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Development of Hybrid FRP Bridges and its effect Reducation of CO2 Emission
Damage of Strengthened RC Bridge piear under strong earthquake
Development of High Durable Concrete
Development of High Performance and Low CO2 Bridge using High Strength Concrete and Prestressing Steel
Deveropment of Damage Index and Repairability Evaluation for Seismic Damage Assessment of RC Structures
Mechanical Behavior of Cement-treated Soil and Its Effectiveness as Soil Improvement for Seismic Performance Enhancement of Underground Structures
Development of Cast-in-place RC Pile Foundation using Round Bars
Shear Capacity Evaluation of Fiber Reinforced Concrete Members based on Material Constitutive Laws
Study on Material and Structural Performance of Concrete with Promoted Creep
Investigation into Time-dependent Deformation of Concrete with Compositive Mineral Admixtures
Study on Volumetric Change of Porous Media
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> Development of Hybrid FRP Bridges and its effect Reducation of CO2 Emission
Development of Hybrid FRP Bridges and its effect Reducation of CO
2
Emission
[Supervisor]
Hiroshi Mutsuyoshi
Shingo Asamoto
[Graduate Students]
Nguyen Duc Hai
Kensuke Shiroki
Tatsuya Ishihama
[Undergraduate Student]
Yoshinori Okawa>
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