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The hour hand of a clock completes one revolution every 12 hours. The angular velocity of the hour hand is: Find the angular displacement: Δθ=20 rotations×2Ï€ radians/rotation=40Ï€ radians Find ...
Since this is a right triangle, I can use the Pythagorean theorem to find a relationship between ... The slope of this line will give the angular velocity (ω)and I can use that with the following ...
Now that I have the angular velocity of the planet, I can just calculate its position in each time step as: Here I have the angular velocity of the second planet in terms of the angular velocity ...
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