In the above figure, the master cylinder has a circular cross section and a radius of 1.000 m. The slave cylinder has aradius ofl 24.50 cm. 1) What force must be applied down on the piston of the master cylinder to attain a pressure of 1.600 - 10° Pa in the system? A) 3.01 72 10°N B) 3.01 74 10N Q3.01 T5- 10'N DJ 3.01 T6 10N E) 5.02 7o 10N F) 5.02 72 10N G5.02 E5 10N HỊ 5.0251 10*N 2) What magnitude force pushes up on the slave cylinder if the pressure in the system is 1.600- 10° Pa? A) 3.01 72 10N B) 3.0174 10 N 3.01 75 10 N DJ 3.01 76 10 N E) 5.02T0 10 N F)5.0272 10N G)5.02 ES 10N H) 5.0251 10N 3) If the piston of the slave cylinder is extended through a distance 45.00 cm, calculate the distance through which the piston of the master cylinder must be pushed to achieve this movement if friction in the system is negligible. You can assume the movement is done when the system is at a pressure of 1.600 - 10ʻPa, but this isn't strictly necessary to do the problem.
In the above figure, the master cylinder has a circular cross section and a radius of 1.000 m. The slave cylinder has aradius ofl 24.50 cm. 1) What force must be applied down on the piston of the master cylinder to attain a pressure of 1.600 - 10° Pa in the system? A) 3.01 72 10°N B) 3.01 74 10N Q3.01 T5- 10'N DJ 3.01 T6 10N E) 5.02 7o 10N F) 5.02 72 10N G5.02 E5 10N HỊ 5.0251 10*N 2) What magnitude force pushes up on the slave cylinder if the pressure in the system is 1.600- 10° Pa? A) 3.01 72 10N B) 3.0174 10 N 3.01 75 10 N DJ 3.01 76 10 N E) 5.02T0 10 N F)5.0272 10N G)5.02 ES 10N H) 5.0251 10N 3) If the piston of the slave cylinder is extended through a distance 45.00 cm, calculate the distance through which the piston of the master cylinder must be pushed to achieve this movement if friction in the system is negligible. You can assume the movement is done when the system is at a pressure of 1.600 - 10ʻPa, but this isn't strictly necessary to do the problem.
College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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can you please do all of them. thank

Transcribed Image Text:Problems 1-3 refer to the following figure.
In the above figure, the master cylinder has a circular cross section and a radius of 1.000 m. The slave
cylinder has aradius of 24.50 cm.
1) What force must be applied down on the piston of the master cylinder to attain
a pressure of 1.600 - 10 Pa in the system?
A) 3.01 72- 10°N
B) 3.01 T4 10N
Q3.01 75- 10N
DJ 301 76 10 N
E) 5.027o 10 N
GJ5.02 ES 10N
H) 5.0251 10N
2) What magnitude force pushes up on the slave cylinder if the pressure in the
system is 1.600 - 10 Pa?
A) 3.01 72 10N
B)3.01 74 10N
93.01 T5 10 N
Dj 3.01 T6 10N
E) 5.0240 10 N
F)5.0272 10N
G5.02 ES 10 N
HỊ 5.0251 10 N
3) If the piston of the slave cylinder is extended through a distance 45.00 cm,
calculate the distance through which the piston of the master cylinder must be
pushed to achieve this movement if friction in the system is negligible. You can
assume the movement is done when the system is at a pressure of 1.600 - 10ʻPa,
but this isn't strictly necessary to do the problem.
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