For each system listed in the first column of the table below, decide (if possible) whether the change described in the second column will increase the entropy S of the system, decrease S, or leave S unchanged. If you don't have enough information to decide, check the "not enough information" button in the last column. System A few moles of carbon dioxide (CO₂) gas. A few moles of helium (He) gas. A few grams of liquid ammonia (NH3). Change The carbon dioxide is cooled from 59.0 °C to 4.0 °C and is also compressed from a volume of 15.0 L to a volume of 1.0 L. The helium is compressed from a volume of 14.0 L to a volume of 6.0 L while the temperature is held constant at 8.0 °C. The ammonia is heated from -5.0 °C to 84.0 °C. AS AS < 0 O AS = 0 AS > 0 not enough information AS < 0 O AS=0 AS > 0 not enough information Ο ΔS <0 AS = 0 O AS > 0 not enough information 00. Ar
For each system listed in the first column of the table below, decide (if possible) whether the change described in the second column will increase the entropy S of the system, decrease S, or leave S unchanged. If you don't have enough information to decide, check the "not enough information" button in the last column. System A few moles of carbon dioxide (CO₂) gas. A few moles of helium (He) gas. A few grams of liquid ammonia (NH3). Change The carbon dioxide is cooled from 59.0 °C to 4.0 °C and is also compressed from a volume of 15.0 L to a volume of 1.0 L. The helium is compressed from a volume of 14.0 L to a volume of 6.0 L while the temperature is held constant at 8.0 °C. The ammonia is heated from -5.0 °C to 84.0 °C. AS AS < 0 O AS = 0 AS > 0 not enough information AS < 0 O AS=0 AS > 0 not enough information Ο ΔS <0 AS = 0 O AS > 0 not enough information 00. Ar
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:For each system listed in the first column of the table below, decide (if possible) whether the change described in the second
column will increase the entropy S of the system, decrease or leave S unchanged. If you don't have enough information
to decide, check the "not enough information" button in the last column.
System
A few moles of carbon dioxide (CO₂) gas.
A few moles of helium (He) gas.
A few grams of liquid ammonia (NH3).
Change
The carbon dioxide is cooled from
59.0 °C to 4.0 °C and is also
compressed from a volume of 15.0 L
to a volume of 1.0 L.
The helium is compressed from a
volume of 14.0 L to a volume of
6.0 L while the temperature is held
constant at 8.0 °C.
The ammonia is heated from -5.0 °C
to 84.0 °C.
AS
AS < 0
AS = 0
AS> 0
not enough
information
AS < 0
AS = 0
AS > 0
not enough
information
AS < 0
O AS = 0
AS > 0
not enough
information
?
00.
18
Ar
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