Triacylglycerols has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid. Concept introduction: On the basis of biochemical functions, lipids are divided into five categories: 1. Energy storage lipids: Triacylglycerols. 2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol. 3. Emulsification lipids: Bile acids. 4. Messenger lipids: Steroid hormones and eicosanoids. 5. Protective coating lipids: Biological waxes.
Triacylglycerols has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid. Concept introduction: On the basis of biochemical functions, lipids are divided into five categories: 1. Energy storage lipids: Triacylglycerols. 2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol. 3. Emulsification lipids: Bile acids. 4. Messenger lipids: Steroid hormones and eicosanoids. 5. Protective coating lipids: Biological waxes.
Solution Summary: The author explains that Triacylglycerols is classified as an energy-storage lipid, while Glycerophospholipids are a membrane and emulsification.
Chemical pathways by which living things function, especially those that provide cellular energy, such as the transformation of energy from food into the energy of ATP. Metabolism also focuses on chemical pathways involving the synthesis of new biomolecules and the elimination of waste.
Chapter 19, Problem 19.148EP
(a)
Interpretation Introduction
Interpretation: Triacylglycerols has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid.
Concept introduction: On the basis of biochemical functions, lipids are divided into five categories:
1. Energy storage lipids: Triacylglycerols.
2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol.
3. Emulsification lipids: Bile acids.
4. Messenger lipids: Steroid hormones and eicosanoids.
5. Protective coating lipids: Biological waxes.
(b)
Interpretation Introduction
Interpretation: Glycerophospholipids has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid.
Concept introduction: On the basis of biochemical functions, lipids are divided into five categories:
1. Energy storage lipids: Triacylglycerols.
2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol.
3. Emulsification lipids: Bile acids.
4. Messenger lipids: Steroid hormones and eicosanoids.
5. Protective coating lipids: Biological waxes.
(c)
Interpretation Introduction
Interpretation: Prostaglandins has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid.
Concept introduction: On the basis of biochemical functions, lipids are divided into five categories:
1. Energy storage lipids: Triacylglycerols.
2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol.
3. Emulsification lipids: Bile acids.
4. Messenger lipids: Steroid hormones and eicosanoids.
5. Protective coating lipids: Biological waxes.
(d)
Interpretation Introduction
Interpretation: Estrogens has to be classified as an energy-storage lipid, a membrane lipid, an emulsification lipid or a messenger lipid.
Concept introduction: On the basis of biochemical functions, lipids are divided into five categories:
1. Energy storage lipids: Triacylglycerols.
2. Membrane lipids: Phospholipids, sphingoglycolipid and cholesterol.
3. Emulsification lipids: Bile acids.
4. Messenger lipids: Steroid hormones and eicosanoids.
Write the systematic name of each organic molecule:
structure
name
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Curved arrows are used to illustrate the flow of electrons. Using
the provided resonance structures, draw the curved electron-
pushing arrows to show the interconversion between
resonance hybrid contributors.
Be sure to account for all bond-breaking and bond-making
steps. Include all lone pairs and formal charges in the
structures.
Problem 45 of 10
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