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The velocity time graph of a ball moving along is straight line on a long table is given in the figure find the magnitude of regarding force applied by the surface of a table on a ball to bring it to the mass of a ball is 48 kg?
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The velocity time graph of a ball moving along is straight line on a l...
Analysis of Force on the Ball
- Given Data:
- Mass of the ball (m) = 48 kg
- Information from the Velocity-Time Graph:
- The slope of the velocity-time graph represents acceleration.
- The area under the velocity-time graph represents the displacement.
- Finding Acceleration:
- From the graph, we can find the acceleration of the ball by finding the slope of the line.
- Acceleration = Change in velocity / Change in time
- Calculating Force:
- Once we have the acceleration, we can calculate the net force acting on the ball using Newton's second law:
- Net Force = Mass x Acceleration
- Net Force = 48 kg x Acceleration
- Calculating Acceleration:
- By finding the slope of the line in the graph, we can determine the acceleration of the ball.
- Substitute Values:
- Substitute the calculated acceleration into the formula Net Force = Mass x Acceleration.
- Final Calculation:
- Substituting the values, we can find the magnitude of the net force acting on the ball to bring it to rest.
By following these steps and calculations, you can determine the magnitude of the net force applied by the surface of the table on the ball to bring it to rest, considering the mass of the ball is 48 kg.
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The velocity time graph of a ball moving along is straight line on a long table is given in the figure find the magnitude of regarding force applied by the surface of a table on a ball to bring it to the mass of a ball is 48 kg?
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