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For fluid filled capsule below: Setup the problem a more accurate way and define all important parameters and assumptions (do not need to solve the

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For fluid filled capsule below: Setup the problem a more accurate way and define all important parameters and assumptions (do not need to solve the differential equation) Some assumptions: steady state, no reactions, no flow in z direction Solve the problem by focusing on one region and assuming that it can be modeled as 1D flow in Cartesian coordinates Solve for concentration at x=1/4* L -fluid filled capsule with wall thickness L = 20 um L Co cutsu'd capsule =0 Rlong axis RLUME = 2 mm R short ax's = Rssert = 1,8 mm coo 50 mg/ml Rion Cool LONG shery For fluid filled capsule below: Setup the problem a more accurate way and define all important parameters and assumptions (do not need to solve the differential equation) Some assumptions: steady state, no reactions, no flow in z direction Solve the problem by focusing on one region and assuming that it can be modeled as 1D flow in Cartesian coordinates Solve for concentration at x=1/4* L -fluid filled capsule with wall thickness L = 20 um L Co cutsu'd capsule =0 Rlong axis RLUME = 2 mm R short ax's = Rssert = 1,8 mm coo 50 mg/ml Rion Cool LONG shery

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