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This paper extends the first order formulations presented in Part I to second order methods for relocation of structural natural frequencies from their initial design values to new modified frequencies.
By assuming that C Q < C ℓ and E J (Q ) < E J, the coupling junction does not qualitatively change the single-qubit Hamiltonians, H ℓ ≈ ε ℓ S ℓ z, with slightly modified frequencies ε ℓ.
The success of the proposed method is based on a modified frequency-response masking approach where one of the subfilters in the approach is implemented by interpolated finite-impulse response (IFIR) technique.
Even in the presence of strong disturbances on the transmission channel, the Signal encoding by a modified "Frequency Shift Keying" method enables the receivers to securely recognise the input signals.
To explore public attitudes towards modifying frequency of mammography screening based on genetic risk.
For each item (original and modified), frequency, range, mean, standard deviation, and inter-rater reliability were calculated.
Bulk optical absorption (µa) and scattering (µ's) parameters were quantified by fitting spatial frequency domain reflectance (R d (f ) ) data with a modified frequency-domain diffusion model by using a reference phantom with known optical properties by using custom Matlab program [ 10].
A methodology is presented to simultaneously modify natural frequencies of an automotive belt drive system via configuration modification to match natural frequencies of the system with its working conditions.
First, this pairing process can modify allelic frequencies through sexual selection: alleles that increase the probability that the carrier is chosen as a mate are, ceteris paribus, positively selected [e.g. 1].
For example, population structure can modify genotype frequencies, masking the effects of selection.
Under the disease risk paradigms that guide GWA and rare variant investigations, mutation and purifying selection are normally considered, either implicitly or explicitly, as the primary population genetic and evolutionary genetic forces that modify the frequencies of disease risk alleles.
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