That depends on where the axis of rotation is.
In the context of physics, when the tangential force acting on an object is almost horizontal, it means that the force is predominantly acting parallel to the surface of the object. This scenario often occurs when an object is moving along a horizontal surface and experiences frictional forces that oppose its motion. The horizontal component of the force is crucial for determining the object's acceleration and frictional interactions.
A force directed parallel to the surface is called a tangential force or a shear force. This type of force acts parallel to the surface of an object, causing it to slide or deform.
NO. not at all b/c torque is directly related to force
To find the net torque acting on an object, you can calculate the torque produced by each individual force acting on the object and then add them up. Torque is calculated by multiplying the force applied to an object by the distance from the point of rotation. The net torque is the sum of all the torques acting on the object.
To calculate the net torque acting on an object, you multiply the force applied to the object by the distance from the point of rotation. The formula is: Net Torque Force x Distance.
centrifugal force,gravitational force,gyroscopic effects,tangential forces, torque,shear forces
It rotates the rotor. Torque is produced by the magnetic force on the current induced in the squirrel cage. This magnetic force acts as torque on the rotor as a tangential force that makes it spin.
In the context of physics, when the tangential force acting on an object is almost horizontal, it means that the force is predominantly acting parallel to the surface of the object. This scenario often occurs when an object is moving along a horizontal surface and experiences frictional forces that oppose its motion. The horizontal component of the force is crucial for determining the object's acceleration and frictional interactions.
A force directed parallel to the surface is called a tangential force or a shear force. This type of force acts parallel to the surface of an object, causing it to slide or deform.
NO. not at all b/c torque is directly related to force
To find the net torque acting on an object, you can calculate the torque produced by each individual force acting on the object and then add them up. Torque is calculated by multiplying the force applied to an object by the distance from the point of rotation. The net torque is the sum of all the torques acting on the object.
To calculate the net torque acting on an object, you multiply the force applied to the object by the distance from the point of rotation. The formula is: Net Torque Force x Distance.
The force acting perpendicular to a surface area is called normal force. It is the force that a surface exerts on an object placed on it, counteracting the force of gravity acting on the object.
The force acting on a flywheel is typically the torque applied to it by an external source, such as an engine or motor. This torque causes the flywheel to rotate, storing kinetic energy in its spinning motion. The force required to accelerate or decelerate the flywheel is dependent on its mass and angular acceleration.
Simply pressure is the force per unit area. So Pressure is directly proportional to the force applied. Hence by increasing the force we can increase the pressure.
If the bar magnet turned then there was a torque acting upon it. Torque is defined as a turning force or moment.
The torque acting on the loop in this scenario is the rotational force that causes the loop to rotate around its axis.