Q.The volume of a liquid flowing out per second of a pipe of length and radius is written by a student as where is the pressure difference between the two ends of the pipe and is coefficient of viscosity of the liquid having dimensional formula . Check whether the equation is dimensionally correct.
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Start your 14-day free trial to unlock the full solution →Check dimensional consistency by verifying that both sides of the equation have the same dimensions. The given formula for volume flow rate is dimensionally correct because both sides reduce to .
The heart of dimensional analysis is this: a physically meaningful equation must be dimensionally homogeneous. Every term that you add or equate must carry the same dimensions, regardless of the numerical constants involved. The constant is dimensionless, so we ignore it and focus on whether has the same dimensions as volume per unit time.
This equation is actually Poiseuille's law for viscous flow through a cylindrical pipe. The student has written the volume flow rate (volume per second) in terms of the pipe geometry (, ), the driving pressure difference , and the fluid's resistance to flow . Let's verify the dimensional consistency step by step.
Step-by-step dimensional check
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Identify the dimension of the left-hand side.
The quantity represents volume flowing out per second, so its dimension is:
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Find the dimension of pressure .
Pressure is force per unit area. Force has dimension , and area has dimension , so:
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List the dimensions of the geometric quantities.
The radius and length are both lengths:
Therefore:
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Use the given dimension of viscosity .
We are told:
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Compute the dimension of the right-hand side.
The right-hand side (ignoring the dimensionless constant ) is . Substitute the dimensions: …
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