Density of Water P 999.65 kg m-3 Molar mass water M 18.015 g mot¹ Enthalpy of evaporation of water ΔΗ 44.63 kJ mol-1 Average PV-panel power PAP 150 W m-2 Daily sunlight hours tosi 12 hd-1 14.Entropy changes over temperature range Using the data given in the table below to draw the S(T)-diagram for the heating up of ethanol from 100 K to 150 °C (at 1 atm). At atmospheric pressure, ethanol melts at - 114 °C and evaporates at 351 K. Phase (transition) S CIJ mol 111 AH / kJ mol 4.9 112 1-g g 42.32 78 Hint: For the X-axis, use approximately the given temperatures. On the Y-axis, consider relative changes but do not calculate exact S values.

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter13: Spontaneous Processes And Thermodynamic Equilibrium
Section: Chapter Questions
Problem 40P
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Density of Water
P
999.65
kg m-3
Molar mass water
M
18.015
g mot¹
Enthalpy of evaporation of water
ΔΗ
44.63
kJ mol-1
Average PV-panel power
PAP
150
W m-2
Daily sunlight hours
tosi
12
hd-1
14.Entropy changes over temperature range
Using the data given in the table below to draw the S(T)-diagram for the heating
up of ethanol from 100 K to 150 °C (at 1 atm). At atmospheric pressure, ethanol
melts at - 114 °C and evaporates at 351 K.
Phase (transition)
S
CIJ mol
111
AH / kJ mol
4.9
112
1-g
g
42.32
78
Hint: For the X-axis, use approximately the given temperatures. On the Y-axis,
consider relative changes but do not calculate exact S values.
Transcribed Image Text:Density of Water P 999.65 kg m-3 Molar mass water M 18.015 g mot¹ Enthalpy of evaporation of water ΔΗ 44.63 kJ mol-1 Average PV-panel power PAP 150 W m-2 Daily sunlight hours tosi 12 hd-1 14.Entropy changes over temperature range Using the data given in the table below to draw the S(T)-diagram for the heating up of ethanol from 100 K to 150 °C (at 1 atm). At atmospheric pressure, ethanol melts at - 114 °C and evaporates at 351 K. Phase (transition) S CIJ mol 111 AH / kJ mol 4.9 112 1-g g 42.32 78 Hint: For the X-axis, use approximately the given temperatures. On the Y-axis, consider relative changes but do not calculate exact S values.
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