Design and Modelling of MEMS Resonators for an Artificial Basilar Membrane

Author:

Abdul Basit1,Shibly Mohammad Abul Hasan2ORCID,Asary Abdul Rab3,Ruma Nusrat Jahan2

Affiliation:

1. Nanotechnology Research, and Application Center, Sabanci University, 34956 Istanbul, Turkey

2. Department of Textile Engineering, National Institute of Textile Engineering and Research, Dhaka 1350, Bangladesh

3. Department of Energy Science and Engineering, University of Naples Parthenope, 80133 Napoli, Italy

Publisher

MDPI

Reference17 articles.

1. Kaskel, A., Hummer, P.J., and Daniel, L. (1999). Glencoe/McGraw-Hill. Biology: An Everyday Experience, Glencoe/McGraw-Hill.

2. Design, fabrication and characterization of piezoelectric cantilever MEMS for underwater application;Abdul;Micro Nano Eng.,2020

3. Abdul, B., Mastronardi, V.M., Qualtieri, A., Algieri, L., Guido, F., Rizzi, F., and De Vittorio, M. (2020). Sensitivity and Directivity Analysis of Piezoelectric Ultrasonic Cantilever-Based MEMS Hydrophone for Underwater Applications. J. Mar. Sci. Eng., 8.

4. Biomimetic Cilia-based MEMS Sensors for Underwater Applications—A Review;Abdul;N. Am. Acad. Res.,2021

5. Goelzer, B., Hansen, C.H., and Sehrndt, G.A. (1995). Occupational Exposure to Noise Evaluation, Prevention and Control, The World Health Organization.

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