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
How does an increase of force affect acceleration? An decrease of force causes an increase in acceleration. An increase of force causes an decrease in acceleration. An increase of force causes an increase in acceleration. An increase of force causes acceleration to stay the same
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An increase of force causes an increase in acceleration.
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## Step 1<br />The problem is asking us to understand the relationship between force and acceleration. This relationship is described by Newton's Second Law of Motion.<br /><br />## Step 2<br />According to Newton's Second Law of Motion, the force applied to an object is equal to the mass of the object multiplied by its acceleration. This can be represented by the formula:<br />### \( F = ma \)<br />where \( F \) is the force, \( m \) is the mass, and \( a \) is the acceleration.<br /><br />## Step 3<br />From the formula, we can see that if the mass of the object remains constant, an increase in force will result in an increase in acceleration. This is because the force and acceleration are directly proportional to each other.
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