Inertia is the tendency of an object to resist changes in its velocity. An object at rest will stay at rest, and an object in motion will continue moving at a constant velocity unless acted upon by an external force. It is described by Newton's First Law of Motion.
Inertia, inertial mass, or mass. All the same.
Inertia is the term used to describe a body's resistance to a change in motion. It is a property of matter that causes an object to remain in its current state of motion unless acted upon by an external force.
Moment of inertia and rotational inertia are essentially the same concept, referring to an object's resistance to changes in its rotational motion. Moment of inertia is the term commonly used in physics, while rotational inertia is a more general term that can also be used. In the context of rotational motion, both terms describe how the mass distribution of an object affects its ability to rotate. The moment of inertia or rotational inertia of an object depends on its mass and how that mass is distributed around its axis of rotation. In summary, moment of inertia and rotational inertia are interchangeable terms that describe the same physical property of an object in rotational motion.
Inertia. The larger the mass of the body the larger its inertia, in other words a heavy object would require a large driving force to make it initially move and a large force as well to make it stop moving or change direction.
there is no such thing as NON-inertia. if something is moving it'll keep moving until something stops it. and if something is still it'll stay still until something makes it move. everything living or non living has inertia.
Type your answer here... A. inertia
Inertia, inertial mass, or mass. All the same.
Inertia
inertia.
Inertia is the term used to describe a body's resistance to a change in motion. It is a property of matter that causes an object to remain in its current state of motion unless acted upon by an external force.
Moment of inertia and rotational inertia are essentially the same concept, referring to an object's resistance to changes in its rotational motion. Moment of inertia is the term commonly used in physics, while rotational inertia is a more general term that can also be used. In the context of rotational motion, both terms describe how the mass distribution of an object affects its ability to rotate. The moment of inertia or rotational inertia of an object depends on its mass and how that mass is distributed around its axis of rotation. In summary, moment of inertia and rotational inertia are interchangeable terms that describe the same physical property of an object in rotational motion.
its inertia, for penn foster answer A.. :)
Inertia. The larger the mass of the body the larger its inertia, in other words a heavy object would require a large driving force to make it initially move and a large force as well to make it stop moving or change direction.
there is no such thing as NON-inertia. if something is moving it'll keep moving until something stops it. and if something is still it'll stay still until something makes it move. everything living or non living has inertia.
Galileo was the first to describe the concept of inertia in his work, but it was Newton who formally defined it as one of his three laws of motion in his Principia Mathematica. Both played crucial roles in developing our understanding of inertia.
Inertia is an idea, or the resistance of any physical object to a change in its state of motion. It is represented numerically by an object's mass. The principle of inertia is one of the fundamental principles of classical physics which are used to describe the motion of matter and how it is affected by applied forces. It does not have a picture.
Rotational inertia and moment of inertia are terms used interchangeably in physics to describe an object's resistance to changes in its rotational motion. Rotational inertia specifically refers to an object's resistance to changes in its rotational speed, while moment of inertia refers to an object's resistance to changes in its rotational motion due to its mass distribution. In essence, moment of inertia is a more specific term that quantifies rotational inertia. Both concepts are crucial in understanding how objects move and rotate in the context of physics.