Refer to the figure shown here, and determine the value of E for the overall oxidation/reduction reaction (refer to the book/lecture slides if you need help with the overall reaction). 11/20/2 + 2H+ + 2e → H₂0 NAD + H* + 2e → NADH -1.136 volts 0.496 volts +1.136 volts -0.496 volts EU (volts) +0.816 - 0.320

Biochemistry
9th Edition
ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
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Refer to the figure shown here, and determine the value of E for the overall
oxidation/reduction reaction (refer to the book/lecture slides if you need help with
the overall reaction).
11/12102 + 2H* + 2e¯ → H₂0
NAD +
H* + 2e → NADH
O-1.136 volts
0.496 volts
+1.136 volts
-0.496 volts
EU (volts)
– 0.320
Transcribed Image Text:Refer to the figure shown here, and determine the value of E for the overall oxidation/reduction reaction (refer to the book/lecture slides if you need help with the overall reaction). 11/12102 + 2H* + 2e¯ → H₂0 NAD + H* + 2e → NADH O-1.136 volts 0.496 volts +1.136 volts -0.496 volts EU (volts) – 0.320
Expert Solution
Step 1: Define oxidation reduction reactions

The reactions in which the electrons are transferred from one substance to the other substance are called oxidation reduction reactions.

The energy change in oxidation reduction reactions is associated with the reactions in the form of heat, light and electricity.

Sometimes oxygen or hydrogen also get added to the substances in these types of oxidation reduction reactions. 

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