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Modal analysis of the fixed fixed beam is verified using as Scanning Laser Doppler Vibrometer (LDV).
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On the basis of our previous work (Ma et al., 2016, Journal of Sound and Vibration, 378, 92 108) [36], an improved analytical model (IAM) of a rotating twisted shrouded blade with stagger angle simulated by flexible beam with a tip-mass is established based on Timoshenko beam theory, whose effectiveness is verified using finite element (FE) method.
The proposed model is verified using laminated composite beam plates.
During the radiotherapeutic treatment patient positioning and anatomy is verified using validated radiological imaging such as cone beam CT, X-ray or conventional CT (Reference-Imaging as described above).
The analytical model is verified using experimental vibration test responses performed on a free-frictionally supported beam under lateral loading.
This method is verified using the well-known theoretical solution to thermoelastic damping in a beam resonator and experimental data.
The calculations of basic parameters of the processes such as surface melt duration, maximum reflectivity of the probe laser beam, etc., are verified using results of experimental work on GaSb samples irradiated by the ruby (694 nm, 35 ns FWHM) and ArF (193 nm, 13 ns FWHM) lasers.
Open image in new window Fig. 4 Strain comparison of experimental and FAM results: a Beam1, b Beam 2. The fatigue behavior of beams was modeled using the FAM, and the results produced were verified using He's experimental data.
The analytical method was verified using laboratory tests of two steel box beams.
This should be verified using the microscope's phosphor screen as the direct beam could otherwise damage the detector.
The results were verified using a breath test.
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