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First mode natural frequencies, mode shape, and total damping values were obtained from forced excitation.
The variation of the plates' mode shape and the effect of the fibres' orientation are investigated.
It is found that mode shape and critical buckling pressure changes with variation in geometrical parameters of shells.
The frequency equations, mode shape and force vector are formulated in terms of the elements of the structural matrices.
The relationship between the vibrational frequency and mode shape and the size of the cutout is discussed.
Transmission loss, localization factor, mode shape and input power flow are used to investigate the effectiveness of RWR.
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Mode shapes and natural frequencies are obtained.
Moreover, φ x and ω x denote the measured real mode shapes and natural frequencies, respectively.
The modal analysis is performed to show several mode shapes and modal frequencies.
The proposed damage localization method requires using mode shapes and natural frequencies.
Conventional eigen-analysis could provide information about mode shapes and participation factors (PF).
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