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It is demonstrated that the various common analytical equations for calculating the bearing component of pull-out resistance give a wide range of calculated values, up to about 200% disparity.
Equations for calculating the eigenvalues and eigenvectors are presented.
First, the existing equations for calculating the discharge coefficient were studied making use of experimental results.
The optimization results are conveniently represented as two identical correlation equations for calculating the optimum dimensions.
New equations for calculating the Importance Measures are developed in terms of these derivatives.
Equations for calculating wave loads on bridge superstructures were developed using results of the parametric study.
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When the liquid/gas height and static pressure are known, an equation for calculating tension per length was developed.
A double logarithmic linear equation for calculating the rate constant (k) and the reaction order (n) was introduced.
A transport equation for calculating an exact flux difference caused by a perturbation is solved.
An equation for calculating the stability coefficient φ of laminated bamboo columns is proposed.
A simplified equation for calculating the degree of moment redistribution at ultimate is proposed.
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