Question
Download Solution PDFIf a 10 kg body is moving with a speed of 15 m/s, is acted upon by a retarding force of 50 N, then how long will it take for the body to come to a stop?
Answer (Detailed Solution Below)
Detailed Solution
Download Solution PDFCONCEPT:
- Force: The interaction which after applying on a body changes or try to change the state of rest or state of motion of the body is called force.
Force (F) = Mass (m) × acceleration (a)
- Retardation: The force acting in the opposite direction to the motion of a body is called the retarding force. This force produces negative acceleration for the body which is called retardation or deacceleration.
Retardation (a) = Force/Mass
The equation of motion is given below:
V = u + a t
Where V is final velocity, u is initial velocity, a is acceleration and t is time
CALCULATION:
Given that:
Mass (m) = 10 kg, Initial velocity (u) = 15 m/s
Force (F) = - 50 N
Acceleration (a) = F/m = - 50/10 = - 5 m/s2
Final velocity (V) = 0 m/s
V = u + a t
0 = 15 - 5 × t
So t = 15/5 = 3 sec
Last updated on Jul 18, 2025
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