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Answer :
The acceleration of the rock is approximately 46.67 m/s^2.
The acceleration of the rock can be determined using Newton's second law of motion, which states that the force acting on an object is equal to the mass of the object multiplied by its acceleration. In this case, the force acting on the rock is the force with which it is thrown, which is 245 N.
To find the acceleration, we need to rearrange the formula to solve for acceleration. The formula is:
force = mass * acceleration
So, rearranging the formula, we get:
acceleration = force / mass
Given that the mass of the rock is 5.25 kg and the force is 245 N, we can substitute these values into the formula:
acceleration = 245 N / 5.25 kg
acceleration ≈ 46.67 m/s^2
Therefore, the acceleration of the rock is approximately 46.67 m/s^2.
In this problem, the term "gravitational acceleration" refers to the local acceleration due to gravity, which is given as 9.82 m/s^2. However, this term is not directly relevant to calculating the acceleration of the rock in this context.
The term "projectile" refers to an object that is launched into the air and moves under the influence of gravity. In this case, the stone being thrown is a projectile because it is launched from a hilltop and will follow a curved path due to the force of gravity. However, when calculating the acceleration, we don't need to consider the projectile motion, as we are only concerned with the initial force and mass of the stone.
To know more about the Newton's second law of motion, click here;
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