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90. C. S. You, D. S. Kim, S. H Cho, W. Hwang, “Impact Behavior of Composite Antenna Array that is Conformed Around Cylindrical Bodies”, Composites Science and Technology, vol.70, no.4, pp.627-632 (2010.04) 
89. D. S. Kim and W. Hwang, “A Template-based superhydrophobic tube structure with nanofiber forests and its mass flow characteristic”, Journal of Micromechanics and Microengineering, vol.20, no.2, pp.027002 (2010.02) 
88. H. K. Lee, B. B. Jung, Y. D. Kim, W. Hwang, H. C. Park, “Analysis of flow stress and size effect on polycrystalline metallic materials in tension”, Materials science and Engineering A, vol.527, pp339-343 (2009.12) 
87. D. S. Kim, C. S. You, W. Hwang, “Effect of adhesive bonds on electrical performance in multi-layer composite antenna”, Composite Structures, vol.90, pp.413-417  (2009.10) 
86. D. H. Kim, K.H. Lee, H. C. Park, K. B. Park, K. D. Choi and W. Hwang “Overcoming of nanoscale adhesion by electrostatic induction”, Current Applied Physics, vol. 9, pp.703-706 (2009.05) 
85. J. H. Jeon, K. H. Lee and W. Hwang,  “Measurement of Elastic Constants of Nanohoneycomb Structures”, Journal of Composite Materials, Vol. 43, No.10, pp.1155-1121 (2009.05) 
84. S. M. Lee, J. H. Kang, S. J. Lee and W. Hwang, “Tens of centimeter-scale flexible superhydrophobic nanofiber structures through curing process", Lab on a chip, vol.9, pp.2234-2237 (2009.04) 
83. S. M. Lee and W. Hwang,  "Ultralow contact angle hysteresis and no-aging effects in superhydrophobic tangled nanofiber structures generated by controlling the pore size of a 99.5% aluminum foil", Journal of Micromechanics And Microengineering, vol.19, issue3 035019 (2009.03) 
82. D. Kim, W. Hwang, H. C. Park and K. H. Lee, “Superhydrophobic Nanostructures based on Porous Alumina”, Current Applied Physics, Vol. 8 pp. 770-773 (2008.10) 
81. T. C. Moon and W. Hwang,  "Design of Composite Multilayer Surface Antenna Structure and its Bending Fatigue Characteristics", Advanced Composite Materials, vol. 17 pp. 215-224 (2008.08) 
 
 
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