I can't think of anyone I know close to me that would really appreciate this gift, so I'm with another comment on here that gifting it online somehow would be something I'm interested in. I'd feel happy knowing I'm supporting a great product and helping the less fortunate of the younger generation get better access to fun educational tools.
Also, I wish there were a pledge level where I'd buy one kit for me, and anonymously gift one to any random kid in another part of the world who wants one but can't afford it (kind of like OLPC did).
That's a great idea with the anonymous donation. If anyone is looking for a great place to donate, one really cool program is the Turing Trust. It's run by Alan Turing's great nephew, James Turing. He's awesome and he does amazing work. Here's their website: https://turingtrust.co.uk/
Most of the popular electronics books I've seen use a water or fluid metaphor to describe how components work (eg the fantastic Practical Electronics for Inventors).
Not at all intending to be critical with my question, just curious.
As a non-electrical engineer who dabbles in electronics, I'm excited for your work to help others learn and happy I can back it!
So I stepped back and thought about how to do it mechanically. But the hardest part of a mechanical circuit is the absolute simplest part in electronics: the junction. That is, where electricity flows in one wire and splits along two wires. How do you make chain or a belt split? Not only that, but it has to follow Kirchoff's law: the sum of currents leaving the junction must equal the current entering the junction. I finally realized that's what a differential gear arrangement does, and planetary gears are a sort of differential arrangement that would work perfectly for this. It was very, very hard to make the mechanical junction so that it had low resistance while under load, but I eventually got it. Once I had that, I knew it would all work.
BTW We got Turing Tumble for my son and he really enjoyed it.