- NADH and FADH 2 are important in cellular respiration because they deliver high-energy electrons to the electron transport system. Electron transport produces _____ ATP molecule(s) per NADH molecule and _____ ATP molecules(s) per FADH 2 molecule.
- How much ATP is utilized/generated in the first phase of glycolysis?
- Using the ATP generated during cellular respiration, the intermediates of glycolysis and the citric acid cycle, such as pyruvate and acetyl CoA, can be siphoned off and used to _____.
- A molecule that functions as the electron donor in a redux reaction _____ .
- What is the ultimate fate of the electrons that are stripped from glucose during cellular respiration?
- During fermentation, __________ that was produced during glycolysis is converted back to __________.
- Cellular respiration accomplishes two major processes: (1) it breaks glucose down into smaller molecules, and (2) it harvests the chemical energy released and stores it in ATP molecules. By the end of _____, the breakdown of glucose is complete; most ATP molecules are produced during _____.
- How many times does the Calvin cycle have to turn to make one glucose?
- Where does the entire process of photosynthesis take place?
- Glycolysis is the multi-step breakdown of _____. Several different _____ play a role in this process.
- A sequence of electron carrier proteins that transfer high energy electrons
- In light reactions, which two high energy molecules are produced?
- High energy products from light reactions and carbon dioxide (CO2) are used to make what?
- What gets released into the atmosphere during the light-dependent reaction?
- What is the final product of the light-independent reaction?
- Cellular respiration requires fuel (glucose) and oxygen gas. The main process that produces these inputs is ____
- What is another name for light-independent reaction?
- During the light-dependent reaction what causes the electrons to turn into high-energy electrons?
- What is the fluid within the inner membrane of the chloroplasts?
- During the light-dependent reaction what is ADP converted to?