QI/ A tube contains an oil of specific gravity 0.75 to a depth of 130 cm. Find the absolute pressure and gauge pressure at this depth (in kN/m2).
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![QI/ A tube contains an oil of specific gravity 0.75 to a depth of 130
cm. Find the absolute pressure and gauge pressure at this depth (in
kN/m2).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa2f8377c-9ffc-4325-89e0-495a462769c6%2Fc7a686de-ad8a-499f-b2e4-5b835adc787b%2Fmb620ii_processed.jpeg&w=3840&q=75)
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- A patient is receiving saline solution from an intravenous (IV) system. The solution passes through a needle of length 2.1 cm and radius 0.195mm. There is an 8.00 mm-Hg gauge pressure in the patient's vein.Use the density of seawater, 1025 kg/m3, for the solution. Assume its viscosity at 20 °C is 1.002×10−3 Pa·s. a. The actual volume flow rate of the saline solution through the IV system is determined by its passage through the needle. Find the volume flow rate, in cubic centimeters per second, when the saline solution surface is 1.25 m above the patient’s vein.The density of water is 1.00 × 10³ kg/m³, and the density of mercury is 1.36 × 10¹ kg/m³. Calculate the absolute pressure på at the bottom of a 0.250-m tall graduated cylinder that is one-fourth full of mercury and three-fourths full of water. Pb = PaWhat depth of glycerin (in m) creates a pressure of 1.38 atm?
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