4.88 A quality control technician needs to determine the percentage of arsenic (As) in a particular pesticide. The pesticide is dissolved and all of the arsenic present is converted to arsenate ions (AsO 4 3 - ). Then the amount of AsO 4 3 - is determined by titrating with a solution containing silver ions (Ag + ). The silver reacts with the arsenate according to the following net ionic equation: 3 Ag + ( aq ) + AsO 4 3 − ( aq ) → Ag 3 AsO 4 ( s ) When a 1.22-g sample of pesticide was analyzed this way, it required 25.0 mL of 0.102 M Ag+ solution to precipitate all of the AsO 4 3 - . What was the mass percentage of arsenic in the pesticide?
4.88 A quality control technician needs to determine the percentage of arsenic (As) in a particular pesticide. The pesticide is dissolved and all of the arsenic present is converted to arsenate ions (AsO 4 3 - ). Then the amount of AsO 4 3 - is determined by titrating with a solution containing silver ions (Ag + ). The silver reacts with the arsenate according to the following net ionic equation: 3 Ag + ( aq ) + AsO 4 3 − ( aq ) → Ag 3 AsO 4 ( s ) When a 1.22-g sample of pesticide was analyzed this way, it required 25.0 mL of 0.102 M Ag+ solution to precipitate all of the AsO 4 3 - . What was the mass percentage of arsenic in the pesticide?
4.88 A quality control technician needs to determine the percentage of arsenic (As) in a particular pesticide. The pesticide is dissolved and all of the arsenic present is converted to arsenate ions (AsO43-). Then the amount of AsO43- is determined by titrating with a solution containing silver ions (Ag+). The silver reacts with the arsenate according to the following net ionic equation:
3 Ag
+
(
aq
)
+
AsO
4
3
−
(
aq
)
→
Ag
3
AsO
4
(
s
)
When a 1.22-g sample of pesticide was analyzed this way, it required 25.0 mL of 0.102 M Ag+ solution to precipitate all of the AsO43-. What was the mass percentage of arsenic in the pesticide?
8. The emission spectrum below for a one-electron (hydrogen-like) species in the
gas phase shows all the lines, before they merge together, resulting from
transitions to the ground state from higher energy states. Line A has a
wavelength of 10.8 nm.
BA
Increasing wavelength, \ -
a) What are the upper and lower principal quantum numbers corresponding to
the lines labeled A and B?
b) Identify the one-electron species that exhibits the spectrum.
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Use retrosynthetic analysis to suggest two paths to synthesize 2-methyl-3-hexanol using the Grignard reaction. (Click and drag
the appropriate image to the correct position in the reactions.)
Route 1
Aldehyde 1
or
+98
Aldehyde 2
Route 2
Q6
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Solved in 1 attempt
Q7
+95
Solved in 2 attempts
Q8
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+
+
Grignard 1
OH
H3O+
Grignard 2
Answer Bank
Q9
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MgBr
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CH3CH2CH2MgBr
Q10
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2-methyl-3-hexanol
CH3CH2MgBr
H
H
о
H
Attempt 3
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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