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The Larsen model first order equations and solutions are given below.
The reaction order model (first order) predicted accurately the main phase in the thermal decomposition of the reaction product.
Based on a parasitic parameters extraction model, first order expressions for the TSV resistances, inductances, and capacitance as functions of physical dimension and material characteristic are derived.
To investigate the kinetics for the release behavior of curcuminoids from LDH, the data were fitted to the following kinetic models: the zero order release model, first order release model, Higuchi release model, and Korsmeyer-Peppas release model.
An exponential model (first order) was fitted to the degradation dynamics of CP4-EPSPS protein and used to estimate the time required for 50% degradation (DT50) and for 90% degradation (DT90).
Compared to previously published results, a non-contradictory but simplified and consistent kinetic model (first order in AA, BuOH and TMG) was found to be optimal to fit the data from all three reactors taken within a temperature range from 30 to 50 °C.
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Models First order frequency in the X direction (Hz) First order frequency in the Y direction (Hz) Model 1 3.756 3.392 Model 2 3.669 3.419 Tested model 3.715 3.450.
The release mechanism of the curcuminoids from LDH was investigated referring to four different kinetic models, first order, zeroth order, Korsmeyer-Peppas and Higuichi.
The simplest and most popular implementation of this theory, which is utilized in this paper, is the grey model first-order one variable model, GM 1,1).
The nitrogen removal performance of the reactor was compared with prediction of Monod model, modified Stover Kincannon model, first-order and the Grau second-order substrate removal models.
These include pseudo-first-order model, pseudo-second-order model, Weber and Morris sorption kinetic model, first-order reversible reaction model, external mass transfer model, first-order equation of Bhattacharya and Venkobachar, Elovich's model and Ritchies's equation (Chowdhury and Saha 2010b).
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