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The very early tension changes require much more rapid and sensitive measuring and recording instruments than are necessary for studying other aspects of the contraction process.
By 1970, however, it had been shown that it is possible to measure surface tension changes at the metal-solution interface.
However, baseline or maintained tension changes could not be accounted for by changes in intracellular Ca++.
Consequently, the fracture mechanism in tension changes from cleavage to shear.
For the surfactant-polymer system, the variation of surfactant concentration and viscosity loss of the polymer are jointly responsible for the interfacial tension changes.
Unusual wetting behavior of PDADMAC layers upon prewetting of the multilayer surfaces was found and described in terms of surface tension changes.
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Wentai et al. (2015) investigated wire tension change in high speed wire EDM.
The system model shows the tension change in the twisting process.
The dynamics of surface tension change in expanding drops of surfactant solution was studied using drop shape analysis.
Experiments explored the dynamics of surface tension change resulting from the flow of surfactant-free water into a surfactant-containing drop.
The choice of cables and the magnitude of tension change in them were based on the sensitivity analysis of an eigenproblem formulated in accordance with second order theory.
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