This study aims to (1) determine whether the use of models (Prediction, Observation, Explanation, Elaboration, Write and Evaluation) based on POE2WE (Somatic, Auditory, Visual, Intellectual) SAVI can improve student learning outcomes (2) know the magnitude of physics learning outcomes students before applying the SAVI-based POE2WE learning model (3) knowing the magnitude of the physics learning outcomes of students after applying the SAVI-based POE2WE learning model. The SAVI approach provides student intellectual collaboration supported by auditory and visual aspects in learning and trains students to be able to solve the problems they encounter. This research is a literature study and a test item with closed variables. This research was conducted at Siliwangi University students, amounting to 32 students. The data collection technique used was a learning achievement test consisting of 10 questions in the form of multiple choice. Descriptive analysis shows the average value of physics learning outcomes before being taught using the SAVI-based POE2WE learning model at 75% and after being taught using the SAVI-based POE2WE learning model at 81%. From the results of the analysis it can be concluded that the SAVI-based POE2WE learning model can improve students' physics learning outcomes.
This study aims to (1) determine whether the use of models (Prediction, Observation, Explanation, Elaboration, Write and Evaluation) based on POE2WE (Somatic, Auditory, Visual, Intellectual) SAVI can improve student learning outcomes (2) know the magnitude of physics learning outcomes students before applying the SAVI-based POE2WE learning model (3) knowing the magnitude of the physics learning outcomes of students after applying the SAVI-based POE2WE learning model. The SAVI approach provides student intellectual collaboration supported by auditory and visual aspects in learning and trains students to be able to solve the problems they encounter. This research is a literature study and a test item with closed variables. This research was conducted at Siliwangi University students, amounting to 32 students. The data collection technique used was a learning achievement test consisting of 10 questions in the form of multiple choice. Descriptive analysis shows the average value of physics learning outcomes before being taught using the SAVI-based POE2WE learning model at 75% and after being taught using the SAVI-based POE2WE learning model at 81%. From the results of the analysis it can be concluded that the SAVI-based POE2WE learning model can improve students' physics learning outcomes.
This study aims to (1) determine whether the use of models (Prediction, Observation, Explanation, Elaboration, Write and Evaluation) based on POE2WE (Somatic, Auditory, Visual, Intellectual) SAVI can improve student learning outcomes (2) know the magnitudeof physics learning outcomes students before applying the SAVI-based POE2WE learning model (3) knowing the magnitude of the physics learning outcomes of students after applying the SAVI-based POE2WE learning model. The SAVI approach provides student intellectual collaboration supported by auditory and visual aspects in learning and trains students to be able to solve the problems they encounter. This research is a literature study and a test item with closed variables. This research was conducted at Siliwangi University students, amounting to 32 students. The data collection technique used was a learning achievement test consisting of 10 questions in the form of multiple choice. Descriptive analysis shows the average value of physics learning outcomes before being taught using the SAVI-based POE2WE learning model at 75%and after being taught using the SAVI-based POE2WE learning model at 81%. From the results of the analysis it can be concluded that the SAVI-based POE2WE learning model can improve students' physics learning outcomes.
Model pembelejaran POE2WE merupakan model pembelajaran yang dikembangkan untuk mengetahui pemahaman siswa mengenai suatu konsep dengan pendekatan konstruktivistik. Dengan kata lain, pembelajaran yang menggunakan konstruktiv siswa sebagai pusat pada pembelajaran. Hands On activity adalah suatu kegiatan yang dirancang untuk melibatkan siswa dalam mencari informasi dan bertanya, beraktivitas dan menemukan, mengumpulkan data dan menganalisis, serta membuat kesimpulan sendiri. Latar belakang masalah penelitian ini karena masih banyak siswa yang belum mempunyai pikiran yang kritis, hanya mendapatkan satu pengalaman pembelajaran yaitu guru. Dengan bantuan model hands-on activity, penulis mengharapkan siswa akan lebih aktif dan berpikir kritis. Penelitian ini menggunakan metode literasi (studi pustaka) dengan referensi terpercaya. Berdasarkan hasil penilitian yang dilakukan oleh sejumlah orang, mengungkapkan bahwa skor kemampuan berpikir kritis kelas eksperimen lebih tinggi dari skor hasil belajar kelompok kontrol. Oleh karena itu, dapat disimpulkan bahwa model pembelajaran POE2WE Berbasis Hands On Activity efektif terhadap berpikir kritis serta aktif dalam interaksi sosial.
This study aims to (1) determine whether the use of models (Prediction, Observation, Explanation, Elaboration, Write and Evaluation) based on POE2WE (Somatic, Auditory, Visual, Intellectual) SAVI can improve student learning outcomes (2) know the magnitude of physics learning outcomes students before applying the SAVI-based POE2WE learning model (3) knowing the magnitude of the physics learning outcomes of students after applying the SAVI-based POE2WE learning model. The SAVI approach provides student intellectual collaboration supported by auditory and visual aspects in learning and trains students to be able to solve the problems they encounter. This research is a literature study and a test item with closed variables. This research was conducted at Siliwangi University students, amounting to 32 students. The data collection technique used was a learning achievement test consisting of 10 questions in the form of multiple choice. Descriptive analysis shows the average value of physics learning outcomes before being taught using the SAVI-based POE2WE learning model at 75%and after being taught using the SAVI-based POE2WE learning model at 81%. From the results of the analysis it can be concluded that the SAVI-based POE2WE learning model can improve students' physics learning outcomes.
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