To build one fat molecule, specifically a triglyceride, you need one glycerol molecule and three fatty acid molecules. The glycerol serves as the backbone, while the fatty acids are attached to it through ester bonds. Each fatty acid contributes a long hydrocarbon chain, which is critical for the fat's structure and function. Thus, the composition is one glycerol and three fatty acids.
There are 2 FAD and NAD and molecules. This is to breakdown each glucose molecule.
1,4.10e23 molecules
Each glucose molecule contains 6 carbon atoms. Thus we need 18 molecules of CO2 to make 3 molecules of glucose.
In photorespiration, each molecule of serine produced requires one molecule of ribulose bisphosphate (RuBP) to enter the cycle. Since each RuBP can ultimately lead to the production of one molecule of serine, producing 20 molecules of serine would require 20 molecules of RuBP. Therefore, 20 molecules of RuBP are needed to produce 20 molecules of serine in photorespiration.
To react completely with one molecule of methane (CH4), two molecules of oxygen (O2) are needed. This is because the balanced chemical equation for the combustion of methane is CH4 + 2O2 → CO2 + 2H2O. Each molecule of methane requires two molecules of oxygen to form carbon dioxide and water.
There are 2 FAD and NAD and molecules. This is to breakdown each glucose molecule.
A molecule of glucose has 6 atoms of carbon, 12 atoms of hydrogen, and 6 atoms of oxygen. Therefore, to build four molecules of glucose, you would need 48 atoms of hydrogen (12 atoms of hydrogen per molecule of glucose multiplied by 4 molecules).
Two NAD+ molecules are needed for the breakdown of each glucose molecule during glycolysis. NAD+ is reduced to NADH during certain reactions in glycolysis, allowing it to carry electrons to the electron transport chain for further energy production.
10
200, ***
1,4.10e23 molecules
3 fatty acids!
Two monosaccharide molecules are needed to form one sucrose molecule.
Two atoms of iron are needed to completely react with three molecules of oxygen to form two molecules of iron(III) oxide (Fe2O3). Each iron atom will lose three electrons to form Fe3+ ions, while each oxygen molecule will gain two electrons to form O2- ions.
Each glucose molecule contains 6 carbon atoms. Thus we need 18 molecules of CO2 to make 3 molecules of glucose.
Two monosaccharides are needed to form one maltose molecule. Specifically, maltose is comprised of two glucose molecules joined together through a condensation reaction, which releases a molecule of water.
the answer is 12