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The change of the boundary conditions can be easily achieved by only varying the stiffness of the four sets of boundary springs at each end of the shell without the need of making any change to the solution procedure.
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Peel away the circular area of broken shell at each end of the egg, using the side of your thumb.
Remove a little bit of shell from each end of the egg.
Cut through one end of the shell of each chestnut.
When the oar reaches the end of the shell, it reverses direction.
The localization of dynamic buckling patterns can be observed at the free end of the shell.
Only the narrow posterior end of the shell sticks up into the seawater for water exchange and waste expulsion.
Carbon dioxide rich gas, the permeate gas, is discharged from the outlet end of the shell side.
When the dissolved oxygen runs low, the water is ejected through the top end of the shell by contraction of the foot.
One end of the shell is excited by an axial force while the other end is free.
The fluid behaviour beyond the free end of the shell is described by an outflow model, which characterizes the fluid boundary condition at the free end of the shell.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com