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A novel efficiency expression was developed to predict compressive strength.
Finally an expression was developed to correlate the jet length against the bed and particle properties.
A reduced quadratic expression was developed for reproducing the reduction efficiency (RE) data.
Through logistic regression and linear fracture mechanics an expression was developed to calculate the probability of a discontinuity's stress intensity factor exceeding the fracture toughness of the material.
Based on test results, a simplified expression was developed to predict subgrade deformation on a CBR of 6 as a function of aircraft passes and airfield mat properties.
Based on these findings a simple mathematical expression was developed as a function of PZC and inter-ionic interaction strength probed by ν(C2H) to predict the stability limits of [BMIM]+-based ILs immobilized on metal-oxides.
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An analytical expression is developed with sufficient accuracy.
A time-dependent expression is developed for sound radiation from a dipole source by Fourier synthesis.
The threshold voltage expression is developed using inversion carrier charge sheet density method.
An expression is developed for the buckling coefficient based on finite element analysis.
A simple algebraic expression is developed for this intermediate ring stiffness criterion.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com