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well if both the car are identical in mass the acceleration is directly proportional to force and inversely proportional to mass since mass is same hence car having force of 1000 N will have more acceleration than 500 N one.

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Q: Two identical cars have forces applied to them Car A has a 1000 N force applied Car B has a 500 N force applied Which car will have more acceleration?
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Related questions

Does the law of applied forces state that a body's change in mass is proportional to the amount of force applied to it?

No, the law of applied forces does not state that a body's change in mass is proportional to the amount of force applied to it. The law of applied forces states that the force applied to a body is equal to the mass of the body multiplied by the acceleration of the body. So, if the acceleration of a body increases, the force applied to it will also increase, but the mass of the body will remain the same.


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The acceleration depends on the net force. So, you must add the forces together as vectors. The result in this case depends in what direction the force is applied.


What forces cause acceleration?

A layman's attempt: Any unbalanced force applied over time to an object that is free to move will bring about acceleration.


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Does the acceleration remain constant if the applied force was increasing?

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What condition does an object on which a constant force is applied have a zero acceleration?

An equal and opposite force is also applied to the object, so that the vector sum of all the forces on it is zero.


What happens when the applied force is equal to the kinetic friction?

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How forces change motion?

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If the applied force is constant, the acceleration will also be constant. To know the actual amount of acceleration, you divide the force by the mass.


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What is the relationship between an object's acceleration and the direction of the force on the object?

If an object is increasing in speed, the acceleration is positive and the force is in the direction of travel. If the object is slowing down, the acceleration is negative and the force is acting against the direction of movement.