"greater mass"
Yes, gravity is directly proportional to an object's mass. The greater the mass of an object, the greater the force of gravity it experiences.
When air resistance is greater than the force of gravity acting on an object, it will slow down the object's descent. This is because the air resistance force counteracts the force of gravity, reducing the acceleration of the object as it falls.
On every object on earth, earth exerts a force on it which is equal to the weight of object. When we throw a object it earth exerts force on it and it came downwards but if we throw it with escape velocity then it will not move downwards.
Mass is a measure of how much matter something has. Weight is the effect of gravity pulling on that mass. So an object that weighs 1kg on Earth would weigh less on the Moon which has less gravity even though the mass of the object is constant. The relationship is: Force of gravity on an object in a certain place = (object's mass) x (acceleration of gravity in that place) .
Any object with mass has gravity, no matter how small. However, the strength of the gravitational force depends on the mass of the object - the more massive the object, the stronger the gravitational force it produces.
Yes, gravity is directly proportional to an object's mass. The greater the mass of an object, the greater the force of gravity it experiences.
When air resistance is greater than the force of gravity acting on an object, it will slow down the object's descent. This is because the air resistance force counteracts the force of gravity, reducing the acceleration of the object as it falls.
On every object on earth, earth exerts a force on it which is equal to the weight of object. When we throw a object it earth exerts force on it and it came downwards but if we throw it with escape velocity then it will not move downwards.
The larger the mass of an object, the greater the force it will exert on other objects. But as the distance from that object becomes greater, the gravitational pull becomes smaller. For example, the sun has a larger mass than the earth, so gravity on the suns surface would be much greater than on earths surface. Also, as you get further and further away from the earth, the less you are influenced by its gravity.
Mass is a measure of how much matter something has. Weight is the effect of gravity pulling on that mass. So an object that weighs 1kg on Earth would weigh less on the Moon which has less gravity even though the mass of the object is constant. The relationship is: Force of gravity on an object in a certain place = (object's mass) x (acceleration of gravity in that place) .
The effect of surface area on gravity on Earth is minimal. Gravity primarily depends on the mass of the Earth and the distance between an object and the Earth's center. Changes in surface area would not significantly affect the gravitational pull experienced by objects on Earth.
simple, the larger the planet, the greater the force of gravity.
Any object with mass has gravity, no matter how small. However, the strength of the gravitational force depends on the mass of the object - the more massive the object, the stronger the gravitational force it produces.
When the buoyant force is greater than the force of gravity, an object will float or rise. This is because the buoyant force pushes upward on the object with a greater force than gravity pulling downward, resulting in a net upward force.
Yes, every celestial object has a gravity effect, to a greater or lesser degree than we experience here on Earth. The acceleration of gravity on Mars is 3.71 meters per second2 ... about 38% of what it is on Earth.
Gravity affects velocity by changing the acceleration of an object. As an object falls, gravity accelerates it, increasing its velocity. Without gravity, an object would move at a constant velocity.
weight is the effect of gravity acting on mass,the greater the mass the greater the effect on gravity will have on it therefore the greater the weight. eg. if the mass is 50kg and gravity is 10N the the weight is 500N,if the mass increases to 100kg the the weight would increase to 1000N