Focuses on the development of 'eSee-Shells', chronic multimodal neural interface devices using transparent, inkjet-printed electrocorticography (ECoG) arrays.
Explores the integration of silicon on flexible substrates for bioelectronics applications and the fabrication of flexible multiplexed transistor arrays.
Explores sheath formation, plasma etching, ion velocity, and energy in industrial plasmas, emphasizing their significance for modern electronics manufacturing.
Covers the estimation of maximum electrical efficiency in monocrystalline silicon solar cells through calculations involving photon energy and electrical energy harvested.
Introduces the ME-104 course on structural mechanics, covering objectives, logistics, and key concepts in understanding static forces and structural analysis.
Covers design considerations, skin structure, stress and strain, mechanoreceptors, substrates, and strain effects on electrical resistance in flexible bioelectronics.