36. A block of mass m = 5.00 kg is released from rest from point ® and slides on the frictionless track shown in Figure P5.36. Determine (a) the block's speed at points ® and © and (b) the net work done by the gravita- tional force on the block as it moves from point from ® to ©. 5.00 m 3.20 m 2.00 m Figure P5.36

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**Problem 36:**

A block of mass \( m = 5.00 \, \text{kg} \) is released from rest from point \( A \) and slides on the frictionless track shown in Figure P5.36. Determine (a) the block’s speed at points \( B \) and \( C \) and (b) the net work done by the gravitational force on the block as it moves from point \( A \) to \( C \).

**Figure Explanation:**

- The diagram depicts a frictionless track with three distinct points labeled \( A \), \( B \), and \( C \).
- Point \( A \) is elevated at a height of \( 5.00 \, \text{m} \).
- Point \( B \) is lower than point \( A \) with a height of \( 3.20 \, \text{m} \).
- Point \( C \) is the lowest point in the diagram with a height of \( 2.00 \, \text{m} \).
- The track features a series of curves and dips representing potential hills and valleys, where the changes in elevation are relevant for energy conservation analysis.
Transcribed Image Text:**Problem 36:** A block of mass \( m = 5.00 \, \text{kg} \) is released from rest from point \( A \) and slides on the frictionless track shown in Figure P5.36. Determine (a) the block’s speed at points \( B \) and \( C \) and (b) the net work done by the gravitational force on the block as it moves from point \( A \) to \( C \). **Figure Explanation:** - The diagram depicts a frictionless track with three distinct points labeled \( A \), \( B \), and \( C \). - Point \( A \) is elevated at a height of \( 5.00 \, \text{m} \). - Point \( B \) is lower than point \( A \) with a height of \( 3.20 \, \text{m} \). - Point \( C \) is the lowest point in the diagram with a height of \( 2.00 \, \text{m} \). - The track features a series of curves and dips representing potential hills and valleys, where the changes in elevation are relevant for energy conservation analysis.
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