Current Attempt in Progress that acts on a 2.70-kg ice block that The figure gives, as a function of time t, the force component can move only along the x axis. At t = 0, the block is moving in the positive direction of the axis, with a speed of 2.00 m/s. What is its velocity, including sign, at t = 11 s? Number i F, (N) 6 0 2 Units 00 10 t(s) 12

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Chapter1: Units, Trigonometry. And Vectors
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**Current Attempt in Progress**

The figure gives, as a function of time \( t \), the force component \( \vec{F}_x \) that acts on a 2.70-kg ice block that can move only along the x-axis. At \( t = 0 \), the block is moving in the positive direction of the axis, with a speed of 2.00 m/s. What is its velocity, including sign, at \( t = 11 \) s?

**Graph Explanation:**

The graph displays the force \( F_x \) (in Newtons) on the y-axis and time \( t \) (in seconds) on the x-axis.

- From \( t = 0 \) to \( t = 2 \) s, \( F_x \) increases linearly from 0 N to 6 N.
- From \( t = 2 \) to \( t = 5 \) s, \( F_x \) remains constant at 6 N.
- From \( t = 5 \) to \( t = 7 \) s, \( F_x \) decreases linearly from 6 N to -4 N.
- From \( t = 7 \) to \( t = 9 \) s, \( F_x \) is constant at -4 N.
- From \( t = 9 \) to \( t = 10 \) s, \( F_x \) increases linearly from -4 N to 0 N.
- From \( t = 10 \) to \( t = 12 \) s, \( F_x \) remains at 0 N.

**Answer Input:**

- Number: [Input field]
- Units: [Dropdown selection]
Transcribed Image Text:**Current Attempt in Progress** The figure gives, as a function of time \( t \), the force component \( \vec{F}_x \) that acts on a 2.70-kg ice block that can move only along the x-axis. At \( t = 0 \), the block is moving in the positive direction of the axis, with a speed of 2.00 m/s. What is its velocity, including sign, at \( t = 11 \) s? **Graph Explanation:** The graph displays the force \( F_x \) (in Newtons) on the y-axis and time \( t \) (in seconds) on the x-axis. - From \( t = 0 \) to \( t = 2 \) s, \( F_x \) increases linearly from 0 N to 6 N. - From \( t = 2 \) to \( t = 5 \) s, \( F_x \) remains constant at 6 N. - From \( t = 5 \) to \( t = 7 \) s, \( F_x \) decreases linearly from 6 N to -4 N. - From \( t = 7 \) to \( t = 9 \) s, \( F_x \) is constant at -4 N. - From \( t = 9 \) to \( t = 10 \) s, \( F_x \) increases linearly from -4 N to 0 N. - From \( t = 10 \) to \( t = 12 \) s, \( F_x \) remains at 0 N. **Answer Input:** - Number: [Input field] - Units: [Dropdown selection]
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