Fundamentals of Chemical Engineering Thermodynamics (MindTap Course List)
Fundamentals of Chemical Engineering Thermodynamics (MindTap Course List)
1st Edition
ISBN: 9781111580704
Author: Kevin D. Dahm, Donald P. Visco
Publisher: Cengage Learning
Question
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Chapter 4.8, Problem 19P

(A)

Interpretation Introduction

Interpretation:

Determine the final temperature of the block when system reaches equilibrium.

Concept Introduction:

Write the steady state energy balance equation for copper block.

ddt{M(U^+V22+gh)}=[min(H^in+Vin22+ghin)mout(H^out+Vout22+ghout)+WS+WEC+Q]

Here, time is t, total mass is M, specific internal energy is U^, velocity is V, acceleration due to gravity is g, height is h, initial mass flow is min, initial specific enthalpy is H^in, heat is added or removed from the system is Q, initial velocity is Vin, initial height of the gas is hin, final mass flow is mout, final height of the gas is hout, shaft work is added to the system is WS, and work is added to the system through expansion or contraction of the system is WEC.

(B)

Interpretation Introduction

Interpretation:

Determine the change in entropy of the universe.

Concept Introduction:

Write the formula to calculate the change in entropy (dScopper) in copper.

dScopper=dQrevT=McopperCV,copperdTT

Here, constant volume heat capacity in copper is CV,copper, change in the reversible heat is Qrev, and temperature is T.

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