Volta-Based Cells Materials Chemical Multiple Representation to Improve Ability of Student Representation

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Abstract

This study aimed to describe the application of teaching materials, analyze the increase in the ability of students to connect the three levels of representation and student responses after application of multiple representations based teaching materials chemistry. The method used quasi one-group pretest-posttest design to 71 students. The results showed the application of teaching materials carried 88% with very good category. A significant increase ability to connect the three levels of representation of students after the application of multiple representations based teaching materials chemistry with t-value > t-crit (11.402 > 1.991). Recapitulation N-gain pretest and posttest showed relatively similar for all groups is 0.6 criterion being achievement. Students gave a positive response to the application of multiple representations based teaching materials chemistry. Students agree teaching materials used in teaching chemistry (88%), and agrees teaching materials to provide convenience in connecting the three levels of representation (95%).

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Helsy, I., Maryamah, Farida, I., & Ramdhani, M. A. (2017). Volta-Based Cells Materials Chemical Multiple Representation to Improve Ability of Student Representation. In Journal of Physics: Conference Series (Vol. 895). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/895/1/012010

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