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In the literature, previous models are proposed for predicting LCC [18, 19, 20, 21, 22, 23].
A heat transfer model is proposed for predicting transfer coefficients in circulating fluidizeds beds.
Modified Halpin Tsai equations are proposed for predicting the transverse and shear moduli of hybrid composites.
Then an intelligent model is proposed for predicting the recovery of the process.
At the end, an empirical model was proposed for predicting thermal sensation in Tehran.
Analytical approach has been proposed for predicting the splitting capacity of the reinforced joint.
Several models have been proposed for predicting retardation in crack propagation due to an overload cycle.
Finally, equations are proposed for predicting the bond strength after high temperature exposure.
A detailed model is proposed for predicting soot formation from complex solid fuels.
A new modeling approach is proposed for predicting the bulk electromechanical properties of piezoelectric composites.
Besides, DIF equations were newly proposed for predicting the post-cracking strength.
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