Exact(1)
Representative FLUKA simulation results have been validated using in-beam experiment performed on the same beam dump constituents.
Similar(58)
The method is validated using theoretical results in the case of a beam free end.
Furthermore, dynamic behavior of the proposed beam-spring model is validated using empirical natural frequencies.
Quantitative assays were validated using SYBR Green chemistry.
The results were validated using QPCR.
The method is experimentally validated using an elasto-magnetic system, in which a harmonically forced cantilever beam in a non-linear magnetic field accumulates fatigue damage.
To be as accurate as possible, the parameters of this current model have been aligned with results obtained from 3D device simulation models, which have in turn been validated and calibrated using micro-beam radiation experiments at the GSI in Darmstadt, Germany.
The procedure has been developed and validated using the well-known twin-cantilever beam structure.
The method is validated in a beam that is subjected to two different loadings.
The modeling technique used for the analyses of the beams has been validated by comparing experimental and analytical results of an RC beam subjected to large deformations.
This approach, applied to the case of a capacitive doubly-clamped beam resonator used in its in-plane fundamental vibration mode, is validated by simulations using a 0.13 μm CMOS technology.
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