As shown in the figure below, two blocks (m1 and m2) are each released from rest at a height of h = 4.08 m on a frictionless track and when they meet on the horizontal section of the track they undergo an elastic collision. If m1 = 2.50 kg and m2 = 5.05 kg, determine the maximum heights (in m) to which they rise after the collision. Use the coordinate system shown in the figure. y1f= ______m y2f=________ m

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Chapter1: Units, Trigonometry. And Vectors
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As shown in the figure below, two blocks (m1 and m2) are each released from rest at a height of h = 4.08 m on a frictionless track and when they meet on the horizontal section of the track they undergo an elastic collision.
If m1 = 2.50 kg and m2 = 5.05 kg,
determine the maximum heights (in m) to which they rise after the collision. Use the coordinate system shown in the figure.
y1f= ______m
y2f=________ m
This diagram illustrates two blocks on a curved frictionless surface. 

- **Block Descriptions**:
  - Block \( m_1 \) is positioned on the left side of the curve at a height \( h \).
  - Block \( m_2 \) is positioned on the right side of the curve at the same height \( h \).

- **Axes**:
  - The vertical axis corresponds to the \( y \)-direction.
  - The horizontal axis corresponds to the \( x \)-direction.

- **Surface**:
  - The curve connecting the two blocks is frictionless, suggesting that any motion along this surface will not be resisted by friction.

- **Motion**:
 - An arrow indicates a potential path of motion for the blocks along the curve from one block to another, emphasizing a possible swapping of their initial positions.

This setup is likely used to explore concepts such as conservation of energy and motion on curved surfaces in an introductory physics context.
Transcribed Image Text:This diagram illustrates two blocks on a curved frictionless surface. - **Block Descriptions**: - Block \( m_1 \) is positioned on the left side of the curve at a height \( h \). - Block \( m_2 \) is positioned on the right side of the curve at the same height \( h \). - **Axes**: - The vertical axis corresponds to the \( y \)-direction. - The horizontal axis corresponds to the \( x \)-direction. - **Surface**: - The curve connecting the two blocks is frictionless, suggesting that any motion along this surface will not be resisted by friction. - **Motion**: - An arrow indicates a potential path of motion for the blocks along the curve from one block to another, emphasizing a possible swapping of their initial positions. This setup is likely used to explore concepts such as conservation of energy and motion on curved surfaces in an introductory physics context.
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