A bicyclist starting at rest produces a constant angular acceleration of 1.20 rad/s2 for wheels that are 38.5 cm in radius. HINT (a) What is the bicycle's linear acceleration (in m/s)? (Enter the magnitude.) ......... m/s2 Enter a number. (b) What is the angular speed of the wheels (in rad/s) when the bicyclist reaches 10.2 m/s? rad/s (c) How many radians have the wheels turned through in that time? rad (d) How far (in m) has the bicycle traveled? m

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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A bicyclist starting at rest produces a constant angular acceleration of \(1.20 \, \text{rad/s}^2\) for wheels that are \(38.5 \, \text{cm}\) in radius.

(a) What is the bicycle's linear acceleration (in \(\text{m/s}^2\))? (Enter the magnitude.)
   \[
   \text{Enter a number} \, \text{m/s}^2
   \]

(b) What is the angular speed of the wheels (in \(\text{rad/s}\)) when the bicyclist reaches \(10.2 \, \text{m/s}\)?
   \[
   \text{Enter a number} \, \text{rad/s}
   \]

(c) How many radians have the wheels turned through in that time?
   \[
   \text{Enter a number} \, \text{rad}
   \]

(d) How far (in \(\text{m}\)) has the bicycle traveled?
   \[
   \text{Enter a number} \, \text{m}
   \]
Transcribed Image Text:A bicyclist starting at rest produces a constant angular acceleration of \(1.20 \, \text{rad/s}^2\) for wheels that are \(38.5 \, \text{cm}\) in radius. (a) What is the bicycle's linear acceleration (in \(\text{m/s}^2\))? (Enter the magnitude.) \[ \text{Enter a number} \, \text{m/s}^2 \] (b) What is the angular speed of the wheels (in \(\text{rad/s}\)) when the bicyclist reaches \(10.2 \, \text{m/s}\)? \[ \text{Enter a number} \, \text{rad/s} \] (c) How many radians have the wheels turned through in that time? \[ \text{Enter a number} \, \text{rad} \] (d) How far (in \(\text{m}\)) has the bicycle traveled? \[ \text{Enter a number} \, \text{m} \]
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