answersLogoWhite

0

The two high energy molecules that are produced in the Krebs Cycles are NADH and FADH2. :D

User Avatar

Wiki User

17y ago

What else can I help you with?

Continue Learning about Natural Sciences

What two hydrogen carrying molechules are formed during the Kreb's cycle?

During the Krebs cycle, also known as the citric acid cycle, two key hydrogen-carrying molecules are produced: NADH and FADH2. NADH is generated at several steps in the cycle, specifically during the conversion of isocitrate to alpha-ketoglutarate and during the conversion of malate to oxaloacetate. FADH2 is produced during the conversion of succinate to fumarate. These molecules are essential for the electron transport chain, where they contribute to ATP production.


How is one molecule of glucose formed?

Carbohydrate or Disaccharides, like fructose


What bond is found between water molecules?

Hydrogen bonds are found between water molecules. These bonds are formed between the oxygen atom of one water molecule and a hydrogen atom of another water molecule.


What electrons combine in order to make an energy - carrying molecule?

Energy-carrying molecules, such as adenosine triphosphate (ATP), are formed through the combination of electrons from chemical bonds in substrates during metabolic processes. Specifically, the electrons involved in these reactions come from the oxidation of nutrients like glucose, where electrons are transferred from carbon and hydrogen atoms to oxygen. This transfer occurs through cellular respiration or photosynthesis, ultimately leading to the synthesis of energy-rich molecules that store potential energy for use by cells.


What molecule form hydrogen bonds?

Hydrogen bonds are formed within molecules. In chemistry, they are the strongest of the 3 types of bonds (London Dispersion, Dipole-Dipole, and Hydrogen Bonding). Molecules that have hydrogen bonds have to have bonds between hydrogen and nitrogen or hydrogen and oxygen or hydrogen and fluorine (N-H, O-H, or F-H).

Related Questions

What two hydrogen carrying molechules are formed during the Kreb's cycle?

During the Krebs cycle, also known as the citric acid cycle, two key hydrogen-carrying molecules are produced: NADH and FADH2. NADH is generated at several steps in the cycle, specifically during the conversion of isocitrate to alpha-ketoglutarate and during the conversion of malate to oxaloacetate. FADH2 is produced during the conversion of succinate to fumarate. These molecules are essential for the electron transport chain, where they contribute to ATP production.


What two molecules are formed by the Hydrogen ions?

Hydrogen ions can form water molecules (H2O) by combining with hydroxide ions (OH-) or hydronium ions (H3O+).


Which bond type is formed between two polar molecules that contain hydrogen?

a hydrogen bond


Is the sun made out of core?

No, it is formed by fusion of hydrogen and helium molecules.


Why is water formed?

Water is formed due to the strong attraction between the hydrogen and oxygen molecules.


Which acid is formed by dissolving hydrogen?

Hydrogen ions in water combine with water molecules to form hydronium ions (H3O+). This is the acid that is formed by dissolving hydrogen in water.


Organic molecules are formed with?

carbon atoms, hydrogen atoms, hydroxide atoms


Is hydrogen found in the universe formed by stars?

No. The hydrogen in the universe was formed during the Big Bang. Stars consume hydrogen, fusing it into helium.


Does hydrogen have oxygen?

No, hydrogen and oxygen are two separate elements. Hydrogen is a chemical element that exists as H2 molecules, while oxygen exists as O2 molecules. Water (H2O) is formed when hydrogen combines with oxygen.


Weak bond formed between water molecules due to their polarity?

Hydrogen Bond


How is one molecule of glucose formed?

Carbohydrate or Disaccharides, like fructose


What bond is found between water molecules?

Hydrogen bonds are found between water molecules. These bonds are formed between the oxygen atom of one water molecule and a hydrogen atom of another water molecule.