Force can move an accessible object or an unbound object. In addition, the notion of force in physics is a quantity that has a certain magnitude and direction. Force is an interaction that, when acting alone, will cause a change in the state of motion of objects.
According to Newton's first principle, an object that is still at rest or moving at a similar speed in a straight line will stay in that state until a style is applied to him.
According to the second law, an external force that acts on the body will produce an acceleration. Change in body velocity in the direction of the force. The magnitude of the acceleration will be directly proportional to the importance of the external power. And will be inversely proportional to the amount of matter in the object.
Newton's third law states that when one object is given a force from another thing, both entities will exert a force. The force is so a with the force of the first object. This principle of action and reaction will explain something. Explain why a force will tend to change the shape of an object, regardless of whether the force will make the object move or stay.
In this problem, Newton's Second Law will be applied. Here's the formula for the force according to Newton's Second Law:
F = m x a
Frepresents Force (N)
mrepresents Mass (kg)
a represents Acceleration ([tex]m/s^2[/tex])
Available data from the questions:
Mass (m): 945.0 kg
Acceleration (a): [tex]83.0 m/s^2[/tex]
Main question:
How much force is needed to accelerate the car?
Answer:
F = m x a
F = 945.0 x 83.0
F = 78435 N
So, the force required to accelerate a car with a mass of 945.0 kg and an acceleration of [tex]83.0 m/s^2[/tex] is 78435 Newtons (N).
Answers & Comments
The answer is 78435 N.
Introduction of Force (F):
In this problem, Newton's Second Law will be applied. Here's the formula for the force according to Newton's Second Law:
F = m x a
F represents Force (N)
m represents Mass (kg)
a represents Acceleration ([tex]m/s^2[/tex])
Available data from the questions:
Mass (m): 945.0 kg
Acceleration (a): [tex]83.0 m/s^2[/tex]
Main question:
How much force is needed to accelerate the car?
Answer:
F = m x a
F = 945.0 x 83.0
F = 78435 N
So, the force required to accelerate a car with a mass of 945.0 kg and an acceleration of [tex]83.0 m/s^2[/tex] is 78435 Newtons (N).
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