NADP+
NDHP+
When two atoms combine, they form a molecule. The type of molecule formed depends on the atoms involved and the type of bond they create (ionic, covalent, or metallic). The combination of two atoms allows them to share, gain, or lose electrons to achieve a more stable configuration.
The reaction you are referring to is called a dehydration reaction. It involves the removal of a water molecule from the reactants to form a new compound. This type of reaction is common in organic chemistry and is used to create larger molecules by linking smaller ones together.
The colors on the color spectrum combined to produce gray are black and white.
Purple i guess
NADP+
NDHP+
When two atoms combine, they form a molecule. The type of molecule formed depends on the atoms involved and the type of bond they create (ionic, covalent, or metallic). The combination of two atoms allows them to share, gain, or lose electrons to achieve a more stable configuration.
After light hits photosystem I, its energy is used to produce NADPH through the process of photochemical reduction. NADPH is an important molecule that plays a key role in carrying and transferring electrons for various metabolic reactions in the cell.
The molecule formed will be water. H+ + OH- = H2O.
a condensation reaction or a dehydration reaction
One carbon atom and one oxygen atom combine to produce one carbon monoxide (C0) molecule.
An ester is produced by combining an alcohol and a carboxylic acid in a condensation reaction. This reaction results in the formation of an ester molecule and a molecule of water as a byproduct.
Faraday discovered that wire carrying a current, electrons, has an electromagnetic field around it.
In light reactions of photosynthesis, electrons are reduced by the pigment molecule chlorophyll to produce NADPH and ATP. These reduced molecules carry energy and electrons to the Calvin cycle for the synthesis of carbohydrates.
The hydrogen atoms attached to the carbon atoms in the glucose molecule provide electrons during cellular respiration. These electrons are transferred to the electron transport chain to produce ATP.
NADPH