Q.A constant retarding force of is applied to a body of mass moving initially with a speed of . How long does the body take to stop?
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Start your 14-day free trial to unlock the full solution →The retarding force causes a constant deceleration, which can be used with the initial velocity to find the time taken to stop. The body takes to stop.
Let's understand what's happening here. We have a body moving with a certain initial speed, and a constant force is applied in the opposite direction to its motion. This force is called a retarding force because it tries to slow the body down. Eventually, if the force acts long enough, the body will come to a complete stop. We need to find out how much time this process takes.
The core idea here is to relate the force to the change in motion. Newton's second law of motion directly connects force, mass, and acceleration. Once we find the acceleration (or rather, deceleration, since it's a retarding force), we can use the equations of motion to find the time.
- Determine the acceleration: A constant retarding force means the body experiences a constant acceleration in the direction opposite to its initial velocity. We can find this acceleration using Newton's second law: . Here, (the magnitude of the retarding force) and . The acceleration will be:
Since this is a retarding force, the acceleration is in the opposite direction to the initial velocity. So, we can consider it as a deceleration, meaning its value will be negative if we take the initial velocity direction as positive.
2. Identify the known kinematic variables:
We are given:
* Initial velocity, (let's take this direction as positive).
* Final velocity, (since the body stops).
* Acceleration, (negative because it's a deceleration).
* We need to find the time, .
- Apply the appropriate equation of motion: …
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