Force during impact depends on deceleration which in turn depends on elasticity of the surface you would jump on. It's easier to speak of impact using energy and velocity - in example you provided, energy of impact would be about 2943 J (compare with muzzle energy of rifle bullet of 1500 J) and velocity at which you hit ground is 8.86 m/s or about 32 km/h.
The weight of a 75 kg person on Earth is approximately 735 newtons. This is calculated by multiplying the mass of the person (75 kg) by the acceleration due to gravity on Earth (9.81 m/s^2).
A person who weighs 75 kg is heavier than a person who weighs 110 lb. 75 kg is equivalent to approximately 165 lb.
The scale will read 75 kg, as the person's weight does not change when the elevator is at rest.
The normal force the floor exerts on the crate is equal in magnitude and opposite in direction to the weight of both the crate and the person standing on it. Therefore, the normal force is equal to the sum of the weight of the crate (33 kg * 9.8 m/s^2) and the weight of the person (58 kg * 9.8 m/s^2). Calculate the total weight and that will give you the magnitude of the normal force exerted by the floor, which is 33 kg * 9.8 m/s^2 + 58 kg * 9.8 m/s^2.
The weight of a man with a mass of 75 kg can be calculated using the formula Weight = mass x acceleration due to gravity. The acceleration due to gravity is approximately 9.81 m/s^2. Therefore, the weight of a man with a mass of 75 kg is around 735.75 N.
The weight of a 75 kg person on Earth is approximately 735 newtons. This is calculated by multiplying the mass of the person (75 kg) by the acceleration due to gravity on Earth (9.81 m/s^2).
weight = mass x gravity weight = 75kg x 1.6 weight = 120N
Its weight depends on the force of gravity acting on the mass. In outer space, for example, its weight will be 0.
A person who weighs 75 kg is heavier than a person who weighs 110 lb. 75 kg is equivalent to approximately 165 lb.
On Earth, the person weighs 165.3 pounds. On the Moon, he would weigh 27.3 pounds.
75 kg
75 kg is 165.347 pounds.
To calculate his weight on Mars, you would use the formula W = m * g, where W is the weight, m is the mass of the person, and g is the gravitational force on Mars (4 N/kg). If his mass is, for example, 70 kg, then his weight on Mars would be 280 N (70 kg * 4 N/kg).
The scale will read 75 kg, as the person's weight does not change when the elevator is at rest.
The normal force the floor exerts on the crate is equal in magnitude and opposite in direction to the weight of both the crate and the person standing on it. Therefore, the normal force is equal to the sum of the weight of the crate (33 kg * 9.8 m/s^2) and the weight of the person (58 kg * 9.8 m/s^2). Calculate the total weight and that will give you the magnitude of the normal force exerted by the floor, which is 33 kg * 9.8 m/s^2 + 58 kg * 9.8 m/s^2.
Answer #1:1 kg =2.2 pounds75/2.2 = 34.09 kg===================================Answer #2:"Pound" is a unit of weight. "Kg" is a unit of mass. They don't direcly convert,and their relationship depends on where the mass happens to be located atthe time.-- On Earth, 75 pounds is the weight of about 34.019 kg of mass.-- On the moon, 75 pounds is the weight of about 205.563 kg of mass.-- On Mars, 75 pounds is the weight of about 89.903 kg of mass.-- On Jupiter, only about 13.458 kg of mass weighs 75 pounds.
75 kg or 165lbs