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True clams, in the strict sense, are bivalves with equal shells closed by two adductor muscles situated at opposite ends of the shell, and with a powerful, muscular, burrowing foot.
Both ends of the shell of finite length are fully clamped.
The boundary conditions at both ends of the shell were assumed to be a shear diaphragm in the numerical analysis.
Additionally, it was found that the rigid bounding of fluid at the ends of the shell decreases the natural frequencies for the lower circumferential modes when compared with the sloshing fluid case.
Galerkin method is utilized to obtain the nonlinear ordinary differential governing equations along the radial displacement of the system under the non-normal boundary conditions that one generatrix of the cylindrical shell is clamped and both ends of the shell are free.
Similar(55)
Two ends of the shells are assumed to be clamped or pinned and in-plane boundary conditions are immovable.
Cut through one end of the shell of each chestnut.
When the oar reaches the end of the shell, it reverses direction.
Place the oyster with its rounded shell down (so the juices do not spill out) and with the pointy end of the shell sticking out: that's where you insert the knife.
The localization of dynamic buckling patterns can be observed at the free end of the shell.
Carbon dioxide rich gas, the permeate gas, is discharged from the outlet end of the shell side.
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