2. (9.32) The x-component of a force = Fi on a golf ball (m = 46 g) exerted by some sort of iron is plotted in the following figure: FÅ(N). 30 50 Find the x-component of the impulse during the time intervals [1msec = 0 ≤ t ≤ 50msec b. 50 ≤ t ≤ 100msec a. 10-³s] 100 t(msec) For each time interval, what is the change in momentum of the golf ball? [Assume this is the only force acting on the ball.]
2. (9.32) The x-component of a force = Fi on a golf ball (m = 46 g) exerted by some sort of iron is plotted in the following figure: FÅ(N). 30 50 Find the x-component of the impulse during the time intervals [1msec = 0 ≤ t ≤ 50msec b. 50 ≤ t ≤ 100msec a. 10-³s] 100 t(msec) For each time interval, what is the change in momentum of the golf ball? [Assume this is the only force acting on the ball.]
College Physics
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Publisher:Raymond A. Serway, Chris Vuille
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![## Problem Statement
**(9.32)** Consider the x-component of a force \(\vec{F} = F_x \hat{i}\) applied to a golf ball \((m = 46 \, \text{g})\) by an iron club. This force is represented in the graph shown below:
### Diagram Explanation
The graph displays the x-component of the force \(F_x\) in newtons (N) as a function of time \(t\) in milliseconds (msec).
- The horizontal axis (x-axis) represents time \(t\), ranging from 0 to 100 milliseconds (msec).
- The vertical axis (y-axis) represents the force \(F_x\) in newtons (N), starting from 0 up to 30 N.
- The graph shows a linear increase of force from 0 N to 30 N from \(t = 0\) to \(t = 50\) msec, followed by a constant force of 30 N from \(t = 50\) msec to \(t = 100\) msec.
## Questions
Determine the x-component of the impulse during the following time intervals, where \(1 \, \text{msec} = 10^{-3} \, \text{s}\):
a. \(0 \leq t \leq 50 \, \text{msec}\)
b. \(50 \leq t \leq 100 \, \text{msec}\)
For each time interval, what is the change in momentum of the golf ball? [Assume this is the only force acting on the ball.]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fac048e26-edc8-46ba-8829-c16c07a7a6b4%2Ffe5dd2a9-1204-4c3a-9b83-a9a4cb3e41b4%2Fccuvpof_processed.png&w=3840&q=75)
Transcribed Image Text:## Problem Statement
**(9.32)** Consider the x-component of a force \(\vec{F} = F_x \hat{i}\) applied to a golf ball \((m = 46 \, \text{g})\) by an iron club. This force is represented in the graph shown below:
### Diagram Explanation
The graph displays the x-component of the force \(F_x\) in newtons (N) as a function of time \(t\) in milliseconds (msec).
- The horizontal axis (x-axis) represents time \(t\), ranging from 0 to 100 milliseconds (msec).
- The vertical axis (y-axis) represents the force \(F_x\) in newtons (N), starting from 0 up to 30 N.
- The graph shows a linear increase of force from 0 N to 30 N from \(t = 0\) to \(t = 50\) msec, followed by a constant force of 30 N from \(t = 50\) msec to \(t = 100\) msec.
## Questions
Determine the x-component of the impulse during the following time intervals, where \(1 \, \text{msec} = 10^{-3} \, \text{s}\):
a. \(0 \leq t \leq 50 \, \text{msec}\)
b. \(50 \leq t \leq 100 \, \text{msec}\)
For each time interval, what is the change in momentum of the golf ball? [Assume this is the only force acting on the ball.]
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