The force needed to produce an acceleration of 1 m/s^2 on a mass of 1 kg is 1 Newton (N) according to Newton's second law of motion, F = ma, where F is the force, m is the mass, and a is the acceleration.
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.
The mass of the object can be calculated using Newton's second law: force = mass * acceleration. Rearranging the formula gives mass = force / acceleration. Plugging in the values, the mass of the object would be 100 kg.
The mass of the skier can be calculated using Newton's second law, which states that Force = mass x acceleration. Rearranging the formula, mass = Force / acceleration. Therefore, mass = 168 N / 2.4 m/s^2 = 70 kg.
The net force on the dragster is 28,800 N (900 kg * 32.0 m/s^2). This force acts in the direction of acceleration, which is west.
If the loaded truck loses half of its mass, its acceleration will double. This is because acceleration is inversely proportional to mass (a = F/m), so as mass decreases, acceleration increases for the same driving force. Therefore, if the initial acceleration was (a), the new acceleration will be (2a).
The force is 686 newtons. (Force = mass x acceleration).
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.
The mass of the object can be calculated using Newton's second law: force = mass * acceleration. Rearranging the formula gives mass = force / acceleration. Plugging in the values, the mass of the object would be 100 kg.
The mass of the skier can be calculated using Newton's second law, which states that Force = mass x acceleration. Rearranging the formula, mass = Force / acceleration. Therefore, mass = 168 N / 2.4 m/s^2 = 70 kg.
Brandon throws a flying disc with a force of 8 N. If the disc has an acceleration of 4 m/s2, what is the mass of the disc?
magnitude of force is the mass because acceleration is 1 and mass is a scalar quantity. so the answer is 10*1.414=14.14
The net force on the dragster is 28,800 N (900 kg * 32.0 m/s^2). This force acts in the direction of acceleration, which is west.
total mass = force / acceleration = 99 / 1.5 = 66 kilograms>66 - 10 = 56 kilograms
If the loaded truck loses half of its mass, its acceleration will double. This is because acceleration is inversely proportional to mass (a = F/m), so as mass decreases, acceleration increases for the same driving force. Therefore, if the initial acceleration was (a), the new acceleration will be (2a).
The force required can be calculated using Newton's second law, which states that force (F) equals mass (m) multiplied by acceleration (a). Therefore, the force required would be 400 Newtons (50 kg * 8 m/s^2).
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 acceleration of the sled is .18m/s2