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Water flows over a spillway and is directed upward as a free jet at an angle of 30o y with the horizontal at the exit from the spillway. The upstream depth is 20 ft and the upstream velocity is 1 .5 ft/sec. The spillway width is 100 ft coming out of the paper (a) Find the magnitude of the velocity in the free jet at point 2. Neglect friction loss. (b) Determine the magnitude of the horizontal and /2.7) 7*r) by the water on the spillway.

User Sonnenhaft
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2 Answers

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Answer:

To calculate or compute the magnitude of the velocity at whichever point in time, you’ll need to multiply the constant acceleration pace times the amount of time difference and then adding the result to the initial velocity

While To calculate or compute the horizontal component, the magnitude of the vector will just be multiplied by the cosine angle referenced to the horizontal

Step-by-step explanation:

To calculate or compute the magnitude of the velocity at whichever point in time, you’ll need to multiply the constant acceleration pace times the amount of time difference and then adding the result to the initial velocity

While To calculate or compute the horizontal component, the magnitude of the vector will just be multiplied by the cosine angle referenced to the horizontal

User Xsznix
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6 votes

Answer:

Check the explanation

Step-by-step explanation:

To calculate or compute the magnitude of the velocity at whichever point in time, you’ll need to multiply the constant acceleration pace times the amount of time difference and then adding the result to the initial velocity

While To calculate or compute the horizontal component, the magnitude of the vector will just be multiplied by the cosine angle referenced to the horizontal

Kindly check the attached images below to see the full step by step explanation to the question above.

Water flows over a spillway and is directed upward as a free jet at an angle of 30o-example-1
Water flows over a spillway and is directed upward as a free jet at an angle of 30o-example-2
User Naveen Nelamali
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