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Titlebook: Biofluid Mechanics · 2; Daniel J. Schneck Book 1980 Springer Science+Business Media New York 1980 dialysis.dynamics.fluid mechanics.respir

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https://doi.org/10.1007/978-1-4757-4610-5dialysis; dynamics; fluid mechanics; respiration; rheology
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978-1-4757-4612-9Springer Science+Business Media New York 1980
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The Pressure/Flow Relation in Bronchial Airways on Expiration,human lung. The earliest attempts to quantify this resistance employed the assumption of laminar Poiseuille flow through the bronchi which led to values much lower than expected from clinical tests. More recently, the observation of vortices in models of bronchial flow has resulted in the suggestion
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Modeling the Pressure-Flow Relation of Bifurcating Networks,reducing the data to a single relation is difficult. Much of the difficulty arises because of differences in geometry and experimental method. Integration of data obtained . or in excised lungs depends strongly on controlling the experiment under isodimensional conditions. For example, during graded
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Modern Management of Chronic Renal Failure by Dialysis and Transplantation,t Britain, but during the last fifteen years the change in treatment has been so marked that most patients are now treated by self-dialysis..Dialysis treatment poses many therapeutic problems with patients at the extremes of life..Prospective studies have shown that the interface between home dialys
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Persistence of Non-Newtonian Squeeze Films in Joints,ow the power law model of a shear thinning fluid over a range of 5 orders of magnitude of the shear rate. An analysis was performed to determine the pressure distribution and load-velocity relationships for a squeeze bearing containing a shear thinning fluid, bounded by paraboloid surfaces, and sub­
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