Calculate Fountain Power for a 28.8m Stream Using Bernoulli's Equation

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In summary, The problem asks for the power required to send a stream of water 28.8 m into the air from a fountain with a base diameter of 4.38 cm. The suggested method is to use Bernoulli's equation to find the pressure and then plug into the formula power = pressure x velocity. The time can be found using the equation t = square root of 2gh. However, there is an issue with finding the velocity as the equation provided does not solve for it. The solution involves finding the mass and using basic algebra to solve for the force, and then using the equation for pressure to find the required velocity.
  • #1
kitty9035
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Homework Statement


A fountain sends a stream of water 28.8 m up into the air. The acceleration of gravity is 9.8. IF the base of the stream is 4.38 cm in diameter, what power is required to send the water to this height?


Homework Equations





The Attempt at a Solution



I was thinking maybe using bernoulli's equation to find the pressure and plug into to the formula work=pressure x volume. Then plug the answer for work into power=work/delta t.

Then i was thinking how do u find the time.. so i used the equation t= the square root of 2gh.

Is my though process correct? Any hints?? tHANKS IN ADVANCE
 
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  • #2
work=pressure x volume

i believe work = pressure * velocity
are u sure u need to find the time
 
  • #3
Power = Force * Velocity as well =).

You have the right idea though that you would be using an equation where you get a square root of 2g(delta y). But the problem is that your equation isn't solving for time! Think about what you need =).

Pressure = Force / Area; use basic algebra to solve for Force. But problem, you don't have the pressure =). Solve for it.

You know the "rho" of water (density). There's an equation to get a pressure =).
 
Last edited:
  • #4
I solved for the Force by finding the mass and multiplying it by 9.8. Now I'm having trouble finding the velocity
 

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