A googol-to-one gear ratio [video]
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A googol-to-one gear ratio [video]
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Re: A googol-to-one gear ratio [video]
#2Re: A googol-to-one gear ratio [video]
#3Re: A googol-to-one gear ratio [video]
#4Why can't it spin faster?
Re: A googol-to-one gear ratio [video]
#5What happens to the energy used to rotate the device? Is it dissipated as heat before it reaches too far?
I suspect even if slip between teeth, slack in system, etc... was eliminated you could still get the same effect.
The amount of energy in the system isn't the same thing as the amount of movement, so in a perfectly efficient system (I think) the initial gear would spin faster than the final gear but the final gear would turn with more force (same amount of energy).
Re: A googol-to-one gear ratio [video]
#6Re: A googol-to-one gear ratio [video]
#7Re: A googol-to-one gear ratio [video]
#8Re: A googol-to-one gear ratio [video]
#9What happens to the energy used to rotate the device? Is it dissipated as heat before it reaches too far?
Re: A googol-to-one gear ratio [video]
#10The idea is that there is a certain amount of energy lost as friction in each gear, per turn. If you calculate the gear ratios and how many turns of the earlier gears would be required to make the final gear move, even infinitesimally, the amount of energy lost becomes more than all the energy in the known universe. It's not really about RPMs.