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novel devices
The design and manufacturing technology of carbon nanotube field emitters for novel devices of planar emission vacuum micro-and nanoelectronics are described.
      
New pilot data from novel devices to move the wrist demonstrate benefit and suggest that successive improvement of the function of the arm progressing to the distal muscles may eventually lead to significant disability reduction.
      
New pilot data from novel devices to move the wrist demonstrate benefit and suggest that successive improvement of the function of the arm progressing to the distal muscles may eventually lead to significant disability reduction.
      
Finally we comment on the application of novel devices offering variable polarization.
      
GaAs has excellent optical, electrical, and mechanical properties and shows promise to be used in the fabrication of novel devices.
      
Novel devices proposed and discussed are the cylinder lens and the "scattering tube" (a cylindrical mirror).
      
The polar-axis oriented CBTi144 films would open for novel devices as Pb-free piezoelectric materials.
      
Novel devices proposed and discussed are the cylinder lens and the "scattering tube" (a cylindrical mirror).
      
Novel devices and interaction techniques for human-scale haptics
      
The emphasis on high aspect ratio micromachining techniques for microsystems/MEMS has been mainly to achieve novel devices with, for example, high sensing or actuation performance.
      
While a great deal of recent research has focused on the development of novel devices, attention must now be paid to the formulation of these macromolecular drugs.
      
These novel devices suppress some of the Short Channel Effects (SCE) efficiently, but at the same time more physics based modeling is required to investigate device operation.
      
New directions of novel devices utilizing selective epitaxial growth and the integration of Si/Ge superlattices for enhanced performance in field effect transistors are described.
      
The interest in superconducting electronics working at millikelvin temperatures has increased during the past few years, and several novel devices and amplifiers utilizing mesoscopic Josephson junctions have been developed.
      
Bio-plasmonics is proposed for the research and development of novel devices, which use biomolecules as a part of the plasmon oscillation system to actively interact with nano/micro structure.
      
New materials and nanostructures with superior electro-mechanical properties are emerging in the development of novel devices.
      
The self-organized steps and 3-D islands provide a possible route for fabricating novel devices based on quantum wires and quantum dots.
      
Major advantages ofn- situ processing include the preservation of pristine material surface, improved device performance, and fabrication of novel devices.
      
Novel devices based on the properties of both YBCO and LiNbO3 could be realized based on these results.
      
Information regarding the energy band structure and impurity or defect levels present in the material is essential to understand and enhance the performance of current detectors along with the development of future novel devices.
      
 

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