The situation of equilibrium of the mixture of HA and HCl , major species in a mixture of weak acid HA and HCl , K a value calculation of each acid, order for strong base among given compounds. Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly. To determine: The situation at equilibrium of the mixture of HA and HCl .
The situation of equilibrium of the mixture of HA and HCl , major species in a mixture of weak acid HA and HCl , K a value calculation of each acid, order for strong base among given compounds. Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly. To determine: The situation at equilibrium of the mixture of HA and HCl .
Solution Summary: The author explains that strong acids dissociate completely and rapidly in aqueous medium while weak acid reactions are of reversible type.
Interpretation: The situation of equilibrium of the mixture of
HA and
HCl, major species in a mixture of weak acid HA and
HCl,
Ka value calculation of each acid, order for strong base among given compounds.
Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly.
To determine: The situation at equilibrium of the mixture of
HAandHCl.
(b)
Interpretation Introduction
Interpretation: The situation of equilibrium of the mixture of
HA and
HCl, major species in a mixture of weak acid HA and
HCl,
Ka value calculation of each acid, order for strong base among given compounds.
Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly.
To determine: the major species in a mixture of weak acid HA and
HCl
(c)
Interpretation Introduction
Interpretation: The situation of equilibrium of the mixture of
HA and
HCl, major species in a mixture of weak acid HA and
HCl,
Ka value calculation of each acid, order for strong base among given compounds.
Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly.
To determine: The
Ka value calculation of
HCl and
HA.
(d)
Interpretation Introduction
Interpretation: The situation of equilibrium of the mixture of
HA and
HCl, major species in a mixture of weak acid HA and
HCl,
Ka value calculation of each acid, order for strong base among given compounds.
Concept introduction: Strong acids dissociate completely and rapidly in aqueous medium while weak acids dissociates slowly and up to a certain level only. A strong base is the one having the potential to accept a proton rapidly.
To determine: The order for strong base among given compounds.
Please help me calculate the undiluted samples ppm concentration.
My calculations were 280.11 ppm. Please see if I did my math correctly using the following standard curve.
Link: https://mnscu-my.sharepoint.com/:x:/g/personal/vi2163ss_go_minnstate_edu/EVSJL_W0qrxMkUjK2J3xMUEBHDu0UM1vPKQ-bc9HTcYXDQ?e=hVuPC4
Provide an IUPAC name for each of the compounds shown.
(Specify (E)/(Z) stereochemistry, if relevant, for straight chain alkenes only. Pay attention to
commas, dashes, etc.)
H₁₂C
C(CH3)3
C=C
H3C
CH3
CH3CH2CH
CI
CH3
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Arrange the following compounds / ions in increasing nucleophilicity (least to
most nucleophilic)
CH3NH2
CH3C=C:
CH3COO
1
2
3
5
Multiple Choice 1 point
1, 2, 3
2, 1, 3
3, 1, 2
2, 3, 1
The other answers are not correct
0000
Chapter 13 Solutions
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell