Respuesta :
energy conservation
mgh = 1/2mv^2
1.5*9.8*3 = 1/2*1.5*v^2
44.1*2 = 1.5*v^2
88.2/1.5 = v^2
58.8 = v^2
v = 7.668 m/s
mgh = 1/2mv^2
1.5*9.8*3 = 1/2*1.5*v^2
44.1*2 = 1.5*v^2
88.2/1.5 = v^2
58.8 = v^2
v = 7.668 m/s
Answer: The kinetic energy of the block is 44.1 J
Explanation:
As, the block is at some height, it will posses some potential energy.
When the block is released from the inclined plane, the block will start gaining kinetic energy as energy cannot be created nor be destroyed, explained by law of conservation of energy.
So,
Potential energy of the block = Kinetic energy of the block
Potential energy of the block is calculated by using the formula:
[tex]E_p=mgh[/tex]
where,
[tex]E_p[/tex] = potential energy of the rock = ?
m = mass of the object = 1.5 kg
g = acceleration due to gravity = [tex]9.8m/s^2[/tex]
h = height of the plane from where the block is thrown = 3 m
Putting values in above equation, we get:
[tex]E_p=1.5kg\times 9.8m/s^2\times 3m\\\\E_p=44.1J=E_k[/tex]
Hence, the kinetic energy of the block is 44.1 J