Through photosynthesis, plants build molecules of sugar containing several carbon atoms from carbon dioxide. In the process, entropy is decreased. The reaction of CO 2 with formic acid to form oxalic acid provides a simple example of a reaction in which the number of carbon atoms in a compound increases: CO 2 (aq) + HCOOH(aq) → H 2 C 2 O 4 (aq) (a) Calculate the standard entropy change for this reaction and discuss the sign of Δ S ° . (b) How do plants carry out reactions that increase the number of carbon atoms in a sugar, given the changes in entropy for reactions like this?
Through photosynthesis, plants build molecules of sugar containing several carbon atoms from carbon dioxide. In the process, entropy is decreased. The reaction of CO 2 with formic acid to form oxalic acid provides a simple example of a reaction in which the number of carbon atoms in a compound increases: CO 2 (aq) + HCOOH(aq) → H 2 C 2 O 4 (aq) (a) Calculate the standard entropy change for this reaction and discuss the sign of Δ S ° . (b) How do plants carry out reactions that increase the number of carbon atoms in a sugar, given the changes in entropy for reactions like this?
Solution Summary: The author explains how plants convert carbon dioxide and water vapor from the atmosphere to glucose and oxygen gas via photosynthesis.
Through photosynthesis, plants build molecules of sugar containing several carbon atoms from carbon dioxide. In the process, entropy is decreased. The reaction of CO2with formic acid to form oxalic acid provides a simple example of a reaction in which the number of carbon atoms in a compound increases:
CO
2
(aq)
+
HCOOH(aq)
→
H
2
C
2
O
4
(aq)
(a) Calculate the standard entropy change for this reaction and discuss the sign of
Δ
S
°
.
(b) How do plants carry out reactions that increase the number of carbon atoms in a sugar, given the changes in entropy for reactions like this?
142. A mixture of H2(g) and N2(g) has a density of 0.216 g/liter at 300 K and 500 torr. What is the
mole fraction composition of the mixture?
One liter of N2(g) at 2.1 bar and two liters of Ar(g) at 3.4 bar are mixed in a 4.0 liter flask to form an ideal gas mixture. Calculate the value of the final pressure of the mixture if the initial and final temperature of the gases are the same. Repeat this calculation if the initial temperature of the N2(g) and Ar(g) are 304 K and 402 K, respectively, and the final temperature of the mixture is 377 K.
10
5
4. These four 'H NMR spectra were recorded from different isomers with molecular formula
CsH,CIO. They all contain a carbonyl group. Determine the structure of the different isomers.
0
10
5
0
10
5
10
9
8
7
6
5
4
3.
1
0
9
10
10
66
9
0
10
9
10
5
1
8
7
6
5
3
2
-a
8
7
6
5
1
10
9
8
7
6
5
22
2
1
0
3
2
16
1
0
3
2 1
2
6
0
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