momentum is mass x velocity and velocity is a vector and mass is scalar but scalar times vector = vector so momentum remains a vector
Yes. It is considered a vector.Yes. It is considered a vector.Yes. It is considered a vector.Yes. It is considered a vector.
No, momentum conservation is a fundamental principle in physics and it would still hold even if momentum were not a vector quantity. Momentum conservation simply states that the total momentum in a system remains constant unless acted upon by an external force. Whether momentum is treated as a vector or scalar quantity does not change this principle.
Momentum is not considered a force because it is a vector quantity that describes an object's motion, while force is a vector quantity that describes the interaction between objects that causes a change in motion. Momentum does not directly cause motion to change, rather it reflects the amount of motion an object has.
Momentum is a vector quantity. We know that momentum is the product of mass and velocity, and velocity has direction. That makes velocity a vector quantity. And the product of a scalar quantity and a vector quantity is a vector quantity.
The moment of linear momentum is called angular momentum. or The vector product of position vector and linear momentum is called angular momentum.
Yes. It is considered a vector.Yes. It is considered a vector.Yes. It is considered a vector.Yes. It is considered a vector.
No, momentum conservation is a fundamental principle in physics and it would still hold even if momentum were not a vector quantity. Momentum conservation simply states that the total momentum in a system remains constant unless acted upon by an external force. Whether momentum is treated as a vector or scalar quantity does not change this principle.
yes momentum is vector
Momentum is a vector quantity because the definition of momentum is that it is an object's mass multiplied by velocity. Velocity is a vector quantity that has direction and the mass is scalar. When you multiply a vector by a scalar, it will result in a vector quantity.
The energy vector, cmV = cP. The energy vector is parallel to the Momentum vector.
Momentum is not considered a force because it is a vector quantity that describes an object's motion, while force is a vector quantity that describes the interaction between objects that causes a change in motion. Momentum does not directly cause motion to change, rather it reflects the amount of motion an object has.
yes, momentum is a vector quantity.
Momentum is a vector quantity. We know that momentum is the product of mass and velocity, and velocity has direction. That makes velocity a vector quantity. And the product of a scalar quantity and a vector quantity is a vector quantity.
The moment of linear momentum is called angular momentum. or The vector product of position vector and linear momentum is called angular momentum.
Momentum is a vector, the product of a scalar (mass) & a vector (velocity). As such, its direction is whatever direction the velocity vector has.
Yes, momentum is a vector quantity because it has both magnitude and direction. It is defined as the product of an object's mass and its velocity, and the direction of momentum is the same as the direction of the object's velocity.
That's the object's linear momentum.