Lesson 4.5.1
4.5.1 Water and inorganic ions for plants Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 4
20 questions
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Lesson 4.5.1, Water and inorganic ions for plants: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 4: Biodiversity and Natural Resources, written with Revision Ninja.
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The 20 questions
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Which ion is a component of chlorophyll?
- Calcium
- Magnesium
- Potassium
- Nitrate
-
Which ion is used to make amino acids and nucleotides in plants?
- Chloride
- Calcium
- Nitrate
- Sodium
-
Calcium ions are important in plants for:
- Making chlorophyll in the chloroplast
- Producing ATP directly in respiration
- Forming calcium pectate in cell walls
- Forming amino acids from nitrate
-
Which statement describes a role of water in plants?
- It stores energy as ATP
- It forms peptide bonds between amino acids
- It acts as a reactant in photosynthesis
- It is the building material of lignin
-
Which mineral deficiency typically causes interveinal chlorosis in older leaves?
- Calcium
- Sodium
- Magnesium
- Boron
-
Why is turgor important to plants?
- It makes chlorophyll from nitrate
- It keeps cells firm and supports the plant
- It produces ATP for photosynthesis
- It breaks down cellulose for growth
-
If phosphate were scarce in the soil, which molecules would a plant be least able to make in full?
- Water and carbon dioxide
- Cellulose and starch
- ATP and nucleic acids
- Lignin only
-
A plant grown in nitrate-deficient solution shows yellowing of its older leaves first. What is the best explanation?
- Magnesium is absent from older leaves only
- Calcium builds up in older leaves and blocks chlorophyll
- Nitrogen is mobile and moves to young leaves
- Water fails to reach older leaves only
-
Calcium deficiency often kills young growing tips. Why?
- Calcium forms chlorophyll in young tips
- Calcium is absorbed only through old roots
- Calcium is mobile and is always sent to the tip
- Calcium is immobile in the plant, so tips lack it
-
In a solution culture experiment, plants lacking magnesium show chlorosis. Which conclusion is best supported?
- Magnesium is needed for lignin formation
- Magnesium is needed only for nitrate absorption
- Magnesium is needed only for cell walls
- Magnesium is needed for chlorophyll synthesis
-
A student uses a complete nutrient solution as a control and one lacking nitrate as the test. What is the independent variable?
- Plant height at the end of the experiment
- Leaf colour at the end of the experiment
- Time of day the plants are measured
- Presence or absence of nitrate in the solution
-
A core practical measures the tensile strength of plant fibres by hanging weights until they break. Which variables should be kept constant?
- The name of the plant the fibre came from
- Air temperature only
- Fibre length and cross-sectional area
- Colour of the fibre
-
Nitrate is needed for amino acids. A deficiency would most reduce which process?
- Protein synthesis
- Transpiration rate directly
- Starch hydrolysis
- Osmosis through membranes
-
Plant roots absorb mineral ions from soil where their concentration is low. What is the most accurate description?
- Ions move into roots by osmosis
- Ions move against a concentration gradient using energy from ATP
- Ions move through the xylem only by bulk flow
- Ions diffuse down a gradient without any energy input
-
Which role of water is directly required for the light-dependent reactions?
- It forms amino acids from nitrate
- It builds cellulose microfibrils directly
- It forms calcium pectate in the middle lamella
- Split by photolysis, releasing electrons and oxygen
-
Excess calcium in soil with low magnesium reduces plant growth. What is the most likely reason?
- Calcium and magnesium compete for uptake carriers
- Calcium makes magnesium insoluble inside the cell
- Magnesium is only absorbed through the leaves
- Calcium produces chlorophyll and removes magnesium
-
A nitrogen-limited plant has less chlorophyll and less protein than a well-supplied plant. What is the best conclusion?
- Chlorophyll contains no nitrogen
- Nitrate travels only in the phloem and not the xylem
- Chlorophyll and protein synthesis are limited by nitrate
- Nitrate is needed only for cellulose production
-
A wilted plant grows slowly. What is the best explanation?
- The phloem stops working completely
- Nitrate is no longer absorbed by the roots
- Chlorophyll is destroyed by the drop in water
- Cells cannot expand without turgor pressure
-
Two fibres of equal cross-section are tested. Fibre A holds 3 N and fibre B breaks at 1.2 N. What is the best supported conclusion?
- Fibre A is stronger in tension
- Fibre B is more elastic than fibre A
- Fibre A contains more water than fibre B
- Fibre B is longer than fibre A
-
Plants lacking both magnesium and nitrate are grown in the light. What is the best prediction for their photosynthesis rate?
- Only respiration is reduced, not photosynthesis
- Unchanged, because water is still present
- Lower, as chlorophyll and enzymes cannot be made
- Higher, because ATP builds up without chlorophyll
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