There are many ionic compounds that dissolve in water to a very small extent. One example is lead(II) chloride. When it dissolves an equilibrium is established between the solid salt and its component ions. Suppose you stir some solid PbCl 2 into water. Explain how you would prove that the compound dissolves but to a small extent? Is the dissolving process product-favored or reactant-favored? pbcl 2 (s) ⇄ pb 2+ (aq)+2cl − (aq)
There are many ionic compounds that dissolve in water to a very small extent. One example is lead(II) chloride. When it dissolves an equilibrium is established between the solid salt and its component ions. Suppose you stir some solid PbCl 2 into water. Explain how you would prove that the compound dissolves but to a small extent? Is the dissolving process product-favored or reactant-favored? pbcl 2 (s) ⇄ pb 2+ (aq)+2cl − (aq)
Solution Summary: The author explains that the dissolving process product favored or reactant-favored should be explained.
There are many ionic compounds that dissolve in water to a very small extent. One example is lead(II) chloride. When it dissolves an equilibrium is established between the solid salt and its component ions. Suppose you stir some solid PbCl2 into water. Explain how you would prove that the compound dissolves but to a small extent? Is the dissolving process product-favored or reactant-favored?
Draw a structure using wedges and dashes for the following compound:
H-
Et
OH
HO-
H
H-
Me
OH
Which of the following molecules are NOT typical carbohydrates? For the molecules that are
carbohydrates, label them as an aldose or ketose.
HO
Он
ОН ОН
Он
ОН
но
ΤΗ
HO
ОН
HO
eve
Он он
ОН
ОН
ОН
If polyethylene has an average molecular weight of 25,000 g/mol, how many repeat units
are present?
Draw the a-anomer cyclized pyranose Haworth projection of the below hexose. Circle the
anomeric carbons. Number the carbons on the Fischer and Haworth projections. Assign R
and S for each chiral center.
HO
CHO
-H
HO
-H
H-
-OH
H
-OH
CH₂OH
Draw the ẞ-anomer cyclized furanose Haworth projection for the below hexose. Circle the
anomeric carbons. Number the carbons on the Fischer and Haworth projections.
HO
CHO
-H
H
-OH
HO
-H
H
-OH
CH₂OH
Chapter 3 Solutions
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