Suarti Suarti
Universitas Islam Negeri Alauddin Makassar

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PENGARUH MODEL PEMBELAJARAN COOPERATIVE INTEGRATED READING AND COMPOSITION (CIRC) DAN MIND MAPPING TERHADAP KEMAMPUAN BERPIKIR KRITIS PESERTA DIDIK Suarti Suarti; Ilyas Ismail; Ainul uyuni Taufiq
Al-AHYA: Jurnal Pendidikan Biologi Vol 2 No 1 (2020): AL-AHYA
Publisher : Department of Biology Education of Universitas Islam Negeri Alauddin Makassar

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (574.483 KB) | DOI: 10.24252/al-ahya.v2i1.13973

Abstract

Penelitian ini bertujuan  untuk mengetahui gambaran kemampuan berpikir kritis peserta didik yang diajar menggunakan model pembelajaran Cooperative Integrated Reading and Composition (CIRC) dan metode mind mapping, serta mengetahui perbedaan kemampuan berpikir krtitis peserta didik kelas XI MIPA SMAN 2 Enrekang yang diajar menggunakan model pembelajaran Cooperative Integrated Reading and Composition (CIRC) dan peserta didik yang diajar menggunakan meode mind mapping. Desain penelitian yang digunakan yaitu Two Group Pre and Post Design dengan teknik pengambilan sampel yaitu simple random sampling. Populasi dalam penelitian ini yakni kelas XI MIPA SMAN 2 Enrekang dan sampel penelitian yaitu elas XI MIPA 2 berjumlah 30 orang sebagai kelas eksperimen 1, kelas XI MIPA 1 berjumlah 30 orang sebagai kelas eksperimen 2. Data yang diperoleh dalam penelitian ini dianalisis menggunakan análisis deskriptif dan análisis inferensial. Hasil penelitian yang diperoleh yaitu thitung = 3,63 > ttabel = 2,001 dengan taraf signifikansi α = 0,05 dengan dk = 58, sehingga thitung  berada pada daerah penolakan H0 dalam artian  hipótesis H0 ditolak dan H1 diterima. Hal ini berarti bahwa terdapat pengaruh dengan diterapkannya model pembelajaran CIRC dan mind mapping terhadap kemampuan berpikir kritis peserta didik pada materi sistem peredaran darah kelas XI MIPA SMAN 2 Enrekang yang terlihat dari adanya perbedaan hasil tes kemampuan berpikir kritis antara kedua kelas eksperimen tersebut.
Meta-Analysis of the Effect of Local-Wisdom-Based Physics Learning on Students’ Learning Outcomes Suarti Suarti; Suhardiman Suhardiman; Muh. Syihab Ikbal; Selviani Selviani; Risnawati Risnawati; Muh Yusuf Hidayat
JPF (Jurnal Pendidikan Fisika) Universitas Islam Negeri Alauddin Makassar Vol 13 No 2 (2025)
Publisher : Pendidikan Fisika UIN Alauddin Makassar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24252/jpf.v13i2.51520

Abstract

This study is a Meta-Analysis study that aims to investigate the impact of Local Wisdom-Based Physics Learning on student learning outcomes at the SMA/MA level, to determine the impact of local wisdom-based learning on learning outcomes in physics learning based on class and based on subject matter. The type of research used is Meta Analysis, with the population used being all articles on the use of local wisdom-based physics learning and a research sample of 17 articles consisting of 13 national journals and 4 international journals using scientific articles that have been published through Google Scholar in 2013-2023 with predetermined criteria. The research instrument uses a coding sheet (data coding) and information on each research report in digital form, namely in Microsoft Excel, then analyzed using OpenMEE software. Based on the research conducted, it was obtained: (1) Local wisdom-based Physics Learning has a significant impact on student learning outcomes at the SMA/MA level with a Het value. P-Value <0.001, the impact of local wisdom-based physics learning on student learning outcomes is in the very large category with an average effect size of 2,558; (2) The impact of local wisdom-based physics learning on student learning outcomes for each class level at the SMA/MA level is significantly different, with an estimated effect size of class XI of 3,611, the highest compared to other levels, so that local wisdom-based physics learning is more effective if applied to class XI; (3) The impact of local wisdom-based physics learning on student learning outcomes based on subject matter is significantly different, with the highest estimated effect size for temperature material of 11,610 in the very large category compared to other materials. So that local wisdom-based physics learning is more effective when applied to temperature material. Local wisdom-based physics learning can be an option to be integrated into learning to improve student learning outcomes.