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The fractional power model rate constant (mg/g min).
Compartmental model rate parameters were independently estimated using five different metabolite correction models (a).
b Cross-plot of the normalized rate data and the normalized model rate prediction.
The following is a brief description of the EEPAS model rate density.
Where k fp is the fractional power model rate constant (mg g−1 h−1), v is the adjustment parameter.
A power-law model rate equation was derived with acquired experimental data.
From this model, rate constants for the formation of each gas component and their corresponding activation energies were determined.
From this model, rate constants for the formation of each gas and their corresponding activation energies were determined.
The linear form of pseudo-second-order kinetic model rate equation is expressed as: {t mathord{left/ {vphantom {t {q_{text{t}}}}} right.
The linear form of pseudo-second-order kinetic model rate equation is expressed as: {t mathord{left/ {vphantom {t {qt}}} right.
Precursory earthquake contributions to EEPAS model rate density in the target magnitude range 4.95 < m < 9.05, with parameters from Table 1.
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