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Dielectric Resonators for the Measurements of the Surface Impedance of Superconducting Films

References [1] Oates, D. E. (2012). Microwave measurements of fundamental properties of superconductors. In 100 Years of Superconductivity. CRC Press, 459-471. [2] Hein, M. (2010). High-Temperature Superconductor Thin Films at Microwave Frequencies, Springer. [3] Weinstock, H., Nisenoff, M. (Eds.) (2001). Microwave Superconductivity. Kluwer Academic Publishers. [4] Collin, R. E. (1992). Foundation for Microwave Engineering, 2nd Edition. McGraw-Hill. [5] Silva, E., Lanucara, M

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Effect of Oxygen Doping on the Structure of TiN Surface Coatings

References [1] Makino, Y., et al., Characterization of Ti(NxOy) coatings produced by the arc ion plating method. Surface and Coatings Technology, 1998. 98(1-3): p. 934-938. [2] Chan, M.-H. and F.-H. Lu, Preparation of titanium oxynitride thin films by reactive sputtering using air/Ar mixtures. Surface and Coatings Technology, 2008. 203(5-7): p. 614-618. [3] Wu, Y., et al., Microstructure and mechanical properties of reactively sputtered Ti(O,N) coatings. International Journal of Refractory Metals and Hard

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Macroscopic Thin Film Deposition Model for the Two-Reactive-Gas Sputtering Process

References [1] Berg, S., Nyberg, T., Blom, H.-O., and Nender, C., “Computer modeling as a tool to predict deposition rate and film composition in the reactive sputtering process”, J. Vac. Sci. Technol. A 16(3). , May/Jun 1998, pp. 1277-1285. [2] Berg, S., Nender, C., „Modeling of Mass Transport and Gas Kinetics of the Reactive Sputtering Process”, Journal de Physique IV, Colloque C5, supplément au Journal de Physique II , Volume 5, juin 1995, pp. 45-54. [3] Berg, S., Katardijev, I. V., „Preferential sputtering effects in thin film processing

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Interlaboratory Comparison of Thermal AC Voltage Standards

. IEEE Transactions on Instrumentation and Measurement , 66 (6), 1372-1378. [4] Kampik, M., Grzenik, M., Lippert, T., Trinchera, B. (2017). Comparison of a planar thin-film thermal AC voltage standard up to 1 MHz. IEEE Transactions on Instrumentation and Measurement , 66 (6), 1379-1384. [5] Funck, T., Kampik, M., Kessler, E., Klonz, M., Laiz, H., Lapuh, R. (2005). Determination of the AC-DC voltage transfer difference of high-voltage transfer standards at low frequencies. IEEE Transactions on Instrumentation and Measurement , 54 (2), 807-809. [6

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Characterization of Surface Micro-Roughness by Off-Specular Measurements of Polarized Optical Scattering

-2103. [16] Ren, J., Zhao, J. (2010). Measurement of a bidirectional reflectance distribution and system achievement based on a hemi-parabolic mirror. Optics Letters, 35, 1458-1460. [17] Liu, C., Liu, T., Fu, W. (2010). Out-of-plane ellipsometry measurements of nanoparticles on surfaces for thin film coated wafer inspection. Optics & Laser Technology , 42, 902-910. [18] Jin, L., Kasahara, M., Gelloz, B., Takizawa, K. (2010). Polarization properties of scattered light from macrorough surfaces. Optics Letters, 35, 595-597. [19] Renhorn, I., Hallberg, T

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Evaluation of Hot-Mix Asphalt Containing Portland Cement Treated Blast Furnace Slag

for ductility of bituminous materials. ASTM D113. West Conshohocken, PA: ASTM. 44. ASTM. 2001a. Standard test method for flash and fire points by Cleveland Open Cup. ASTM D92. West Conshohocken, PA: ASTM. 45. ASTM. 2012. Standard test method for effect of heat and air on a moving film of asphalt (Rolling Thin-Film Oven Test). ASTM D2872-12e1. West Conshohocken, PA: ASTM. 46. AASHTO. 2015. Standard method of test for resistance to plastic flow of bituminous mixtures using Marshall apparatus. AASHTO T245. Washington, DC: AASHTO. 47. AASHTO

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Spectral EEG Features of a Short Psycho-physiological Relaxation

References [1] Travis, F. (2001). Autonomic and EEG patterns distinguish transcending from other experiences during Transcendental meditation. International Journal of Psychophysiology 42, 1-9. [2] Vavrinský, E. (2005). Thin-film microelectrodes for electro-chemical conductive sensors applied in biomedical monitoring of stress. Ph.D. thesis, Slovak Technical University in Bratislava, Faculty of Electrical Engineering and Informatics, Department of microelectronics. [3] Foster, D. (1990). EEG and subjective

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Graphene Langmuir-Schaefer films Decorated by Pd Nanoparticles for NO2 and H2 Gas Sensors

REFERENCES [1] Seiyama, T., Kato, A., Fujiishi, K., Nagatani, M. (1962). A new detector for gaseous components using semiconductive thin films. Analytical Chemistry , 34, 1502-1503. [2] Basu, S., Bhattacharyya, P. (2012). Recent developments on graphene and graphene oxide based solid state gas sensors. Sensors and Actuators B , 173, 1-21. [3] Llobet, E. (2013). Gas sensors using carbon nanomaterials: A review. Sensors and Actuators B , 179, 32-45. [4] Varghese, S. S., Lonkar, S., Singh K. K., Swaminathan, S., Abdala, A. (2015). Recent

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Effects of Slight Non-Stoichiometry in Sm-Ba-Cu-O Systems on Superconducting Characteristics

, R. K., Song, K. J., Ha, D. W., Kim, T. H., Lee, N. J., Youm, D., Yang, J. S., Kim, H. K., Yu, K. K., Moon, S. H., Ko, K. P., Yoo, S. I. (2008). Development of long-length SmBCO coated conductors using a batch-type reactive co-evaporation method. Superconduct. Sci. Technol. , 21 (3), 034003-1-6. Wang, H., Serquis, A., Maiorov, B., Civale, L., Jia, Q. X., Arendt, P. N., Foltyn, S. R., MacManus-Driscoll, J. L., Zhang, X. (2006). Microstructure and transport properties of Y-rich YBa 2 Cu 3 O 7-δ thin films. J. Appl. Phys. , 100 (5), 053904

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Modelling and Simulation of the Pyroelectric Detector Using MATLAB/Simulink

. In Southeastcon '94: Creative Technology Transfer - A Global Affair , April 10-13, 1994. IEEE, 7-11. Capineri, L., Masotti, L., Mazzoni, M. (2000). Pyroelectric PVDF sensor modeling of the temporal voltage response to arbitrarily modulated radiation. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control , 47 (6), 1406-141. Weller, H. J., Setiadi, D., Binnie, T. D. (2000). Low-noise charge sensitive readout for pyroelectric sensor arrays using PVDF thin film. Sensors and Actuators A: Physical

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