Consider a galvanic cell that uses the following half-reactions: 2 H + ( a q ) + 2 e − → H 2 ( g ) A l 3 + ( a q ) + 3 e − → A l ( s ) a) What materials are used for the electrodes? Identify the anode and cathode, and indicate the direction of electron and ion flow. (b) Write a balanced equation for the cell reaction, and calculate the standard cell potential. (c) Calculate the cell poential at 25 °C if the iOflconcentrad ons are 0.10 M and the partial pressure of H, is 10.0 atm. (d) Calculate Δ G o (in kilojoules) and K for the cell reaction at 25 °C. (e) Calculate the mass change (in grams) of the aluminum electrode after the cell has supplied a constant current of 10.0 A for 25.0 mm.
Consider a galvanic cell that uses the following half-reactions: 2 H + ( a q ) + 2 e − → H 2 ( g ) A l 3 + ( a q ) + 3 e − → A l ( s ) a) What materials are used for the electrodes? Identify the anode and cathode, and indicate the direction of electron and ion flow. (b) Write a balanced equation for the cell reaction, and calculate the standard cell potential. (c) Calculate the cell poential at 25 °C if the iOflconcentrad ons are 0.10 M and the partial pressure of H, is 10.0 atm. (d) Calculate Δ G o (in kilojoules) and K for the cell reaction at 25 °C. (e) Calculate the mass change (in grams) of the aluminum electrode after the cell has supplied a constant current of 10.0 A for 25.0 mm.
Consider a galvanic cell that uses the following half-reactions:
2
H
+
(
a
q
)
+
2
e
−
→
H
2
(
g
)
A
l
3
+
(
a
q
)
+
3
e
−
→
A
l
(
s
)
a) What materials are used for the electrodes? Identify the anode and cathode, and indicate the direction of electron and ion flow. (b) Write a balanced equation for the cell reaction, and calculate the standard cell potential. (c) Calculate the cell poential at 25 °C if the iOflconcentrad ons are 0.10 M and the partial pressure of H, is 10.0 atm. (d) Calculate
Δ
G
o
(in kilojoules) and K for the cell reaction at 25 °C. (e) Calculate the mass change (in grams) of the aluminum electrode after the cell has supplied a constant current of 10.0 A for 25.0 mm.
Use the References to access important values if needed for this question.
What is the IUPAC name of each of the the following?
0
CH3CHCNH₂
CH3
CH3CHCNHCH2CH3
CH3
You have now performed a liquid-liquid extraction protocol in Experiment 4. In doing so, you
manipulated and exploited the acid-base chemistry of one or more of the compounds in your
mixture to facilitate their separation into different phases. The key to understanding how liquid-
liquid extractions work is by knowing which layer a compound is in, and in what protonation state.
The following liquid-liquid extraction is different from the one you performed in Experiment
4, but it uses the same type of logic. Your task is to show how to separate apart Compound
A and Compound B.
. Complete the following flowchart of a liquid-liquid extraction. Handwritten work is
encouraged.
•
Draw by hand (neatly) only the appropriate organic compound(s) in the boxes.
.
Specify the reagent(s)/chemicals (name is fine) and concentration as required in Boxes 4
and 5.
•
Box 7a requires the solvent (name is fine).
•
Box 7b requires one inorganic compound.
• You can neatly complete this assignment by hand and…
Genetic Analysis: An Integrated Approach (3rd Edition)
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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