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F=ma, if "a" doubles and "m" is the same, the resultant "F" will double.

Acceleration is doubled if force is doubled, a1=f/m; a2= 2f/m= 2a1.

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12y ago
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12y ago

One way of expressing the relationship between force and acceleration is the following equation:

A=F/M

Were A is acceleration, F is force, and M is mass.

If we double the force and assume that the mass is constant...

2F/M = 2A

Which means that when the force is doubled, the acceleration is doubled.

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12y ago

One way of expressing the relationship between force and acceleration is the following equation:

F=MA

Were A is acceleration, F is force, and M is mass.

If we double the acceleration and assume that the mass is constant:

2A x M = 2F

Which means that when the acceleration is doubled, the force driving the acceleration must be - doubled.

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10y ago

Acceleration is directly proportional to force. Double the force

on an object, and you double its acceleration.

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15y ago

The force applied is equal to the accelaration - the reaction. Thus if a force is doubled without a reaction, it will double aswell

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13y ago

F=ma. Therefore, a=F/m. So doubling both the net force and the mass would make it 2F/2M, which = F/m, meaning no change in the acceleration.

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12y ago

If the force is doubled (assuming mass stays the same) the acceleration doubles as well

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6y ago

In that case, the acceleration will also double.

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6y ago

The acceleration doubles.

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Q: What happens to acceleration when force is doubled?
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Related questions

What happens to your weight if acceleration due to gravity somehow doubled?

IF gravity doubled, THEN your weight would double. And acceleration and the force of gravity are indistinguishable from each other.


What happens to acceleration if an object's mass is halved and the applied force is doubled?

The acceleration is multiplied by four. a = F/m


What happens to the acceleration when mass and force are doubled?

Acceleration remains the same. Remember that Force equals Mass times Acceleration, or Acceleration equals Force divided by Mass. So, if both Force and Mass double, Force Divided by Mass remains the same.


A cart of a certain mass has a certain net force exerted on it and its acceleration is 4 ms2 what happens to the acceleration if the cart's mass doubled force?

force = mass x acceleration so if force doubles acceleration doubles to 8 m/s2


How could you keep an object acceleration the same if the force acting on object were doubled?

force = mass * acceleration if force is doubled, mass needs to be doubled to keep the same acceleration example: force = 6 mass = 2 acceleration = 3 6 = 2 * 3 12 = m * 3 12/3 = m 4 = mass


What would happen if you doubled the force acting on a moving object?

If you doubled the force on a moving object you would double its acceleration.


If the mass of the skateboard doubled but the net force on it remained constant what would happen to the skateboard's acceleration?

The force equal mass times acceleration, if force remains the same, and mass is doubled, then acceleration must be cut in half.


What will happen to the acceleration of a 1 kg basketball if the force applied to it is doubled from 10 n to 20 n?

The acceleration will be doubled accordingly. From 10m/s2 to 20.


What happens to the acceleration of an objects when the mass is cut in half?

The acceleration of an object is proportional to the net force acting on it. So if the force is reduced by half, the acceleration will also be halved. Of course, it will still be accelerating in the same direction as before, but not as quickly.


What happens to force when area is doubled?

Force is not dependent upon area.


When you double the force acting on an object and keep the mass of the cart constant the acceleration is?

Doubled.


If the force acting on a body is doubled than the acceleration produced is?

also doubled as long as mass is not changed: F = m a force and acceleration are directly proportional, with mass being what is called the proportionality constant. If mass is not changed, as you can see from Newton's second law to preserve the equality if force increases, the acceleration must increase.