According to the classic physics, no, the mass remains the same.
If the mass changes then the amount of material in the object changes. This will also affect the moment of inertia and the gravitational effect of the object.
The mass of an object doesn't depend on the gravitational force on the object.
If the mass changes then the amount of material in the object changes. This will also affect the moment of inertia and the gravitational effect of the object.
Mass is an intrinsic property of an object that represents the amount of matter it contains. When an object is moved, its mass does not change because mass is not dependent on the position or location of the object in space. The mass of an object remains the same regardless of its position, as long as no matter is added to or removed from the object.
When a body is moved from sea level to the top of a mountain, its weight changes but its mass remains constant. Weight is the force of gravity acting on an object, so as the body moves to higher altitudes where gravity is weaker, its weight decreases. Mass, on the other hand, is the amount of matter in an object and doesn't change with location.
Changing the mass or volume of an object changes its density. Density is defined as the mass of an object divided by its volume, so if either the mass or volume changes, the density will change accordingly.
The mass of an object remains the same when it changes state, such as from solid to liquid or gas. Mass is a measure of the amount of matter in an object, and this does not change during a change in state.
Yes, the velocity of an object is a measure of its speed and direction of motion at a given time. Changes in velocity indicate that an object has moved and is experiencing acceleration or deceleration. By tracking changes in velocity over time, you can determine if an object has moved and how quickly it is moving.
No, the mass of an object remains the same regardless of its location. Mass is a measure of the amount of matter in an object, and it is constant regardless of the gravitational field it is in. However, the weight of an object will change because weight depends on the gravitational force acting on the object.
mass
Mass has more effect on an object because it determines the amount of inertia an object has, resisting changes in its motion. Speed, on the other hand, affects how quickly an object can change its position but does not directly influence its resistance to being moved or stopped. Therefore, an object with more mass will be more difficult to accelerate or decelerate compared to an object with higher speed.
A simple machine is mechanical device that is non-powered. It changes the direction of a force. Some examples of a simple machine include a wheel and axle, a wedge, and a pulley.