I think your getting confused because we're using words instead of letters.
But let's start from the beginning. What does static friction depend on? Well it obviously depends on the two surfaces (a block on a smooth surface will have less friction than a block on a rough surface) but it also depends on how strongly the block is "pressed against" the surface.
(If you don't believe me, try pushing something across a table while pushing down on it very hard.)
So what is the force that the block is "pressed against" the surface with? It's just the weight of the block (which is mass * g)
Now,
Let's call the coefficient of static friction "[itex]\mu _s[/itex]"
and let's call the force that it is pressed against the surface with "[itex]F_{press}[/itex]"The coefficient of static friction is defined as follows:
[itex]\mu _sF_{press}=F_{max}[/itex]
This means that:
[itex]\mu _s=\frac{F_{max}}{F_{press}}[/itex]
In your case, [itex]F_{press}=mg=9.8m[/itex]
(this is because nothing is pushing down on the block other than it's own weight)