Showing posts with label leaf. Show all posts
Showing posts with label leaf. Show all posts

Tuesday, 27 January 2015

2g) Gas Exchange

Flowering Plants 


When plants photosynthesise they use up CO2 from the atmosphere and produce O2 which is a waste product
When plants respire -----> use up O2 and produce CO2 which is a waste product. Movement of gases happens through diffusion. 

Net exchange of gases:
  • depends on light intensity 
  • photosynthesis -----> during day, but plants respire all the time = energy = live 
  • day -----> make oxygen and release use up > CO2 than take in 
  • night -----> plants ONLY respire, NOT ENOUGH light so- take in O2 and release CO2 
Leaf Adaption:
  1. leaves are broad -----> large surface area: diffusion
  2. thin -----> gases travel short distance 
  3. air spaces -----> large surface area: gas exchange 
  4. stomata -----> let gases and water diffuse/osmosis in and out, closes in the dark, close when water from the roots start to dry up and open and close controlled by guard cells. 
Hydrogen carbonate indicator:effect of light 
Low CO2: Purple <----- Normal: Red -----> High CO2: Yellow 

Humans 


Trachea- takes air to the bronchus 
Bronchi- split air in two lungs (left and right)
Lungs- organ where gas exchange takes place  
Bronchiole- takes air to the alveoli
Alveoli- allows gas exchange to occur 

Intercostal muscles- contract and relax ribs 
Ribs- protect lungs and heart 
diaphragm- muscle holds lungs together

Inhalation:

requires energy: active 

  • intercostal muscles and diaphragm contract 
  • volume increases 
  • ribs up and out 
  • pressure goes down 
  • air flows in 

Exhalation:

passive 

  • Intercostal muscles and diaphragm relaxes 
  • volume decreases 
  • ribs down and in 
  • pressure goes up 
  • air flows out

Alveoli:


  • large surface area- quick gas diffusion
  • thin- gas exchange is quicker and doesn't have to go through loads of cells 
  • moving blood-allows more red blood cells to be oxygenated
  • air sack 
Smoking:
  • damages alveoli- reduces surface area. emphysema- disease
  • tar damages cilla- chest infections are more likely
  • irritates bronchioles and bronchi[tar]- smokers cough
  • carbon monoxide reduces the amount of O2 blood can carry- increase blood pressure
  • chemicals can lead to cancer- carcinogens  
Investigation:
  • sit still for 5 mins. 1 min count number of breaths you take. 4 mins exercise- stop count breaths (1 min) 
  • exercise- increases breathing rate, more O2 and less CO2 
  • control variable e.g. temperature of room/area and time spent exercising 
Paper Two in bold, italics