Weight = Mass x Gravity
So find out the gravity on the moon then times it by 1 and compare it to the same but times 2 instead.
PS Weight is measured in Newtons and Mass is in Kilograms, very important.
The distribution of mass within the object can affect its inertia. An object with the mass distributed further from its axis of rotation will have higher inertia compared to an object with the same mass but a more compact distribution. Additionally, the shape and size of the object can also impact its inertia.
Inertia is directly proportional to mass. The greater the mass of an object, the greater its inertia. This means that a heavier object requires more force to change its state of motion compared to a lighter object due to its larger inertia.
An object with a higher mass would have more inertia than a 5kg object. Inertia is directly related to an object's mass - the greater the mass, the greater the inertia. So, any object that weighs more than 5kg would have more inertia.
Inertia is directly related to an object's mass. The more mass an object has, the more inertia it will have. This means that objects with more mass require more force to accelerate or decelerate compared to objects with less mass.
inertia is the laziness of an object, or an objects resistance to change its state of motion, or how easy it is to start or stop an object. Mass is the measure of an object's inertia. Therefore with more mass, an object has more inertia.
The distribution of mass within the object can affect its inertia. An object with the mass distributed further from its axis of rotation will have higher inertia compared to an object with the same mass but a more compact distribution. Additionally, the shape and size of the object can also impact its inertia.
Inertia is directly proportional to mass. The greater the mass of an object, the greater its inertia. This means that a heavier object requires more force to change its state of motion compared to a lighter object due to its larger inertia.
An object with a higher mass would have more inertia than a 5kg object. Inertia is directly related to an object's mass - the greater the mass, the greater the inertia. So, any object that weighs more than 5kg would have more inertia.
Inertia is directly related to an object's mass. The more mass an object has, the more inertia it will have. This means that objects with more mass require more force to accelerate or decelerate compared to objects with less mass.
inertia is the laziness of an object, or an objects resistance to change its state of motion, or how easy it is to start or stop an object. Mass is the measure of an object's inertia. Therefore with more mass, an object has more inertia.
The smaller the mass of an object, the lower its inertia. Inertia is the resistance of an object to changes in its state of motion, so objects with less mass require less force to accelerate or decelerate compared to objects with more mass.
A hammer would hit the ground first because a hammer is heavier
Anything that has mass has inertia.
The mass of the object and the velocity of the object.
A truck is heavier, has more mass. So at the same speed, the more massive object has more inertia. A scientific word for inertia is Momentum, defined as mass times speed, and is equal to force times time. So a 1 kilogram mass operated on by a 1 Newton force for 1 second would move at 1 metre per second and would have a momentum of 1 kg-N.
Mass and inertia are directly related: the greater the mass of an object, the greater its inertia. Inertia is the tendency of an object to resist changes in its state of motion, so a more massive object will require more force to accelerate or decelerate compared to a less massive object.
Yes, objects with more mass have more inertia. Inertia is the resistance of an object to changes in its state of motion, and it is directly proportional to the mass of the object. Objects with greater mass require more force to change their motion compared to objects with lesser mass.