A half-reaction and its reduction potential is given. By using these values, the equilibrium constant K for the given equilibrium reaction is to be calculated. Concept introduction: The relationship between reduction potential and standard reduction potential value and activities of species present in an electrochemical cell at a given temperature is given by the Nernst equation. The value of E cell is calculated using Nernst formula, E = E ° − ( R T n F ) ln ( Q ) At room temperature the above equation is specifies as, E = E ° − ( 0.0591 n ) log ( Q ) This relation is further used to determine the relation between Δ G ° and K , Δ G ° and E ° cell . The value of equilibrium constant is used to predict the extent of the reaction. To determine: The value of equilibrium constant K for the given equilibrium reaction.
A half-reaction and its reduction potential is given. By using these values, the equilibrium constant K for the given equilibrium reaction is to be calculated. Concept introduction: The relationship between reduction potential and standard reduction potential value and activities of species present in an electrochemical cell at a given temperature is given by the Nernst equation. The value of E cell is calculated using Nernst formula, E = E ° − ( R T n F ) ln ( Q ) At room temperature the above equation is specifies as, E = E ° − ( 0.0591 n ) log ( Q ) This relation is further used to determine the relation between Δ G ° and K , Δ G ° and E ° cell . The value of equilibrium constant is used to predict the extent of the reaction. To determine: The value of equilibrium constant K for the given equilibrium reaction.
Solution Summary: The author explains how the Nernst equation calculates the equilibrium constant K for the given half-cell reaction.
Definition Definition Chemical reactions involving both oxidation and reduction processes. During a redox reaction, electron transfer takes place in such a way that one chemical compound gets reduced and the other gets oxidized.
Chapter 17, Problem 90E
Interpretation Introduction
Interpretation:
A half-reaction and its reduction potential is given. By using these values, the equilibrium constant K for the given equilibrium reaction is to be calculated.
Concept introduction:
The relationship between reduction potential and standard reduction potential value and activities of species present in an electrochemical cell at a given temperature is given by the Nernst equation.
The value of Ecell is calculated using Nernst formula,
E=E°−(RTnF)ln(Q)
At room temperature the above equation is specifies as,
E=E°−(0.0591n)log(Q)
This relation is further used to determine the relation between ΔG° and K, ΔG° and E°cell. The value of equilibrium constant is used to predict the extent of the reaction.
To determine: The value of equilibrium constant K for the given equilibrium reaction.
Draw the Haworth projection of the disaccharide made by joining D-glucose and D-mannose with a ẞ(1-4) glycosidic bond. If the disaccharide has more than
one anomer, you can draw any of them.
Click and drag to start drawing a
structure.
X
Epoxides can be opened in aqueous acid or aqueous base to produce diols (molecules with two OH groups). In this question, you'll explore the
mechanism of epoxide opening in aqueous acid.
2nd attempt
Be sure to show all four bonds at stereocenters using hash and wedge lines.
0
0
Draw curved arrows to show how the epoxide reacts with hydronium ion.
100 +1:
1st attempt
Feedback
Be sure to show all four bonds at stereocenters using hash and wedge lines.
See Periodic Table
See Hint
H
A
5
F
F
Hr
See Periodic Table See Hint
03 Question (1 point)
For the reaction below, draw both of the major organic products. Be sure to consider stereochemistry.
>
1. CH₂CH₂MgBr
2. H₂O
3rd attempt
Draw all four bonds at chiral centers. Draw all stereoisomers formed.
Draw the structures here.
e
130
AN
H
See Periodic Table See Hint
P
C
Br
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