This process is known as respiration.(The liberation of energy from food) Glucose a simple sugar(C6H12O6) is burnt in 6 moles of oxygen to give the bi-products of 6 moles of water and 6 moles of carbon dioxide and energy which may be stored as ATP(adenosine triphosphate) in muscles to do work. {The glucose found in food is basically reacted with oxygen to give CO2,metabolic water and energy. (In a nutshell)}
The process that all organisms use to release energy stored in the bonds of organic molecules is called cellular respiration. This process involves breaking down glucose molecules to produce ATP, the energy currency of the cell.
Oxygen itself is not a source of stored chemical energy. It is used in the process of oxidation which releases energy by combining with a fuel source. So, in terms of storing energy, oxygen does not have any stored chemical energy itself.
The gas transported by the circulatory system in humans is oxygen. It is delivered to cells, where it is utilized during cellular respiration to release energy stored in food. This process involves the conversion of glucose and oxygen into carbon dioxide, water, and ATP (adenosine triphosphate), which is the energy currency of the cell.
When the body needs energy, cells release the chemical energy stored in molecules like glucose through a process called cellular respiration. This process converts the energy stored in the bonds of these molecules into adenosine triphosphate (ATP), which is used as the primary energy currency for cellular activities.
When muscle fibers use oxygen to release the energy stored in ATP molecules, they are engaging in aerobic respiration. This process involves the breakdown of glucose in the presence of oxygen to produce ATP, carbon dioxide, and water. Aerobic respiration is more efficient than anaerobic methods, allowing for sustained energy production during prolonged physical activity.
Food needs to be combined with oxygen in a process called combustion to release the energy stored in it. This combustion process breaks down the food molecules, releasing energy that can be used by the body.
Cellular Respiration
The gas needed to release the energy stored in sugar is oxygen. During the process of cellular respiration, sugar (glucose) is broken down in the presence of oxygen to release energy in the form of ATP.
You combine oxygen with food to release its stored energy through the process of cellular respiration. This process breaks down the food molecules into smaller components, releasing energy that is used by the body to carry out various functions. Oxygen is essential for this process to occur efficiently.
Pants release energy from stored food through a process called cellular respiration. During this process, glucose is oxidized within cells to produce energy in the form of ATP, which is then used for various metabolic activities. Oxygen is required for this process to efficiently release energy from food.
Glycolysis is the process that all organisms release energy stored in the bonds of glucose.
Mitochondria generate the cell's energy by the process of oxidative phosphorylation, utilizing oxygen to release energy stored in cellular nutrients
Some organisms use oxygen to release energy stored in food through a process called cellular respiration. This process occurs in the mitochondria of cells, where food molecules are broken down in the presence of oxygen to produce ATP (adenosine triphosphate), the main energy currency of cells.
The process by which producers and consumers release stored energy from food molecules is called cellular respiration. During cellular respiration, glucose is broken down in the presence of oxygen to produce ATP, which is the main form of energy used by cells. This process occurs in both plant cells through photosynthesis and animal cells through aerobic respiration.
The process that all organisms use to release energy stored in the bonds of organic molecules is called cellular respiration. This process involves breaking down glucose molecules to produce ATP, the energy currency of the cell.
Oxygen itself is not a source of stored chemical energy. It is used in the process of oxidation which releases energy by combining with a fuel source. So, in terms of storing energy, oxygen does not have any stored chemical energy itself.
When coal is burned, the chemical energy stored in its molecular bonds is released as heat and light energy. This process involves the combustion of coal in the presence of oxygen, resulting in the breaking of chemical bonds and the release of energy in the form of heat.