Without context, one can only assume that gravity is exerting a force on any object that is moving downward. (Gravity is still exerting a force on a coin that is not moving, for example one stationary on a tabletop, but we don't spend a lot of time worrying about it.)
When a projectile is moving up, gravity is pulling it downward. Gravity is a force that acts on all objects, causing them to accelerate towards the center of the earth.
An example of downward force of air against a moving object is drag. Drag is the resistance force exerted by air on an object moving through it in the opposite direction. It acts to slow down the object's motion by creating a counterforce against its movement.
The force that acts in the opposite direction of lift is weight, which is the force exerted by gravity pulling the object downward. It acts vertically downward from the center of mass of the object.
The forces acting on a hanging pen are gravitational force pulling it downward and tension force in the string supporting it. The gravitational force acts vertically downward on the pen due to Earth's gravity, while the tension force in the string acts vertically upward to counterbalance the weight of the pen.
No, water resistance is a force that opposes the motion of an object moving through water. It acts in the opposite direction to the object's motion, slowing it down.
When a projectile is moving up, gravity is pulling it downward. Gravity is a force that acts on all objects, causing them to accelerate towards the center of the earth.
An example of downward force of air against a moving object is drag. Drag is the resistance force exerted by air on an object moving through it in the opposite direction. It acts to slow down the object's motion by creating a counterforce against its movement.
The force that acts in the opposite direction of lift is weight, which is the force exerted by gravity pulling the object downward. It acts vertically downward from the center of mass of the object.
The forces acting on a hanging pen are gravitational force pulling it downward and tension force in the string supporting it. The gravitational force acts vertically downward on the pen due to Earth's gravity, while the tension force in the string acts vertically upward to counterbalance the weight of the pen.
No, water resistance is a force that opposes the motion of an object moving through water. It acts in the opposite direction to the object's motion, slowing it down.
Electric force is the force between charged particles, while magnetic force is the force between magnetic poles or moving charges. Electric force acts on stationary charges, while magnetic force acts on moving charges. Both forces are fundamental in nature and play important roles in the interactions of particles and objects.
The downward force acting on a load is typically the force of gravity. This force is directed towards the center of the Earth and is constant as long as the mass of the load remains the same.
The downward force acting on the load is due to gravity. This force is equal in magnitude to the weight of the load and is responsible for pulling the load downward.
The force that acts against upthrust is gravity. Gravity pulls objects downward, opposing the buoyant force provided by upthrust.
Gravity is the force that acts vertically downward towards the center of the Earth, pulling objects towards it. This force is responsible for objects falling to the ground when released from a height.
The downward force created by a mass is equal to the mass multiplied by the acceleration due to gravity. This force is known as weight and it acts in the opposite direction of the gravitational pull.
Yes, it is possible.Think back. Did you ever hold a book in your hand ?The force of gravity acts downward on the book, while the force of your hand acts upward on it.That's why the force of gravity doesn't pull the book to the floor.