1. Adenine
2. Ribose
3. Phosphate Groups
An ATP molecule is composed of three main components: a ribose sugar molecule, an adenine base, and three phosphate groups. These phosphate groups store and release energy as needed for cellular processes.
ATP is made up of Adenosine and 3 phosphate groups stuck together by a lot of energy in their bonds.
ATP stands for "adenosine triphosphate". Tri=3, so 3 phosphates.
First you start off with alot of energy(ATP) then you use up your energy throught the day. you then go to bed to restore your energy(ATP) and then you wake up and it starts all over again.
make sure you are attentive in class when the teacher is teaching. ok
Net 3 ATP or in other words, up to 3 ATP or less.
Landforms, climate, and vegetation.
An ATP molecule is composed of three main components: a ribose sugar molecule, an adenine base, and three phosphate groups. These phosphate groups store and release energy as needed for cellular processes.
nitrogen containing base, 3 phosphate groups and 5 carbon sugar
There are actually four components and they are the cortex, medulla, pelvis, and hilus.
This question appears to refer to the characteristics of frequency, amplitude, and phase.
The nitrogen base adenine, a ribose sugar molecule, and three phosphate groups.
A abttery with 3 components making it up.
ATP is made up of Adenosine and 3 phosphate groups stuck together by a lot of energy in their bonds.
3 components are water, air and carbon dioxide which can all join together to make clouds
Electricity is the interaction of many components. These include electric charges, electric fields, electric potentials, electric currents, and electromagnets.
Adenosine triphosphate (ATP) is composed of adenine (a nitrogenous base), ribose (a sugar), and three phosphate groups bound together. These three components are responsible for storing and transferring energy within cells for various biological processes.