... Gallium arsenide XeCl excimer 30 8 30 1660 9 73 6.8 12.8 KrF excimer 248 30 1660 9 73 5.5 4.8 ArF excimer 192 30 1660 9 73 5.6 10.8 Q-switched Nd:YAG 1060 6 7 43 435 1000 N/A Table 1. The thermal ... ion’s path after 10 −12 s according to D’Orléans et al. (20 03) . 74 Heat Transfer - Engineering Applications Heat Transfer – Engineering Applications 64 doe...
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... K 34 0 33 0 32 0 31 0 30 0 30 35 40 45 50 55 60 65 -5 0 5 Depth m Radius m 25 -10 10 35 0 Maximum temperature K 34 0 33 0 32 0 31 0 30 0 30 35 40 45 50 55 60 65 -5 0 5 Depth m Radius m 25 -10 10 35 0 ... distribution. Heat Transfer – Engineering Applications 36 30 35 40 45 50 55 60 65 -5 0 5 Depth m Radius m 25 -10 10 30 35 40 45 50 55 60 65 -5...
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Heat Transfer Engineering Applications Part 6 ppt
... Density ρ (kg/m 3 ) 1.165×10 3 1.024×10 3 Thermal conductivity l (W/mK) 0 .33 0.20 Specific heat capacity c (J/kgK) 1.84×10 3 1.95×10 3 Heat of reaction ΔΗ (J/kg) 1. 23 10 4 3. 99×10 4 2.78×10 4 ... 5.492×10 8 9.9 73 3 k 2.182×10 7 8.401×10 3 1.880×10 9 9.965 4 k 1.089×10 7 8. 438 ×10 3 1.160×10 9 9.8 63 5 k 1.5 23 10 9 1.119×10 4 1.281×10 9 1. 135 ×1...
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Heat Transfer Engineering Applications Part 11 pptx
... 0. 03 max 18 3. 3 8.5 0.2 0.1 - 18Ni (250) 0. 03 max 18 5.0 8.5 0.4 0.1 - 18Ni (30 0) 0. 03 max 18 5.0 9.0 0.7 0.1 - 18Ni (35 0) 0. 03 max 18 4.2 12.5 1.6 0.1 - 18Ni (cast) 0. 03 max 17 4.6 10.0 0 .3 ... 4.20 0 .34 1.01 0.24 00 0.067 0.0161 0. 031 0.011 ESR 2 0.28 0.91 4.50 0 .35 0.97 0.19 1.07 0.057 0.0158 0. 038 0.011 ESR 3 0.28 0.86 4.10 0.47 1 .37 0.27 1.97 0. 037 0.0128 0....
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Heat Transfer Engineering Applications Part 14 pptx
... 2.00 Switch 0 .31 1 0.67 1.02 P 2.500 1.54 4.04 FC1 2.024 0.78 2.80 3D-FC1 1 .30 9 0.89 2.20 FC2 0 .31 1 1 .33 1.69 3D-FC2 0. 135 1.22 1.82 FC3 2.024 1 .33 3. 36 3D-FC3 0. 833 1.00 1. 83 FC4 1.071 ... 3. 9 0.0 0.7 1.54 FC1 111% 89% 0% 0.6 1.8 0.0 0.78 3D-FC1 22% 78% 0% 1.1 1.6 0.0 0.89 FC2 67% 33 % 0% 3. 3 0.7 0.0 1 .33 3D-FC2 10% 44% 0% 2.8 0.9 0.0 1.22 FC3 67% 33 % 0%...
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Heat Transfer Engineering Applications Part 4 potx
... parameters is or how important the consideration of a particular effect is. 80 Heat Transfer - Engineering Applications Heat Transfer – Engineering Applications 98 ions, these make a modest contribution ... matter 50(20): 1 533 7–1 534 8. URL: http://www.ncbi.nlm.nih.gov/pubmed/9975886 Takeda, Y. & Kishimoto, N. (20 03) . Nonlinear optical properties of metal nanopartic...
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Heat Transfer Engineering Applications Part 5 pot
... d T 0 T 1 x ' y ' Heat Transfer – Engineering Applications 130 time integration is performed as described in section 3. 3 using a central finite difference approximation. The heat transfer equation, ... temperature Normalized transient time T 1 = 10 o Part 2 Heat Conduction – Engineering Applications Heat Transfer – Engineering Applicatio...
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Heat Transfer Engineering Applications Part 7 pot
... 20 30 40 50 60 70 80 90 100 40 50 60 70 80 90 100 110 120 13 0 Nu conv Nu av Nu / /L=0.1 /L=0.1 /L=0.1 /L=0.4 -15 0 15 30 45 60 75 90 105 0 .33 0 .34 0 .35 0 .36 0 .37 0 .38 0 .39 0.40 0.41 0.42 ... ii 32 633 7 ii1124i 112 1 32 tY tY tt CNN C ee e e Y Y NCCN Y tt (36 ) Heat Tr...
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Heat Transfer Engineering Applications Part 8 pot
... Metal Foams. International Journal of Heat and Mass Transfer, Vol.45, No.18, (August 2002), pp. 37 81 37 93, ISSN 0017- 931 0 Heat Transfer – Engineering Applications 228 center conductor. ... International Journal of Heat and Mass Transfer, Vol.42, No .3, (February 1999), pp. 4 23- 435 , ISSN 0017- 931 0 Lienhard, J.H. IV & Lienhard J.H.V (2006). A heat transf...
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