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To investigate the behavior of the functionally graded structures at issue, a four parameter power law function is considered.
A multi-dimensional power law function.
A four parameter power law function is used.
Material inhomogeneity is assumed to vary by a power law function in the radial direction and inhomogeneity parameter(m) is power in the mentioned power law function.
Material inhomogeneity parameter (n) is a power in the mentioned power law function.
Material inhomogeneity parameter (m) is a power in the mentioned power law function.
Similar(22)
The functionally graded material properties follow a power-law function.
In particular, the degrees are correlated with order sizes by a power-law function.
Yield stress and maximum stress show strain rate dependency according to a power-law function.
The local heat transfer coefficient is assumed to vary with a power-law function of temperature.
Power-law function has been fitted to the loading data, to determine the displacement offset.
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