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Weekly topic: 5 Wealth points for those who answer correctly, 2 Wealth points for participation; Question 81

2015-06-18View Original

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From the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that A. shear stress and shear rate are generally not proportional to each other; B. shear viscosity depends on the shear force; C. non-Newtonian behavior is a combination of viscous and elastic behaviors; or D. only irreversible deformation occurs during flow. D
Reply #22015-06-18
D. The flow process involves only irreversible deformation
Reply #32015-06-18
Based on the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that (D) A. Shear stress and shear rate are generally not proportional to each other. B. Shear viscosity depends on the shear force. C. Non-Newtonian behavior is a combination of viscous and elastic behaviors. D. The flow process involves only irreversible deformation
Reply #42015-06-18
From the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that: A. There is usually no proportional relationship between shear stress and shear rate; B. Shear viscosity depends on the shear action; C. Non-Newtonian behavior is a combination of viscous and elastic behaviors; D. The flow process involves only irreversible deformation
Reply #52015-06-18
From the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that: A. There is generally no proportional relationship between shear stress and shear rate; B. Shear viscosity depends on the shear force; C. Non-Newtonian behavior is a combination of viscous and elastic behaviors; D. The flow process involves only irreversible deformation
Reply #62015-06-18
A. Shear stress and shear rate are not proportional to each other
Reply #72015-06-18
Based on the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that D. the flow process involves only irreversible deformation
Reply #82015-06-18
Based on the stress-strain relationship of graphitic non-Newtonian fluids, it cannot be concluded that D. the flow process involves only irreversible deformation

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