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PELATIHAN GOOGLE WORKSPACE FOR EDUCATION DALAM MENUNJANG KEGIATAN BELAJAR-MENGAJAR Gunawan, Bodi; Putri, Desy Hanisa; Risdianto, Eko; Ahda, Netriani Veminsyah; Aqil, Muhammad Ataurrahman; Karuniawan, Albet
MIMBAR INTEGRITAS : Jurnal Pengabdian Vol 4 No 1 (2025): JANUARI 2025
Publisher : Biro Administrasi dan Akademik

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36841/mimbarintegritas.v4i1.5580

Abstract

Abstrak Program ini merupakan Program Pengabdian Kepada Masyarakat yang dirancang untuk mendukung para pendidik dalam memanfaatkan alat-alat digital secara optimal, sehingga dapat menciptakan lingkungan belajar yang interaktif dan kolaboratif. Bermitra dengan SMA Negeri 2 Kota Bengkulu, program ini bertujuan untuk memberikan pemahaman mendalam tentang penggunaan Google Workspace for Education, yang dapat membantu meningkatkan efektivitas layanan dan proses belajar mengajar siswa melalui teknologi. Secara garis besar, program pelatihan ini mencakup 3 proses yaitu 1) Tahap Persiapan yang mencakup survey untuk memitigasi permasalahan mitra serta perumusan solusi; 2) Tahap Pelaksanaan yang melibatkan pelatihan langsung kepada para pendidik tentang cara menggunakan Google Workspace for Education secara efektif; dan 3) Tahap Evaluasi untuk menilai dampak program serta memberikan umpan balik yang konstruktif bagi pengembangan lebih lanjut. Dalam implementasinya, program ini diterima antusias dengan respon positif 100% oleh para peserta. Tema kolaborasi dokumen dan pemanfaatan teknologi AI Gemini merupakan topik yang paling diminati oleh peserta dengan nilai survey 30% dan 50% peserta meminta topik tersebut perlu dieksplorasi lebih lanjut. Kata Kunci: google for education, kolaborasi online, otomatisasi, gemini Abstract This program is a Community Service Program designed to support educators in making optimal use of digital tools, so as to create an interactive and collaborative learning environment. Partnering with SMA Negeri 2 Kota Bengkulu, this program aims to provide an in-depth understanding of the use of Google Workspace for Education, which can help improve the effectiveness of student services and teaching and learning processes through technology. Broadly speaking, this training program includes 3 processes, namely 1) Preparation Phase which includes a survey to mitigate partner problems and formulate solutions; 2) Implementation Phase which involves hands-on training to educators on how to use Google Workspace for Education effectively; and 3) Evaluation Phase to assess the impact of the program and provide constructive feedback for further development. In its implementation, the program was enthusiastically received with 100% positive response by the participants. The theme of document collaboration and the utilization of AI Gemini technology were the topics of most interest to the participants with a survey score of 30% and 50% of the participants requested that these topics be explored further. Keywords: google for education, online colaboration, automation, gemini
Fast Forward Method On Landau-Majorana-Zener System Karuniawan, Albet; Setiawan, Iwan; Hamdani, Dedy
Jurnal Ilmiah Pendidikan Fisika Al-Biruni Vol 13 No 2 (2024): Jurnal Ilmiah Pendidikan Fisika Al-Biruni
Publisher : Universitas Islam Negeri Raden Intan Lampung, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24042/jipfalbiruni.v13i2.24576

Abstract

Quantum computers have data in the form of quantum bits (qubits), which are 0 and 1 simultaneously. This 0 and 1 state is the electron spin state on the quantum computer, namely spin up and spin down. Qubits are very sensitive to environmental disturbances, so it is necessary to accelerate the adiabatic dynamics so that the system's coherence is not disturbed by environmental interactions. These spin dynamics can be accelerated using the fast forward method, which uses an additional phase to drive the spin adiabatically. The adiabatic state is a state where the dynamics of a system have the same characteristics as the initial state after the dynamics take place. This research was conducted by qualitatively reviewing physical theory and conducting literature studies on previous research on the fast-forward method and the Landau-Majorana-Zener system. The results of this study obtained wave function solutions, regularization terms, and additional Hamiltonians in the Landau-Majorana-Zener system to accelerate adiabatic spin dynamics so that spin dynamics on quantum computers are not disturbed by the environment. After adding additional Hamiltonian adiabatic dynamics in the Landau-Majorana Zener system can be maintained but requires considerable energy. The magnetic field needed to create the same graph as the wave function graph before adding Hamiltonian, B0 = 100 Tesla. The energy required to accelerate the adiabatic spin dynamics is large, so the cost is also quite large. Therefore, efforts are needed to minimize the energy required to accelerate the adiabatic spin dynamics.