Lesson 1.4.3
1.4.3 Triglycerides, saturated and unsaturated lipids Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 1
20 questions
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Lesson 1.4.3, Triglycerides, saturated and unsaturated lipids: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 1: Lifestyle, Health and Risk, written with Revision Ninja.
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The 20 questions
-
What type of bond links glycerol to each fatty acid in a triglyceride?
- Peptide bond
- Glycosidic bond
- Hydrogen bond
- Ester bond
-
How many fatty acids are joined to one glycerol molecule in a triglyceride?
- 4
- 2
- 1
- 3
-
How many water molecules are removed when one triglyceride is formed from one glycerol and three fatty acids?
- 1
- 6
- 2
- 3
-
Which of these is the correct description of a saturated fatty acid?
- It has no carbon-carbon double bonds in its hydrocarbon chain
- It has one or more carbon-carbon double bonds in its hydrocarbon chain
- It contains a glycosidic bond between two glycerol molecules
- It contains a peptide bond between two amino acid units
-
Why are saturated fats usually solid at room temperature?
- They contain more water than unsaturated fats, which makes them solid at room temperature
- Their kinked chains prevent packing, so they are more fluid than unsaturated fats
- They contain glycosidic bonds, which harden the fat when it cools to room temperature
- Their straight chains pack together closely, so intermolecular forces are stronger
-
Why do unsaturated fatty acids have lower melting points than saturated fatty acids of similar length?
- The double bonds form glycosidic links between chains, which makes the fat more rigid
- The double bonds add extra hydrogen atoms to the chain, which increases the attraction between molecules
- The double bonds make the chains more compact, so they pack together more tightly than saturated chains
- The carbon-carbon double bonds introduce kinks, so the chains cannot pack closely together
-
Which statement about triglycerides as energy stores is correct?
- They store the same energy per gram as glycogen, because both are made of glucose units
- They store less energy per gram than carbohydrates, because they contain more oxygen
- They store energy only in the glycerol part, so the fatty acids contribute nothing to energy
- They store more energy per gram than carbohydrates, because they are more reduced and less hydrated
-
What products are formed by the hydrolysis of a triglyceride?
- Glucose and fructose
- Amino acids and water
- Three glycerol molecules and one fatty acid
- Glycerol and three fatty acids
-
Which enzyme hydrolyses triglycerides during digestion?
- Maltase
- Amylase
- Protease
- Lipase
-
A triglyceride is made of glycerol, C3H8O3, and three identical saturated fatty acids. Which statement about its formation is correct?
- Three water molecules are added in the condensation reactions that form the three ester bonds
- Three glycosidic bonds are formed between the glycerol and the fatty acids in the reaction
- Three water molecules are removed in the condensation reactions that form the three ester bonds
- Two water molecules are removed, because only two of the hydroxyl groups react in the reaction
-
Which of these is a source of unsaturated fat in the diet?
- Butter, which is solid at room temperature and mostly saturated
- Lard, which contains a high proportion of saturated fatty acids
- Olive oil, which is liquid at room temperature
- Coconut oil, which is mostly saturated and solid at room temperature
-
Hydrogenation of an unsaturated vegetable oil converts some C=C bonds into C-C bonds. What is the effect on the fat?
- It becomes an amino acid and its melting point is unchanged
- It becomes a carbohydrate and its energy content falls sharply
- It becomes more saturated and its melting point rises
- It becomes more unsaturated and its melting point falls
-
Which statement about the energy released by 1 g of triglyceride compared with 1 g of glycogen is correct?
- Triglyceride releases the same energy per gram because both are fuels for respiration
- Glycogen releases much more energy per gram than triglyceride because it is insoluble
- Triglyceride releases more than twice as much energy per gram
- Triglyceride releases less energy per gram, because it contains water
-
Why is a low saturated fat intake advised for reducing cardiovascular disease risk?
- Saturated fats lower HDL levels, which increases the clearance of cholesterol from arteries
- Saturated fats increase the concentration of glucose in the blood, which damages arteries
- Saturated fats contain glycosidic bonds, which the body cannot hydrolyse safely
- Saturated fats raise LDL cholesterol levels, which contribute to plaque formation
-
Which of these is an example of a monounsaturated fatty acid?
- Linoleic acid, with two C=C double bonds in its chain
- Palmitic acid, with no C=C double bonds in its chain
- Oleic acid, with one C=C double bond in its chain
- Glycerol, which has three hydroxyl groups and no carbon chain
-
Which feature of a triglyceride makes it insoluble in water?
- Its glycosidic bonds are broken by water, which then stops it dissolving
- Its glycerol part forms many hydrogen bonds with water, which makes it very soluble
- Its long non-polar hydrocarbon chains dominate, so it does not form hydrogen bonds with water
- Its amino acid units carry charges, which repel the water molecules around it
-
Which of these best describes the difference between a saturated and an unsaturated triglyceride?
- Saturated triglycerides contain amino acids joined by peptide bonds
- Unsaturated triglycerides contain glycerol units joined by glycosidic bonds
- Saturated triglycerides contain fatty acids with one or more C=C double bonds
- Unsaturated triglycerides contain fatty acids with one or more C=C double bonds
-
A student compares the energy released by equal masses of a triglyceride and a carbohydrate. Which factor is most responsible for the difference in energy content?
- Triglycerides contain more glycosidic bonds, which are a major source of energy in respiration
- Carbohydrates contain more nitrogen, which is oxidised to release energy in respiration
- Triglycerides contain a higher proportion of C-H bonds, which release more energy when oxidised
- Carbohydrates contain more water, which increases their energy release during respiration
-
What is the role of the glycerol component in a triglyceride?
- It provides the hydrophilic head that binds to water in the cell membrane
- It acts as a glycosidic linkage between fatty acids, forming a polysaccharide chain
- It is the amino acid unit that forms peptide bonds with fatty acids in the triglyceride
- It provides a three-carbon backbone to which three fatty acids are attached by ester bonds
-
Which of these explains why the formation of a triglyceride is described as a condensation reaction?
- Two glycerols combine and release a fatty acid as a by-product of the reaction
- Water is added as each ester bond forms, which breaks the glycerol backbone
- Oxygen is removed from each fatty acid as an ester bond forms
- Water is removed as each ester bond forms between glycerol and a fatty acid
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