Consider the balanced equation: 2 N 2 H 4 ( g ) + N 2 O 4 ( g ) → 3 N 2 ( g ) + 4 H 2 O ( g ) Complete the table with the appropriate number of moles of reactants and products. If the number of moles of a reactant is provided. fill in the required amount of the other reactant. as well as the moles of each product formed. If the number of moles of a product is provided. fill in the required amount of each reactant to make that amount of product, as well as the amount of the other product that is made. m o l N 2 H 4 m o l N 2 O 4 m o l N 2 m o l H 2 O _______ 2 ________ _______ 6 ________ ________ _______ _______ ________ ________ 8 _______ 5.5 ________ _______ 3 ________ ________ _______ _______ _________ 12.4 ________
Consider the balanced equation: 2 N 2 H 4 ( g ) + N 2 O 4 ( g ) → 3 N 2 ( g ) + 4 H 2 O ( g ) Complete the table with the appropriate number of moles of reactants and products. If the number of moles of a reactant is provided. fill in the required amount of the other reactant. as well as the moles of each product formed. If the number of moles of a product is provided. fill in the required amount of each reactant to make that amount of product, as well as the amount of the other product that is made. m o l N 2 H 4 m o l N 2 O 4 m o l N 2 m o l H 2 O _______ 2 ________ _______ 6 ________ ________ _______ _______ ________ ________ 8 _______ 5.5 ________ _______ 3 ________ ________ _______ _______ _________ 12.4 ________
2
N
2
H
4
(
g
)
+
N
2
O
4
(
g
)
→
3
N
2
(
g
)
+
4
H
2
O
(
g
)
Complete the table with the appropriate number of moles of reactants and products. If the number of moles of a reactant is provided. fill in the required amount of the other reactant. as well as the moles of each product formed. If the number of moles of a product is provided. fill in the required amount of each reactant to make that amount of product, as well as the amount of the other product that is made.
in the scope of the SCH4U course! please show all steps as im still learning how to format my answers in the format given, thank you!
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Molecules of the form AH2 can exist in two potential geometries: linear or bent. Construct molecular orbital diagrams for linear and bent CH2. Identify the relevant point group, include all of the appropriate symmetry labels and pictures, and fill in the electrons. Which geometry would you predict to be more stable, and why? (Please draw out the diagram and explain)
Chemistry: An Introduction to General, Organic, and Biological Chemistry (13th Edition)
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