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Journal : Dinasti Information and Technology

The Role of Personalized UX and UI Design in Maintaining Spotify's Dominance in the Competitive Music Streaming Industry Fitri, Salsabila Dwi; Ananta, Yorasakhi
Dinasti Information and Technology Vol. 2 No. 3 (2025): Dinasti Information and Technology (January 2025)
Publisher : Dinasti Research & Yayasan Dharma Indonesia Tercinta (DINASTI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/dit.v2i3.1787

Abstract

The Role of Personalized UX and UI Design in Spotify's Dominance in the Digital Music Streaming Service Industry . The object of this research is Spotify as a global digital music streaming service platform . The purpose of this study is to examine the extent to which the role of personalized user experience (UX) design and effective user interface (UI) design in maintaining Spotify's dominance amidst competitive industry competition. The research method uses a literature review approach and Systematic Literature Review (SLR) with qualitative analysis. The results of the study show that Spotify's dominance is influenced by two main factors: first, UX personalization through features such as Discover Weekly , Wrapped , and Daily Mix that is able to create emotional closeness with users; second, intuitive and visually appealing UI design that improves ease of navigation and comfort of use. The conclusion of this study states that the integration of UX personalization strategies and effective UI design is an important foundation in building loyalty and retention of Spotify users sustainably.
Biofilms in Wastewater Treatment: A Systematic Review of Biological Design and Efficiency Ananta, Yorasakhi; Fitri, Salsabila Dwi
Dinasti Information and Technology Vol. 2 No. 3 (2025): Dinasti Information and Technology (January 2025)
Publisher : Dinasti Research & Yayasan Dharma Indonesia Tercinta (DINASTI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/dit.v2i3.1790

Abstract

Biofilms are essential in modern biological wastewater treatment systems due to their unique structural and functional capabilities. This systematic review explores the role of biofilms in enhancing the efficiency of wastewater treatment, focusing on design considerations and microbial interactions. The review compiles and synthesizes data from recent studies to understand how biofilms contribute to pollutant removal, operational stability, and energy efficiency. Key findings indicate that biofilm-based systems, such as trickling filters, rotating biological contactors (RBC), and membrane bioreactors (MBR), offer superior contaminant degradation due to high microbial density and resilience. The study highlights future opportunities for optimizing biofilm engineering to meet environmental and regulatory challenges.
Role Consortium Microbial in Decomposition Compound Organic Complex in Wastewater Domestic: Literature Review Ananta, Yorasakhi; Fitri, Salsabila Dwi
Dinasti Information and Technology Vol. 2 No. 3 (2025): Dinasti Information and Technology (January 2025)
Publisher : Dinasti Research & Yayasan Dharma Indonesia Tercinta (DINASTI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/dit.v2i3.1791

Abstract

The role of microbial consortium and complex organic compounds on domestic wastewater treatment efficiency is a scientific article within the scope of environmental engineering using a biological approach. The purpose of this article is to build hypotheses on the influence of both variables, which will be used in further research. The research objects are obtained from online libraries such as Google Scholar, Mendeley, and other open-access academic platforms. The method used is library research with descriptive qualitative analysis. The results of this article are microbial consortium has an effect on the biodegradation of complex organic compounds in domestic wastewater and the characteristics of complex organic compounds affect the degradation efficiency by microorganisms.