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) O F=ma W QH O F, = P fluidgV submerged AS = J dQ Op=m/V 1 ]9192| F = 4 TEO O Q= mL O Q = mcAT O A,V1= A2V2 9 enc ÞEdA =
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) O F=ma W QH O F, = P fluidgV submerged AS = J dQ Op=m/V 1 ]9192| F = 4 TEO O Q= mL O Q = mcAT O A,V1= A2V2 9 enc ÞEdA =
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 9P: (a) Calculate the absolute pressure at an ocean depth of 1 000 m. Assume the density of seawater is...
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