Pearson eText Organic Chemistry -- Instant Access (Pearson+)
Pearson eText Organic Chemistry -- Instant Access (Pearson+)
8th Edition
ISBN: 9780135213711
Author: Paula Bruice
Publisher: PEARSON+
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Chapter 24, Problem 26P
Interpretation Introduction

Interpretation:

The mechanism for the reaction of galactose with ATP to form galactose-1-phosphate should be drawn.

Concept Introduction:

Glycolysis: It is pathway which describes conversion of one molecule of glucose into two molecules of pyruvate.  The series involves 10 reactions.

Galactose: It is a compound with same chemical formula as glucose and it is a naturally occurring monosaccharide.  Glucose and galactose differ in the position of one hydroxyl group.  The metabolism of galactose is done by converting it to glucose-1-phosphateandthentoglucose-6-phosphate

Gluconeogenesis: The reaction in which glucose is synthesised from pyruvate.

NAD+Molecule: It is the oxidized form of Nicotinamide adenine dinucleotide (NAD) which exists in all cells and needed for activation of enzymes.

NADHmolecule: It is coenzyme which gets oxidized on reducing another compound. The oxidized form of NADHisNAD+.

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a) Draw the octahedral mer-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if applicable). ード M 4- b) Substitute one chlorido ligand in mer-[FeCl3(CN)3] 4 with one fluorido ligand. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- ☐☐☐ c) Substitute two chlorido ligands in mer-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible isomers and their corresponding point groups.. Use the point groups to determine if the complexes have resulting net dipole…
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Differentiate electron spin and electron spin moment.

Chapter 24 Solutions

Pearson eText Organic Chemistry -- Instant Access (Pearson+)

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