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.
If force is doubled and the mass remains constant, acceleration will also double. This is described by Newton's second law of motion, which states that acceleration is directly proportional to the force applied to an object.
If the cart's mass is doubled, its acceleration would be halved if the force remains constant. This is because acceleration is inversely proportional to mass, so an increase in mass would result in a decrease in acceleration when force is held constant.
If acceleration due to gravity doubled, your weight on Earth would also double. This means that the force of gravity pulling you downward would be twice as strong as it is currently, causing you to feel heavier.
If an object's mass is halved and the applied force is doubled, the acceleration of the object will quadruple. This is because acceleration is directly proportional to force and inversely proportional to mass according to Newton's second law (F = ma). Therefore, reducing the mass by half and doubling the force will result in a fourfold increase in acceleration.
Doubled. According to Newton's second law of motion, acceleration is directly proportional to the net force acting on an object when mass is constant. Therefore, doubling the force will lead to a doubling of acceleration.
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.
If force is doubled and the mass remains constant, acceleration will also double. This is described by Newton's second law of motion, which states that acceleration is directly proportional to the force applied to an object.
If the cart's mass is doubled, its acceleration would be halved if the force remains constant. This is because acceleration is inversely proportional to mass, so an increase in mass would result in a decrease in acceleration when force is held constant.
If acceleration due to gravity doubled, your weight on Earth would also double. This means that the force of gravity pulling you downward would be twice as strong as it is currently, causing you to feel heavier.
If an object's mass is halved and the applied force is doubled, the acceleration of the object will quadruple. This is because acceleration is directly proportional to force and inversely proportional to mass according to Newton's second law (F = ma). Therefore, reducing the mass by half and doubling the force will result in a fourfold increase in acceleration.
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
The force equal mass times acceleration, if force remains the same, and mass is doubled, then acceleration must be cut in half.
Doubled. According to Newton's second law of motion, acceleration is directly proportional to the net force acting on an object when mass is constant. Therefore, doubling the force will lead to a doubling of acceleration.
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.
The acceleration of the basketball will double as well. This is because acceleration is directly proportional to force according to Newton's Second Law (F=ma). If the force doubles, the acceleration will also double as long as the mass remains constant.
its acceleration will be increased
its acceleration will be increased