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Application Design for Determining Suitable Cosmetics with the Facial Skin Type Using Fuzzy Logic Approach

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The community’s need of cosmetics today is very large, especially for women who most of them always want to look beautiful and attractive and become the center of attention from many people. The concept of female beauty is often identified with beautiful and smooth facial skin, so it is not surprising that any product that can whiten facial skin is selling well on the market. Determining suitable cosmetics for the type of facial skin is not an easy thing because the effects that will be caused by the skin against the skin will not be known as long as the cosmetics have not been used. In addition there is no one face whitening cosmetics that can be used for various types of facial skin, because the facial skin condition of each individual is different and the way to handle it must be different as well. In the process of designing decision support system application, the determination of cosmetics that are suitable to the type of facial skin using a Fuzzy logic approach. This research was chosen because it was able to select the best alternative from a number of alternatives. In this case the intended alternative was cosmetics that are selected based on predetermined criteria. This decision support system can provide alternative choices of cosmetics that can later be used as a reference to determine cosmetics that are suitable for the type of facial skin.

Keywords: Cosmetics; Facial Skin; Fuzzy Logic

Document Type: Research Article

Affiliations: 1: Department of Information Systems, STMIK Pringsewu, Lampung, 35373, Indonesia 2: Universiti Teknologi Malaysia, 81310, Malaysia 3: Universiti Sultan Zainal Abidin Malaysia, 21300, Malaysia

Publication date: 01 May 2019

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  • Journal of Computational and Theoretical Nanoscience is an international peer-reviewed journal with a wide-ranging coverage, consolidates research activities in all aspects of computational and theoretical nanoscience into a single reference source. This journal offers scientists and engineers peer-reviewed research papers in all aspects of computational and theoretical nanoscience and nanotechnology in chemistry, physics, materials science, engineering and biology to publish original full papers and timely state-of-the-art reviews and short communications encompassing the fundamental and applied research.
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