Three objects with masses m₁ = 6.2 kg, m₂ = 14 kg, and m3 20 kg, respectively, are attached by strings over frictionless pulleys as indicated in the figure below. The horizontal surface exerts a force of friction of 30 N on m₂. If the system is released from rest, use energy concepts to find the speed of m3 after it moves down 4.0 m. m/s m₁ m₂ m₂ G

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Chapter1: Units, Trigonometry. And Vectors
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Three objects with masses \( m_1 = 6.2 \, \text{kg} \), \( m_2 = 14 \, \text{kg} \), and \( m_3 = 20 \, \text{kg} \), respectively, are attached by strings over frictionless pulleys as indicated in the figure below. The horizontal surface exerts a force of friction of \( 30 \, \text{N} \) on \( m_2 \). If the system is released from rest, use energy concepts to find the speed of \( m_3 \) after it moves down \( 4.0 \, \text{m} \).

[Text Box] \( \, \text{m/s} \)

Diagram:

- The setup involves a pulley system with three masses. 
- \( m_1 \) is hanging on the left side, \( m_2 \) is on top of the horizontal surface between two pulleys, and \( m_3 \) is hanging on the right side.
- The strings connecting the masses pass over two frictionless pulleys, ensuring smooth movement.
- The frictional force on \( m_2 \) is depicted acting opposite to the direction of potential motion, indicating its effect on the system's dynamics.
Transcribed Image Text:Three objects with masses \( m_1 = 6.2 \, \text{kg} \), \( m_2 = 14 \, \text{kg} \), and \( m_3 = 20 \, \text{kg} \), respectively, are attached by strings over frictionless pulleys as indicated in the figure below. The horizontal surface exerts a force of friction of \( 30 \, \text{N} \) on \( m_2 \). If the system is released from rest, use energy concepts to find the speed of \( m_3 \) after it moves down \( 4.0 \, \text{m} \). [Text Box] \( \, \text{m/s} \) Diagram: - The setup involves a pulley system with three masses. - \( m_1 \) is hanging on the left side, \( m_2 \) is on top of the horizontal surface between two pulleys, and \( m_3 \) is hanging on the right side. - The strings connecting the masses pass over two frictionless pulleys, ensuring smooth movement. - The frictional force on \( m_2 \) is depicted acting opposite to the direction of potential motion, indicating its effect on the system's dynamics.
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