You call that the "weight" of the object.
Weight is the measurement of gravitational force on an object, relevant to Earth.
The magnitude of force is the measurement of the strength or intensity of a force. It is represented by a numerical value and a unit of measurement (e.g. Newtons). It describes how strong or powerful a force is acting on an object.
According to the formula of work, W=F.d , i.e. Work=Force acting on an object . Displacement of object under the influence of force Therefore, the value of displacement covered by an object under action of the acting force is very important in calculating work done on an object.
The unit of measurement for force on an object is the newton (N).
No, the net force acting on an object cannot be negative.
The upward force acting on an object is the normal force. It is equal in magnitude, but opposite in direction to the object's weight.
If the force of gravity increases, the weight of an object will increase because weight is directly proportional to gravity. The mass of the object will remain the same, but the force of gravity acting on it will be stronger, resulting in a higher weight measurement.
The overall force acting on an object is the vector sum of all individual forces acting on the object. It takes into account both the magnitude and direction of each force acting on the object. This overall force determines the object's acceleration according to Newton's second law of motion.
Yes, an object can have a negative net force acting on it, which means that the forces acting on the object are in opposite directions and the overall effect is a force in the negative direction.
The force of gravity acting on an object is directly proportional to its mass. This means that the larger the object, the greater the force of gravity acting upon it.
To determine the net force acting on an object, you can use the formula: Net Force Sum of all forces acting on the object. Add up all the forces acting in the same direction and subtract the forces acting in the opposite direction. This will give you the net force acting on the object.
Net force determines the motion of the object. If the net force acting on an object is not zero, the object will accelerate in the direction of the net force.