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The fourth criterion involves the natural period of the building structure.
The criterion involves the calculation of the generalized structured singular value over a specified frequency range.
This criterion involves the eventual uniform distribution, mod 1, of the eigenvalues of the approximating unitaries.
The second criterion involves the characterization of functional modules in terms of biological process GO terms.
The second criterion involves the use of three in silico analyses.
The first part of this criterion involves the distinction between a study of "incident exposures" in which follow-up starts from (or before) the time of first exposure and a study of "prevalent exposures" in which follow-up may start after first exposure.
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This method is different from the traditional perturbation method in which a criterion, involving the determination of the characteristic exponents, is used to yield the transition curves.
As an application example, data from edge delamination tests on carbon epoxy laminates are used for determining a mode III delamination criterion involving the corresponding energy release rate.
The design of the sliding surface for the system is based on a quadratic criterion involving the first six natural modes of the structure.
This model has already been validated [Mechanics of Materials 34 (2002) 217]; it yields finite values and a delamination onset criterion involving the maximum value of the interfacial stresses can be thus considered.
Since delamination is a critical failure mode that often takes place at free edges, this program with a delamination criterion involving the maximum interfacial stresses can prove to be an important tool in composite structure design.
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