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Ambient tests performed following the retrofit of the building with visco-elastic dampers show that the structural fundamental mode frequency of the building has increased.
The mode frequency of the unstable mode is located by root searching, and the final root refinement is obtained by a rapid inverse iteration procedure for complex roots.
The G-band mode frequency of single-walled carbon nanotubes (SWCNTs) is studied on the basis of a new equivalent spring model.
The result is a relatively large manipulator stroke of 20 μm in all directions combined with a high first vibration mode frequency of 3.8 kHz in relation to the used area of 4.9 mm × 5.2 mm.
It is shown that G-band mode frequency of a SWCNT is linearly dependent on strain when the strain is small, showing the possibility of using SWCNTs as strain sensors.
Based on a nonlinear stick-spiral model, we propose an analytical method to study the strain dependent G-band mode frequency of single-walled carbon nanotubes (SWCNTs) under axial, radial and torsional strain.
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Schutz, B. F.; Will, C. M. A new semianalytic technique for determining the complex normal mode frequencies of black holes is presented.
The level spacings of Cooper-pair box can be designed to resonantly match or largely detune from the mode frequencies of the one-dimensional transmission line resonators.
An adaptive notch filter is designed to estimate multiple bending mode frequencies of the deployable manipulator and to minimize the effect of bending vibration.
Results show a linear relation between the square of the "constrained mode" and "free mode" frequencies of the simply supported beam and the axial compressive load.
The excellent performance of the DSC on high mode frequencies of beams and isotropic plates is retained and also independent of boundary conditions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com