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Nanotech 2006 Vol. 3
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Technical Proceedings of the 2006 NSTI Nanotechnology Conference and Trade Show, Volume 3
Nanotech 2006 Vol. 3
Technical Proceedings of the 2006 NSTI Nanotechnology Conference and Trade Show, Volume 3

Chapter 4:

Sensors & Systems

-Silicon MEMS for Photonic Bandgap Devices
 E.M. Yeatman and A. Lipson
 Imperial College London, UK
-Improvement of dynamic features of an adaptive optical system for detection and correction of ophthalmic distortions
 D.W. de Lima Monteiro, A.S.O. Furtado, O. Soloviev, A.I. Ferreira Jr, F.B. Teixeira, J.G.M. Melo and G. Vdovin
 Universidade Federal de Minas Gerais, BR
-A Multi-Purpose Optical MEMS Sensor for Harsh Environments
 P. Nieva, N. McGruer, G. Adams
 University of Waterloo, CA
-Sensing of Organic Vapors by Flame-Made TiO2 Nanoparticles
 A. Teleki, S.E. Pratsinis, K. Kalyanasundaram and P.I. Gouma
 ETH Zurich, CH
-Novel Sensing Array Nanomaterials: Molecularly-Mediated Assemblies of Nanoparticles
 C-J Zhong, S. Lu, L. Wang, X. Shi, M. Schadt, W. Hao and J. Luo
 State University of New York at Binghamton, US
-Some Novel Applications for Wireless Inertial Sensors
 J.A. Paradiso
 Massachusetts Institute of Technology, US
-Experimental Localization with MICA2 Motes
 M.P. Allen, E.I. Gaura, R.M. Newman and S.N.I. Mount
 Coventry University, UK
-Size does matter – the case for big motes
 R.M. Newman and E.I. Gaura
 Coventry University, UK
-Wireless Micro and Nano Sensors for Physiological and Environmental Monitoring
 B. Kaminska
 Simon Fraser University, CA
-Bridge Local Scour Monitoring System Using MEMS Sensor Zigbee Network
 Y-B Lin, C-C Lee, J-C Chen, K-C Chang and J-S Lai
 National Center for Research on Earthquake Engineering, TW
-Wireless Integrated MicroSystems (WIMS): Coming Revolution in the Gathering of Information
 K.D. Wise
 University of Michigan, US
-Micropower Wireless Sensors
 A.P. Chandrakasan, N. Verma, J. Kwong, D. Daly, N. Ickes, D. Finchelstein, B. Calhoun
 Massachusetts Institute of Technology, US
-Validation for Micro- and Nano-Sensors
 M. Henry
 Oxford University, UK
-“Smart” Holograms – A Novel Diagnostics Platform
 S. Kabilan, A.J. Marshall, A. Horgan, C.D. Creasey, S.J. Kew, K.E.S. Dean, S.F. Terrell, L.J. Affleck
 Smart holograms, UK
-Silicon Carbide Micro/Nano Systems for Harsh Environment and Demanding Applications
 M. Mehregany, X-A Fu and L. Chen
 Case Western Reserve Univesity, US
-Odor sensor using quartz crystal microbalance coated with molecular recognition membrane
 H. Nanto, Y. Takei, T. Imamura and D. Ishigure
 Kanazawa Institute of Technology, JP
-An Analytical Model for Multi-layer and Multi-electrode Piezoelectric Ceramic Actuators
 B-L. Wang and Y-W. Mai
 The University of Sydney, AU
-Electrospun TiO2 nanofibers for gas sensing applications
 I-D Kim, A. Rothschild, H.L. Tuller, D.Y. Kim and S.M. Jo
 Korea Institute of Science and Technology, KR
-A Nanoporous Silicon 1-D Photonic Band Gap Microcavity as a Selective Optical Sensor
 S. Chappel, L. DeLouise and B. Gersten
 Queens College, US
-Sensitivity of Initially Stressed Un-symmetric Micro-Layered Plate in Large Deflection due to Lateral Load
 C-F. Chen
