Solid copper can be produced by passing gaseous ammonia over solid copper (II) oxide al high temperatures. mg src=Images/HTML_99425-9-66QAP_image001.jpg alt="" align="top"/> e other products of the reaction are nitrogen gas and water Vapor. The balanced equation for this reaction is: :math> 2 NH 3 ( g ) + 3 CuO ( s ) → N 2 ( g ) + 3 Cu ( s ) + 3 H 2 O ( g ) at is the theoretical yield of solid copper that should form when 18.1 g of NH 3 , is reacted with 90.4 g of CuO ? If only 45.3 g of copper is actually collected, what is the percent yield? mg src=Images/HTML_99425-9-66QAP_image002.jpg alt="" align="top"/>
Solid copper can be produced by passing gaseous ammonia over solid copper (II) oxide al high temperatures. mg src=Images/HTML_99425-9-66QAP_image001.jpg alt="" align="top"/> e other products of the reaction are nitrogen gas and water Vapor. The balanced equation for this reaction is: :math> 2 NH 3 ( g ) + 3 CuO ( s ) → N 2 ( g ) + 3 Cu ( s ) + 3 H 2 O ( g ) at is the theoretical yield of solid copper that should form when 18.1 g of NH 3 , is reacted with 90.4 g of CuO ? If only 45.3 g of copper is actually collected, what is the percent yield? mg src=Images/HTML_99425-9-66QAP_image002.jpg alt="" align="top"/>
Solution Summary: The author explains the theoretical yield and percentage yield of copper. Theoretical yield is calculated by the amount of limiting agent.
e other products of the reaction are nitrogen gas and water Vapor. The balanced equation for this reaction is:
:math>
2
NH
3
(
g
)
+
3
CuO
(
s
)
→
N
2
(
g
)
+
3
Cu
(
s
)
+
3
H
2
O
(
g
)
at is the theoretical yield of solid copper that should form when 18.1 g of
NH
3
, is reacted with 90.4 g of
CuO
? If only 45.3 g of copper is actually collected, what is the percent yield?
Predict the major organic product(s) and byproducts (either organic or inorganic) for thefollowing reaction.
please help
Experiment 1
Data Table 1: Conservation of Mass - Initial Mass
Data Table 1
Data Table 2
Data Table 3
Data Table 4
Panel 1
Photo 1
Data Table 5
Reaction Mass of test tube and 5.0% HC₂H₂O2 (g)
#
(A)
(B)
Mass of NaHCO, (g) Mass of balloon and NaHCO, (g)
(C)
0.10
1
0829
14.38g
0.20
2
0.929
14.29g
0.35
1.00g
3
14.25g
0.50
1.14g
14.29
Experiment 1
Data Table 2: Moles of HC2H3O2
Reaction Volume of Mass of
Moles of HC₂H₂O₂
5.0%
Vinegar
(g)
(ML)
5.0
0.25
0042 mol
2
5.0
0.25
0042 mol
3
5.0
0.25
0042 mol
5.0
0.25
0042 mol
Experiment 1
Data Table 3: Moles of NaHCO3
Reaction Mass of NaHCO (g)
10g
20g
35g
50g
Experiment 1
Data Table 4: Theoretical Yield of CO₂
Reaction #
1
2
3
Experiment 1
Total mass before reaction (g)
(D=A+C)
15.29
15.21g
15.25g
15.349
Exercise 1
Data Table 1
Data Table 2
Data Table 3
Data Table 4
Panel 1
Photo 1
Data Table 5
Exercise 1-
Data Table 1
Data Table 2
DataTable 3
Data Table 4
Panel 1
Photo 1
Data Table 5
Exercise 1-
Moles of NaHCO
0012 mol
0025 mol
0044 mol
0062 mol…
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell