The bottle rests at a distance r = 5 ft from the center of the horizontal platform. The coefficient of static friction between the bottle and the platform is ps = 0.2. Assume the angular motion of the platform is slowly increasing. (Figure 1) Figure Motion 1 of 1 Part A Determine the maximum speed that the bottle can attain before slipping. Express your answer to three significant figures and include the appropriate units. Vmax= Submit μA Value Request Answer ft/s < Return to Assignment Provide Feedback ?
The bottle rests at a distance r = 5 ft from the center of the horizontal platform. The coefficient of static friction between the bottle and the platform is ps = 0.2. Assume the angular motion of the platform is slowly increasing. (Figure 1) Figure Motion 1 of 1 Part A Determine the maximum speed that the bottle can attain before slipping. Express your answer to three significant figures and include the appropriate units. Vmax= Submit μA Value Request Answer ft/s < Return to Assignment Provide Feedback ?
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)
**Part A**
Determine the maximum speed that the bottle can attain before slipping. Express your answer to three significant figures and include the appropriate units.
\[
v_{\text{max}} = \text{Value} \, \text{ft/s}
\]
Submit your answer or request an answer:
- [Submit](#)
- [Request Answer](#)
**Feedback**
- [Provide Feedback](#)
**Return to Assignment**
- [Return to Assignment](#)
**Figure 1**
The figure shows a horizontal platform with a bottle placed on its surface. The platform is rotating, and an arrow indicates the direction of motion. A radial line from the center of the platform to the bottle indicates the distance \( r = 5 \, \text{ft} \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb159ea24-ec33-411b-93d6-19afb03ffa76%2F67f29bdb-1558-4b81-9b7c-0455ab97619f%2Fgqeigsa_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**The Scenario**
A bottle rests at a distance \( r = 5 \, \text{ft} \) from the center of a horizontal platform. The coefficient of static friction between the bottle and the platform is \( \mu_s = 0.2 \). Assume the angular motion of the platform is slowly increasing. ([Figure 1](#))
**Part A**
Determine the maximum speed that the bottle can attain before slipping. Express your answer to three significant figures and include the appropriate units.
\[
v_{\text{max}} = \text{Value} \, \text{ft/s}
\]
Submit your answer or request an answer:
- [Submit](#)
- [Request Answer](#)
**Feedback**
- [Provide Feedback](#)
**Return to Assignment**
- [Return to Assignment](#)
**Figure 1**
The figure shows a horizontal platform with a bottle placed on its surface. The platform is rotating, and an arrow indicates the direction of motion. A radial line from the center of the platform to the bottle indicates the distance \( r = 5 \, \text{ft} \).
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