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This wettability map was found to be correlated with the independently measured surface forces and adsorption.
The measured surface forces were correlated with the results of adsorption and wettability (dynamic contact angle) experiments under the same conditions of salinity and pH, and the relative importance of the different forces observed was established.
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AFM probes with individual microparticles or nanoparticles attached to the cantilever/tip have been widely used to measure surface forces in AFM and near-field scanning optical microscopy (NSOM) [4] as the geometry and composition of the particle can be well controlled.
Comparison Grinding parameters Measured normal grinding force (±10 N) Measured surface temperature Final surface finish Machine power Lubrication I Abrasive grit size 60# 60% Without 100 N 60 °C 180# 100 N 68 °C 400# 100 N 70 °C II Machine power 180# 30% Without 60 N 50 °C 60% 100 N 68 °C 90% 150 N 85 °C III Lubrication 180# 60% Without 100 N 68 °C With 40 N 35 °C.
We measured surface potential and current transport of the CZTSSe thin film with Kelvin probe force microscopy and conductive atomic force microscopy, respectively.
Contact pressure was measured using a thin film pressure-sensitive system (Tekscan Inc., Boston, MA), which is more accurate in measuring surface area, force, and pressure than the Fuji film pressure-sensitive technique (Bachus et al. 2006).
Atomic force microscopy (AFM, Solver P47-SPM-MDT) was used to measure surface morphology.
The interaction energy between membranes containing lipid-anchored t- and v-SNAREs has been measured by the surface forces apparatus (SFA) (Li et al., 2007).
The slider supports the work-piece from the side contrary to a cutting force, while the measuring surfaces of the followers are constantly tangent to the diameter of the work-piece and are connected with narrow range transducers.
Atomic force microscopes simultaneously measure surfaces in the x, y, and z dimensions and provide a true three-dimensional map of the surface of cell samples on a submicron scale.
Using self-assembled monolayer (SAMs) of known physical and chemical properties on molecularly smooth gold substrates in 5 mM NaCl at pH 7.3, (1) the adsorption mechanisms of the barnacle inspired peptides are explored using quartz crystal microbalance, and (2) adhesion mediating properties are measured using the surface force apparatus.
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