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박일송(Il-Song Park) 육군사관학교 화랑대연구소 2017 한국군사학논집 Vol.73 No.3
The Second Lebanon War in 2006 lasting a short period of 34 days presents some tremendous impacts on history of war. This Israel-Hezbollah conflict started with a raid and kidnapping of Israeli soldier by the Hezbollah units and expanded to a war with the Israel’s retaliation. The way of war conducted by both sides was somewhat different between two unbalanced actors - one a state with top-ranked military power in the region, the other a group of militants with small guerilla forces, and in the end Israel did not achieve its war aim while Hezbollah earned what it intented - survival. After the war ended, two questions have caught researchers and military professionals who seek lessons. One is what happened, and the other is what impact this war left on history. This paper focuses on the second subject and draws three conclusions. First, it has bees apparent that the effect-based operations(EBO) alone not bring a win or success. Aa a result, US military declared in 2008 it would not rely on EBO doctrine anymore. Second, it became a leap-board to the ground forces which had been neglected since the Gulf War. Many states began to reconsider the mission and role of the ground forces. Lastly, The 2006 Lebanon War inspires the debates on the ‘new’ way of warfare and brings a ’new’ discourse of the hybrid war to the history of war.
박은광 ( Eun Kwang Park ),이만형 ( Man Hyung Lee ),우태규 ( Tae Gyu Woo ),박일송 ( Il Song Park ),정광희 ( Kwang Hee Jung ),설경원 ( Kyeong Won Seol ) 대한금속·재료학회 2009 대한금속·재료학회지 Vol.47 No.11
The purpose of this study is to identify the effect of electrolyte compositions on electrodeposited copper foil. First of all, the polyimide substrate was pretreated with plasma. Finally, copper foil was deposited on a Cu/Ni/Polyimide substrate using the electroplating technique. As the quantity of Cu increased, preferred orientations changed into (111). Increasing sulfuric acid, on the other hand, brought down the preferred orientation of (111). The lowest sheet resistance, surface roughness, and fine adhesion were detected when the ratio of Cu2+ and H2SO4 is 50:50(g/l).