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Energy dissipation of monolithic and precast specimens are compared by using relative energy dissipation ratios (β i ).
Energy dissipation, plasticity and fracture.
Energy dissipation against drag (MJ).
Energy dissipation due to debonding of FRP laminate.
Energy dissipation due to yielding of steel rebar.
Energy dissipation is directly linked to our understanding of self-organization and self-assembly.
Energy dissipation at these interfaces is important and to date unclear.
Energy dissipation is enhanced to protect P-deficient leaves from photo-oxidative damage in high light.
Energy dissipation through the decay of ATP to ADP allows the two filament ends to maintain different chemical conformations.
Energy dissipation rate (EDR) and shear stress were plotted versus position in the cylinder at a flow rate of 75mL/minn.
Energy dissipations are indicated near the nodes.
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