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Question
cellular respiration overview
name:zyren crawford
date:
ethanol oxygen glucose krebs atp
fermentation carbon dioxide pyruvate oxidative glycolysis
lactic acid water synthase electron mitochondria
- cellular respiration is the process by which cells convert_____into energy.
- the organelle associated with cellular respiration is the_____.
- the chemical equation for cellular respiration is:
glucose + oxygen→___+___+atp
- the function of cellular respiration is to produce_____, the cells energy currency.
- anaerobic respiration is a type of cellular respiration that does not require_____.
- during glycolysis, a molecule of glucose is broken down into two molecules of_____.
7._____is a type of anaerobic respiration that occurs when there is not enough oxygen available.
- yeasts produce this product during fermentation:_____.
- humans undergo_____fermentation when muscles dont have enough oxygen.
- the first stage of cellular respiration is_____.
- the second stage of cellular respiration is the_____cycle.
- the third stage of cellular respiration is the_____transport chain.
- the majority of atp is produced in the third stage, through_____phosphorylation.
- atp_____is a protein that uses the proton gradient in the etc to make atp.
Brief Explanations
- Cellular respiration converts glucose into energy.
- Mitochondria are the organelles for cellular respiration.
- The equation is Glucose + Oxygen → Carbon dioxide + Water + ATP.
- ATP is the cell's energy currency.
- Anaerobic respiration doesn't need oxygen.
- Glycolysis breaks glucose into pyruvate.
- Fermentation is anaerobic without enough oxygen.
- Yeasts produce ethanol during fermentation.
- Humans have lactic acid fermentation in muscles.
- Glycolysis is the first stage.
- The second stage is the Krebs cycle.
- The third stage is the electron transport chain.
- Oxidative phosphorylation produces most ATP.
- ATP synthase uses the proton gradient.
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- glucose
- mitochondria
- carbon dioxide; water
- ATP
- oxygen
- pyruvate
- Fermentation
- ethanol
- lactic acid
- glycolysis
- Krebs
- electron
- oxidative
- synthase