00:01
Okay, in order to show this question, we have to talk about atp.
00:04
Atp states for adenosine, three phosphate.
00:14
Okay, because it has, like, the adenine, the adenine, a nitrogenase.
00:21
It also has a pen -post sugar.
00:26
And it also has three phosphate bonds.
00:30
Okay, so practically three phosphate molecules, and we can draw it like this.
00:35
This is the structure this can be the structure of atp for example okay but remember that it also has like a nitrogenobitis adenine and also the pentose sugar okay this is the general structure of the atp and these are phosphate bonds okay this is atp and also energy it is called the like called the energy coin because it is like a source of energy when there is like a cleavage or when you destroy this a one phosphate bond it is going to release free energy okay and this free energy is going to be useful to power coupling reactions and also this energy released by breaking this phosphate bond and it's going to be useful or it's going to be used for of folulation of other molecules.
01:41
Okay, and you're going to end up with adp and the inorganic phosphorus, okay, by splitting this, or by breaking this phosphate bond, okay? adp is also useful for, as i mentioned, for coupling reactions...