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A FREYWYSSLING Deformation or Plant Cell Walls
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A. V. Hill active apparent viscosity aqueous axis behavior calculated capillary tube cell wall cellulose cerebro-spinal fluid changes coacervate colloidal concentration constant contractility contraction cross-section curve decrease determined diameter diffusion direction effect elastic energy equation experimental extension fact fibre force Frey-Wyssling heat hyaluronidase increase injection latex latex tubes layer length liquid maximum measured mechanism membrane method microfibrils modulus molecular molecules movement muscle myosin Newtonian non-Newtonian normal observed occurs osmotic oxygen particles Physiol plasma plasmodium plasmolysis plasticizer polar possible pressure-flow diagram problem Proc properties protein proto protoplasmic flow protoplasmic streaming radius rate of flow rate of shear relative cell volume relative viscosity rheological rubber secretion Seifriz shearing stress slime mold solution spiral structure substances surface temperature tensile strength tension texture theory thixotropic tissue tracheids tree turgor pressure velocity vessels viscometer viscosity of blood Young's modulus