Using the tables for water, determine the specified property data at the indicated states. (a) At p= 3 bar, v=0.5 m³/kg, find T in °C and u in kJ/kg. (b) At T=320°C, v=0.33 m²/kg, find p in MPa and u in kJ/kg. (c) At p = 28 MPa, T = 500°C, find v in m³/kg and h in kJ/kg. (d) At T = 10°C, v = 10 m³/kg, find p in kPa and h in kJ/kg.

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
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Using the tables for water, determine the specified property data
at the indicated states.
(a) At p= 3 bar, v = 0.5 m³/kg, find T in °C and u in kJ/kg.
(b) At T = 320°C, v = 0.33 m²/kg, find p in MPa and u in kJ/kg.
(c) At p = 28 MPa, T = 500°C, find v in m³/kg and h in kJ/kg.
(d) At T = 10°C, v = 10 m³/kg, find p in kPa and h in kJ/kg.
Transcribed Image Text:Using the tables for water, determine the specified property data at the indicated states. (a) At p= 3 bar, v = 0.5 m³/kg, find T in °C and u in kJ/kg. (b) At T = 320°C, v = 0.33 m²/kg, find p in MPa and u in kJ/kg. (c) At p = 28 MPa, T = 500°C, find v in m³/kg and h in kJ/kg. (d) At T = 10°C, v = 10 m³/kg, find p in kPa and h in kJ/kg.
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