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Cumulative damage indices are usually modeled either by using a low-cycle fatigue formulation, in which damage is taken as a function of the accumulated plastic deformation, or by inserting a term related to the dissipated hysteretic energy in the damage model (Kunnath and Chai 2004; Poljanšek and Fajfar 2008; Karimi et al. 2011).
The influence of the reaction temperature, initial pH and hydrogen peroxide concentration was studied for the SUST/Fe-BTC material, achieving a MB removal close to 100% and a TOC reduction about 55% in 60 min for several reaction cycles using a low dosage of hydrogen peroxide, 40 °C and initial pH of 4.
Try using a low chair.
Using a low grade detergent.
Beat slowly or using a low speed.
A low "cycle count" implies a lot of pathogen.
Use a low flocculating yeast strain.
Use a low setting on your iron.
Supporting this change is the use of a low-cycle PCR-based dual indexing system that allows exceptional multiplexing of individual samples, and a simple bead based library preparation protocol that allows in solution reaction cleanup and size selection in microtiter plates.
Use a low-nitrogen fertilizer.
Use a low-ish sensitivity.
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