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A man throw a ball of mass 0.4kg vertically upwards with a velocity of 10m/s . what will be its initial momentum at the highest point it reached.?
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A man throw a ball of mass 0.4kg vertically upwards with a velocity of...
Understanding the Problem
To determine the initial momentum of the ball at its highest point, we first need to understand the concepts of momentum and motion.
Momentum Formula
- Momentum (p) is defined as the product of mass (m) and velocity (v):
p = m × v
Given Data
- Mass of the ball (m) = 0.4 kg
- Initial velocity (u) = 10 m/s
Velocity at the Highest Point
- When the ball reaches its highest point, its velocity becomes zero (v = 0 m/s) because it stops before descending.
Initial Momentum Calculation
- At the highest point, the momentum of the ball can be calculated as follows:
p = m × v
p = 0.4 kg × 0 m/s = 0 kg·m/s
Conclusion
- Thus, the initial momentum of the ball at the highest point it reaches is 0 kg·m/s.
- This outcome illustrates the principle that momentum is dependent on velocity; when the velocity is zero, the momentum is also zero, regardless of the mass of the object.
This analysis provides insight into the behavior of objects in motion and the importance of velocity in determining momentum.
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A man throw a ball of mass 0.4kg vertically upwards with a velocity of 10m/s . what will be its initial momentum at the highest point it reached.?
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