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A combined thermal conductivity of K 1/4 KFS + Kh2o is used because heat is transfered from the Al thin-film into both the FS substrate and the water droplet. If no wáter is present, then K = KFS + Kair ffi KFS, where KFS = 1.38 W/m/K, Kair = 0.028 W/m/K, and Kh2o = 0:64 W/m/K
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A combined thermal conductivity of K 1/4 KFS + Kh2o is used because heat is transfered from the Al thin-film into both the FS substrate and the water droplet. If no wáter is present, then K = KFS + Kair ffi KFS, where KFS = 1.38 W/m/K, Kair = 0.028 W/m/K, and Kh2o = 0:64 W/m/K.
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56
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67650745402
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Fast, spatially resolved thermometry of Si and GaP crystals using pump-probe two-photon absorption
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C.K. Min, J.Y. Park, D.G. Cahill, S. Granick, Fast, spatially resolved thermometry of Si and GaP crystals using pump-probe two-photon absorption, J. Appl. Phys. 106 (2009) 013102.
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(2009)
J. Appl. Phys.
, vol.106
, pp. 013102
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Min, C.K.1
Park, J.Y.2
Cahill, D.G.3
Granick, S.4
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57
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54049145902
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Micron-scale measurements of the coefficient of thermal expansion by time-domain probe beam deflection
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X. Zheng, D.G. Cahill, R. Weaver, J.-C. Zhao, Micron-scale measurements of the coefficient of thermal expansion by time-domain probe beam deflection, J. Appl. Phys. 104 (2008) 73509.
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(2008)
J. Appl. Phys.
, vol.104
, pp. 73509
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Zheng, X.1
Cahill, D.G.2
Weaver, R.3
Zhao, J.-C.4
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58
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85030494266
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Private communication with David G. Cahill
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Private communication with David G. Cahill.
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