You have: F = ( m ) ( a ) = ( 1.0 kg ) (1.0 m/s^2 ) = 1.0 Newton = 1.0 N <----------------------
The acceleration of the sled is .18m/s2
The unbalanced force required to accelerate a 1500 kg race car at 3.0 m/s^2 is 4500 N. This force is calculated using Newton's second law, F = m * a, where F is the force, m is the mass of the car, and a is the acceleration.
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The force needed to produce this acceleration can be found using Newton's second law, which states that force equals mass times acceleration. In this case, the force can be calculated as: F = m*a = 1800 kg * 4.1 m/s^2 = 7380 N.
The mass of the object is 22 kg. This can be calculated using Newton's second law of motion, F = ma, where F is the force applied (55N) and a is the acceleration (2.5 m/s^2). Rearranging the formula to solve for mass, m = F/a. Thus, the mass of the object is 55N / 2.5 m/s^2 = 22 kg.
The SI unit for force that is equal to 1 kg m/s^2 is the newton (N).
The standard unit of measurement for force is the newton (N), which is represented as kg/ms2.
Fnet=ma. This means that net force (Newtons (N)) is equal to mass (Kilograms(Kg)) multiplied by acceleration (meters per second squared (ms2)).
The force required is 70,310 newtons.
The force is 686 newtons. (Force = mass x acceleration).
5,400
5,400 N.
To find the force needed to accelerate the child on a sled, you can use Newton's second law of motion, which states that force is equal to mass multiplied by acceleration. So, the force needed is equal to the mass of the child multiplied by the acceleration given: 62.0 kg * 1.13 m/s^2 = 70.06 N.
answer is (D) 120N
648 N
5,400 N.
The net force applied to the box is equal to the mass of the box multiplied by its acceleration, which is 5.5 kg * 4.2 m/s² = 23.1 N.