For the same given voltage, the 'umph' will be about the same for both a small or large pack
I said 'about'.
If we assume an 18v pack using typical Li cells (18650's or 21700's), you are looking at 5 cells in series to get you 18volts.
The Ah rating is based on the Ah rating of each cell. You can assume the typical Ah of an 18650 cell is going to be around 2500 mAh. So if they are saying that pack has an Ah rating of 1.5 Ah, it sounds like they are using derated cells and there is only 5 of them. The 5 Ah pack is most likely 10 cells (2 cells in parallel for each bank)
Each cell has a fixed internal resistance. What this really means, while the Ah rating might be ** amount, under high current draws, the cell can produce a lot more juice. Using Ohms law, it's easy to understand that if you put two cells in parallel, the internal resistance will be less. Hence, a pack with a higher Ah rating (2 or more cells in parallel) will be able to deliver more current.
So...yes, the higher Ah rating pack will be able to deliver a bit more 'umph' under high load conditions.
So....back to the original question......unless you expect to run the tool at max loads...and need the run time....take the deal. You can always buy the larger pack if you need it.
Side note.
One of the main reasons for Li battery pack failures is for guys to not put them on the charger after they are drained.
Li cells literally die if the cell voltage drops below 2 Vdc. The Li battery pack has a BMB (Battery Management Board) that shuts off the output when the cells get close to the bottom end. But, if you toss the pack to the side and wait a couple of months before you toss it on the charger, there is a chance one or more cells may have dropped below the 2 Vdc level. In most cases, there is NO recovery from this point.