Figure #2: The Calvin Cycle (this represents three turns of the cycle) Answer the following questions using your understanding of the Calvin Cycle to make one maltose molecule → this is 2 molecules of glucose (C&H₁2O) attached with a glycosidic bond. How many molecules of RuBisCO would be needed?
Electron Transport Chain
The electron transport chain, also known as the electron transport system, is a group of proteins that transfer electrons through a membrane within mitochondria to create a gradient of protons that drives adenosine triphosphate (ATP)synthesis. The cell uses ATP as an energy source for metabolic processes and cellular functions. ETC involves series of reactions that convert redox energy from NADH (nicotinamide adenine dinucleotide (NAD) + hydrogen (H)) and FADH2(flavin adenine dinucleotide (FAD)) oxidation into proton-motive force(PMF), which is then used to synthesize ATP through conformational changes in the ATP synthase complex, a process known as oxidative phosphorylation.
Metabolism
Picture a campfire. It keeps the body warm on a cold night and provides light. To ensure that the fire keeps burning, fuel needs to be added(pieces of wood in this case). When a small piece is added, the fire burns bright for a bit and then dies down unless more wood is added. But, if too many pieces are placed at a time, the fire escalates and burns for a longer time, without actually burning away all the pieces that have been added. Many of them, especially the larger chunks or damp pieces, remain unburnt.
Cellular Respiration
Cellular respiration is the cellular process involved in the generation of adenosine triphosphate (ATP) molecules from the organic nutritional source obtained from the diet. It is a universal process observed in all types of life forms. The glucose (chemical formula C6H12O6) molecules are the preferred raw material for cell respiration as it possesses a simple structure and is highly efficient in nature.
![3. For every 3 turns of the Calvin Cycle, 1 molecule of G3P (Glyceraldehyde-3-Phosphate) is produced.
Figure #1: The structure of a G3P molecule →
Figure #2: shown below is a visual showing how 3 spins of the Calvin cycle creates one G3P.
3C0₂
RuBisCO
Stage 1:
carbon fixation
3 ADP
3 ATP
Calvin Cycle
6 ATP
6 ADP
Stage 3:
regeneration
of RuBP
6 NADPH
-6 NADP+H*
G3P or (C,H,O,P)
Figure #2: The Calvin Cycle (this represents three turns of the cycle)
Answer the following questions using your understanding of the Calvin Cycle to make one maltose molecule → this is 2
molecules of glucose (C&H12O) attached with a glycosidic bond.
How many molecules of RuBisCO would be needed?
Stage 2:
reduction](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe3d8f7aa-e8f9-4263-8ac4-489bc550e686%2F777edc73-6ff0-49ac-975b-d29e037ddfae%2Fvmcc64s_processed.png&w=3840&q=75)
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