Gravity is the force of attraction between matter. When an object exerts gravitational force on another object, the other object also 'pulls' the first object. These force vectors are equal and opposite.
In the example of a person being pulled towards a planet, the planet is also being pulled towards the person with the same force between them. The planet just has a lot more mass and accordingly accelerates a great deal less.
There is no force "pulling up", but the strength of your legs are pushing up. (the equal and opposite force required for stability).
The force of gravity pulling down on an object depends on its mass and the acceleration due to gravity (9.81 m/s² on Earth). The force can be calculated using the formula F = m * g, where F is the force of gravity, m is the mass of the object, and g is the acceleration due to gravity.
Weight, of the object is on dying bannanas.... quickly dying bannanas happy x-mas and!@#!@$!$#$#@4 you
An object falls down due to the force of gravity pulling it towards the center of the Earth. Gravity is a force that exists between two masses, in this case, the object and the Earth. As long as there is no other force counteracting gravity, the object will continue to fall downward.
The forces of gravity in both directions between the Earth and an object on it are equal,and act in opposite directions. The force from the object toward the Earth is what wecall the object's "weight" on Earth. The other force is so universally ignored that it isalso almost universally misunderstood. It acts in the direction from the Earth towardthe object, it is quite literally the Earth's weight on the object, and it is exactly equalto the other one.
The force pulling the anvil down would be gravity.
yes
The force of gravity pulling down on an object depends on its mass and the acceleration due to gravity (9.81 m/s² on Earth). The force can be calculated using the formula F = m * g, where F is the force of gravity, m is the mass of the object, and g is the acceleration due to gravity.
Weight, of the object is on dying bannanas.... quickly dying bannanas happy x-mas and!@#!@$!$#$#@4 you
bad girlfriend...or gravity
When you weigh yourself, the force of gravity is pulling you down to the scale. Therefore weight is determined by gravity.
Gravitational Potential Energy.
An object falls down due to the force of gravity pulling it towards the center of the Earth. Gravity is a force that exists between two masses, in this case, the object and the Earth. As long as there is no other force counteracting gravity, the object will continue to fall downward.
The forces of gravity in both directions between the Earth and an object on it are equal,and act in opposite directions. The force from the object toward the Earth is what wecall the object's "weight" on Earth. The other force is so universally ignored that it isalso almost universally misunderstood. It acts in the direction from the Earth towardthe object, it is quite literally the Earth's weight on the object, and it is exactly equalto the other one.
The force pulling the anvil down would be gravity.
The weight of an object is the amount of force gravity is pulling it down with. This force can be calculated using the equation W = m*g, where W is the weight, m is the mass of the object, and g is the acceleration due to gravity (approximately 9.81 m/s^2 on Earth).
As an object falls, gravity acts as an external force pulling it downward. This force causes the object to accelerate as it falls towards the Earth's surface. The object's speed increases until it reaches terminal velocity, when the gravitational force pulling it down is balanced by the air resistance pushing against it.
The main force that causes an object to roll down a ramp is gravity. Gravity is pulling the object downward, which causes it to accelerate and roll down the incline. Friction between the object and the ramp also plays a role in causing the object to roll.