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  • (-) Publication Year = 2006 - 2019
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20 years of experience with structural health monitoring of objects with CFRP components
Meier, U., Brönnimann, R., Anderegg, P., & Terrasi, G. P. (2013). 20 years of experience with structural health monitoring of objects with CFRP components. In O. Büyüköztürk, M. A. Taşdemir, O. Güneş, & Y. Akkaya (Eds.), Rilem Bookseries: Vol. 6. Nondestructive testing of materials and structures (pp. 959-976). https://doi.org/10.1007/978-94-007-0723-8_136
3D characterization of open porous vacuum plasma sprayed titanium coatings by means of high resolution micro computer tomography
Jaeggi, C., Mooser, R., Frauchiger, V., & Wyss, P. (2009). 3D characterization of open porous vacuum plasma sprayed titanium coatings by means of high resolution micro computer tomography. Materials Letters, 63(30), 2643-2645. https://doi.org/10.1016/j.matlet.2009.09.023
3D micro-scale deformations of wood in bending: synchrotron radiation μCT data analyzed with digital volume correlation
Forsberg, F., Mooser, R., Arnold, M., Hack, E., & Wyss, P. (2008). 3D micro-scale deformations of wood in bending: synchrotron radiation μCT data analyzed with digital volume correlation. Journal of Structural Biology, 164(3), 255-262. https://doi.org/10.1016/j.jsb.2008.08.004
<I>Saurichthys </I>and other fossil fishes from the late Smithian (Early Triassic) of Bear Lake County (Idaho, USA), with a discussion of saurichthyid palaeogeography and evolution
Romano, C., Kogan, I., Jenks, J., Jerjen, I., & Brinkmann, W. (2012). Saurichthys and other fossil fishes from the late Smithian (Early Triassic) of Bear Lake County (Idaho, USA), with a discussion of saurichthyid palaeogeography and evolution. Bulletin of Geosciences, 87(3), 543-570. https://doi.org/10.3140/bull.geosci.1337
<i>In-situ</i> impedance matching in Nb/Nb<sub>2</sub>O<sub>5</sub>/Ptlr memristive nanojunctions for ultra-fast neuromorphic operation
Molnár, D., Török, T. N., Sánta, B., Gubicza, A., Magyarkuti, A., Hauert, R., … Csontos, M. (2018). In-situ impedance matching in Nb/Nb2O5/Ptlr memristive nanojunctions for ultra-fast neuromorphic operation. Nanoscale, 10(41), 19290-19296. https://doi.org/10.1039/C8NR06226A
A challenge for high-performance full-field strain measurement systems
Patterson, E., Brailly, P., Burguete, R., Hack, E., Siebert, T., & Whelan, M. (2007). A challenge for high-performance full-field strain measurement systems. Strain, 43(3), 167-180. https://doi.org/10.1111/j.1475-1305.2007.00344.x
A comparison of three different notching ions for small-scale fracture toughness measurement
Best, J. P., Zechner, J., Shorubalko, I., Oboňa, J. V., Wehrs, J., Morstein, M., & Michler, J. (2016). A comparison of three different notching ions for small-scale fracture toughness measurement. Scripta Materialia, 112, 71-74. https://doi.org/10.1016/j.scriptamat.2015.09.014
A computational study of the effect of structural anisotropy of porous asphalt on hydraulic conductivity
Gruber, I., Zinovik, I., Holzer, L., Flisch, A., & Poulikakos, L. D. (2012). A computational study of the effect of structural anisotropy of porous asphalt on hydraulic conductivity. Construction and Building Materials, 36, 66-77. https://doi.org/10.1016/j.conbuildmat.2012.04.094
A dielectrophoretic method for high yield deposition of suspended, individual carbon nanotubes with four-point electrode contact
Schwamb, T., Choi, T. Y., Schirmer, N., Bieri, N. R., Burg, B., Tharian, J., … Poulikakos, D. (2007). A dielectrophoretic method for high yield deposition of suspended, individual carbon nanotubes with four-point electrode contact. Nano Letters, 7(12), 3633-3638. https://doi.org/10.1021/nl071853t
A new failure analysis roadmap for power semiconductor modules and devices
Jacob, P., Kunz, A., & Nicoletti, G. (2011). A new failure analysis roadmap for power semiconductor modules and devices. In ISTFA 2011. Conference proceedings from the 37th international symposium for testing and failure analysis (pp. 419-423). https://doi.org/10.31399/asm.cp.istfa2011p0419
A novel interface coupling droplet microfluidics with MALDI-mass spectrometry
Küster, S. K., Fagerer, S. R., Verboket, P. E., Eyer, K., Jefimovs, K., Zenobi, R., & Dittrich, P. S. (2012). A novel interface coupling droplet microfluidics with MALDI-mass spectrometry. In T. Fujii, A. Hibara, S. Takeuchi, & T. Fukuba (Eds.), Proceedings of the sixteenth international conference on miniaturized systems for chemistry and life sciences (µTAS 2012) (pp. 251-253). Chemical and Biological Microsystems Society.
