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Rosli, A D; Baharudin, R; Hashim, H; Khairuzzaman, N A; Mohd Sampian, A F; Abdullah, N E; Kamaru'zzaman, M; Sulaiman, M S, E-mail: anis.diyana@ppinang.uitm.edu.my2015
AbstractAbstract
[en] This paper investigates the capacitance regression modelling performance of latex for various rubber tree clones, namely clone 2002, 2008, 2014 and 3001. Conventionally, the rubber tree clones identification are based on observation towards tree features such as shape of leaf, trunk, branching habit and pattern of seeds texture. The former method requires expert persons and very time-consuming. Currently, there is no sensing device based on electrical properties that can be employed to measure different clones from latex samples. Hence, with a hypothesis that the dielectric constant of each clone varies, this paper discusses the development of a capacitance sensor via Capacitance Comparison Bridge (known as capacitance sensor) to measure an output voltage of different latex samples. The proposed sensor is initially tested with 30ml of latex sample prior to gradually addition of dilution water. The output voltage and capacitance obtained from the test are recorded and analyzed using Simple Linear Regression (SLR) model. This work outcome infers that latex clone of 2002 has produced the highest and reliable linear regression line with determination coefficient of 91.24%. In addition, the study also found that the capacitive elements in latex samples deteriorate if it is diluted with higher volume of water. (paper)
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Source
4. international conference on electronic devices, systems and applications 2015 (ICEDSA); Kuala Lumpur (Malaysia); 14-15 Sep 2015; Available from http://dx.doi.org/10.1088/1757-899X/99/1/012013; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
IOP Conference Series. Materials Science and Engineering (Online); ISSN 1757-899X;
; v. 99(1); [10 p.]

Country of publication
DIELECTRIC PROPERTIES, DIMENSIONLESS NUMBERS, ELASTOMERS, ELECTRICAL PROPERTIES, EUPHORBIA, EVALUATION, FLUORIDES, FLUORINE COMPOUNDS, HALIDES, HALOGEN COMPOUNDS, HYDROGEN COMPOUNDS, INDIUM COMPOUNDS, INDIUM HALIDES, MAGNOLIOPHYTA, MAGNOLIOPSIDA, ORGANIC COMPOUNDS, ORGANIC POLYMERS, OXYGEN COMPOUNDS, PHYSICAL PROPERTIES, PLANTS, POLYMERS, RUBBERS, TREES
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