The process that uses light energy to create simple sugars is called photosynthesis. In this process, plants, algae, and some bacteria convert sunlight, carbon dioxide, and water into glucose and oxygen. The light energy is captured by chlorophyll in the chloroplasts and is used to power the chemical reactions that synthesize sugars. This process is essential for producing the energy-rich compounds that serve as food for most living organisms.
The process turns light energy into chemical potential energy (the sun's light is used to create sugars).
Simple sugars, such as glucose, provide the primary source of energy for the body's cells. They are quickly absorbed and used for immediate energy needs. Without simple sugars, the body would not be able to function optimally.
No, simple sugars are not made of ATP. Simple sugars, such as glucose and fructose, are carbohydrates composed of carbon, hydrogen, and oxygen atoms. ATP (adenosine triphosphate) is a nucleotide that serves as an energy currency in cells, but it is not a building block for carbohydrates. Instead, ATP is produced during cellular respiration, which can utilize simple sugars as a source of energy.
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The equation for fermentation of the simple sugars to alcohol are, Sugar (glucose) yields alcohol (Ethyl alcohol) + CO2 (g) + energy.
The process turns light energy into chemical potential energy (the sun's light is used to create sugars).
photosynthesis
No. Light energy does help create sugar by providing the necessary energy to convert Carbon Dioxide into organic compounds, mostly simple sugars.
Plants that lack chloroplasts cannot synthesize simple sugars via photosynthesis. Chlorophyll is essential in absorbing light energy that converts water and carbon dioxide to simple sugars. Oxygen is emitted in the process
Fermentation is a simple biological process that does not require oxygen. It involves the breakdown of sugars into energy in the absence of oxygen, producing substances like alcohol and lactic acid.
Plants harness the energy from our sun to create chlorophyll from the process of photosynthesis. Plants use the energy of sunlight to synthesize the hexose sugars by photosynthesis in their chloroplasts.
Cellulose as far as I'm aware. The equation for photosynthesis involves creating simple sugars. These sugars then further "polymerise" (don't know if that's the biological term) to create complex sugars such as lignen and the like.
Simple sugars, such as glucose, provide the primary source of energy for the body's cells. They are quickly absorbed and used for immediate energy needs. Without simple sugars, the body would not be able to function optimally.
Cellulose as far as I'm aware. The equation for photosynthesis involves creating simple sugars. These sugars then further "polymerise" (don't know if that's the biological term) to create complex sugars such as lignen and the like.
The oxidation/ reduction of sugars release energy during respiration. The phenomenon of liberation of energy from sugars is a katabolic process. It may be aerobic or anaerobic.The oxidation/ reduction of sugars release energy during respiration. The phenomenon of liberation of energy from sugars is a katabolic process. It may be aerobic or anaerobic.
Carbohydrases are enzymes that break down carbohydrates into simple sugars. They do this by catalyzing the hydrolysis of glycosidic bonds present in complex carbohydrates like starch, cellulose, and glycogen. This process allows the body to absorb and utilize the simple sugars for energy production.
No, simple sugars are not made of ATP. Simple sugars, such as glucose and fructose, are carbohydrates composed of carbon, hydrogen, and oxygen atoms. ATP (adenosine triphosphate) is a nucleotide that serves as an energy currency in cells, but it is not a building block for carbohydrates. Instead, ATP is produced during cellular respiration, which can utilize simple sugars as a source of energy.