I don't think any external force is in place, considering there is no gravity on the moon.
If balanced forces are acting on an object, the object will remain at rest or continue moving at a constant velocity. Even though there is no acceleration, it might still appear as if a net force is acting on the object due to external factors such as friction or air resistance.
When an object is subjected to external influences, the direction of the force acting on the object depends on the nature of the external influences. The force can be in any direction, depending on the specific circumstances of the situation.
friction
an external net force acting on it
Weight is considered an external force because it is the force exerted by gravity on an object due to its mass. Gravity is an external force acting on the object from the outside environment.
Force can slow down an object by acting in the opposite direction of the object's motion. This force reduces the object's speed by decreasing its momentum, causing it to decelerate. Friction, air resistance, or another external force can contribute to slowing down an object.
The two external forces are friction and air resistance. Friction is the force opposing motion when two surfaces are in contact, while air resistance is the force acting in the opposite direction to an object's motion as it moves through the air.
The object will slow down and eventually stop due to the force acting on it, changing its velocity to zero. The force may be friction, air resistance, or another external force opposing its motion.
The net external force formula is: Fnet ma, where Fnet is the net external force, m is the mass of the object, and a is the acceleration of the object.
an external net force acting on it
Uniform projectile motion is caused by the combination of an initial velocity and the force of gravity acting on the object. As long as there are no other external forces acting on the object, such as air resistance or friction, the object will follow a predictable parabolic path.
A bending force is an external force acting on an object that causes it to bend or deform. It is typically applied to an object from the outside to induce bending or flexing.