Substance X is known to exist at 1 atm in the solid, liquid, or vapor phase, depending on the temperature. Additionally, the values of these other properties of have been determined: melting point 95. °C boiling point 135. °C enthalpy of vaporization enthalpy of fusion 9.00 kJ/mol 40.00 kJ/mol 2.40 g/cm³(solid) 2.10 g/mL (liquid) -1 density 38. J-K-mol (solid) heat capacity 50. J-K •mol (liquid) 1 44. J·K¯'-mol(vapor) You may also assume X behaves as an ideal gas in the vapor phase. Suppose a small sample of X at 50 °C is put into an evacuated flask and heated at a constant rate until 6.0 kJ/mol of heat has been added to the sample. Graph the temperature of the sample that would be observed during this experiment.
Substance X is known to exist at 1 atm in the solid, liquid, or vapor phase, depending on the temperature. Additionally, the values of these other properties of have been determined: melting point 95. °C boiling point 135. °C enthalpy of vaporization enthalpy of fusion 9.00 kJ/mol 40.00 kJ/mol 2.40 g/cm³(solid) 2.10 g/mL (liquid) -1 density 38. J-K-mol (solid) heat capacity 50. J-K •mol (liquid) 1 44. J·K¯'-mol(vapor) You may also assume X behaves as an ideal gas in the vapor phase. Suppose a small sample of X at 50 °C is put into an evacuated flask and heated at a constant rate until 6.0 kJ/mol of heat has been added to the sample. Graph the temperature of the sample that would be observed during this experiment.
Chemistry
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pls help asap and make sure the graph is visible properly pls

Transcribed Image Text:You may aiso assume X behaves as an ideal gas in the vapor phase.
Suppose a small sample of X at 50 °C is put into an evacuated flask and heated at a constant rate until 6.0 kJ/mol of heat has been added to the sample.
Graph the temperature of the sample that would be observed during this experiment.
150
140-
130-
120-
110-
100-
90-
80
70-
60-
50-
1
2
3
4
heat added (kJ/mol)
temperature (*c)

Transcribed Image Text:Substance X is known to exist at 1 atm in the solid, liquid, or vapor phase, depending on the temperature. Additionally, the values of these other properties of X
have been determined:
melting point
95. °C
boiling point
135. °C
enthalpy of
vaporization
enthalpy of fusion
9.00 kJ/mol
40.00 kJ/mol
2.40 g/cm (solid)
- 1
density
38. J·K'mol-1 (solid)
2.10 g/mL (liquid)
- 1
- 1
heat capacity
50. J·Kmol (liquid)
- 1
44. J·Kmol (vapor)
You may also assume X behaves as an ideal gas in the vapor phase.
Suppose a small sample of X at 50 °C is put into an evacuated flask and heated at a constant rate until 6.0 kJ/mol of heat has been added to the sample.
Graph the temperature of the sample that would be observed during this experiment.
150
140
130
120
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