A pure solid sample of Substance X is put into an evacuated flask. The flask is heated at a steady rate and the temperature recorded as time passes. Here is a graph of the results: temperature (°C) 170. 150 1:30. 110. 90. 10. What is the melting point of X ? Use this graph to answer the following questions: heat added (kJ/mol) What phase (physical state) of X would you expect to find in the flask after 5 kJ/mol of heat has been added? 30. *C (check all that apply) O solid O liquid gas

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Chapter1: Chemical Foundations
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STATES OF MATTER
Identifying phase transitions on a heating curve
A pure solid sample of Substance X is put into an evacuated flask. The flask is heated at a steady rate and the temperature recorded as time passes. Here is a
graph of the results:
temperature (°C)
170.
150.
130.
110.
90
70.
0.
10.
What is the melting point of X ?
Use this graph to answer the following questions:
heat added (kJ/mol)
What phase (physical state) of X would
you expect to find in the flask after
5 kJ/mol of heat has been added?
*C
30.
X
40.
(check all that apply)
solid
liquid
gas
0/3
50.
Transcribed Image Text:= STATES OF MATTER Identifying phase transitions on a heating curve A pure solid sample of Substance X is put into an evacuated flask. The flask is heated at a steady rate and the temperature recorded as time passes. Here is a graph of the results: temperature (°C) 170. 150. 130. 110. 90 70. 0. 10. What is the melting point of X ? Use this graph to answer the following questions: heat added (kJ/mol) What phase (physical state) of X would you expect to find in the flask after 5 kJ/mol of heat has been added? *C 30. X 40. (check all that apply) solid liquid gas 0/3 50.
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