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A high velocity water jet of cross section area = 0.01 m2 and velocity = 35 m/s enters a pipe filled with stagnant water. The  diameter of pipe is 0.32 m. This high velocity water jet entrains additional water from the pipe and the total water leaves the pipe with velocity of 6 m/s as shown in the figure. 

The flow rate of entrained water is _______ litres/s (round off to two decimal places). 
    Correct answer is '132.48'. Can you explain this answer?
    Most Upvoted Answer
    A high velocity water jet of cross section area = 0.01 m2 and velocity...
    Given : aj 0.01 m2 , vj = 35 m/sec, d = 0.32 m/sec



    Q = 0.13254 m3 /sec
    Q = (0.13254 × 1000) lit/sec
    Q = 132.548 lit/sec
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    A high velocity water jet of cross section area = 0.01 m2 and velocity = 35 m/s enters a pipe filled with stagnant water. The diameter of pipe is 0.32 m. This high velocity water jet entrains additional water from the pipe and the total water leaves the pipe with velocity of 6 m/s as shown in the figure.The flow rate of entrained water is _______ litres/s (round off to two decimal places).Correct answer is '132.48'. Can you explain this answer?
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    A high velocity water jet of cross section area = 0.01 m2 and velocity = 35 m/s enters a pipe filled with stagnant water. The diameter of pipe is 0.32 m. This high velocity water jet entrains additional water from the pipe and the total water leaves the pipe with velocity of 6 m/s as shown in the figure.The flow rate of entrained water is _______ litres/s (round off to two decimal places).Correct answer is '132.48'. Can you explain this answer? for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Question and answers have been prepared according to the Mechanical Engineering exam syllabus. Information about A high velocity water jet of cross section area = 0.01 m2 and velocity = 35 m/s enters a pipe filled with stagnant water. The diameter of pipe is 0.32 m. This high velocity water jet entrains additional water from the pipe and the total water leaves the pipe with velocity of 6 m/s as shown in the figure.The flow rate of entrained water is _______ litres/s (round off to two decimal places).Correct answer is '132.48'. Can you explain this answer? covers all topics & solutions for Mechanical Engineering 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A high velocity water jet of cross section area = 0.01 m2 and velocity = 35 m/s enters a pipe filled with stagnant water. The diameter of pipe is 0.32 m. This high velocity water jet entrains additional water from the pipe and the total water leaves the pipe with velocity of 6 m/s as shown in the figure.The flow rate of entrained water is _______ litres/s (round off to two decimal places).Correct answer is '132.48'. Can you explain this answer?.
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