It depends on the object's mass.
An objects mass is a measure of its inertia.
No, two objects with the same volume may not have the same inertia. Inertia depends on the mass and distribution of mass within an object, not just its volume. Objects with different densities or shapes can have different inertial properties even if they have the same volume.
An objects mass is a direct measurement of its inertia.
The amount of inertia of an object depends on its mass. Objects with greater mass have more inertia, making them harder to accelerate or decelerate.
The amount of inertia of a body is determined by its mass - the greater the mass, the greater the inertia. Inertia also depends on the distribution of mass within the body - objects with more of their mass concentrated towards the outer edges have greater inertia. Additionally, the shape and size of an object can affect its inertia - larger and more compact objects tend to have more inertia.
Not necessarily. Inertia depends on both an object's mass and how that mass is distributed. Two objects of the same size but with different densities or internal structures can have different inertias.
There is no "A inertia." Its just inertia and inertia is the measure of an objects to stay at rest or to keep moving.
Objects with large mass have a lot of inertia. This means that they resist changes in their state of motion, making it harder to accelerate, decelerate, or change direction. Inertia is a property of matter that depends on the mass of an object.
Inertia is directly proportional to the mass of a body. The greater the mass of an object, the more inertia it has. This means that objects with larger mass require more force to change their state of motion.
The relationship between the different inertia of objects and their ability to resist changes in motion is that objects with greater inertia are more resistant to changes in motion. Inertia is the tendency of an object to stay at rest or in motion unless acted upon by an external force. Objects with higher inertia require more force to change their motion compared to objects with lower inertia.
yes
Mass is the measure of inertia and if you change the mass the inertia will change.