Glory Give The General Equation For Respiration
Respiration is a metabolic process of the oxidation of food that results in the release of energy carbon dioxide and water.
Give the general equation for respiration. The process begins with breathing which is inhaling oxygen and exhaling carbon dioxide. The chemical equation of aerobic respiration is as given below- Glucose C6H12O6 Oxygen 6 O2 Carbon-dioxide 6 CO2 Water 6 H2O Energy ATP According to the above-given chemical equation energy is released by splitting the glucose molecules with the help of oxygen gas. The word equation for cellular respiration is glucose sugar oxygen carbon dioxide water energy as ATP.
Here you will learn the definition location processes and formula for cellular respiration. C 6 H 12 O 6 6O 2 6CO 2 6H 2 O 38 ATP or. C 6 H 12 O 6 6O 2 6CO 2 6H 2 O 36 or 38 ATPs.
C C6H12O6 6O2 6CO2 6H2Ocellular respiration is a set of metabolic reactions and process that take place in the cells of organism to convert chemical view the. To unlock this lesson you must be. What is the respiratory surface.
Aerobic respiration takes place in the mitochondria and requires oxygen and glucose and produces carbon dioxide water and energy. What is the general equation for respiration. C 6 H 12 O 6 6O 2 ---------- 6CO 2 6H 2 O36ATP Simply stated this equation means that oxygen combines with sugars to break molecular bonds releasing the energy in the form of ATP contained in those bonds.
It is assumed that all the reduced coenzymes are oxidized by the electron transport chain and used for oxidative phosphorylation. What are the characteristics of an ideal respiratory surface. Respiration is a metabolic process common to all living things.
The chemical version of this aerobic respiration equation is. Cellular Respiration The table below describes the reactions involved when one glucose molecule is fully oxidized into carbon dioxide. C6H12O6 6O2 -------------------à 6CO2 6H2O 2900 kJmol This equation also showcases the process of aerobic respiration and tells us that energy of about 2900 kJ is generated when a single mole.