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Dropwise condensation on solid hydrophilic surfaces

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Figure

Fig. 1. Parameters affecting condensation heat transfer coefficient (hangle (). (A) Model results of h as a function of nucleation density (Ns) for varying advancing contact a) with departure radius rmax = 1 mm
Fig. 2. Surface characteristics and wettability. (The mean square roughness, A) Images showing a water droplet sliding across our PEGylated surfaces tilted by 8° relative to the horizontal
Fig. 3. Hydrophilic versus hydrophobic. Two exemplary transient droplet size distributions during condensation captured with a macro and 20× microscope lens on the (A and B) hydrophobic substrate (a/r = 110° ± 4°/102° ± 5°) and (C and D) PEGylated substr
Fig. 5. Condensation regime map as a function of advancing contact angle, and contact angle hysteresis, a, a−r
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