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Three different evaporation rate models were evaluated and compared.
Experimentally based burning rate models were used for flame initiation and propagation calculations.
Also, rate models were derived from a proposed mechanism, using Christiansen matrix approach.
The developed rate models were based on the Langmuir Hinshelwood Hougen Watson (LHHW) and Eley Rideal (ER) formulations.
A series of void rate models were proposed to determine the three-dimensional heterogeneous distribution of the mining-induced voids in the disturbed strata.
For kinetic modeling, three types of rate models were investigated, including two involving Langmuir-Hinshelwood and one modified Eley-Rideal mechanisms.
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The rate models are implemented in a plug flow reactor model.
In the phase II, comprehensive experiment-based production cost and production rate models are developed.
No-arbitrage interest rate models are designed to be consistent with the current term structure of interest rates.
Hazard rate models are proposed recently for detection of reliability problems using information from upstream supply chain and warranty databases.
Based on these three reactions and a dual-site adsorption mechanism, 48 kinetic rate models are derived.
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