Glycerine of density is flowing through the conical section of pipe. The area of cross-section of the pipe at its ends is and and pressure drop across its length is . The rate of flow of glycerine through the pipe is . The value of is _____ .
JEE Physics 2023 Question with Solution
Answer
Correct answer:4
Step-by-step solution
Standard Method
Given: Density of glycerine , areas and , and pressure drop .
Find: The value of in .
Using continuity equation,
So,
Now apply Bernoulli's equation,
Therefore,
Substituting and ,
Putting ,
Now the rate of flow is,
Comparing with , we get .
Therefore, the value of is .
Using continuity and pressure-energy relation
Given: The liquid flows through a conical pipe section with different cross-sectional areas, so the speed changes from one end to the other.
Find: The numerical value of .
Because the pipe narrows from to , the fluid speed at the smaller area must increase. From continuity,
Hence,
The pressure drop is used to supply the increase in kinetic energy per unit volume. So Bernoulli's equation gives,
Substitute ,
Now use discharge formula,
So the required coefficient is .
Therefore, the final answer is .
Common mistakes
Using the area ratio in the wrong direction. From continuity, , so when area decreases, speed increases. Here , not .
Forgetting to convert into . The area must be written as . Using unconverted areas gives an incorrect flow rate.
Applying Bernoulli's equation with the pressure difference sign reversed. The correct relation from the given drop is because the speed is higher at the narrower end.
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