Force and time. Since impules is defined by J = F * t
An impulse will be zero when the force acting on an object is zero or when the force is applied for a very short period of time. In other words, when the change in momentum of an object is zero, the impulse will also be zero.
The two factors that affect an object's kinetic energy are its mass and its velocity. Kinetic energy is directly proportional to both mass and velocity, meaning that an increase in either of these factors will result in an increase in the object's kinetic energy.
Media influence (e.g., idealized portrayals in advertising) and comparison to others are two factors that can affect body image. These factors can contribute to feelings of inadequacy or dissatisfaction with one's appearance.
Impulse is the product of force and time, causing a change in momentum. When a force is applied to an object for a period of time, it generates an impulse that changes the object's momentum. A larger impulse results in a greater change in momentum.
The two factors that affect potential energy are the mass of the object and its height above the ground. As an object's mass or height increases, its potential energy also increases.
What are the two factors that affect an objects kinetic energy
What are the two factors that affect an objects kinetic energy
What are the two factors that affect an objects kinetic energy
Two factors that affect a planets revolution are distance from the sun and size.
There are two factors that affect the gravitational attraction between two objects. The mass of each object and the distance between their centers of mass are the factors that affect the attraction.
There are primarily two factors that affect the temperature of a planet.
What is the answer
impulse= the change in momentum or force multiplied by time
An impulse will be zero when the force acting on an object is zero or when the force is applied for a very short period of time. In other words, when the change in momentum of an object is zero, the impulse will also be zero.
mass and distance ;)
Inertia
w= dt