The weight of an object is due to the gravitational force acting on it - Leaving Cert Physics - Question 6 - 2008
Question 6
The weight of an object is due to the gravitational force acting on it.
Newton investigated the factors which affect this force.
Define force and give the unit of f... show full transcript
Worked Solution & Example Answer:The weight of an object is due to the gravitational force acting on it - Leaving Cert Physics - Question 6 - 2008
Step 1
Define force and give the unit of force.
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Answer
Force is defined as any interaction that, when unopposed, will change the motion of an object. It can cause an object with mass to change its velocity (to accelerate). The unit of force is the Newton (N), which is defined as the force required to accelerate a mass of one kilogram at a rate of one meter per second squared.
Step 2
State Newton's law of universal gravitation.
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Answer
Newton's law of universal gravitation states that every point mass attracts another point mass with a force that is proportional to the product of their masses and inversely proportional to the square of the distance between them. It can be mathematically expressed as:
F=Gr2m1m2
where F is the gravitational force, G is the gravitational constant, m1 and m2 are the two masses, and r is the distance between their centers.
Step 3
Calculate the acceleration due to gravity on the moon.
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Answer
To find the acceleration due to gravity on the moon, we use the formula:
gmoon=GRmoon2Mmoon
Substituting the given values:
Mass of the moon, Mmoon=7×1022 kg
Radius of the moon, Rmoon=1.7×106 m
Gravitational constant, G=6.7×10−11 N m2/kg2
We have:
gmoon=6.7×10−11(1.7×106)27×1022
Calculating that gives:
g_{moon} \approx 1.6 \text{ m/s}^2.
Step 4
What is the weight of the buggy on earth?
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Answer
The weight of an object is given by the formula:
W=mg
For the buggy on Earth:
Mass, m=2000 kg
Acceleration due to gravity, gearth=9.8 m/s2
Therefore, the weight is:
Wearth=2000×9.8=19600 N
Step 5
What is the mass of the buggy on the moon?
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Answer
The mass of an object does not change regardless of its location. Therefore, the mass of the buggy on the moon remains the same as its mass on Earth, which is:
m=2000 kg
Step 6
What is the weight of the buggy on the moon?
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Answer
The weight of the buggy on the moon can be calculated using the formula:
Wmoon=mgmoon
Using the mass of the buggy and the acceleration due to gravity on the moon:
Mass, m=2000 kg
Acceleration due to gravity on the moon, gmoon≈1.6 m/s2
Thus, the weight is:
Wmoon=2000×1.6=3200 N
Step 7
Explain why less powerful rockets are required to leave the surface of the moon.
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Answer
Less powerful rockets are needed to leave the surface of the moon compared to those required on Earth due to the lower gravitational pull exerted by the moon. The acceleration due to gravity on the moon is about 1.6 m/s2, while on Earth it is approximately 9.8 m/s2. This means that the force required to overcome gravity and launch a spacecraft from the moon is significantly lower, thus allowing for less powerful rockets.
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