At a particular temperature a 2.00-L flask at equilibrium contains 2.80 × 10 − 4 mole of N 2 , 2.50 × 10 − 5 mole of O 2 , and 2.00 × 10 − 2 mole of N 2 O. Calculate K at this temperature for the reaction 2 N 2 ( g ) + O 2 ( g ) ⇌ 2 N 2 O ( g ) If [N 2 ] = 2.00 × 10 −4 M, [N 2 O] = 0.200 M, and [O 2 ] =0.00245 M, does this represent a system at equilibrium?
At a particular temperature a 2.00-L flask at equilibrium contains 2.80 × 10 − 4 mole of N 2 , 2.50 × 10 − 5 mole of O 2 , and 2.00 × 10 − 2 mole of N 2 O. Calculate K at this temperature for the reaction 2 N 2 ( g ) + O 2 ( g ) ⇌ 2 N 2 O ( g ) If [N 2 ] = 2.00 × 10 −4 M, [N 2 O] = 0.200 M, and [O 2 ] =0.00245 M, does this represent a system at equilibrium?
Solution Summary: The author calculates the equilibrium constant (K) for the given reaction. The concentration of a reactant is calculated by the formula
At a particular temperature a 2.00-L flask at equilibrium contains 2.80 × 10−4 mole of N2, 2.50 × 10−5 mole of O2, and 2.00 × 10−2 mole of N2O. Calculate K at this temperature for the reaction
2
N
2
(
g
)
+
O
2
(
g
)
⇌
2
N
2
O
(
g
)
If [N2] = 2.00 × 10−4M, [N2O] = 0.200 M, and [O2] =0.00245 M, does this represent a system at equilibrium?
Identify the missing starting materials/ reagents/ products in the following reactions. Show the stereochemistry clearly in the structures, if any.
If there is a major product, draw the structures of the major product with stereochemistry clearly indicated where applicable. Show only the diastereomers (you do not have to draw the pairs of enantiomers).
If you believe that multiple products are formed in approximately equal amounts (hence neither is the major product), draw the structures of the products, and show the detailed mechanism of these reactions to justify the formation of the multiple products.
If you believe no product is formed, explain why briefly. (6 mark for each, except f and g, which are 10 mark each)
3. What starting material would you use to synthesize 3-hydroxypentanoic acid using a
NaBH4 reduction?
1. Give stereochemical (Fischer projection) formulas for all (but no extras) the
stereoisomers that could theoretically form during the reduction of
a. the carbonyl group of 2-methyl-3--pentanone
b. both carbonyl groups of 2,4-pentanedione (careful!)
2. Predict the products of the reduction of O=CCH2CH2CH2C=O with
a. LiAlH4
b. NaBH4
CH3
OH
Chapter 12 Solutions
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