Lesson 3.1.7.1
3.1.7.1 Properties of water in biology Quiz: AQA Biology, Unit 1
20 questions
In partnership with Revision Ninja
Lesson 3.1.7.1, Properties of water in biology: 20 multiple choice questions for the AQA Biology (7402), Unit 1: Biological molecules, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
Which property of water allows it to take part directly in condensation and hydrolysis reactions?
- It has a high specific heat, which prevents the reaction from starting
- It is a hydrophobic solvent that separates monomers from polymers
- It acts as a catalyst that is recovered unchanged at the end of each reaction
- It acts as a metabolite, being either released or used up in these reactions
-
Why is water an effective solvent for many metabolic reactions?
- It is a polar molecule, so it dissolves ionic substances and polar molecules
- It is non-polar, so it dissolves lipids and other non-polar molecules
- It has a high latent heat, which makes it able to dissolve any molecule
- It is covalently bonded to all solutes, so it dissolves them completely with no exceptions
-
Which property of water helps buffer organisms against sudden changes in temperature?
- A high latent heat of vaporisation only
- A high specific heat capacity
- A high surface tension
- A low specific heat capacity
-
Which property of water allows evaporation to cool an organism with little loss of water?
- A low polarity
- A high latent heat of vaporisation
- A high cohesion between molecules with no exceptions
- A high specific heat capacity
-
Which property of water supports continuous columns of water in plant xylem?
- Its low density, which allows the water column to float upward through the xylem tubes of the plant
- Its high specific heat capacity, which keeps the temperature of the xylem sap stable as water moves up
- Its ability to act as a metabolite that is used up in the condensation reactions of the plant
- Cohesion between water molecules, due to hydrogen bonding
-
Which property of water produces surface tension where water meets air?
- Adhesion between water and the air molecules with no exceptions
- Cohesion between water molecules at the surface
- The low latent heat of vaporisation
- The high specific heat capacity of water
-
What type of bond forms between adjacent water molecules?
- Hydrogen bonds
- Ionic bonds
- Glycosidic bonds
- Peptide bonds
-
How much heat energy is required to evaporate 1 g of water at its boiling point, using a latent heat of about 2260 J/g?
- 22.6 kJ
- 226 J
- 2260 J
- 4.18 kJ
-
How much heat energy is needed to raise the temperature of 100 g of water by 10 C, given a specific heat capacity of 4.18 J/(g C)?
- 4180 J
- 41.8 kJ
- 2090 J
- 418 J
-
How much energy is needed to raise 250 g of water by 20 C, using a specific heat capacity of 4.18 J/(g C)?
- 209 kJ
- 20.9 kJ
- 2.09 kJ
- 4.18 kJ
-
A mammal loses 5 g of water by evaporation from its skin. Using a latent heat of 2260 J/g, how much heat is removed from the body?
- 1130 J
- 11300 J
- 2260 J
- 22600 J
-
In a plant, water is pulled up the xylem as water evaporates from the leaves. Which two properties of water are most important in this process?
- Metabolic activity and high surface tension inside the cells with no exceptions
- Polarity of the ions and the low density of the liquid
- High specific heat capacity and low latent heat
- Cohesion between water molecules and adhesion to the xylem walls
-
A small insect walks across the surface of a pond without sinking. Which property of water explains this?
- Surface tension, caused by strong cohesion between surface water molecules
- Metabolic activity of the water, which supports the insect's weight
- High specific heat capacity, which keeps the surface warm
- High latent heat, which makes the insect float by evaporation
-
A student says that because water has a high specific heat capacity, organisms do not need to regulate their temperature. Which evaluation is correct?
- Correct, because the high specific heat capacity keeps all of the cells in the body at a fixed temperature
- Incorrect, because water slows temperature change but organisms still need active regulation for their metabolic rates
- Correct, because water absorbs all the heat from the body within a few seconds of contact with the skin
- Incorrect, because water has a low specific heat capacity, so it cannot buffer the temperature of the organism with no exceptions
-
Explain why water's polarity allows it to surround and separate ions in solution.
- Water molecules form covalent bonds with every ion that dissolves in them
- Water molecules are non-polar, so they are attracted to ions by van der Waals forces alone
- Water molecules are charged and repel ions of the same charge, separating them
- The partly positive hydrogen atoms and partly negative oxygen atoms are attracted to ions of opposite charge
-
Explain how cohesion and adhesion together raise water in a xylem vessel against gravity.
- Adhesion pushes water upward through the vessel, while cohesion pulls water into the roots from the soil in the plant
- Cohesion keeps the water warm inside the vessel, which causes the water to expand and rise up the xylem tube
- Adhesion binds water molecules to the air spaces in the leaves, so the water column rises as the air moves past
- Cohesion holds the water column together under tension, while adhesion to the vessel walls helps prevent the column from breaking
-
Explain why a high latent heat of vaporisation helps an organism to lose heat without losing much water.
- Water has a high latent heat, so it stores heat and releases it back to the organism when the body is cold
- Water evaporates only when the organism is very hot, so it loses no water at all at lower temperatures
- Water evaporates slowly from the skin surface, so only a small amount of heat is lost during the process
- Large amounts of heat are absorbed by each gram that evaporates, so only a small mass of water is lost for a large cooling effect
-
Why do the properties of water allow it to be a stable environment for metabolic reactions?
- It is a catalyst that speeds up reactions but never takes any part in the reactions that it speeds up
- It maintains a steady temperature and provides a solvent in which reactions occur, while also taking part in reactions
- It is a nucleotide that stores energy for the reactions and prevents any change of the temperature
- It is a lipid that separates the reactants from the cytoplasm so that the reactions cannot take place
-
A student claims that water is important in metabolism only because it is a solvent. Which evaluation is most accurate?
- Incomplete, because water also takes part directly in condensation and hydrolysis as a metabolite
- Inaccurate, because water is only a metabolite in reactions and has no role as a solvent for them
- Accurate, because water acts as a catalyst in all of the metabolic reactions that take place in cells
- Accurate, because water has no other role in metabolic reactions beyond providing a suitable solvent
-
Why does water have a much higher boiling point than would be expected for a molecule of its small size?
- Water molecules are charged ions, which need extra energy to separate from each other
- Water molecules are joined by covalent bonds that must all be broken to boil it
- Water molecules are large and heavy, so they need more energy to move apart
- Hydrogen bonds between water molecules must be broken before the liquid can boil
Related quizzes
- Monomers, polymers, condensation and hydrolysis Quiz · 3.1.1.1 · 20 questions
- Monosaccharides, disaccharides and glycosidic bonds Quiz · 3.1.2.1 · 20 questions
- Polysaccharides: glycogen, starch and cellulose Quiz · 3.1.2.2 · 20 questions
- Biochemical tests for sugars and starch Quiz · 3.1.2.3 · 20 questions
- Triglycerides and phospholipids Quiz · 3.1.3.1 · 20 questions
- Properties of lipids and the emulsion test · 3.1.3.2 · 20 questions
- Amino acids and peptide bonds Quiz · 3.1.4.1.1 · 20 questions
- Protein structure: primary to quaternary Quiz · 3.1.4.1.2 · 20 questions
- Bonds in protein structure and the biuret test · 3.1.4.1.3 · 20 questions
- Enzyme action and activation energy Quiz · 3.1.4.2.1 · 20 questions