In a thermally isolated environment, you add ice at 0\ deg C and steam at 100\deg C. (a) Determine the amount of steam condensed (in g) and the final temperature (in \deg C) when the mass of ice and steam added are respectively 78.5 g and 10.8 g. amount of steam condensed 10.8 Correct: Your answer is correct. 9 final temperature 2 Incorrect: Your answer is incorrect. Determine the amount of heat needed to melt all the ice, the amount of heat available from condensing all the steam, and the amount of heat available from cooling the condensed steam to water at to o\deg C. What information can you obtain from this information? When writing the conservation of heat energy equation, keep in mind that \Delta m in the expression Q = \Delta mL is the change in mass of the higher-phase material.\ deg C

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In a thermally isolated environment, you add ice at 0\
deg C and steam at 100\deg C.
(a)
Determine the amount of steam condensed (in g) and
the final temperature (in \deg C) when the mass of ice
and steam added are respectively 78.5 g and 10.8 g.
amount of steam condensed
10.8
Correct: Your answer is correct.
9
final temperature
2
Incorrect: Your answer is incorrect.
Determine the amount of heat needed to melt all the
ice, the amount of heat available from condensing all
the steam, and the amount of heat available from
cooling the condensed steam to water at to o\deg C.
What information can you obtain from this information?
When writing the conservation of heat energy equation,
keep in mind that \Delta m in the expression
Q = \Delta mL
is the change in mass of the higher-phase material.\
deg C
Transcribed Image Text:In a thermally isolated environment, you add ice at 0\ deg C and steam at 100\deg C. (a) Determine the amount of steam condensed (in g) and the final temperature (in \deg C) when the mass of ice and steam added are respectively 78.5 g and 10.8 g. amount of steam condensed 10.8 Correct: Your answer is correct. 9 final temperature 2 Incorrect: Your answer is incorrect. Determine the amount of heat needed to melt all the ice, the amount of heat available from condensing all the steam, and the amount of heat available from cooling the condensed steam to water at to o\deg C. What information can you obtain from this information? When writing the conservation of heat energy equation, keep in mind that \Delta m in the expression Q = \Delta mL is the change in mass of the higher-phase material.\ deg C
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