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Penerapan System Usability Scale Dalam Menganalisis Ui/Ux Pada Website Asuransi Mitra (Studi Kasus : Website Pasarpolis) Andini Andini; Dadang Yusup; Susilawati Susilawati
Innovative: Journal Of Social Science Research Vol. 3 No. 4 (2023): Innovative: Journal Of Social Science Research
Publisher : Universitas Pahlawan Tuanku Tambusai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31004/innovative.v3i4.3500

Abstract

Penelitian ini berfokus pada analisis pengalaman pengguna di platform asuransi online, terutama pada website PasarPolis. Permasalahan diidentifikasi termasuk kesulitan menghindari kesalahan dan navigasi yang kurang efisien, serta kendala dalam layanan asuransi seperti klaim dan pendaftaran. Uji validitas dan reliabilitas dilakukan terhadap 10 pernyataan dalam kuesioner dengan 30 responden, menunjukkan validitas (r hitung 0,374) dan reliabilitas yang tinggi (α 0,767). Pengujian usability menggunakan metode System Usability Scale (SUS) pada situs web PasarPolis melibatkan 15 responden. Hasilnya menunjukkan tingkat kemudahan yang baik dengan skor "Acceptable Excellent". Validitas SUS juga baik dengan nilai r hitung 0,514, dan reliabilitas tinggi (α 0,820). Prototipe yang dirancang berhasil mengatasi masalah UI/UX di situs web PasarPolis dan diterima oleh pengguna. Kuesioner penelitian memiliki kesesuaian dan konsistensi yang baik. Penelitian ini memberikan kontribusi penting pada peningkatan kualitas dan kepuasan pengguna di situs web asuransi mitra PasarPolis. Rekomendasi meliputi perbaikan antarmuka, navigasi, panduan, dan layanan pelanggan untuk meningkatkan pengalaman pengguna. Pengembangan berkelanjutan, umpan balik, dan uji coba dianjurkan untuk terus memperbaiki platform digital ini demi pengalaman yang lebih baik.
Pengembangan Laboratorium Virtual Fisika Osilasi Adhi Rizal; Riza Ibnu Adam; Susilawati Susilawati
JOIN (Jurnal Online Informatika) Vol 3 No 1 (2018)
Publisher : Department of Informatics, UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/join.v3i1.140

Abstract

This research aims to develop a virtual lab application with oscillation concept. Oscillation concept in this application is described as pendulum motion. The application was developed by using the ADDIE model and Easy Java Simulations (EJSs) software. It has advantages compared with similar applications, which has a damping coefficient that similar with real world condition. Some other features of the application are the users can run and pause the simulation, observe the details of changes in pendulum movement angle by using step forward button, users can change pendulum mass, adjust the length of the rope, gravitational force, initial angle, damping coefficient, and can observe the change of pendulum angular position in parabolic graphs in real-time. The application was tested using the Technology Acceptance Model (TAM) concept. Based on the research results, the user satisfaction level is categorized as very useful. Therefore, it can be conclude that the application can be accepted and used well by the user.
SISTEM MONITORING KUALITAS UDARA DALAM RUANGAN MELALUI DETEKSI GAS, SUHU, DAN KELEMBABAN BERBASIS IOT M. Ramadhan Syahrul Al Qodr; Hudzaifah Nabil Amrullah; Faris Fadhil Dhiaulhaq; Susilawati Sobur
Ar-Rasyid: Jurnal Publikasi Penelitian Ilmiah Vol. 1 No. 5 (2025): Ar-Rasyid: Jurnal Publikasi Penelitian Ilmiah (Bulan November 2025)
Publisher : PT. Saha Kreasi Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.64788/ar-rasyid.v1i5.105

Abstract

This study aims to design and implement an indoor air quality monitoring system based on the Internet of Things (IoT) using the MQ-135 and DHT11 sensors. The MQ-135 sensor is employed to detect hazardous gases such as carbon monoxide (CO), carbon dioxide (CO₂), and volatile organic compounds (VOCs), while the DHT11 sensor measures temperature and humidity. Data from both sensors are processed by an ESP32 microcontroller and displayed locally through an OLED screen, as well as transmitted to the Blynk platform for remote monitoring. Testing was conducted in a room measuring approximately 8×6 meters under three conditions: normal air, cigarette smoke exposure, and post-smoking. The results show that gas concentration levels increased from 150–200 ppm (normal) to 800–900 ppm during smoking, then decreased to 450–550 ppm five minutes after the smoke dissipated. The system successfully monitored air quality changes in real-time with high sensitivity. These findings indicate that integrating IoT-based sensors provides an efficient and low-cost solution for indoor air quality monitoring.
Prototype sistem monitoring status pintu berbasis iot dengan notifikasi web dan telegram Apriansa Arwandi Panjaitan; Annastia Reza Dzulha; Susilawati Sobur
Jurnal Pseudocode Vol 13 No 1 (2026): Volume 13 Nomor 1 Februari 2026
Publisher : UNIB Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33369/pseudocode.13.1.1-8

Abstract

In the era of the Industrial Revolution 4.0, the Internet of Things (IoT) has become an innovative solution for enhancing home security. This study designs and implements an IoT-based monitoring door status system using the ESP8266 microcontroller combined with a magnetic sensor. The system enables real-time monitoring and notifications to users via Telegram and provides door status display through a website. With an integrated alarm feature to prevent unauthorized access, this system is expected to enhance home security at a more affordable cost compared to conventional security systems. Testing results indicate that the system accurately detects door status changes with a notification response time of less than 2 seconds. These findings demonstrate the system’s effectiveness in improving security and user conveniencel.