Gravith pulls it down; table pushes it up.
The main force acting on a frictionless air puck moving in a straight line across a table is inertia, which keeps the puck in motion. Additionally, there may be forces like gravity and normal force acting on the puck, but these forces do not affect its horizontal motion since the table is assumed to be horizontal.
In a frictionless pulley system with two masses, the overall dynamics are affected by the equal and opposite forces acting on the masses. The system experiences balanced forces, resulting in the masses moving at the same speed in opposite directions. This leads to a constant tension in the rope and no acceleration of the masses.
When the forces acting on an object are balanced, the object will remain at rest or continue to move at a constant velocity in a straight line. This is known as equilibrium.
Acceleration values can vary widely depending on the situation. In scenarios with constant acceleration, such as free fall or motion on a frictionless surface, the values will be relatively constant. However, in real-world scenarios with changing forces or friction, acceleration values can vary significantly.
No. An unbalanced force causes motion, but balanced forces keep a body in motion in a straight line at constant velocity, or at rest at constant 0 velocity.
The main force acting on a frictionless air puck moving in a straight line across a table is inertia, which keeps the puck in motion. Additionally, there may be forces like gravity and normal force acting on the puck, but these forces do not affect its horizontal motion since the table is assumed to be horizontal.
It will have zero force BUT, it WILL have a constant velocity
In a frictionless pulley system with two masses, the overall dynamics are affected by the equal and opposite forces acting on the masses. The system experiences balanced forces, resulting in the masses moving at the same speed in opposite directions. This leads to a constant tension in the rope and no acceleration of the masses.
When the forces acting on an object are balanced, the object will remain at rest or continue to move at a constant velocity in a straight line. This is known as equilibrium.
An object on which there are no forces acting continues moving in a straight line at constant speed. The forces on a baseball are gravity and air resistance. If gravity and air resistance didn't exist, then the ball would keep traveling in a straight line and at a constant speed away from your hand. It would NOT go into orbit around the Earth, since gravity is responsible for orbits. It would just carry on in a straight line, out of the galaxy and across the universe.
It's not necessary to specify that the object is moving at a constant speed. Any object with no outside forces acting on it does that. It also continues moving in a straight line.
Acceleration values can vary widely depending on the situation. In scenarios with constant acceleration, such as free fall or motion on a frictionless surface, the values will be relatively constant. However, in real-world scenarios with changing forces or friction, acceleration values can vary significantly.
No. An unbalanced force causes motion, but balanced forces keep a body in motion in a straight line at constant velocity, or at rest at constant 0 velocity.
If the forces acting on an object are balanced and the object is moving at a constant speed, the object will continue to move at that constant speed in a straight line. There will be no change in the object's velocity or direction of motion.
When an object is moving at a constant velocity, the forces acting on it are balanced. This means that the net force on the object is zero, which allows it to continue moving at a constant speed in a straight line. The forces acting on the object may include friction, air resistance, and any applied forces.
When an object is moving in a straight line at constant speed, the forward force (such as thrust or propulsion) is equal to the backward force (such as friction or air resistance) acting on the object. This equilibrium of forces allows the object to maintain a constant speed without accelerating or decelerating.
it moves with uniform velocity ... constant speed in a straight line