Consider the hydraulic lift shown in the figure. The small piston has an area A₁ of 0.0330 m², and the large piston has an area A2 of 4.00 m². Assume that the fluid used in the lift is incompressible. What force F2 will the large piston provide if the small piston is pushed down with a force F₁ of 17.0 N? y₁ F₂ = A₁₂ Y2 F₂ 2 N If the small piston A₁ is slowly depressed a distance of y₁ = 0.400 m, what distance y2 will the large piston A₂ rise? y2 = m What is the magnitude W₁ of the work done when pushing down the small piston A₁? W₁ = J What is the magnitude W2 of the work done when pushing up the large piston A₂? W₂ =

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Fluid Mechanics
Section: Chapter Questions
Problem 6P: The small piston of a hydraulic lift (Fig. P15.6) has a cross-sectional area of 3.00 cm2, and its...
Question
Consider the hydraulic lift shown in the figure. The small
piston has an area A₁ of 0.0330 m², and the large piston has
an area A2 of 4.00 m².
Assume that the fluid used in the lift is incompressible.
What force F2 will the large piston provide if the small piston
is pushed down with a force F₁ of 17.0 N?
y₁
F₂ =
A₁₂
Y2
F₂
2
N
If the small piston A₁ is slowly depressed a distance of
y₁ = 0.400 m, what distance y2 will the large piston A₂ rise?
y2 =
m
What is the magnitude W₁ of the work done when pushing
down the small piston A₁?
W₁ =
J
What is the magnitude W2 of the work done when pushing up
the large piston A₂?
W₂ =
Transcribed Image Text:Consider the hydraulic lift shown in the figure. The small piston has an area A₁ of 0.0330 m², and the large piston has an area A2 of 4.00 m². Assume that the fluid used in the lift is incompressible. What force F2 will the large piston provide if the small piston is pushed down with a force F₁ of 17.0 N? y₁ F₂ = A₁₂ Y2 F₂ 2 N If the small piston A₁ is slowly depressed a distance of y₁ = 0.400 m, what distance y2 will the large piston A₂ rise? y2 = m What is the magnitude W₁ of the work done when pushing down the small piston A₁? W₁ = J What is the magnitude W2 of the work done when pushing up the large piston A₂? W₂ =
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