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A body is moving with a velocity of 15 m...

A body is moving with a velocity of `15 m//s`. If the motion is uniform , what will be the velocity after `10 s` ?

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### Step-by-Step Solution: 1. **Understanding Uniform Motion**: - Uniform motion means that the velocity of the body remains constant over time. - There is no acceleration or deceleration in uniform motion. 2. **Given Data**: - Initial velocity (\(v_0\)): \(15 \, \text{m/s}\) - Time (\(t\)): \(10 \, \text{s}\) 3. **Applying the Concept of Uniform Motion**: - Since the motion is uniform, the velocity does not change with time. - Therefore, the velocity at any time \(t\) will be the same as the initial velocity. 4. **Calculating the Velocity After 10 Seconds**: - Since the velocity remains constant in uniform motion: \[ v = v_0 \] - Substituting the given initial velocity: \[ v = 15 \, \text{m/s} \] 5. **Conclusion**: - The velocity of the body after \(10 \, \text{s}\) will be \(15 \, \text{m/s}\). ### Final Answer: The velocity of the body after \(10 \, \text{s}\) is \(15 \, \text{m/s}\). ---

### Step-by-Step Solution: 1. **Understanding Uniform Motion**: - Uniform motion means that the velocity of the body remains constant over time. - There is no acceleration or deceleration in uniform motion. 2. **Given Data**: - Initial velocity (\(v_0\)): \(15 \, \text{m/s}\) ...
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