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The two most significant variables were pH and buffer concentration.
The hydrogen production increased along with acetate and buffer concentration.
Four factors affected the separation: buffer concentration, pH of the buffer, concentration of the chiral selector and the applied voltage.
The optimum factor space was defined by three parameters: temperature, modifier concentration and buffer concentration.
The effects of NaBEt4 concentration, pH and acetate buffer concentration on the derivatization efficiency were considered.
Three variables (sampling flow rate, buffer concentration and pH) were regarded as factors in the optimisation.
The most important and statistically significant AF4 instrumental factors were buffer concentration and cross flow.
The temperature, solution pH, and buffer concentration are examined for their influences on the electroosmotic mobility.
The selected factors were: sorbent mass, sample pH, buffer concentration and sample flow rate.
Increasing pH and buffer concentration led to an increase in thermal stability with all investigated extremolytes.
The optimum factor space was defined by three parameters: buffer concentration, pH and concentration of acetonitrile as organic modifier.
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