
Dr. Anggara Budi Susila
Associate Professor
[Scopus] [Sinta] [Google Scholar]
Educational Background
- Bachelor’s degree from Physics Education at IKIP Jakarta (1980 – 1985)
- Magister’s degree from Physics at Institut Teknologi Bandung (1988 – 1991)
- Doctoral degree from Materials Physics at Universitas Indonesia (2010 – 2016)
Academic Career (Employment)
- Ketua Program Studi Fisika (2005 – 2009)
- Wakil Dekan Bidang Kemahasiswaan dan Alumni (2010 – 2014)
- Ketua Jurusan Fisika (2014 – 2015)
- Ketua Senat FMIPA UNJ (2019 – 2023)
Research and Development project over the last 5 years
- Analisis Pengaruh Variasi Reinforce Silicon Carbida (SiC) Pada Komposit Aluminium Alloy Au-Cu-Mg/SiC dengan Menggunakan Metoda Melt Casting (2017).
- Sintesis Metal Matrix Composite (MMC) Alumunium 2024 dengan Reinforce SiC Menggunakan Metoda Stir Casting Untuk Aplikasi Mesin Automotif (2018).
- Effects of variations in the addition of SiCp filler to corrosion rate of metal matrix composites (MMCs) Al-Cu-Mg/SiCp (2019).
- Studi korosivitas komposit logam ferro-silika-magnesium berperekat aluminium berbasis serbuk dengan mechanical alloying pada temperature tinggi (2020).
- Thermodynamic and structure properties of aluminum nanoparticle due to heat treatment: A molecular dynamics study (2021).
- Influence of thickness on heat treatment from 300 to 1100 K of thin aluminum film (2022).
Industry collaboration/ Community Services over the last 5 year
- Pelatihan Desain Alat peraga Pembelajaran Fisika Di Islamic Boarding School Dwiwarna Desa Pamegarsari, Kecamatan Parung, Kabupaten Bogor Provinsi Jawa Barat (2020).
- Pelatihan Pembuatan Alat Peraga Pembelajaran Fisika di Pondok Pesantren Ibad Ar Rahman Kecamatan Cimanuk Kabupaten Pandeglang Propinsi Banten (2021).
Patents and Intellectual Property Right (IPR)
- Modul LKPD Fenomena Kuantum (2020).
- Buku Pengayaan Pembangkit Listrik Tenaga Surya sebagai Teknologi Ramah Lingkungan Di Indonesia (2020).
Important publications over the last 5 years
- Magnetic and microwave absorbing properties of BaFe122xCoxZnxO19 (x= 0.0; 0.2; 0.4; 0.6) nanocrystalline
- Thermodynamic and structure properties of aluminum nanoparticle due to heat treatment: a molecular dynamics study
- Influence of thickness on heat treatment from 300 to 1100 K of aluminum thin film
Activities in Professional organizational over the last 5 years
Himpunan Fisika Indonesia (HFI)