 Chung-Hua University, TW
-Trade-Offs in Cooperative Goal Seek using Nano-Devices
 S. Chnadrasekaran and D.F. Hougen
 Oklahoma University, US
-Silicon MEMS for Photonic Bandgap Devices
 E.M. Yeatman and A. Lipson
 Imperial College London, UK
-Improvement of dynamic features of an adaptive optical system for detection and correction of ophthalmic distortions
 D.W. de Lima Monteiro, A.S.O. Furtado, O. Soloviev, A.I. Ferreira Jr, F.B. Teixeira, J.G.M. Melo and G. Vdovin
 Universidade Federal de Minas Gerais, BR
-A Multi-Purpose Optical MEMS Sensor for Harsh Environments
 P. Nieva, N. McGruer, G. Adams
 University of Waterloo, CA
-Sensing of Organic Vapors by Flame-Made TiO2 Nanoparticles
 A. Teleki, S.E. Pratsinis, K. Kalyanasundaram and P.I. Gouma
 ETH Zurich, CH
-Novel Sensing Array Nanomaterials: Molecularly-Mediated Assemblies of Nanoparticles
 C-J Zhong, S. Lu, L. Wang, X. Shi, M. Schadt, W. Hao and J. Luo
 State University of New York at Binghamton, US
-Some Novel Applications for Wireless Inertial Sensors
 J.A. Paradiso
 Massachusetts Institute of Technology, US
-Experimental Localization with MICA2 Motes
 M.P. Allen, E.I. Gaura, R.M. Newman and S.N.I. Mount
 Coventry University, UK
-Size does matter – the case for big motes
 R.M. Newman and E.I. Gaura
 Coventry University, UK
-Wireless Micro and Nano Sensors for Physiological and Environmental Monitoring
 B. Kaminska
 Simon Fraser University, CA
-Bridge Local Scour Monitoring System Using MEMS Sensor Zigbee Network
 Y-B Lin, C-C Lee, J-C Chen, K-C Chang and J-S Lai
 National Center for Research on Earthquake Engineering, TW
-Wireless Integrated MicroSystems (WIMS): Coming Revolution in the Gathering of Information
 K.D. Wise
 University of Michigan, US
-Micropower Wireless Sensors
 A.P. Chandrakasan, N. Verma, J. Kwong, D. Daly, N. Ickes, D. Finchelstein, B. Calhoun
 Massachusetts Institute of Technology, US
-Validation for Micro- and Nano-Sensors
 M. Henry
 Oxford University, UK
-“Smart” Holograms – A Novel Diagnostics Platform
 S. Kabilan, A.J. Marshall, A. Horgan, C.D. Creasey, S.J. Kew, K.E.S. Dean, S.F. Terrell, L.J. Affleck
 Smart holograms, UK
-Silicon Carbide Micro/Nano Systems for Harsh Environment and Demanding Applications
 M. Mehregany, X-A Fu and L. Chen
 Case Western Reserve Univesity, US
-Odor sensor using quartz crystal microbalance coated with molecular recognition membrane
 H. Nanto, Y. Takei, T. Imamura and D. Ishigure
 Kanazawa Institute of Technology, JP
-An Analytical Model for Multi-layer and Multi-electrode Piezoelectric Ceramic Actuators
 B-L. Wang and Y-W. Mai
 The University of Sydney, AU
-Electrospun TiO2 nanofibers for gas sensing applications
 I-D Kim, A. Rothschild, H.L. Tuller, D.Y. Kim and S.M. Jo
 Korea Institute of Science and Technology, KR
-A Nanoporous Silicon 1-D Photonic Band Gap Microcavity as a Selective Optical Sensor
 S. Chappel, L. DeLouise and B. Gersten
 Queens College, US
-Sensitivity of Initially Stressed Un-symmetric Micro-Layered Plate in Large Deflection due to Lateral Load
 C-F. Chen
 Chung-Hua University, TW
-Trade-Offs in Cooperative Goal Seek using Nano-Devices
 S. Chnadrasekaran and D.F. Hougen
 Oklahoma University, US
ISBN:0-9767985-8-1
Pages:913
Hardcopy:$185.00
 
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