No. but w/o oxygen glucose is used much less effectively (creating 2 or 4 NADPH compared to around 36 NADPH per molecule) and creates lactic acid (in most plants alcohol is created).
Glucose is converted into ATP (adenosine triphosphate) through the process of cellular respiration in cells. This conversion involves several biochemical reactions that break down glucose and ultimately produce energy in the form of ATP that can be used by cells for various functions.
Oxygen in your body is utilized in a process called cellular respiration, where it reacts with glucose to produce energy in the form of ATP. During this process, oxygen molecules are broken down into smaller molecules, releasing energy that your cells need to function properly.
Oxygen is essential for the process of cellular respiration, where it helps produce energy in the form of ATP. Our cells need oxygen to break down glucose and other nutrients to release this energy. Oxygen is also necessary for maintaining the function of vital organs, such as the brain and heart.
We need oxygen for our cells to be able to convert food into energy. We breath in order to bring oxygen from the air into our bodies and carry it in the blood to our cells. Because we practice aerobic respiration we would die without oxygen. Some things, particularly many bacteria, can live without oxygen because they respire anaerobically.
To make a 1 molar solution of glucose in 0.5 L of water, you would need to dissolve 90.1 grams of glucose powder. This is because the molar mass of glucose (C6H12O6) is approximately 180.2 g/mol, and for a 1 molar solution in 0.5 L of water, you would need 1 mole of glucose, which is 180.2 grams.
Yes, these plants do need to break down glucose to obtain usable energy. However, they do not need to do it all the time. At night, when sunlight is unavailable, they go through reactions that are termed as "Dark Reactions" to break down glucose and create energy.
Glucose is a sugar that is in your blood stream. You need to keep this under control. Sucrose is a form of sugar that can be use by diabetics but they need to watch their total carbohydrates, as these break down into simple sugars.
10 in anaerobic condition while 5*36 in aerobic condition .
first of all, insulin dosent break down glucose, it just facilitates its entry into cells secondly the answer you are probably looking for is: in the brain and in the eyes, glucose can enter both sites without need for insulin but also know that exercise causes the muscles to become insulin independent as well
Glucose is broken down in cellular respiration and is produced in photosynthesis(during the dark reaction within the stroma) C. Respiration: Carbohydrate(glucose) + Oxygen ---> Energy + Water + CO2 Photosynthesis: Energy + water + CO2 ----> Carbohydrate(glucose) + Oxygen The chemical formula for glucose is C6H12O6.
When you eat more carbohydrates than your body needs for energy your body will break it down into glucose and then rebuild it in the liver as glycogen. The glycogen is stored in the liver and muscles. Then when you need more energy than you have eaten in carbohydrates your body breaks down the stored glycogen into glucose and you burn the glucose for energy.
Plants do not necessarily break down sugar. They function as a major source of sugars. Animals need to break down sugars as part of aerobic respiration. Glucose is broken down into Carbon dioxide and water, and ATP is produced as the energy product.
Cells need oxygen for respiration, which is the process where they break down glucose to release energy. This energy is used for various cellular functions. In addition to oxygen, cells also need glucose as a fuel source for respiration.
Oxygen and glucose are essential for cellular respiration, the process by which cells produce energy. Oxygen is used by cells to break down glucose and generate ATP, the energy currency of the body. Without oxygen and glucose, cells would not be able to generate enough energy to carry out essential functions.
To make 100g of glucose, you would first need a source of starch, such as corn or potato. You would then hydrolyze the starch using enzymes to break it down into glucose molecules. The resulting glucose solution can be concentrated and purified to obtain the desired 100g quantity.
Respiration is important because it is the process through which cells obtain energy from glucose molecules. This energy is essential for all cellular activities, such as growth, repair, and maintenance of the body. Without respiration, cells would not be able to function and the body would not be able to survive.
Glucose is converted into ATP (adenosine triphosphate) through the process of cellular respiration in cells. This conversion involves several biochemical reactions that break down glucose and ultimately produce energy in the form of ATP that can be used by cells for various functions.