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To break down sugar and produce useful energy, the cells need many things, but most importantly they need ENZYMES.
ammonia
A molecule is two or more atoms which have been chemically bonded and a cell is made up of atoms so technically a molecule could be bigger than a cell but in reality most cells are bigger than molecules seeing as they are made up of them
Cholesterol is the most important steroid molecule.
NEVER, EVER use a polish on chrome that contains ammonia because Ammonia dissolves chrome and could, but is most likely to cause explosion.
Carbon Monoxide
The most common fish deaths are a result of ammonia or nitrite poisoning, in which the biological filtration has not been well established. The nitrogen cycle turns fish wastes to ammonia (which is toxic), then nitrite (still toxic), and finally, nitrate (not toxic in low concentrations).
Most fish excrete nitrogenous waste in the form of ammonia. Ammonia is highly toxic, but fish eliminate it primarily through the gills and some through the urine. Some fish species, particularly those living in environments with low water availability, convert ammonia to a less toxic form, such as urea or uric acid, before excreting it.
A chart hasn't been added but the most important inorganic molecule in cells would be the water molecule.
CH2O (glucose) is the most fundamental molecule metabolized by cells (in conjunction with Oxygen) for energy.
carbon dioxide and water :)
ATP
The types are: ammonia, sulfur dioxide, hydrocarbons like methane, methyl chloride, and methylene chloride, the freon and genetron and the water. The ammonia is the worst because can kill you, is the most toxic, the sulfur dioxide is corrosive and can injure plants but not to you, only is you breath it for a time, the hydrocarbons are not toxic like freon and genetron, and the water that is other refrigerant but is innocuous.
the most abundant chemical in cells is water.
Steroids are found predominantly in eukaryotic cells , with cholesterol being the most abundant steroid molecule.
Firstly ammonia forms a coordinate bond with H+ of water. Forming a conjugate acid then it react with OH- to form NH4OH. I.e. it shows acid base reaction
ATP (adenosine Triphosphate)