Search this site
Embedded Files
Gea Oswah Fatah Parikesit

Lecturer in Engineering Physics, Universitas Gadjah Mada, 2009-2026 | Lecturer in Arts Studies, Universitas Gadjah Mada, 2021-2026 | Researcher in Cultural Conservation, University of Melbourne, 2018-2020 | Researcher in Mechanical Engineering, Technische Universiteit Delft, 2007-2009 | Doctor in Applied Physics, Technische Universiteit Delft, 2003-2008 | Master in Applied Physics, Technische Universiteit Delft, 2001-2003 | Bachelor in Engineering Physics, Institut Teknologi Bandung, 1996-2001 

{xx} "Vibration of asymmetrically clipped bundengan strings", 20xx.

{xx} "The Australian aboriginal yidaki: acoustic recordings and a 3D geometric model derived from computed tomography", 20xx.

{xx} "The effect of weaving variation on the vibration characteristics of bundengan lattice shells", 20xx.

{54} "How to tune the bundengan string", 2025.

{53} "Quantitative hygromorphic analysis of the bundengan musical instrument", 2025.

{52} "Design and development of a low-cost two-point bending tester for bamboo culm sheaths", 2025.

{51} "Studi sifat keterbasahan pada material slumpring bambu dengan metode pengukuran sudut kontak permukaan", 2024.

{50} "How the bundengan string material affects its musical sound", 2023.

{49} "Mechanical analysis of bamboo culm sheaths as the material of the bundengan musical instrument", 2023.

{48} "Why bundengan musicians always soak their instruments before playing", 2023.

{47} "The fabrication and characterization of a 3D-printed yidaki musical instrument", 2023.

{46} "Vibration analysis of the bundengan bamboo bars", 2022.

{45} "Experimental modal analysis of the kowangan resonator in the bundengan musical instrument", 2022.

{44} "How the string ends affect the bundengan string vibrations", 2022.

{43} "The effect of bamboo clip dimension and position towards the frequency spectrum of a vibrating inhomogeneous bundengan string", 2021.

{42} "A modified Mersenne law governs the inter-mode patterns in bundengan string vibrations", 2021.

{41} "Quantitative imaging of the resonator shape in the bundengan musical instrument", 2020.

{40} "Optical measurements with stereoscopic shadows", 2020.

{39} "Why the bundengan is a personal musical instrument", 2020.

{38} "Musical acoustics education in Indonesia - a case study of the bundengan", 2020.

{37} "Quantitative analysis of the kowangan resonator", 2020.

{36} "Sound directional characteristics of the bundengan musical instrument", 2020.

{35} "Vibration of clipped strings in the bundengan musical instrument", 2019.

{34} "Simulation study of the vibration of a gunungan", 2019.

{33} "How the directivity of bundengan affects its musical performance", 2019.

{32} "The relation between the depth of field and the visual fatigue caused by stereoscopic wayang kulit shadow images", 2019.

{31} "Experimental and simulation study of the vibration of a rectangular plate with a vertical clamped midline", 2018.

{30} "Transverse vibrations of a bundengan string", 2018.

{29} "Engineering design and analysis in the art of wayang kulit", 2018.

{28} "Computational analysis of the bundengan, an endangered musical instrument from Indonesia", 2018.

{27} "The illusive sound of a bundengan string", 2017.

{26} "Stereoscopic optical measurements of transverse vibrations in the ancient art of wayang kulit", 2017.

{25} "How to use 3D shadows for simple microscopy and vibrometry", 2017.

{24} "Stereoscopic shadow microscopy", 2017.

{23} "A quantitative close analysis of a theatre video recording", 2017.

{22} "Quantitative analysis of the puppet shapes in Ngayogyakarta wayang kulit", 2017.

{21} "Quantitative image analysis of Tintin comics", 2017.

{20} "Audiovisual patterns in wayang kulit", 2017.

{19} "Digital image analysis of wayang kulit movements", 2016.

{18} "Digital 3D wayang kulit images", 2016.

{17} "3D wayang kulit: traditional shadow puppetry meets modern display technology", 2016.

{16} "How to see shadows in 3D", 2014.

{15} "Textile based microfluidics: modulated wetting, mixing, sorting, and energy harvesting", 2012.

{14} "Observation of hydrophobic-like behavior in geometrically patterned hydrophilic microchannels", 2010.

{13} "Quantitative low-cost webcam-based microscopy", 2010.

{12} "Nanoparticle image velocimetry at topologically structured surfaces", 2009.

{11} "Size-dependent trajectories of DNA macromolecules due to insulative dielectrophoresis in submicrometer-deep fluidic channels", 2008.

{10} "Fluorescence measurements", 2008.

{09} "Nanofluidic electrokinetics in quasi-two-dimensional branched U-turn channels", 2008.

{08} "Fabrication of nanofluidic devices in glass with polysilicon electrodes", 2005.

{07} "Optical detection of electrokinetically manipulated single molecules in a nanofluidic chip", 2005.

{06} "Electroosmotic flow analysis of a branched U-turn nanofluidic device", 2005.

{05} "Optical detection of single molecules in nanofluidic chips", 2004.

{04} "Laser frequency stabilization for multiple-wavelength interferometer", 2003.

{03} "Three-wavelength laser light source for absolute sub-Angstrom two point source interferometer", 2003.

{02} "Laser frequency digital stabilization for a portable and user-friendly optical frequency standard", 2002.

{01} "Perancangan dan pembuatan articulated arm sebagai penyalur berkas laser daya rendah", 2001.

Google Sites
Report abuse
Page details
Page updated
Google Sites
Report abuse