An object of mass 10kg fall from point A 100m high to the point B 35m from ground point find change in its potential energy while moving from point A to B what will e it's kinetic energy at point A just before touching ground
Answers
Answered by
1
Answer:
(a). Mass of the Body = 10 kg.
Height = 10 m.
Acceleration due to gravity = 9.8 m/s².
Using the Formula,Potential Energy = mgh
= 10 × 9.8 × 10 = 980 J.
(b). Now, By the law of the conservation of the Energy, Total amount of the energy of the system remains constant.
∴ Kinetic Energy before the body reaches the ground is equal to the Potential Energy at the height of 10 m.
∴ Kinetic Energy = 980 J.
(c). Kinetic Energy = 980 J.
Mass of the ball = 10 kg.
∵ K.E. = 1/2 × mv²
∴ 980 = 1/2 × 10 × v²
∴ v² = 980/5
⇒ v² = 196
∴ v = 14 m/s.
Similar questions
History,
1 month ago
Science,
1 month ago
Math,
3 months ago
English,
9 months ago
Social Sciences,
9 months ago