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5.1.7 Investigating the Rate of Photosynthesis

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The rate of photosynthesis can be investigated by measuring factors such as oxygen production, carbon dioxide uptake, or the increase in biomass. Key practical methods include:

Practical Methods to Measure Photosynthesis

  1. Measuring Oxygen Production (Aquatic Plants):
  • Use an aquatic plant like Elodea or Cabomba.
  • Place the plant in a beaker of water with sodium hydrogencarbonate (NaHCO3NaHCO₃) to ensure CO2CO₂ is not a limiting factor.
  • Shine light at the plant and count the number of oxygen bubbles produced over a set time or collect oxygen in a gas syringe to measure its volume.
  1. Measuring Carbon Dioxide Uptake:
  • Use an indicator like hydrogencarbonate solution.
  • Hydrogencarbonate changes colour depending on CO2CO₂ levels (yellow in high CO₂, red in atmospheric levels, purple in low CO₂).
  • Place plant leaves in sealed containers with hydrogencarbonate solution and monitor the colour change.
  1. Measuring Biomass Increase:
  • Measure the dry mass of a plant before and after a set period of growth.
  • Dry the plant at 80°C until no further change in mass is recorded.
  • Biomass increase indicates the rate of photosynthesis over time.

Controlling Variables

To ensure valid results:

  • Light Intensity: Use a lamp at fixed distances to alter light intensity while using a lux meter to measure it accurately.
  • CO2CO₂ Concentration: Add a fixed amount of sodium hydrogencarbonate to maintain a constant CO2CO₂ level.
  • Temperature: Conduct the experiment in a temperature-controlled environment or water bath to prevent fluctuations.

Investigating Limiting Factors

  1. Light Intensity:
  • Place the light source at varying distances from the plant.
  • Measure the oxygen produced at each distance to assess how light intensity affects the rate of photosynthesis.
  1. Carbon Dioxide Concentration:
  • Use different concentrations of sodium hydrogencarbonate in the water.
  • Measure oxygen production to determine the impact of CO2CO₂ availability.
  1. Temperature:
  • Place the plant in water baths of different temperatures.
  • Monitor oxygen production to identify the optimum temperature.

Data Analysis

  • Plot graphs to analyse the relationship between limiting factors and the rate of photosynthesis.
  • Identify trends, such as the plateauing of the rate when another factor becomes limiting.
  • Understand the interaction between multiple limiting factors.

Common Errors & Precautions

  • Ensure the plant is healthy and has been pre-illuminated to activate photosynthetic enzymes.
  • Remove air bubbles from apparatus like gas syringes to improve accuracy.
  • Repeat experiments and calculate mean values to improve reliability.
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Exam Tip

Be able to describe and evaluate practical methods to investigate photosynthesis, interpret data, and identify limiting factors. Understand the importance of controlling variables to ensure valid conclusions.

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