The force of impact when a 70kg man falls 0.85 meters can be calculated using the formula F = m * g * h, where F is the force, m is the mass (70 kg), g is the acceleration due to gravity (9.81 m/s^2), and h is the height (0.85 m). Plugging in the values, the force of impact would be approximately 570.15 N.
The impact force of a 70kg man falling 0.85 meters can be calculated using the formula F=mgd, where F is the force, m is the mass, g is the acceleration due to gravity (9.8 m/s^2), and d is the distance fallen. Plugging in the values, the impact force would be approximately 576.5 Newtons.
The work done by a 70kg person climbing a ladder depends on the height of the ladder, but can be calculated using the formula work = force x distance. The force is the person's weight (70kg x 9.8m/s^2) and the distance is the height of the ladder.
The force exerted would be equivalent to the astronaut's mass multiplied by the acceleration due to gravity. Therefore, the force would be 70kg * 19m/s^2, which equals 1330 N.
To accelerate a 70kg object at a rate of 4.2 m/s^2, you would need a force of 294 Newtons. This is calculated using Newton's second law, F = m*a, where F is the force, m is the mass of the object (70kg), and a is the acceleration (4.2 m/s^2).
The momentum of a 70kg runner can be calculated by multiplying the mass of the runner (70kg) by the velocity of the runner. Without the velocity, we cannot determine the momentum.
The impact force of a 70kg man falling 0.85 meters can be calculated using the formula F=mgd, where F is the force, m is the mass, g is the acceleration due to gravity (9.8 m/s^2), and d is the distance fallen. Plugging in the values, the impact force would be approximately 576.5 Newtons.
F=ma=70x9.8=686N
The work done by a 70kg person climbing a ladder depends on the height of the ladder, but can be calculated using the formula work = force x distance. The force is the person's weight (70kg x 9.8m/s^2) and the distance is the height of the ladder.
No, the force of gravity between the Earth and a 70kg person is the same, according to Newton's third law of motion. The force exerted by the person on the Earth is equal in magnitude to the force exerted by the Earth on the person.
The force exerted would be equivalent to the astronaut's mass multiplied by the acceleration due to gravity. Therefore, the force would be 70kg * 19m/s^2, which equals 1330 N.
70kg
To accelerate a 70kg object at a rate of 4.2 m/s^2, you would need a force of 294 Newtons. This is calculated using Newton's second law, F = m*a, where F is the force, m is the mass of the object (70kg), and a is the acceleration (4.2 m/s^2).
The momentum of a 70kg runner can be calculated by multiplying the mass of the runner (70kg) by the velocity of the runner. Without the velocity, we cannot determine the momentum.
70kg
A person who weighs 70kg would weigh 154 pounds approximately.
70kg
70kg on the charts