1600
use the formula N=mg+F(sin theta). plug in the givens and solve.
Graduations on the horizontal circular disc of a Universal force table apparatus help measure angles accurately. By reading the angle where the force is applied, one can determine the magnitude and direction of the force being applied to the system being studied. This allows for precise calculations and analysis of forces in different experimental setups.
When light rays hit a mirror and are reflected back at the same angle at which they hit the mirror, the law of reflection is being applied. This law states that the angle of incidence is equal to the angle of reflection.
They are lines that are not horizontal nor vertical.
Shearing affects the rocks in the earth's crust when the rocks are being pulled apart in opposite horizontal directions
The net force is calculated by adding up all the forces acting on the object. In this case, the forces being applied to the left (11N and 12N) are greater than the force being applied to the right (3N). Therefore, the net force would be 11N + 12N - 3N = 20N to the left.
A motion thrown at an angle is called projectile motion. It involves an object being launched at an angle relative to the ground and following a curved path due to the combination of its horizontal and vertical velocities.
they don't they are only pictured like that because it is hard to picture them all on a different plane.
Frictional force and tension in a horizontal rope are two common forces that act mostly in a horizontal direction. These forces are important in scenarios involving objects moving along a surface or being pulled horizontally.
The plane of application refers to the surface on which a force is acting, such as horizontal or vertical. The direction of force describes the path along which the force is applied, such as pushing or pulling. In essence, the plane of application identifies where the force is being applied, while the direction of force indicates how the force is being applied.
To calculate the force needed to pull down 100 lbs using a rope, you would need to know the angle at which the force is being applied and any other factors that may affect the force required. In a simplistic scenario with no angle or other factors, you would need to exert at least 100 lbs of force to counteract the weight of the object being pulled down.
The orbital speed of the planets prevent this. The planet's ARE all failing towards the Sun but their horizontal speed means they always miss.