The figure shows a 2.38-kg ball attached to one end of an ideal string of length L = 1.24 m. The string's other end is held fixed as the ball swings around a vertical circle from rest at point A where 0 = 30°. Find the magnitude of tension in the string at point B, assuming the string remains taut and there is no friction or air resistance. A v0 = 0 T = L 0 B V N

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The figure shows a 2.38-kg ball attached to one end of an ideal string of length \( L = 1.24 \, \text{m} \). The string's other end is held fixed as the ball swings around a vertical circle from rest at point \( A \) where \( \theta = 30^\circ \).

Find the magnitude of tension in the string at point \( B \), assuming the string remains taut and there is no friction or air resistance.

**Diagram Explanation:**
- The diagram shows a ball at point \( A \) with an initial velocity \( v_0 = 0 \).
- The string has a length \( L \), and point \( A \) is at an angle \( \theta \) from the vertical.
- The ball travels in a circular path to point \( B \), where the velocity is represented as \( v \) and the direction of motion is indicated by an arrow.

\[ T = \, \_\_\_\_\_ \, \text{N} \]
Transcribed Image Text:The figure shows a 2.38-kg ball attached to one end of an ideal string of length \( L = 1.24 \, \text{m} \). The string's other end is held fixed as the ball swings around a vertical circle from rest at point \( A \) where \( \theta = 30^\circ \). Find the magnitude of tension in the string at point \( B \), assuming the string remains taut and there is no friction or air resistance. **Diagram Explanation:** - The diagram shows a ball at point \( A \) with an initial velocity \( v_0 = 0 \). - The string has a length \( L \), and point \( A \) is at an angle \( \theta \) from the vertical. - The ball travels in a circular path to point \( B \), where the velocity is represented as \( v \) and the direction of motion is indicated by an arrow. \[ T = \, \_\_\_\_\_ \, \text{N} \]
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