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The relation between shear stress Z and velocity gradient   of a fluid is given by ​ where A and n are constants. If n = 1, what type of fluid will it be?
  • a)
    Newtonian fluid
  • b)
    Non-Newtonian fluid
  • c)
    Pseudoplastic
  • d)
    Bingham plastic
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
The relation between shear stress Z and velocity gradient of a fluid ...
Answer: a
Explanation: When n = 1, the relation reduces to Newton’s law of viscosity: z = A *
 
 , where A will represent the viscosity of the fluid. The fluid following this relation will be a Newtonian fluid.
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The relation between shear stress Z and velocity gradient of a fluid ...
Explanation: When n = 1, the relation reduces to Newton’s law of viscosity: z = A * , where A will represent the viscosity of the fluid. The fluid following this relation will be a Newtonian fluid.
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The relation between shear stress Z and velocity gradient of a fluid ...
Explanation: When n = 1, the relation reduces to Newton’s law of viscosity: z = A * , where A will represent the viscosity of the fluid. The fluid following this relation will be a Newtonian fluid as it is a linear relation. The equation given is of a straight line.
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The relation between shear stress Z and velocity gradient of a fluid is given by​where A and n are constants. If n = 1, what type of fluid will it be?a)Newtonian fluidb)Non-Newtonian fluidc)Pseudoplasticd)Bingham plasticCorrect answer is option 'A'. Can you explain this answer?
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