2. The figure below shows a column of fatty tissue. Determine the strain in each of the three regions. 15.0 cm 10.0 cm 0.75cm F= 55 N X Efat 18 kPa Area= 40 cm² Etumor 106 kPa
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- 2. A bar having a length of 125mm and a cross-sectional area of 437.5mm² is subjected to an axial force of 40kN. The modulus of elasticity of the material is 200GPa. The material has linear- elastic behavior. Determine the deformation of the bar. 40 KN 125 mm 40 KN2. Casson model was discussed in class in the context of blood rheology. This phenomenological model is often used to describe the shear stress vs. shear rate relationship in colloidal suspensions where particle aggregation might cause the measured viscosity to increase at low shear rates. In an experiment, data for the shear stress rand the applied shear rate S were fitted to the Casson model written below (in a slightly different form compared to that given in the lecture notes): √t=√₁+√as. (1) The best least square fit parameters to the experimental data were found to be 40 mPa for the yield stress and 2.5 mPas for the parameter a, which is referred to as the plastic viscosity. a. Using Eq. (1), derive an expression for the fluid viscosity u as a function of S. b. Plot the viscosity of the fluid as a function of S for 0.1s¹Problem Solving... The cross-sectional area of the bar is 5 cm2. Use E= 70 GPa for aluminum, and E= 200 GPa for steel. Aluminum Steel Aluminum 80 kN 20 kN 30 kN 70 kN A 3 m -4 m- 5 m- - What is the elongation in segment AB (Aluminum)? * -7.8571 x10^-3 m O6.8571 x10^-3 m O -6.8571 x10^-3 m 7.8571 x10^-3 m