The heat capacity of ice is 2.108 J/g C. If I take a 9.75 g sample of Moderna vaccine that is kept in a freezer at -70 degrees C, and warm it up until it becomes liquid vaccine at 25.6 degrees C, how many Joules of energy does it take to do this? HINT: assume the vaccine is 100% water. a. 4300.83 Joules b. 5739.54 Joules C. 2483.04 Joules d. 4695.21 Joules e. 1044-33 Joules

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
Chapter12: Thermodynamic Processes And Thermochemistry
Section: Chapter Questions
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The heat capacity of ice is 2.108 J/g C. If I take a 9.75 g sample of Moderna vaccine that is kept in a freezer at -70 degrees C,
and warm it up until it becomes liquid vaccine at 25,6 degrees C, how many Joules of energy does it take to do this?
HINT: assume the vaccine is 100% water.
a. 4300.83 Joules
b. 5739.54 Joules
c. 2483.04 Joules
d. 4695.21 Joules
e. 1044.33 Joules
Transcribed Image Text:The heat capacity of ice is 2.108 J/g C. If I take a 9.75 g sample of Moderna vaccine that is kept in a freezer at -70 degrees C, and warm it up until it becomes liquid vaccine at 25,6 degrees C, how many Joules of energy does it take to do this? HINT: assume the vaccine is 100% water. a. 4300.83 Joules b. 5739.54 Joules c. 2483.04 Joules d. 4695.21 Joules e. 1044.33 Joules
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