Plants use photosynthesis to produce glucose from carbon dioxide and water.
A green plant uses light energy from the sun to produce chemical energy in the form of glucose through the process of photosynthesis.
The sugar that is burned in the cell to produce energy is glucose. Glucose has energy stored in it's chemical bonds and is used in cellular respiration.
The consequence of diabetus is a high blood glucose concentration.
Glucose, the chemical that plants produce for food, is a monosaccharide.
Glucose + Oxygen
muscles use chemical energy in glucose , as the bonds in glucose break, chemical energy changes to mechanical energy and the muscle contracts.. well there you go that how you produce mechanical energy :)
Plants produce glucose from water and carbon dioxide by phosynthesis under the influence of UV rays.
Plants use photosynthesis to produce glucose from carbon dioxide and water.
Photosynthesis is the name of the chemical reaction in plants that produces glucose.
The formation of ethanol from glucose by yeast is a chemical change. This process involves the fermentation of glucose by yeast to produce ethanol and carbon dioxide, resulting in a new substance with different chemical properties than the original glucose.
A green plant uses light energy from the sun to produce chemical energy in the form of glucose through the process of photosynthesis.
The sugar that is burned in the cell to produce energy is glucose. Glucose has energy stored in it's chemical bonds and is used in cellular respiration.
The consequence of diabetus is a high blood glucose concentration.
glycolysis
The change in color of the glucose test strip after adding saliva is due to the presence of glucose in saliva. The strip contains a chemical that reacts with glucose to produce a color change, indicating the presence and concentration of glucose in the saliva sample.
The chemical energy to produce ATP (adenosine triphosphate) primarily comes from the breakdown of glucose through the process of cellular respiration. Glucose is metabolized into ATP through a series of chemical reactions that occur in the mitochondria of cells, where energy is stored in the form of ATP molecules.