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"Nanobeschichtungen" auf Holz – Erfahrungen im Außenbereich
Künniger, T., & Fischer, A. (2011). "Nanobeschichtungen" auf Holz – Erfahrungen im Außenbereich. In H. Venzmer (Ed.), Altbausanierung: Vol. 5. Oberflächentechnologien und Bautenschutz. 21. Hanseatische Sanierungstage vom 11. bis 13. November 2010 in Rostock-Warnemünde. Vorträge (pp. 111-120). Beuth.
'memory steel' for shear reinforcement of concrete structures
Shahverdi, M., Czaderski, C., & Michels, J. (2019). 'memory steel' for shear reinforcement of concrete structures. In SMAR proceedings. Proceedings of SMAR 2019, fifth conference on smart monitoring, assessment and rehabilitation of civil structures (p. (8 pp.).
<sup>1</sup>H,<sup>13</sup>C-HSQC HRMAS-NMR as a tool for investigating the quality of Fmoc-AA-Wang resins for SPPS
Stähelin, C., Dick, F., Ferrari, S., & Rentsch, D. (2009). 1H,13C-HSQC HRMAS-NMR as a tool for investigating the quality of Fmoc-AA-Wang resins for SPPS. Biopolymers: Vol. 92. (p. 372 (1 pp.). Presented at the 21st american peptide society symposium. Wiley.
"Solar fitness and wellness" - a unique design for sustainable wellness technologies
Weber, R. R., & Baldini, L. (2019). "Solar fitness and wellness" - a unique design for sustainable wellness technologies. In J. L. Scartezzini & B. Smith (Eds.), Journal of physics: conference series: Vol. 1343. CISBAT 2019 international conference on climate resilient cities - energy efficiency & renewables in the digital era (p. 012097 (6 p.). https://doi.org/10.1088/1742-6596/1343/1/012097
12. Schweizerisches Status-Seminar Energie- und Umweltforschung im Bauwesen
Bertschinger, H., & Zimmermann, M. (2002). 12. Schweizerisches Status-Seminar Energie- und Umweltforschung im Bauwesen. (M. Zimmermann & H. Bertschinger, Eds.). 12. Schweizerisches Status-Seminar. ETH Zürich: Empa.
15. Fortbildungskurs Holzbau: Erneuern, Umnutzen, Verstärken von Holzkonstruktionen (EMPA/HSR-Tagung 2002)
Steiger, R. (Ed.). (2002). 15. Fortbildungskurs Holzbau: Erneuern, Umnutzen, Verstärken von Holzkonstruktionen (EMPA/HSR-Tagung 2002). 15. Fortbildungskurs Holzbau. Hochschule Rapperswil: Hochschule Rapperswil.
17<sup>th</sup> WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2013)
Tans, P., & Zellweger, C. (Eds.). (2014). 17th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2013). GAW report: Vol. 213. 17th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2013).
18th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2015)
Tans, P., & Zellweger, C. (Eds.). (2016). 18th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2015). GAW report: Vol. 229. 18th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related tracers measurement techniques (GGMT-2015). La Jolla, CA, USA: World Meteorological Organization.
19th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related measurement techniques (GGMT-2017)
Crotwell, A., & Steinbacher, M. (Eds.). (2018). 19th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related measurement techniques (GGMT-2017). GAW report: Vol. 242. 19th WMO/IAEA meeting on carbon dioxide, other greenhouse gases, and related measurement techniques (GGMT-2017).
2024 roadmap on magnetic microscopy techniques and their applications in materials science
Christensen, D. V., Staub, U., Devidas, T. R., Kalisky, B., Nowack, K., Webb, J. L., … Mandru, A. O. (2024). 2024 roadmap on magnetic microscopy techniques and their applications in materials science. Journal of Physics: Materials. https://doi.org/10.1088/2515-7639/ad31b5
20th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related measurement techniques (GGMT-2019)
Crotwell, A., Lee, H., & Steinbacher, M. (Eds.). (2019). 20th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related measurement techniques (GGMT-2019). GAW report: Vol. 255. 20th WMO/IAEA meeting on carbon dioxide, other greenhouse gases and related measurement techniques (GGMT-2019).
2<SUP>ème</SUP> Journée du rail. 2<SUP>te</SUP> Internationale Schienentagung 1932. 2<SUP>d</SUP> International rail assembly
Roš, M. (Ed.). (1933). 2ème Journée du rail. 2te Internationale Schienentagung 1932. 2d International rail assembly. Empa-Berichte: Vol. 43. 2ème Journée du rail. 2te Internationale Schienentagung 1932. 2d International rail assembly. Zürich: Empa.
2CV.3.19: Towards the correlation of mechanical properties and sawing parameters of silicon wafers
Bidiville, A., Wasmer, K., Michler, J., Ballif, C., Van der Meer, M., & Nasch, P. M. (2007). 2CV.3.19: Towards the correlation of mechanical properties and sawing parameters of silicon wafers. Presented at the Poster presented at the 22nd European Photovoltaic Solar Energy & Exhibition. Mailand, Italy.
2CV.3.20: effect of strength test methods on silicon wafer strength measurements
Wasmer, K., Bidiville, A., Michler, J., Ballif, C., Van der Meer, M., & Nasch, P. (2007). 2CV.3.20: effect of strength test methods on silicon wafer strength measurements. Presented at the 22nd European photovoltaic solar energy & exhibition. Mailand, Italy.
3D ESPI and 3D shearography measurements applied to NDT and FEM analysis validation for industrial quality control
Hack, E., & Riner, M. (2001). 3D ESPI and 3D shearography measurements applied to NDT and FEM analysis validation for industrial quality control. In W. Osten, W. P. O. Jueptner, & M. Kujawinska (Eds.), Proceedings of SPIE: Vol. 4398. Optical measurement systems for industrial inspection II: application in industrial design (pp. 155-167). https://doi.org/10.1117/12.445546
3D holo-tomographic mapping of COVID-19 microclots in blood to assess disease severity
Bergaglio, T., Synhaivska, O., & Nirmalraj, P. N. (2024). 3D holo-tomographic mapping of COVID-19 microclots in blood to assess disease severity. Chemical & biomedical imaging. https://doi.org/10.1021/cbmi.3c00126
3D magnetic nanostructures. Fabrication, characterisation, application
Pip, P., Donnelly, C., Heyderman, L., & Philippe, L. (2019). 3D magnetic nanostructures. Fabrication, characterisation, application. Presented at the Empa PhD students' symposium. St. Gallen, Switzerland.
3D printable self-sensing magnetorheological elastomer
Costi, L., Georgopoulou, A., Mondal, S., Iida, F., & Clemens, F. (2023). 3D printable self-sensing magnetorheological elastomer. Macromolecular Materials and Engineering. https://doi.org/10.1002/mame.202300294
3D printing: fabrication of metal matrix composite by laser metal deposition and direct dry injection of nanopowders
Cui, D., Mohanta, A., Leparoux, M., Hoffmann, P., Favre, S., & Tortorici, P. (2020). 3D printing: fabrication of metal matrix composite by laser metal deposition and direct dry injection of nanopowders. Presented at the Medtronic science & technology online conference. Minneapolis, USA.
3D virtual histopathology by phase-contrast X-ray micro-CT for follicular thyroid neoplasms
Tajbakhsh, K., Stanowska, O., Neels, A., Perren, A., & Zboray, R. (2024). 3D virtual histopathology by phase-contrast X-ray micro-CT for follicular thyroid neoplasms. IEEE Transactions on Medical Imaging. https://doi.org/10.1109/TMI.2024.3372602
 

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