te fhe pressure in psid The boto -f spneical fank Oll. The top of the tank is vented to the atmosphere having a pressure of 14.72 psia. The density of the oil is 0.922 g/cm³. he system in the figure below is at 20°C. If the atmospheric pressure is 101.33 kPa and t absolute pressure at the bottom of the tank is 237 kPa, what is the specific gravity of flui (? (Specific gravity of the oil = 0.89). hol = 1 m : hwater = 2 m : hftuid x = 3 m : hµg = 0.5 m OIL WATER

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
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Please apply GIVEN, REQUIRED and SOLUTION

2. Calculate the pressure in psia at the bottom of an 8 - ft spherical tank filled with oil.
The top of the tank is vented to the atmosphere having a pressure of 14.72 psia. The
density of the oil is 0.922 g/cm³.
The system in the figure below is at 20°C. If the atmospheric pressure is 101.33 kPa and the
absolute pressure at the bottom of the tank is 237 kPa, what is the specific gravity of fluid
X? (Specific gravity of the oil = 0.89). hou = 1 m : hwater = 2 m : hftuid x = 3 m : hµg = 0.5 m
OIL
WATER
FLUID X
MERCURY
APIEN
UFICA
Transcribed Image Text:2. Calculate the pressure in psia at the bottom of an 8 - ft spherical tank filled with oil. The top of the tank is vented to the atmosphere having a pressure of 14.72 psia. The density of the oil is 0.922 g/cm³. The system in the figure below is at 20°C. If the atmospheric pressure is 101.33 kPa and the absolute pressure at the bottom of the tank is 237 kPa, what is the specific gravity of fluid X? (Specific gravity of the oil = 0.89). hou = 1 m : hwater = 2 m : hftuid x = 3 m : hµg = 0.5 m OIL WATER FLUID X MERCURY APIEN UFICA
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