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Integrating a nanopore into a micro-channeled afm cantilever for the localized detection of ions and biomolecules
Schlotter, T., Aramesh, M., Forró, C., Dorwling-Carter, L., Lüchtefeld, I., Ihle, S. J., … Vörös, J. (2019). Integrating a nanopore into a micro-channeled afm cantilever for the localized detection of ions and biomolecules. In 23rd International conference on miniaturized systems for chemistry and life sciences (MicroTAS 2019) (pp. 1196-1197). Chemical and Biological Microsystems Society.
Grundlagen des Reflowlötens. Teil 4: Konsequenzen der fortlaufenden Miniaturisierung
Bell, H., Grossmann, G., Hippin, C., Lange, B., Wohlrabe, H., & Öttl, H. (2018). Grundlagen des Reflowlötens. Teil 4: Konsequenzen der fortlaufenden Miniaturisierung. Reflow Technologie. Blaubeuren-Seissen: Rehm Thermal Systems GmbH.
Grundlagen des Reflowlötens. Teil 3: Zuverlässigkeit und Fehlermanagement
Bell, H., Grossmann, G., & Wohlrabe, H. (2012). Grundlagen des Reflowlötens. Teil 3: Zuverlässigkeit und Fehlermanagement. Reflow Technologie. Blaubeuren-Seissen: Rehm Thermal Systems GmbH.
Optical methods for solid mechanics. A full-field approach
Rastogi, P., & Hack, E. (Eds.). (2012). Optical methods for solid mechanics. A full-field approach. Physics textbook.
International conference on advanced phase measurement methods in optics and imaging
Rastogi, P. K., & Hack, E. (Eds.). (2010). International conference on advanced phase measurement methods in optics and imaging. AIP conference proceedings: Vol. 1236. International conference on advanced phase measurement methods in optics and imaging.
Fundamentals of Reflow Soldering. Part 1: fundamentals of materials technology in the field of soldering
Bell, H., & Grossmann, G. (2009). Fundamentals of Reflow Soldering. Part 1: fundamentals of materials technology in the field of soldering. Reflow Technology. Blaubeuren-Seissen: Rehm Thermal Systems GmbH.