(a)
To determine: The electromotive force (in volts) registered by an electrode immersed in a solution containing 1.0 mM NAD+ and 10mM NADH at pH 7.0 and 25°C.
Introduction:
The coenzyme being used in the “oxidation-reduction” reactions in the cell associated with the
(b)
To determine: The electromotive force (in volts) registered by an electrode immersed in a solution containing 1.0 mM NAD+ and 1.0mM NADH at pH 7.0 and 25°C.
Introduction:
The coenzyme being used in the “oxidation-reduction” reactions in the cell associated with the cellular respiration is known as Nicotinamide adenine dinucleotide (NAD+). NAD+ is a “two electron oxidizing agent”, which gets reduced to the NADH. The NADH is a “two-electron reducing agent”, which get oxidized to NAD+.
(c)
To determine: The electromotive force (in volts) registered by an electrode immersed in a solution containing 10 mM NAD+ and 1.0mM NADH at pH 7.0 and 25°C.
Introduction:
The coenzyme being used in the “oxidation-reduction” reactions in the cell associated with the cellular respiration is known as Nicotinamide adenine dinucleotide (NAD+). NAD+ is a “two electron oxidizing agent”, which gets reduced to the NADH. The NADH is a “two-electron reducing agent”, which get oxidized to NAD+.
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Lehninger Principles of Biochemistry (Instructor's)
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