Claim Missing Document
Check
Articles

Found 3 Documents
Search
Journal : Jurnal Computer Science and Information Technology (CoSciTech)

Sistem informasi steam kendaraan berbasis web menggunakan framework laravel di steam nyomplong didit supriyadi; Adhitia Erfina
Computer Science and Information Technology Vol 4 No 1 (2023): Jurnal Computer Science and Information Technology (CoSciTech)
Publisher : Universitas Muhammadiyah Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37859/coscitech.v4i1.4471

Abstract

Along with the times, the application of technology has spread to various fields, one of which is the service sector. Many companies are competing to get customers by utilizing technology, one of which is with a web-based application. In the field of steam washing services, these nyumplong vehicles are still unable to take advantage of technological developments. This is a problem for the nyomplong steam wash, where in the service process it is less effective in cashier payments, still uses manual transaction methods, and income reports still use notes on the book. The purpose of this research is to make a vehicle washing service application on steam nyomplong uses PHP and MySQL which can facilitate payment transaction activities at cashiers and the steam nyomplong data collection process. Includes the stages of system analysis, design, interface design and implementation, and testing. Based on the research that has been carried out, it produces an application that can make it easier for the steam nyomplong to manage data collection and transaction processes at the cashier, practical to use at the steam nyomplong.
Pengaruh kualitas siak terhadap kepuasan mahasiswa di stikes sukabumi menggunakan regresi linier Muhammad Ramdani; Adhitia Erfina
Computer Science and Information Technology Vol 4 No 1 (2023): Jurnal Computer Science and Information Technology (CoSciTech)
Publisher : Universitas Muhammadiyah Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37859/coscitech.v4i1.4477

Abstract

Introduction: Educational institutions in the era of rapid technological development must have an academic information system to support and support the process of teaching and learning activities, which must be measured through measuring the quality of academic information systems that can determine student satisfaction as users of academic information systems. Objective: This research was conducted to determine the effect of the quality of the academic information system on student satisfaction. Method: This type of research uses correlational research with a cross sectional approach. The population in this study were STIKES Sukabumi students with a sample of 298 using stratified random sampling techniques. The validity and reliability test in this study showed that all instrument items were valid with a strong enough to strong reliability. Univariate analysis uses frequency distribution with mean values, as well as bivariate analysis using multiple linear regression analysis. Results: This study shows that there is an influence on the quality of the academic information system on student satisfaction (p 0,000; b 0,957; R2 0,918, with equations Y=-6,320+0,957X+????). Conclusion: the quality of academic information systems can affect student satisfaction. Therefore, STIKES Sukabumi must always measure the quality of the academic information system in order to achieve student satisfaction as a user.
Rancang bangun sistem monitoring curah hujan berbasis internet of things Muhamad Fajar; Adhitia Erfina
Computer Science and Information Technology Vol 4 No 1 (2023): Jurnal Computer Science and Information Technology (CoSciTech)
Publisher : Universitas Muhammadiyah Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37859/coscitech.v4i1.4502

Abstract

Weather information is an integral part of everyday life. To anticipate extreme weather or weather that always changes from time to time and from place to place, good facilities are needed such as weather measurement equipment, one of which is a rain gauge sensor to monitor weather conditions based on the Internet of things (IoT). Can detect the intensity of rainwater and then the resulting data is sent to the website interface via the Arduino microcontroller and the ESP8266 WiFi module. The test results show that this system can carry out an IoT-based monitoring process in real time with an average delay of around 3 seconds.