Earlier quoted context omitted.
> the potential energy requirement to lift up a certain amount of weight, and dividing by energy density and volume of current battery tech does not lead to a working jet any time soon. E=mgh E=(1kg * 9.81m/s^2 * 10.000m) / 3600s = 27.25Wh. Tesla currently is at around 260Wh/kg thus roughly ten times the amount of potential energy needed to get to 10.000m altitude. I'd assume that till 2030 we get to ~500Wh/kg by imp…
>Tesla currently is at around 260Wh/kg thus roughly ten times the amount of potential energy needed to get to 10.000m altitude. That's the energy - assuming 100% efficient conversion of battery power to altitude - to lift _only_ the battery to altitude (and then immediately fall back down). Actual engines are nowhere near that efficient and you'll presumably want to lift the rest of the airplane too. Then you have to…
I don't know how I can say "no" strongly enough.
If you only need 500km of range, it does not matter a single bit that jet fuel would increase your range from 1000km to 5000km. (Or 100km/180km/5000km respectively, if you want to talk about more contemporary batteries.)
Two things matter. Is the range good enough? How much does it cost? Jet fuel should not even be considered when answering the first question.