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cellular respiration concept map name: equation for cellular respiratio…

Question

cellular respiration concept map
name:
equation for cellular respiration (symbols)

  1. \\( \boldsymbol{c_6h_{12}o_6} \\) + 2. \\( \boldsymbol{o_2} \\) \\( \boldsymbol{\

ightarrow} \\) 3. \\( \boldsymbol{6co_2} \\) + 4. \\( \boldsymbol{6h_2o} \\) + 5. \\( \boldsymbol{atp} \\) energy

  1. if oxygen is present, \\( \boldsymbol{aerobic} \\) respiration occurs.
  2. the first step of cellular respiration is called \\( \boldsymbol{glycolysis} \\), which is an \\( \boldsymbol{anaerobic} \\) process.
  3. if oxygen is not present, \\( \boldsymbol{anaerobic} \\) respiration occurs.
  4. takes place in the \\( \boldsymbol{cytoplasm} \\) and breaks down the molecule \\( \boldsymbol{glucose} \\)
  5. produces pyruvate, nadh₂, and \\( \boldsymbol{2} \\) atp molecules.
  6. there are two types of \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) that take place in the cytoplasm of the cell.
  7. fermentation occurs in \\( \boldsymbol{yeast, bacteria, and other microorganisms} \\).
  8. produces \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) and carbon dioxide. used for making bread and alcoholic beverages.
  9. fermentation occurs in \\( \boldsymbol{the muscle cells of animals and some bacteria} \\).
  10. produces \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) that builds up in muscle cells, causing soreness during exercise.
  11. both process can produce \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) atp molecules
  12. takes place in the \\( \boldsymbol{\\_\\_\\_\\_\\_\\_}
  13. after glycolysis, the \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) cycle produces \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) gas, electron carriers, and 2 molecules of \\( \boldsymbol{\\_\\_\\_\\_\\_\\_}
  14. then the \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) bonds nitrogen and oxygen together to produce about \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) molecules of atp and \\( \boldsymbol{\\_\\_\\_\\_\\_\\_} \\) as a waste product.

word bank

  • atp
  • aerobic
  • anaerobic
  • carbon dioxide
  • \\( \boldsymbol{\\_\\_\\_\\_\\_\\_}
  • electron transport chain
  • ethanol
  • fermentation
  • glucose
  • glycolysis
  • krebs
  • lactic acid
  • mitochondria
  • water
  • terms with an asterisk* are used more than once

Explanation:

Step1: Recall Cellular Respiration Equation

The chemical equation for cellular respiration is \( \ce{C6H12O6 + 6O2
ightarrow 6CO2 + 6H2O + ATP} \) (energy). So we match the blanks:

  1. First reactant is glucose: \( \ce{C6H12O6} \)
  2. Second reactant is oxygen: \( \ce{O2} \) (coefficient 6, but in the blank structure, likely just \( \ce{O2} \) as part of the equation)
  3. First product (gas) is carbon dioxide: \( \ce{CO2} \) (coefficient 6)
  4. Second product is water: \( \ce{H2O} \) (coefficient 6)
  5. Energy in the form of ATP.

Step2: Analyze Respiration Types

  • 6. First step of cellular respiration is glycolysis, which is anaerobic (doesn't need oxygen).
  • 7. Glycolysis takes place in the cytoplasm and breaks down glucose.
  • 8. Glycolysis produces pyruvate, \( \ce{NADH} \), and 2 ATP molecules.
  • 9. If no oxygen, anaerobic respiration (fermentation) occurs.
  • 10. Two types of fermentation: alcoholic and lactic acid, occur in cytoplasm.
  • 11. Alcoholic fermentation: yeast, bacteria, etc.
  • 12. Alcoholic fermentation produces ethanol (alcohol) and \( \ce{CO2} \) (used in bread, beverages).
  • 13. Lactic acid fermentation: muscle cells, some bacteria.
  • 14. Lactic acid fermentation produces lactic acid (causes muscle soreness).
  • 15. Both processes (aerobic and anaerobic) produce ATP.
  • 16. If oxygen present, aerobic respiration occurs.
  • 17. Aerobic respiration after glycolysis: Krebs cycle (takes place in mitochondria matrix) and electron transport chain (mitochondria inner membrane).
  • 18. After glycolysis, Krebs cycle produces \( \ce{CO2} \), electron carriers, and 2 ATP.
  • 19. Then electron transport chain: electrons from carriers, oxygen (final electron acceptor) and hydrogen form water, about 32 - 34 ATP and \( \ce{H2O} \) as waste.

Answer:

  1. \( \boldsymbol{\ce{C6H12O6}} \)
  2. \( \boldsymbol{\ce{O2}} \)
  3. \( \boldsymbol{\ce{CO2}} \)
  4. \( \boldsymbol{\ce{H2O}} \)
  5. \( \boldsymbol{\ce{ATP}} \)
  6. glycolysis, anaerobic
  7. cytoplasm, glucose
  8. 2
  9. anaerobic
  10. fermentation
  11. yeast (alcoholic fermentation organisms)
  12. ethanol (or alcohol)
  13. lactic acid (fermentation type)
  14. lactic acid
  15. ATP
  16. aerobic
  17. mitochondria (Krebs cycle and ETC location)
  18. Krebs, \( \boldsymbol{\ce{CO2}} \)
  19. electron transport chain, \( \boldsymbol{\ce{H2O}} \), 32 - 34 (ATP), \( \boldsymbol{\ce{H2O}} \) (waste)

(Note: Some blanks were partially filled in the image, this completes based on cellular respiration concepts.)