Question

A large water tank is 2.95 m high and filled to the brim, the top of...

A large water tank is 2.95 m high and filled to the brim, the top of the tank open to the air. A small pipe with a faucet is attached to the side of the tank, 0.740 m above the ground. If the valve is opened, at what speed (in m/s) will water come out of the pipe?

m/s

0 0
Add a comment Improve this question Transcribed image text
Answer #1

H= 2.95m ho -0.74 ? Using bernoulis equation IgH + Pam = 4gh + I Pv² + P som Фан , h, fo (9.8) (2.95-0.74) = 42 =(6.58 m/s -

Please rate the work if you are satisfied with the solution or else kindly ask your doubts or queries in the comment section below

Add a comment
Know the answer?
Add Answer to:
A large water tank is 2.95 m high and filled to the brim, the top of...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A large storage tank, open at the top and filled with water, develops a small hole...

    A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 17.0 m below the water level. The rate of flow from the leak is found to be 2.20 x 10-3 m/min. ind (a) Determine the speed (in m/s) at which the water leaves the hole. m/s (b) Determine the diameter of the hole in mm). mm (c) What If? If the hole is 10.0 m above the ground...

  • A large storage tank, open at the top and filled with water, develops a small hole...

    A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 15.2 m below the water level. The rate of flow fron the leak is found to be 2.80 x 10-3 m3/min. (a) Determine the speed (in m/s) at which the water leaves the hole. m/s (b) Determine the diameter of the hole in mm). mm (c) What If? If the hole is 10.0 m above the ground and...

  • 31 AL Figure P9.28 it 29. A sample of an unknown material appears to weigh 300....

    31 AL Figure P9.28 it 29. A sample of an unknown material appears to weigh 300. N in air and 200. N when immersed in alcohol of specific grav- ity 0.700. What are (a) the volume and (b) the density of the material 30, An object weighing N in air is immersed in water after being tied to a string connected to a balance. The scale now reads 265 N. Immersed in oil, the o object appears to weigh 275...

  • A large storage tank, open at the top and filled with water, develops a small hole...

    A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 15.4 m below the water level. The rate of flow from the leak is found to be 3.00 x 10-3 m3/min. 1 (a) Determine the speed (in m/s) at which the water leaves the hole. 17.38 m/s (b) Determine the diameter of the hole (in mm). How is the flow rate related to the area of the hole...

  • A large storage tank, open at the top and filled with water, develops a small hole...

    A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 15.8 m below the water level. The rate of flow from the leak is found to be 3.20 x 10–3 m /min. 1 pm (a) Determine the speed (in m/s) at which the water leaves the hole. 17.59 m/s (b) Determine the diameter of the hole in mm). 1.97E-6 How is the flow rate related to the area...

  • A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 16.2 m be...

    A large storage tank, open at the top and filled with water, develops a small hole in its side at a point 16.2 m below the water level. The rate of flow from the leak is found to be 3.00 x 10-3 m3/min. 1 (a) Determine the speed (in m/s) at which the water leaves the hole. m/s (b) Determine the diameter of the hole (in mm). mm () What If? If the hole is 10.0 m above the ground...

  • A cylindrical tank (height h, radius r) is full to the brim of water and its...

    A cylindrical tank (height h, radius r) is full to the brim of water and its top is open to the outside air. What expression describes the speed of fluid flowing out of a hole that is opened up at height h′ above the bottom of the tank?

  • There is a large tank, with the (1) open to atmosphere, that is filled with water...

    There is a large tank, with the (1) open to atmosphere, that is filled with water to a height of h, from the center of the the outlet pipe (2). The valve on the outlet pipe is opened, allowing the water to flow out. Assume (2) is exposed to atmospheric pressure. Using the Bernoulli equation, derive the Toricelli equation, i.e. the expression for the outlet velocity as a function of height. Water = 0

  • A large storage tank, open to the atmosphere at the top and filled with water, developed...

    A large storage tank, open to the atmosphere at the top and filled with water, developed a small hole in its side 13.9 m below the water level. The rate of flow from the leak is 2.10 x 10^-3 m^3 / min. A) determine the speed at which the water leaves the hole. B) determine the diameter of the hole.

  • A large storage tank, opened at the top, and filled with water, develops a small hole...

    A large storage tank, opened at the top, and filled with water, develops a small hole in its side at a point 14.0 m below the water level. If the rate of flow from the leak is 2.00 x 10-3 m3/min, determine (a) the speed at which water leaves the hole and (b) the diameter of the hole. (a) 11.7 m/s; (b) 0.190 cm (a) 16.6 m/s; (b) 0.180 cm (a) 11.7 m/s; (b) 0.124 cm (a) 16.6 m/s; (b)...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT