Two big issues.Everyone,
I think I found my hypothesis,
If a these capacitors are charged at 1.5 volts, then the tantalum will reach its max capacity the fastest.
This is because the tantalum has a small head, so it is easier for it to charge. Additionally, in general (I think) tantalum has a small ESR.
Can anyone confirm whether my hypothesis is a good one, and my explanation is correct?
Additionally, I made up a small experiment to see if my test will work. And it did!
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First, your hypothesis is based on a claim that, even if the tantalum capacitors charge faster, the data can't be used to support the claim. They could be faster for a completely different reason that has nothing to do with the size of the head. So unless your experiment allows you to address the issue of whether head size has actually is a significant factor, don't even go there.
Second, your experiment most certainly did NOT work. You have a resistor in series with the capacitor. I'm willing to bet that this is there in order to slow the response down enough so that you can actually time it. The problem is that, in doing so, you have made your data meaningless with regards to the the purpose of the experiment. I can't tell for sure, but that looks like an 18 Ω resistor. Let's say that your two capacitors have ESRs of 0.1 Ω and 0.2 Ω -- in other words, a factor of two difference. Assuming (and this is NOT a reasonable assumption) that all other variables are exactly the same between the two, the time constant between your two tests will only vary by about 0.5%. Let's say that you have a 1000 μF capacitor. Five time constants is going to be 90.5 ms with one capacitor and 91.0 ms with the other. Can you REALLY reliably make measurements that can distinguish the difference?
And remember those bad assumptions? With your set up, just changing from one capacitor to another is likely to introduce a change in total series resistance that is larger than the ESR of the capacitors, let along the difference in the ESRs, which is what you are really interested in.
And the assumption that both of your capacitors have the same capacitance is a hugely bad assumptions. Capacitors typically have large tolerances and electrolytics (such as tantalums) tend to be among the worst with ±20% being very common.
So let's say that one of your capacitors, the low ESR one, is just 5% high and the other is 5% low. So now five time constants of the "fast" capacitor is 95.0 ms while for the "slow" one it is 86.5 ms.
How are you actually making your time measurement?
Trying to measure from 0 V to 4.99 V is NOT the way to go. There is WAY too much uncertainty at either end.
The usual way to make these kinds of measurements is from some low threshold to some high threshold, with 10% to 90% being very common; so common, in fact, that the graticule (screen markings) on most oscilloscopes is specifically marked to make this type of measurement easy.