Enzymes decrease the amount of activation energy required for chemical reactions to occur.
The transfer of energy from molecule to molecule is called.
Förster resonance energy transfer fret is a physical phenomenon whereby energy created by fluorescence excitation of one molecule is transferred to an adjacent molecule.
The molecule to molecule transfer of heat energy that diffuses through the material.
The energy transfer molecule is known as adenosine triphosphate also known as atp which was proposed to be the main energy transfer molecule in the cell by fritz albert lipmann in 1941.
This is also called fluorescence resonance energy transfer if the two molecules are fluorophores then excitation of the first molecule donor results in fluorescence emission of the second molecule acceptor.
Conduction occurs when a substance is heated particles will gain more energy and vibrate more.
The energy transfer molecule is known as adenosine triphosphate also known as atp which was proposed to be the main energy transfer molecule in the cell by fritz albert lipmann in 1941.
Conduction is the transfer of heat between substances that are in direct contact with each other.
The better the conductor the more rapidly heat will be transferred.
Förster resonance energy transfer fret or more commonly improperly known as fluorescence resonance energy transfer fret is a nonradiative electric dipole dipole interaction between two molecules that involves transfer of energy from one called donor to the other called acceptor.
In metabolism energy that is not used.
A vertical air current that is generated by temperature induced density differences is an example of heat transfer by.
A reaction that involves the transfer of electrons from one molecule to another is referred to as.
The energy transfer molecule is known as adenosine triphosphate also known as atp which was proposed to be the main energy transfer molecule in the cell by fritz albert lipmann in 1941.
Glycolysis is also called the embden meyerhof pathway.
Metal is a good conduction of heat.