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Number of items at this level (without sub-levels): 15.


Barnes, Michael John ; De Gersem, Herbert ; Kramer, Thomas ; Woog, David (2021):
Investigations on diode current, core biasing and analogue modulation of an inductive adder.
8th Euro-Asian Pulsed Power Conference, Biarritz, France, 29.08.- 02.09.2021, [Conference or Workshop Item]

Bazyl, Dmitry (2019):
Development of an SRF Reduced-beta Cavity for the Injector of the S-DALINAC.
Darmstadt, Technische Universität,
[Ph.D. Thesis]


D'Angelo, Laura Anna Maria (2023):
Quasi-3D Quench Simulation for Superconducting Accelerator Magnets. (Publisher's Version)
Darmstadt, Technische Universität Darmstadt,
DOI: 10.26083/tuprints-00023131,
[Ph.D. Thesis]


Elasmi, Mehdi ; Erath, Christoph ; Kurz, Stefan
Langer, Ulrich ; Schanz, Martin ; Steinbach, Olaf ; Wendland, Wolfgang L. (eds.) (2019):
Computation of forces in electro–mechanical energy converters using Isogeometric FEM–BEM coupling.
17th Workshop Fast Boundary Element Methods in Industrial Applications, Hirschegg, Austria,, [Conference or Workshop Item]

Elasmi, Mehdi ; Erath, Christoph ; Kurz, Stefan (2019):
Isogeometric BEM-FEM coupling for the simulation of electric machines.
9th International Congress on Industrial and Applied Mathematics, Valencia, 15-19 July, 2019, [Conference or Workshop Item]


Hemker, T. ; Glocker, M. ; De Gersem, Herbert ; Stryk, Oskar von ; Weiland, Thomas (2006):
Mixed-integer simulation-based optimization for a superconductive magnet design.
pp. 125-127, 6th International Conference on Computational Elektromagnetics, Aachen, 4.-6. April 2006, [Conference or Workshop Item]


Loukrezis, Dimitrios (2019):
Adaptive approximations for high-dimensional uncertainty quantification in stochastic parametric electromagnetic field simulations.
Darmstadt, Technische Universität,
[Ph.D. Thesis]


Ouedraogo, Yun (2020):
Modelling of Electrohydrodynamic Droplet Motion under the Influence of Strong Electric Fields.
Darmstadt, Technische Universität,
DOI: 10.25534/tuprints-00014008,
[Ph.D. Thesis]


Perez, F. ; Ocampo, J. ; Salom, A. ; Solans, P. ; Ebert, M. ; Onken, R. ; Hülsmann, P. ; Müller, W. F. O. (2022):
3HC - Third Harmonic normal Conducting active Cavity Collaboration between HZB, Desy and Alba.
In: Proceedings of the 13th International Particle Accelerator Conference, pp. 1471-1474,
Geneva, JACoW, 13th International Particle Accelerator Conference, Bangkok, Thailand, 12.-17.06.2022, ISBN 978-3-95450-227-1,
DOI: 10.18429/JACoW-IPAC2022-TUPOMS028,
[Conference or Workshop Item]

Puchtler, Steffen ; Schirra, Tobias ; Kirchner, Eckhard ; Späck-Leigsnering, Yvonne ; De Gersem, Herbert (2021):
Effiziente Berechnung des elektrischen Feldes im Wälzkontakt - Beitrag zur Ermittlung der elektrischen Impedanz.
In: VDI-Berichte, 2378, pp. 75-86, Düsseldorf, VDI Verlag GmbH, 14. VDI-Fachtagung Gleit- und Wälzlagerungen 2021, Online-Tagung, 03.-04.05.2021, ISSN 0083-5560, ISBN 978-3-18-092378-9,
[Conference or Workshop Item]

Patrushev, Mikhail (2021):
Transparente Randbedingungen für längshomogene Wellenleiterstrukturen. (Publisher's Version)
Darmstadt, Technische Universität,
DOI: 10.26083/tuprints-00017947,
[Ph.D. Thesis]

Passarelli, Andrea (2019):
Characterization of impedance and wakefields of accelerator devices in the short bunch limit and beam dynamics effects for the CLIC Damping Rings.
Darmstadt, Technische Universität,
[Ph.D. Thesis]


Schmid, Steffen Alexander (2022):
Gitterfreie Simulation von Raumladungseffekten in Teilchenstrahlen. (Publisher's Version)
Darmstadt, Technische Universität,
DOI: 10.26083/tuprints-00021129,
[Ph.D. Thesis]

Späck-Leigsnering, Yvonne Thea Katharina (2020):
Electrothermal Modeling, Simulation and Optimization of Surge Arresters.
Darmstadt, Technische Universität,
DOI: 10.25534/tuprints-00009084,
[Ph.D. Thesis]


Taylor, Kyle Aaron (2020):
Mesoscopic Modelling of Mechanically-Modulated Electrical Conductivity in Zinc Oxide Varistors.
Darmstadt, Technische Universität Darmstadt,
DOI: 10.25534/tuprints-00012691,
[Ph.D. Thesis]

This list was generated on Sun Jun 4 01:03:43 2023 CEST.