The object's height and gravitational potential energy both increase.
When an object is pushed up an inclined plane, the potential energy of the object is increased while its kinetic energy decreases. The mechanical energy is transformed from kinetic energy to potential energy as the object gains height.
When an object is pushed up an inclined plane, the energy transformation that takes place is primarily from mechanical energy (kinetic and potential) to gravitational potential energy. The work done against gravity causes an increase in the object's potential energy as it is raised to a higher position on the inclined plane.
When things are pushed or pulled, their potential energy can change depending on the direction of the force applied. For example, pushing an object upwards against gravity will increase its gravitational potential energy, while pulling an object downwards will decrease it. The amount of potential energy change depends on the displacement of the object and the strength of the force applied.
When an object is pushed out of the page, it moves away from you. When it is pushed into the page, it moves towards you.
The pen was pushed by an external force, such as someone's hand or another object, which caused it to move. When a force is applied to an object, it can cause the object to accelerate and change its position.
When an object is pushed up an inclined plane, the potential energy of the object is increased while its kinetic energy decreases. The mechanical energy is transformed from kinetic energy to potential energy as the object gains height.
When an object is pushed up an inclined plane, the energy transformation that takes place is primarily from mechanical energy (kinetic and potential) to gravitational potential energy. The work done against gravity causes an increase in the object's potential energy as it is raised to a higher position on the inclined plane.
When things are pushed or pulled, their potential energy can change depending on the direction of the force applied. For example, pushing an object upwards against gravity will increase its gravitational potential energy, while pulling an object downwards will decrease it. The amount of potential energy change depends on the displacement of the object and the strength of the force applied.
When an object is pushed out of the page, it moves away from you. When it is pushed into the page, it moves towards you.
When a moving object is pushed in the direction of its motion the speed of the object increases
When a moving object is pushed in the direction of its motion the speed of the object increases
The pen was pushed by an external force, such as someone's hand or another object, which caused it to move. When a force is applied to an object, it can cause the object to accelerate and change its position.
The amount of fluid pushed aside by an object is called the displacement of the fluid. It is equal to the volume of the object when it is immersed in the fluid.
The term for the force exerted by an object when it is pushed by another object is "contact force" or "applied force." This force occurs when one object comes into direct contact with another object and pushes or pulls it.
An object in space won't float off in any direction unless it is pushed. When it is it will go in the direction it is pushed and continue until it is either pushed again or bumps into something.
Objects can be both pushed and pulled. When an object moves in a direction away from the force applied, it is considered to have been pushed. Conversely, when an object moves in the direction of the force applied, it is considered to have been pulled.
In general, as objects get larger, mass increases faster than height, because height is a linear, or one dimensional measurement, whereas mass is related to volume, and volume would as a general rule be proportional to the cube of the height. I will add that your question is rather vague. A person who is getting fat, for example, could double in mass without any change in height. An empty box could have something put inside it that would cause it to double in mass without any increase in height. There are many different possible situations involving increased mass, which would have a variety of effects on height.