HYDRAULIC LIFT. In the figure below, a hydraulic lift has one piston of diameter 8.0 cm and the other piston of diameter 40 cm. What force (in N) must be applied to the smaller piston to obtain a force of 14 O00 N (weight of the car) at the larger piston? original force F1= P1 A1 area A2 area At fluid P1 = P2 = A2 Pascal's principle P1 = P2 O 2012 Encyclopædia Britannica, I Retrieved last 13 November 2019, this image which I

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HYDRAULIC LIFT. In the figure
below, a hydraulic lift has one
piston of diameter 8.0 cm and the
other piston of diameter 40 cm.
What force (in N) must be applied
to the smaller piston to obtain a
force of 14 0O0 N (weight of the
car) at the larger piston?
original force
F1 =P1 A1
area A2
area At
fluid
P1 =
P2 = A2
%3D
Pascal's principle
P1 = P2
Retrieved last 13 November 2019, this image which I
2012 Encyclopædia Britannica, Inc.
modified is available online:
https://www.britannica.com/science/Pascals-principle.
573.
592.
643.
687.
752.
Transcribed Image Text:HYDRAULIC LIFT. In the figure below, a hydraulic lift has one piston of diameter 8.0 cm and the other piston of diameter 40 cm. What force (in N) must be applied to the smaller piston to obtain a force of 14 0O0 N (weight of the car) at the larger piston? original force F1 =P1 A1 area A2 area At fluid P1 = P2 = A2 %3D Pascal's principle P1 = P2 Retrieved last 13 November 2019, this image which I 2012 Encyclopædia Britannica, Inc. modified is available online: https://www.britannica.com/science/Pascals-principle. 573. 592. 643. 687. 752.
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