Jumadil Ahmad Safii
Universitas Negeri Makassar

Published : 2 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 2 Documents
Search

HUBUNGAN FLIPPED CLASSROOM DENGAN KEPUASAN DAN KECEMASAN BELAJAR ONLINE MAHASISWA JURUSAN TEKNIK INFORMATIKA DAN KOMPUTER, UNIVERSITAS NEGERI MAKASSAR M Miftach Fakhri; Rifqa Awalia; Jumadil Ahmad Safii; Muh Akbar B; Nurikhlas Nurpa Gunawan; Della Fadhilatunisa
Jurnal Pendidikan Terapan Vol 1, No 1 January (2023)
Publisher : Sakura Digital Nusantara

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (311.664 KB) | DOI: 10.61255/jupiter.v1i1.7

Abstract

The new policy occurred in the world of education, where before the Covid-19 outbreak learning that required learning in the classroom or building, in this case, face-to-face learning turned into online learning. One of the innovations in learning methods that emerged when online learning was established was the Flipped Classroom  learning model. This research aims to determine the relationship between  the Flipped Classroom learning model and the  satisfaction and anxiety of online learning for students in the Informatics and Computer Engineering department, Makassar State University. This research was conducted by applying descriptive research methods with a quantitative approach. The population in this study was 42 students. The resulting data comes from data collection in the form of questionnaires that are disseminated online using google form. Data analysis using  a Likert scale  consisting of 4 alternative answer choices. Based on the results of this study, it can be concluded that there is a relationship between Flipped Classroom and the  satisfaction and anxiety of online learning for students majoring in Informatics and Computer Engineering, Makassar State University.
Pembuatan Sistem Kebakaran Ruang Server Berbasis Web pada DISKOMINFO Kota Makassar Wahyu Hidayat M; Khairul Imam MJ; Jumadil Ahmad Safii; Muhammad Alif Leo; Ahmad Faris Al Faruq
Progressive Information, Security, Computer, and Embedded System Vol 1 No 1 (2023): Vol. 1, No. 1 Maret (2023)
Publisher : Sakura Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61255/pisces.v1i1.21

Abstract

Development of Web-Based Fire Alarm System in Server Room at Diskominfo Makassar City. Diskominfo Makassar City is an institution that carries out some of the regional government affairs of Makassar City in the  field of communication and informatics. Makassar City Diskominfo has a server room to handle services in the communications and informatics sector for sub-districts and villages in Makassar City. Making a web-based fire alarm is intended as a form of meeting server room security standards in terms of fire threats that can occur at any time and helping to supervise or monitor the server room. The working method or procedure for making this tool goes through the stages of analysis, design, implementation, and testing. The main components needed consist of a KY026 fire sensor, MQ2 sensor, ESP8266 microcontroller, and Laravel 7. This fire alarm tool utilizes Internet of Things (IoT) technology so that the tool can be connected to web applications. This tool detects indications of fire based on the flame wave indicator and carbon monoxide gas through the KY026 flame sensor and MQ2 sensor. Users of this tool will receive email notifications if there is a fire in the server room. It is easy for users to monitor server rooms by accessing web applications built using Laravel 7. This website is still local and can be accessed via a search engine with the address 192.168.43.244. This tool is expected to minimize damage and accelerate the handling of fire incidents in the server room. Testing of this tool was carried out on two components, namely the KY026 fire sensor and the MQ2 sensor. Based on the results of the tests that have been carried out, both components are able to detect fire indicators at certain distances. This is proven by the user receiving a fire notification when the component detects a wave of fire or carbon monoxide gas and the user can monitor the condition of the server room in real time.