Calculate the number of kilojoules of energy required to convert 30.0 grams of liquid ethanol initially at a temperature of -114.0°C to gas at 150.0°C kJ Specific Heat Capacity b.p °C Solid Liquid J/g.°C m.w. m.p. AHrus Gas AHvap kJ/mol J/g.°C substance formula g/mol °C kJ/mol J/g.°C Ethanol C2H5OH 46.069 -114.0 78.0 5.02 38.6 0.970 2.30 1.94 Water H20 18.015 0.0 100.0 6.01 40.67 2.09 4.184 1.84 DMSO C2H,SO 78.129 19.0 189.0 14.4 48.6 1.80 1.96 1.20 t-Butanol C4H100 74.123 25.2 82.4 6.78 39.1 1.97 2.9 1.73

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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Calculate the number of kilojoules of energy required to convert 30.0 grams of liquid ethanol initially at a temperature of -114.0°C to gas at 150.0°C.
kJ
b.p
°C
Specific Heat Capacity
Liquid
J/g.°C
m.w.
m.p.
AHfus
AHvap
Solid
Gas
substance
formula
g/mol
°C
kJ/mol
kJ/mol
J/g.°C
J/g.°C
Ethanol
C2H5OH
46.069
-114.0
78.0
5.02
38.6
0.970
2.30
1.94
Water
H20
18.015
0.0
100.0
6.01
40.67
2.09
4.184
1.84
C2H6SO
C4H100
DMSO
78.129
19.0
189.0
14.4
48.6
1.80
1.96
1.20
t-Butanol
74.123
25.2
82.4
6.78
39.1
1.97
2.9
1.73
Transcribed Image Text:Calculate the number of kilojoules of energy required to convert 30.0 grams of liquid ethanol initially at a temperature of -114.0°C to gas at 150.0°C. kJ b.p °C Specific Heat Capacity Liquid J/g.°C m.w. m.p. AHfus AHvap Solid Gas substance formula g/mol °C kJ/mol kJ/mol J/g.°C J/g.°C Ethanol C2H5OH 46.069 -114.0 78.0 5.02 38.6 0.970 2.30 1.94 Water H20 18.015 0.0 100.0 6.01 40.67 2.09 4.184 1.84 C2H6SO C4H100 DMSO 78.129 19.0 189.0 14.4 48.6 1.80 1.96 1.20 t-Butanol 74.123 25.2 82.4 6.78 39.1 1.97 2.9 1.73
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