This study aims to obtain some information regarding profile of students’ mental models on the solubility and solubility product concept. A descriptive qualitative method was the method employed in the study. The participants of the study were students XI grade of a senior high school in Bandung. To collect the data, diagnostic test on mental model-prediction, observation, explanation (TDM-POE) instrument was employed in the study. The results of the study revealed that on the concept of precipitation formation of a reaction, 30% of students were not able to explain the precipitation formation of a reaction either in submicroscopic or symbolic level although the microscopic have been shown; 26% of students were able to explain the precipitation formation of a reaction based on the relation of Qsp and Ksp, but they were not able to explain the interaction of particles that involved in the reaction and to calculate Qsp; 26% of students were able to explain the precipitation formation of a reaction based on the relation of Qsp and Ksp, and determine the particles involved, but they did not have the knowledge about the interactions occured and were uncapable of calculating Qsp; and 18% of students were able to explain the precipitation formation of a reaction based on the relation of Qsp and Ksp, and determine the interactions of the particles involved in the reactions but they were not able to calculate Qsp. On the effect of adding common ions and decreasing pH towards the solubility concept, 96% of students were not able to explain the effect of adding common ions and decreasing pH towards the solubility either in submicroscopic or symbolic level although the microscopic have been shown; while 4% of students were only able to explain the effect of adding common ions towards the solubility based on the chemical equilibrium shifts and predict the effect of decreasing pH towards the solubility. However, they were not able to calculate the solubility before and after adding common ions and explain it up to the submicroscopic level either based on the shift of equilibrium solubility or the comparison of solubility calculation results before and after decreasing pH. Overall, the present study showed that most students obtain incomplete mental model on the solubility and solubility product concept. From the findings, it is recommended for the teachers to improve students’ learning activity.
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30 May 2017
MATHEMATICS, SCIENCE, AND COMPUTER SCIENCE EDUCATION (MSCEIS 2016): Proceedings of the 3rd International Seminar on Mathematics, Science, and Computer Science Education
15 October 2016
Bandung, Indonesia
Research Article|
May 30 2017
Students’ mental models on the solubility and solubility product concept Free
Chusnur Rahmi;
Chusnur Rahmi
a)
1Postgraduate School,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
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Siti Katmiati;
Siti Katmiati
1Postgraduate School,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
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Wiji;
Wiji
2Chemistry Education Study Program,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
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Sri Mulyani
Sri Mulyani
2Chemistry Education Study Program,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
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Chusnur Rahmi
1,a)
Siti Katmiati
1
Wiji
2
Sri Mulyani
2
1Postgraduate School,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
2Chemistry Education Study Program,
Universitas Pendidikan Indonesia
, Jln. Dr. Setiabudi No 229 Bandung 40154, Indonesia
a)
Corresponding author: [email protected]
AIP Conf. Proc. 1848, 030001 (2017)
Citation
Chusnur Rahmi, Siti Katmiati, Wiji, Sri Mulyani; Students’ mental models on the solubility and solubility product concept. AIP Conf. Proc. 30 May 2017; 1848 (1): 030001. https://doi.org/10.1063/1.4983933
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