resultant or net force
The term that describes the vector sum of all forces acting on an object is "net force." Net force takes into account both the magnitude and direction of all individual forces acting on the object.
The term that describes the vector sum of the forces acting on a body is "net force." It represents the combined effect of all the individual forces acting on the object and determines the object's acceleration based on Newton's second law of motion.
If you add up all the forces acting on an object, they are balanced if they equal zero. (They cancel each other out). If the forces acting on a object are balanced, then the acceleration of that object is zero. It may still be moving, but it is not accelerating. An object that is not accelerating, (the sum of the forces acting on it is zero), is in equilibrium.
that is called the net force; it is a vector sum of all the forces acting on it
The total of all the forces acting on an object is called either the metabolism respiration enzymes or photosynthesis
I'd call it the resultant, but "net force" is a good name too.
The net force acting on the object.
Equilibrium is a state in which all forces acting on an object are in balance.
The term that means all of the forces together on an object is "net force." Net force is the total combination of all forces acting on an object, taking into account both their magnitude and direction. It determines the overall motion of the object according to Newton's laws of motion.
The term "net" represents the sum of all external forces acting on an object. In the equation Fnet = MA, Fnet is the net force acting on the object, M is the object's mass, and A is its acceleration. The value of Fnet is crucial for determining the resultant motion of the object under the influence of all the forces acting on it.
The overall force acting on an object when all forces are combined is known as the net force. It is the vector sum of all the individual forces acting on the object. The net force determines the acceleration of the object according to Newton's second law.
Equilibrium is not a force, it is a state in which all the forces acting on an object are balanced, resulting in no change in its motion. When an object is in equilibrium, the net force acting on it is zero.