Scientist found evidence that mars may once have had an ocean that is 0.500 km deep. The acceleration due to gravity on mars is 3.71 m/s2. What would be the fluid pressure (in Pa) at the bottom of the ocean ? To solve this, which of the following is/are the best equation/s to use (check as many as many that applies)

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter12: Fluid Dynamics And Its Biological And Medical Applications
Section: Chapter Questions
Problem 64PE: Oxygen reaches the veinless cornea of the eye by diffusing through its tear layer, which is 0.500-mm...
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Scientist found evidence that mars may once have had an ocean that is 0.500 km deep. The acceleration due to gravity on mars is 3.71 m/s2. What would be the fluid pressure (in Pa) at the bottom of the ocean ?

To solve this, which of the following is/are the best equation/s to use (check as many as many that applies)

 

Fb =P fluidgV submerged
AS =
1 |4192|
F =
4περ
Tk =T+273.15K
F1
F2
A1 A2
dU = dQ – dW
W
e =
QH
Q = mcAT
p =m/V
P2+ pgh; + pv3 =P1+pgh, +ovi
=pgh1+
Pi+
A1V1= A2V2
F=ma
Q = mL
9 enc
þEda =
€0
E=F/q
PV = nRT
AL = «L0AT
W =
dv
P= pgh
Transcribed Image Text:Fb =P fluidgV submerged AS = 1 |4192| F = 4περ Tk =T+273.15K F1 F2 A1 A2 dU = dQ – dW W e = QH Q = mcAT p =m/V P2+ pgh; + pv3 =P1+pgh, +ovi =pgh1+ Pi+ A1V1= A2V2 F=ma Q = mL 9 enc þEda = €0 E=F/q PV = nRT AL = «L0AT W = dv P= pgh
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