Khan, Z., Saphala, A., Kartmann, S., Koltay, P., Zengerle, R., Amft, O., & Shu, Z. [ca. 2024]. Hybrid printing of conductive tracesfrom bulk metal for digital signals in intelligent devices [Cd]. Freiburg: Universität. https://doi.org/10.3390/mi15060750
ISO-690 (author-date, English)KHAN, Zeba, SAPHALA, Addythia, KARTMANN, Sabrina, KOLTAY, Peter, ZENGERLE, Roland, AMFT, Oliver und SHU, Zhe, 2024. Hybrid printing of conductive tracesfrom bulk metal for digital signals in intelligent devices. Freiburg: Universität.
Modern Language Association 9th editionKhan, Z., A. Saphala, S. Kartmann, P. Koltay, R. Zengerle, O. Amft, und Z. Shu. Hybrid printing of conductive tracesfrom bulk metal for digital signals in intelligent devices. cd, Universität, 2024, https://doi.org/10.3390/mi15060750.
Mohr Siebeck - Recht (Deutsch - Österreich)Khan, Zeba/Saphala, Addythia/Kartmann, Sabrina/Koltay, Peter/Zengerle, Roland/Amft, Oliver u. a.: Hybrid printing of conductive tracesfrom bulk metal for digital signals in intelligent devices, Freiburg 2024.
Emerald - HarvardKhan, Z., Saphala, A., Kartmann, S., Koltay, P., Zengerle, R., Amft, O. und Shu, Z. (2024), Hybrid printing of conductive tracesfrom bulk metal for digital signals in intelligent devices, Bd. , Universität, Freiburg, verfügbar unter:https://doi.org/10.3390/mi15060750.