Study between researchers, physics teachers, and students collaborating to design renewable energy learning tools in the form of lesson plans and worksheets. Data collection instruments used tests, questionnaires, observation sheets, and interview guidelines. Data analysis was descriptive with a quantitative mix of tests and reanalyzed qualitatively from the results of interviews, observations, and documentation. The results of the study show (1). Worksheets based on the results of material validation, curriculum of 0.92 (Highly Valid), media validation of 0.89 (Highly Valid) and lesson study expert validation of 0.90 (Highly Valid). (2). The average increase in students' science process skills was 0.83, which is in the high category. Further research is recommended to develop renewable energy modules assisted by Artificial Intelligence through biomass waste to improve students’ science literacy.
Artificial Intelligence assisted Renewable Energy Case Based Learning Integrated with Science Process Skills and Digital Literacy Yolanda, Yaspin; Arini, Wahyu; Fauziah, Anna; Effendi, Effendi; Pribadi, Imam Arif
Jurnal Penelitian dan Pengkajian Ilmu Pendidikan: e-Saintika Vol. 9 No. 2 (2025): July
Publisher : Lembaga Penelitian dan Pemberdayaan Masyarakat (LITPAM)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36312/e-saintika.v9i2.3050

Abstract

The lack of understanding and interest among students in learning science and the scarcity of energy are very interesting topics to study using case-based learning. The novelty lies in the use of Case Based Learning and Artificial Intelligence related to renewable energy. The objectives of the study are (1) to identify the Hypothetical Learning Trajectory (HLT) of renewable energy based on learning barriers, and (2) to measure scientific process skills and digital literacy. The sample consisted of 120 high school students in Lubuklinggau. The research design was a Lesson Study approach. Implementation occurred over two cycles in collaboration with teachers to design renewable energy learning materials, including lesson plans (RPP), Student Worksheets (LKPD) 1 and 2. AI tools used included Padlet, Kahoot, and Cap Cut. Data collection involved documentation, observation, and interviews. Data analysis was conducted using quantitative descriptive methods. Learning difficulties were identified in students' inability to conduct investigations, analyze data, and communicate graphs effectively. LKPD 1 and 2 were found to be highly valid with a validity test score of 0.92, making them suitable for use. Additionally, there was an increase in students' average science process skills by 0.87, categorized as high, and digital literacy by 0.88, categorized as highly skilled. Its contribution lies in integrating digital LKPD that is easy to access and engaging due to AI integration. Furthermore, the LKDP developed involves students conducting experiments and field observations to measure the efficiency of biomass stoves fueled by rice husks, wood chips, and LPG stoves. Another interesting finding is that students with low abilities experienced a very high increase in digital literacy. The next step is to develop diagnostic test instruments for science literacy, digital literacy, and learning modalities.