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Natural frequencies of a damaged simply supported beam with a stationary roving mass are studied theoretically.
Nonlinear forced vibrations of rectangular plates carrying a central concentrated mass are studied.
The effects of axial location and translation inertia of the concentrated mass are studied.
In a second step, the coupling effects of the LJ size and energy parameters with the mass are studied.
The natural vibration frequencies of a constrained arm carrying an end mass are studied in this paper.
The effects of QCM's resonant frequency influenced by the variation of the deposited mass are studied by using the finite element analysis (FEA) software.
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Sample mass was studied by means of a univariate procedure (optimum at 50 mg).
The dynamic response of a high-speed spindle subject to a moving mass is studied.
A clamped free flexible arm rotating in a horizontal plane and carrying a moving mass is studied in this paper.
Compact and ground cement composites, and cement composites with addition of 1.5% of EAF dust by mass were studied.
Secondly, a potential regression model to measure the KtUVER as a function of the relative optical air mass was studied.
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