Cellular Respiration Formula And Photosynthesis
Cellular respiration is the reverse of the photosynthesis formula.
Cellular respiration formula and photosynthesis. The chemical equation for cellular respiration is C 6 H 12 O 6 6O 2 6CO 2 6H 2 O Energy released 2830 kJ mol-1. The most frequent compound is sugar. 6CO_2 6H_20 textenergy C_6H_12O_6 6O_26CO2 6H2 0energyC6 H12 O6 6O2.
Although respiration produces chemical products such as carbon dioxide and water its primary purpose is the conversion of. Respiration occurs when glucose sugar produced during. Cellular respiration and photosynthesis are biological processes in which matter and energy flow through the biosphere.
Are you still wondering - How are photosynthesis and cellular respiration different Check below to know more. Cellular respiration is the reverse of the photosynthesis formula. Wherein glucose C 6 H 12 O 6 and oxygen O 2 are reactants whereas carbon dioxide CO 2 water H 2 O and energy are products.
The link between photosynthesis and cellular respiration is an inverse relationship both are opposites of each other. This equation is reverse of photosynthesis equation cellular respiration is the chemical reaction in which glucose and oxygen are turned into water carbon dioxide and energy atp. The relationship between photosynthesis and cellular respiration is such that the products of one system are the reactants of the other.
Photosynthesis takes six carbon dioxide molecules six water molecules and sunlight and creates glucose C6H12O6. The sugars produced by photosynthesis can be stored transported throughout the tree and converted into energy which is used to power all cellular processes. Differences between Photosynthesis and Respiration.
How are Photosynthesis and Cellular Respiration Related. Additionally glycolysis and oxidation of pyruvic acid take place during cellular respiration. Cellular Respiration aerobic C6H12O6 6O2 6CO2 6H2O 32 ATP Photosynthesis 6CO2 6H2O C6H12O6 6O2 By looking at the two formulas it becomes evident that the products of one of the reactions are reactants of the other.