well weight depends on mass and gravity so gravity depends on mass.
e.g weight=mass X gravity
To convert mass to weight, you need to multiply the mass by the acceleration due to gravity. The formula is weight = mass x gravity. Gravity is typically 9.81 m/s^2 on Earth.
No. Except for insignificant effects related to Special Relativity, the mass remains constant. The weight, on the other hand, changes. Weight is calcualted as: weight = mass x gravity Where "gravity" is the acceleration due to gravity.
To calculate weight from mass, you can use the formula Weight = Mass x Gravity, where Gravity is typically taken as 9.81 m/s² on Earth. This formula gives you the force exerted by gravity on an object, which is what we refer to as weight.
Mass is the amount of matter. Weight had to do with gravity. Weitht is the force of gravity on mass. Some times we use gravity to measure mass such as a spring scale. That does not mean that gravity and mass are the same thing.
In a gravity-less environment, an object would have no weight because there is no gravity pulling it down. Weight is the force of gravity acting on an object, so without gravity, there is no weight.
Mass and gravity
Gravity and Mass
Weight depends on gravity because it is the force with which gravity pulls on an object. Mass, on the other hand, is a measure of the amount of matter in an object and is the same regardless of the gravitational field it is in.
The weight of an object depends on its mass and the acceleration due to gravity. The weight of an object can be calculated using the equation: Weight = mass x acceleration due to gravity.
Density is not affected by gravity. Density is affected by mass and volume, such that density = mass/volume. Weight, but not mass, is affected by gravity. Weight and mass are not the same thing.
[ Mass ] is a property of the object, and doesn't depend on the presence or strength of gravity.[ Weight ] is the result of gravity, and changes depending on the local strength of gravity.
The mass of the object, the mass of the object that is attracting it and the distance between their centres of gravity.So your weight on the moon will depend on your mass, the moon's mass and the distance from your centre of gravity to the moon's.The mass of the object, the mass of the object that is attracting it and the distance between their centres of gravity.So your weight on the moon will depend on your mass, the moon's mass and the distance from your centre of gravity to the moon's.The mass of the object, the mass of the object that is attracting it and the distance between their centres of gravity.So your weight on the moon will depend on your mass, the moon's mass and the distance from your centre of gravity to the moon's.The mass of the object, the mass of the object that is attracting it and the distance between their centres of gravity.So your weight on the moon will depend on your mass, the moon's mass and the distance from your centre of gravity to the moon's.
Weight depends on an object's mass and the acceleration due to gravity.
The more mass an object has, the more gravity acts on it. Mass actually is known to affect weight because they both depend on each other. =============================== HONK! Beulah the Buzzer has an objection to raise. Mass does not depend on weight. "Weight" is the name we give to the gravitational force acting on a mass.
Sort of.Mass is an inherent property of matter.Weight is the measurement of the strength of the pull of a gravity field on a mass.Thus a 1 Kg mass will weigh 1Kg on Earth but only 1/3 Kg on the Moon where the Moons gravity is only 1/3 of that of Earth.Thus mass does relate to weight and as mass is a property of matter weight does depend on matter.
The mass of an object remains constant regardless of its location, as it is a measure of the amount of matter in the object. Weight, on the other hand, varies with the strength of the gravitational field at different locations. Weight is the force exerted on an object due to gravity and is given by the equation Weight = mass x gravity.
Weight is the force exerted on an object due to gravity, and it depends on the mass of the object and the strength of the gravitational field. Mass, on the other hand, is a measure of the amount of matter in an object and remains constant regardless of the gravitational field. So, weight changes with gravity, but mass does not.