>>11296285It's called an asymptote.
You can graph both infinitely small and infinitely big numbers with an asymptote as a limit for both ends of the graph.
Ways to visualise an asymptote is with the charging if a capacitor, as the cap charges the potential difference decreases, slowing the charging of the cap, as the cap approaches its maximum voltage charging slows infinitely, but never reached the charging current.
The cha going current is the limit, or max, so imagine so say 1 volt.
So charging from a 1 volt power source, to a 1 volt cap, the cap never reaches 1,
This exact same maths can be used to graph the discharge of a cap ;) as the discharge limit is now 0 volts.
An asymptote lies at both 1, and 0, and 0 and 1 are the limits of the range of the graph.
So before you try to convince me a capacitor charged to 0.00999. volts is actually 1 volt (impossible), maybe learn some maths like limits and asymptotes first.
You need to learn the difference between higher/abstract maths/physics and "real world/applied maths and physics.
This 0.999...=1 thing is vectored maths.