A cannonball of mass 7 kg is shot from a cannon straight up into the air, with an initial velocity of 50 m s⁻¹ - Leaving Cert Physics - Question a - 2019
Question a
A cannonball of mass 7 kg is shot from a cannon straight up into the air, with an initial velocity of 50 m s⁻¹.
(i) State the principle of conservation of energy.
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Worked Solution & Example Answer:A cannonball of mass 7 kg is shot from a cannon straight up into the air, with an initial velocity of 50 m s⁻¹ - Leaving Cert Physics - Question a - 2019
Step 1
State the principle of conservation of energy.
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Answer
The principle of conservation of energy states that energy cannot be created or destroyed, but it can be transformed from one form to another. The total energy in a closed system remains constant.
Step 2
Calculate the cannonball's kinetic energy as it is fired.
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Answer
The kinetic energy (KE) of an object can be calculated using the formula:
KE=21mv2
For the cannonball:
Mass (m) = 7 kg
Velocity (v) = 50 m/s
Substituting the values:
KE=21×7×(50)2=8750 J
Step 3
As the cannonball rises, its kinetic energy is converted into another form of energy: Name this energy.
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Answer
The kinetic energy is converted into potential energy as the cannonball rises.
Step 4
Calculate the greatest height reached by the cannonball.
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Answer
To calculate the greatest height (h) reached, we can use the conservation of energy principle, where the initial kinetic energy equals the potential energy at the highest point:
KE=PE8750=mgh
Where:
m = 7 kg
g = 9.8 m/s²
Rearranging for h:
h=mgKE=7×9.88750≈127.55m
Step 5
The cannonball has a volume of 0.0009 m³.
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Answer
To calculate the density (
ho) of the cannonball, use the formula:
ρ=Vm
Where:
m = 7 kg
V = 0.0009 m³
Substituting the values:
ρ=0.00097≈7777.78 kg/m3
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