If it is possible for a solution to have hydrogen ion concentration 0.002 M and hydroxide ion concentration 5.2 × 10 − 6 M at 25 ∘ C should be explained. Concept Introduction: The concentration of hydrogen ions in a solution determines the acidity of a solution. If concentration of hydrogen ion is more than the solution is more acetic, if it is low, solution is less acidic. The pH of solution is defined as negative log of hydrogen ion concentration thus, it can be calculated as follows: p H = − log H + Here, H + is concentration of hydrogen ion. Similarly, pOH of a solution is defined as negative log of hydroxide ion concentration thus, it can be calculated as follows: p O H = − log OH − Here, OH − is concentration of hydroxide ion. pH and pOH of a solution are related to each other as follows: p H + p O H = 14 .
If it is possible for a solution to have hydrogen ion concentration 0.002 M and hydroxide ion concentration 5.2 × 10 − 6 M at 25 ∘ C should be explained. Concept Introduction: The concentration of hydrogen ions in a solution determines the acidity of a solution. If concentration of hydrogen ion is more than the solution is more acetic, if it is low, solution is less acidic. The pH of solution is defined as negative log of hydrogen ion concentration thus, it can be calculated as follows: p H = − log H + Here, H + is concentration of hydrogen ion. Similarly, pOH of a solution is defined as negative log of hydroxide ion concentration thus, it can be calculated as follows: p O H = − log OH − Here, OH − is concentration of hydroxide ion. pH and pOH of a solution are related to each other as follows: p H + p O H = 14 .
Solution Summary: The author explains that the concentration of hydrogen ions in a solution determines the acidity of the solution.
If it is possible for a solution to have hydrogen ion concentration 0.002 M and hydroxide ion concentration 5.2×10−6 M at 25∘C should be explained.
Concept Introduction:
The concentration of hydrogen ions in a solution determines the acidity of a solution. If concentration of hydrogen ion is more than the solution is more acetic, if it is low, solution is less acidic.
The pH of solution is defined as negative log of hydrogen ion concentration thus, it can be calculated as follows:
pH=−logH+
Here, H+ is concentration of hydrogen ion.
Similarly, pOH of a solution is defined as negative log of hydroxide ion concentration thus, it can be calculated as follows:
pOH=−logOH−
Here, OH− is concentration of hydroxide ion.
pH and pOH of a solution are related to each other as follows:
5. Please draw in the blanks the missing transition states and the correlated products. Explicitly
display relevant absolute stereochemical configuration.
MeOH
I
OMe
H
Endo transition state,
dienophile approaching from the bottom of diene
+
H
ཎྞཾ ཌཱརཱ༔,_o
OMe
H
H
OMe
Endo transition state,
dienophile approaching from the top of diene or
from the bottom but horizontally flipped (draw one)
+
Exo transition state,
dienophile approaching from the top of diene or
from the bottom but horizontally flipped (draw one)
Exo transition state,
dienophile approaching from the top of diene or
from the bottom but horizontally flipped (draw one)
MeO H
H
MeO H
MeO H
MeO H
H
H
H
(1)
H
C.
C
C
.H
(2)
(3)
Cl
H
The ideal value for bond angle (1) is (Choose one)
and the ideal value for bond angle (3) is (Choose one)
degrees, the value for bond angle (2) is (Choose one) degrees,
degrees.
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