Moment of Inertia of Bike Wheel

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The moment of inertia calculated for a typical road bike wheel is approximately 0.11 kg-m², based on a weight of 0.9 kg and a radius of 0.35 m. The original experiment yielded a value of 0.17 kg-m², which is considered higher than expected. This discrepancy suggests that the wheel in question may be heavier than the standard performance road bike wheel. Participants in the discussion are encouraged to provide the actual weight of the wheel for a more accurate assessment. Overall, the calculated moment of inertia appears to be slightly elevated compared to typical values.
iaing94
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Hi, I have conducted a few simple experiments involving a very ordinary, road going bike wheel. I came up with a value for the moment of inertia of 0.17kgm2

I really have no idea if I am in the right ballpark with that value, would anybody be able to enlighten me as to if that is a feasible value?

Thanks
 
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A typical road wheel weighs about 0.9 kg, and has a diameter of 0.7 m, so a radius of 0.35 m. If all of the weight is concentrated in the circumference (not a bad assumption), then the moment of inertia would be I = m*r^2 = 0.9 * 0.35^2 = 0.11 kg-m^2. So you sound a bit high, but maybe you just have a heavy wheel. My number of 0.9 kg is for a performance road bike. How much does your wheel weigh?
 
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