Question

A hydraulic lift (similar to those used in automotive service stations) has two vertical cylinders, one...

A hydraulic lift (similar to those used in automotive service stations) has two vertical cylinders, one the left, and one on the right, plus a connecting pathway between them on the bottom. The left cylinder contains a mass of 600kg (which acts like a piston, pushing downward), and has a cross sectional area of 800cm2. The piston on the right has a cross sectional area of 25cm2 and a negligible weight. If the apparatus is filled with oil (ρ = 0.78g/cm2), find the necessary force, F, applied to the right hand cylinder piston to keep the system in equilibrium, i.e. no vertical movement. The piston in the cylinder on the right is 8.0m higher than the mass on the left.

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

In this question, the pressure on the left cylinder and the right cylinder remain same according to the Pascal law for transmission of fluid pressure.

Solving for F

F = 31 N

Add a comment
Know the answer?
Add Answer to:
A hydraulic lift (similar to those used in automotive service stations) has two vertical cylinders, one...
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
  • he small piston of a hydraulic lift has a cross-sectional area of 3.50 cm2, and its...

    he small piston of a hydraulic lift has a cross-sectional area of 3.50 cm2, and its large piston has a cross-sectional area of 200.0 cm2 (please see the figure below). What force must be applied to the small piston for the lift to raise a load of 14.8 kN? (In service stations, this force is usually exerted by compressed air.)

  • Pascal’s principle: What force must be exerted on the master cylinder of a hydraulic lift to...

    Pascal’s principle: What force must be exerted on the master cylinder of a hydraulic lift to support the weight of a 1800 kg car resting on the slave cylinder? The master cylinder has a 2.00 cm diameter and the slave has a 25.0 cm diameter. Pascal’s principle: A barber’s chair rests on a hydraulic piston 10 cm in diameter. The input side has a piston with cross-sectional area of 10 cm2 which is pumped on using a foot pedal. If...

  • A hydraulic lift has two connected pistons with cross-sectional areas 5 cm2 and 250 cm2. It...

    A hydraulic lift has two connected pistons with cross-sectional areas 5 cm2 and 250 cm2. It is filled with oil of density 670 kg/m3. 1. What mass must be placed on the small piston to support a car of mass 1200 kg at equal fluid levels? m = 24kg 2. With the lift in balance with equal fluid levels, a person of mass 70 kg gets into the car. What is the equilibrium height difference in the fluid levels in...

  • To work on your car you use a hydraulic lift as shown in the diagram. It...

    To work on your car you use a hydraulic lift as shown in the diagram. It confines a fluid with ρ = 2.16 kg/m3.Your car has mass Mcar = 980 kg. The lift piston has mass Mpiston = 225 kg. The input piston (on the left) is massless and has an area of 0.785 m2. The lift piston (on the right) has an area of 4.14 m2. 1. The lift piston base and the input piston base are at the...

  • A gas is contained in a vertical, frictionless piston-cylinder device. The piston has a mass of...

    A gas is contained in a vertical, frictionless piston-cylinder device. The piston has a mass of 3.2 kg and a cross-sectional area of 35 cm2. A compressed spring above the piston exerts a force of 110 N on the piston. If the atmospheric pressure is 95 kPa, determine the pressure inside the cylinder. The pressure inside the cylinder is _______ kPa.

  • * A gas is contained in a vertical, frictionless piston-cylinder device. The piston has a mass...

    * A gas is contained in a vertical, frictionless piston-cylinder device. The piston has a mass of 2 kg and a cross-sectional area of 30 cm2. A spring above the piston is compressed by 2.5 mm and has a spring constant, k, of 38 kN/m. a. If the atmospheric pressure is 1 atm, determine the initial pressure (P1) inside the cylinder. Heat is added to the system until the piston moves an additional 10 mm. b. How much did the...

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