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By 1970, however, it had been shown that it is possible to measure surface tension changes at the metal-solution interface.
In a paper in Physical Review Letters, Robert Style and colleagues at Yale University, Connecticut, demonstrate a new technique to measure surface tension in soft surfaces that, unlike existing methods, does not require knowledge of the bulk properties of the underlying solid.
For a more quantitative analysis of cSPLUNC1 surfactant activity, we used the pendant drop method to directly measure surface tension.
We also used pendant drop tensiometry (Augustine Scientific, Newbury, Ohio) to directly measure surface tension of a 1 µl droplet of water, lysozyme, native cSPLUNC1, or SDS (10%).
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ADSA-EF is a novel technique, which can be employed to predict and simulate drop shapes in the electric field, determine the effect of external fields on surface tensions, or measure surface tensions in reduced gravity conditions, where other drop-shape techniques are not applicable.
We measured surface tension with a technique based on drop geometry.
Extent of surface modification was physically evaluated by observing both its color changes with digital camera and morphological changes with scanning electron microscopy as well as by measuring surface tension with water contact angle.
The modified stalagmometric method is used for the measuring surface tension.
Optimization of the hydrochloric acid (HCl) concentration in the developed scale inhibitor by measuring surface tension on the boundary layer between the oil and the aqueous scale inhibitor solution.
In this study, the following experimental work has been carried out: Optimization of the hydrochloric acid (HCl) concentration in the developed scale inhibitor by measuring surface tension on the boundary layer between the oil and the aqueous scale inhibitor solution.
A strong correlation between the measured surface tension and the isoprene concentration was clearly evidenced.
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