Gravity is a force between any two objects with mass why doesn't a person feel a gravitational force between him or herself and another person there are so many people we are actually balanced by all the different gravitational forces be gravitational forces of people is so small it is overshadowed by that of Earth see the two gravitational forces cancel each other out or d a person doesn't exert a gravitational force

6 answers

The reason a person doesn't feel a gravitational force between themselves and another person is because the gravitational force is extremely weak compared to other forces at work. The force of gravity between two objects depends on the mass of the objects and the distance between them. While we all have mass and attract each other gravitationally, the force is proportional to the product of the masses, which in the case of humans is very small.

Additionally, the gravitational force also depends on the distance between the objects. The closer the objects are, the stronger the gravitational force. However, humans are relatively close to the Earth compared to the distance between individuals, so the force of gravity between people is much smaller compared to the Earth's gravitational force.

Effectively, every object with mass attracts every other object with mass, but for everyday situations involving people, the gravitational force between individuals is so minuscule that it can be considered negligible.
Gravity is a force between any two objects with mass. Why doesn't a person feel a gravitational force between him/herself and another person? (1 point)
Responses

The gravitational forces of people is so small it is overshadowed by that of Earth.
The gravitational forces of people is so small it is overshadowed by that of Earth.

A person doesn't exert a gravitational force.
A person doesn't exert a gravitational force.

There are so many people we are actually balanced by all the different gravitational forces.
There are so many people we are actually balanced by all the different gravitational forces.

The two gravitational forces cancel each other out.
The two gravitational forces cancel each other out.
Four wrestlers step on a scale for a tournament. Wrestler A weighs in at 170 pounds; wrestler B weighs in at 168 pounds; wrestler C weighs in at 171 pounds; and wrestler D weighs in at 169 pounds. Which of these wrestlers experiences the greatest force due to gravity? (1 point)
Responses

Wrestler A
Wrestler A

Wrestler B
Wrestler B

Wrestler C
Wrestler C

Wrestler D
Wrestler D
All the wrestlers experience the same gravitational force because the force due to gravity depends on the mass of an object, not its weight. Since all wrestlers are on Earth and have the same mass, they will experience the same gravitational force.
Four wrestlers step on a scale for a tournament. Wrestler A weighs in at 170 pounds; wrestler B weighs in at 168 pounds; wrestler C weighs in at 171 pounds; and wrestler D weighs in at 169 pounds. Which of these wrestlers experiences the greatest force due to gravity? (1 point)
Responses

Wrestler A
Wrestler A

Wrestler B
Wrestler B

Wrestler C
Wrestler C

Wrestler D