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As radiation is absorbed in the sample, the intensity of the radiative beam decreases.
Results show that the effect of weight of the beam decreases the fundamental period of the structure.
The vertical vibration amplitude of the track beam decreases with the increasing radius of curvature, while the lateral amplitude increases with the increasing radius of the curvature.
The F factor of the output beam decreases to 10% of the original one when the boundary transit into turbulence for the setup depicted in the paper.
The first-order decay coefficients are identified by the logarithmic decrement method, and the decay coefficient of the beam decreases with an increase in the cantilever length.
It is found that without the elastic foundation the critical flutter load of the non-uniform beam decreases as the taper ratio of the beam is increased.
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Moreover, under repeated loading and unloading, the bearing capacity of the beam decreased significantly.
On the other hand, the compressive strains in the convex side of the beam decreased due to the out-of-plane flexure.
Increasing actuation distance from 1.5 to 6 cm from the laser beam decreased Dv50 values by 17 27% for commercial nasal‐spray products.
Experimental results showed that the 25% reduction of beam height due to construction mistake caused increasing in deflection of joint beam, decreasing of ductility and also 33% and 26% decreasing in bearing capacity and energy absorption, respectively.
Therefore, both the energy absorbed per unit mass of the core during the compaction stage and the impact resistance of the sandwich beam decrease as the hierarchical order increases.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com