Hydroxide ( − OH ) can react as a Brønsted-Lowry base (and remove a proton), or a Lewis base (and attack a carbon atom). (a) What organic product is formed when ( − OH ) reacts with the carbocation ( CH 3 ) 3 C + as a Brønsted-Lowry base? (b) What organic product is formed when ( − OH ) reacts with ( CH 3 ) 3 C + as a Lewis base?
Hydroxide ( − OH ) can react as a Brønsted-Lowry base (and remove a proton), or a Lewis base (and attack a carbon atom). (a) What organic product is formed when ( − OH ) reacts with the carbocation ( CH 3 ) 3 C + as a Brønsted-Lowry base? (b) What organic product is formed when ( − OH ) reacts with ( CH 3 ) 3 C + as a Lewis base?
Solution Summary: The author explains that -OH acts as a Bronsted-Lowry base, which abstracts proton and forms 2-methylprop-1-ene.
Hydroxide
(
−
OH
)
can react as a Brønsted-Lowry base (and remove a proton), or a
Lewis base (and attack a carbon atom). (a) What organic product is formed when
(
−
OH
)
reacts with the carbocation
(
CH
3
)
3
C
+
as a Brønsted-Lowry base? (b) What organic product is formed when
(
−
OH
)
reacts with
(
CH
3
)
3
C
+
as a Lewis base?
A mixture of 0.568 M H₂O, 0.438 M Cl₂O, and 0.710 M HClO are enclosed in a vessel at 25 °C.
H₂O(g) + C₁₂O(g) = 2 HOCl(g)
K = 0.0900 at 25°C
с
Calculate the equilibrium concentrations of each gas at 25 °C.
[H₂O]=
[C₁₂O]=
[HOCI]=
M
Σ
M
What units (if any) does the response factor (K) have? Does the response factor (K) depend upon how the concentration is expressed (e.g. molarity, ppm, ppb, etc.)?
Provide the structure, circle or draw, of the monomeric unit found in the biological polymeric
materials given below.
HO
OH
amylose
OH
OH
행
3
HO
cellulose
OH
OH
OH
Ho
HO
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