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Chapter 16, Problem 5P

(a)

Summary Introduction

To determine: Whether the substrate is reduced or oxidized.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

(b)

Summary Introduction

To determine: Whether the substrate is reduced or oxidized.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

(c)

Summary Introduction

To determine: Whether the substrate is reduced or oxidized.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

(d)

Summary Introduction

To determine: The fate of the substrate in the reaction, whether it is oxidized or reduced.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

(e)

Summary Introduction

To determine: Whether oxaloacetate is reduced or oxidized.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

(f)

Summary Introduction

To determine: Whether the given substrate is oxidized or reduced.

Introduction:

NADH plays the role of hydrogen carrier in various metabolic reactions. NAD can perform redox reactions with specific substrates in the presence of dehydrogenase enzyme. When a coenzyme gets oxidized, the substrate of the reaction is reduced to form a product.

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