A novel nanostructured scanning near field optical microscopy probe based on an adirectional asymmetry
Lotito, V., Hafner, C., Sennhauser, U., & Bona, G. L. (2012). A novel nanostructured scanning near field optical microscopy probe based on an adirectional asymmetry. Journal of Computational and Theoretical Nanoscience, 9(3), 486-494. https://doi.org/10.1166/jctn.2012.2050
A reference material for dynamic displacement calibration
Davighi, A., Hack, E., Patterson, E., & Whelan, M. (2010). A reference material for dynamic displacement calibration. F. Brémand (Ed.), EPJ web of conferences: Vol. 6. (p. 46006 (6 pp.). Presented at the ICEM 14 – 14th international conference on experimental mechanics. https://doi.org/10.1051/epjconf/20100646006
A reference material for establishing uncertainties in full-field displacement measurements
Hack, E., Lin, X., Patterson, E. A., & Sebastian, C. M. (2015). A reference material for establishing uncertainties in full-field displacement measurements. Measurement Science and Technology, 26(7), 075004 (13 pp.). https://doi.org/10.1088/0957-0233/26/7/075004
A single probe for imaging photons, electrons and physical forces
Pilet, N., Lisunova, Y., Lamattina, F., Stevenson, S. E., Pigozzi, G., Paruch, P., … Raabe, J. (2016). A single probe for imaging photons, electrons and physical forces. Nanotechnology, 27, 235705 (9 pp.). https://doi.org/10.1088/0957-4484/27/23/235705
A unifying view of the constant-phase-element and its role as an aging indicator for Li-Ion batteries
Cuervo-Reyes, E., Scheller, C. P., Held, M., & Sennhauser, U. (2015). A unifying view of the constant-phase-element and its role as an aging indicator for Li-Ion batteries. Journal of the Electrochemical Society, 162(8), A1585-A1591. https://doi.org/10.1149/2.0791508jes
A very unusual transistor failure, caused by a solenoid
Jacob, P., & Furrer, R. (2017). A very unusual transistor failure, caused by a solenoid. Microelectronics and Reliability, 76-77, 102-105. https://doi.org/10.1016/j.microrel.2017.06.058
A wall-thickness-based method of adaptive integration time determination for X-ray computed tomography
Hofmann, J., & Flisch, A. (2006). A wall-thickness-based method of adaptive integration time determination for X-ray computed tomography. NDT and E International, 39(8), 668-674. https://doi.org/10.1016/j.ndteint.2006.06.001
A wireless implantable passive strain sensor (WIPSS)
Wendlandt, M., Umbrecht, F., Hierold, C., Gattiker, F., Neuenschwander, J., & Sennhauser, U. (2007). A wireless implantable passive strain sensor (WIPSS). In Technical aids for rehabilitation (TAR 2007). European symposium. (pp. 89-90). Zentrum für innovative Gesundheitstechnologie (ZiG).
A wireless implantable passive strain sensor system
Umbrecht, F., Wendlandt, M., Juncker, D., Hierold, C., & Neuenschwander, J. (2006). A wireless implantable passive strain sensor system. In IEEE Sensors. Sensors, 2005 IEEE (pp. 20-23). IEEE.
 

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