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Number of items: 5.

Naqui, J. and Damm, C. and Wiens, A. and Jakoby, R. and Su, Lijuan and Martin, F. (2014):
Transmission lines loaded with pairs of magnetically coupled stepped impedance resonators (SIRs): Modeling and application to microwave sensors.
pp. 1-4, Microwave Symposium (IMS), 2014 IEEE MTT-S International, [Conference or Workshop Item]

Tarca, A. L. and Lauria, M. and Unger, M. and Bilal, E. and Boue, S. and Kumar Dey, K. and Hoeng, J. and Koeppl, H. and Martin, F. and Meyer, P. and Nandy, P. and Norel, R. and Peitsch, M. and Rice, J. and Romero, R. and Stolovitzky, G. and Talikka, M. and Xiang, Y. and Zechner, C. (2013):
Strengths and limitations of microarray-based phenotype prediction: lessons learned from the IMPROVER Diagnostic Signature Challenge.
In: Bioinformatics (Oxford, England), 29 (22), pp. 2892-2899. [Article]

Gil, M. and Damm, C. and Sazegar, M. and Maasch, M. and Giere, A. and Schuessler, M. and Aznar, F. and Velez, A. and Bonache, J. and Jakoby, Rolf and Martin, F. (2011):
Tunable sub-wavelength resonators based on barium-strontium-titanate thick-film technology.

Gil, M. and Damm, C. and Giere, A. and Sazegar, M. and Bonache, J. and Jakoby, Rolf and Martin, F. (2009):
Electrically tunable split-ring resonators at microwave frequencies based on barium-strontium-titanate thick films.
In: Electronics Letters, 45 (8), pp. 417-418. [Article]

Gil, M. and Damm, A. and Sazegar, M. and Bonache, J. and Jakoby, Rolf and Martin, F. (2009):
Reconfigurable Split-ring Resonators based on ferroelectric materials.
1, Proc. of Young Scientist Meeting on Metamaterials, [Conference or Workshop Item]

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