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  1. What is torque? Crudely speaking, torque is "twisting or turning ability" of a force that can: change the angular velocity of an object (i.e. speed up or slow down rotation) cause a twisting or bending distortion of an object. A force with a "line of action" that does not cross the axis of rotation results in torque. Note:

  2. Torque. Why is a door knob located as far as possible from the door hinge? When you want to push open a door, you apply a force. Where you apply the force and in what direction you push are also important.

  3. Describe how the magnitude of a torque depends on the magnitude of the lever arm and the angle the force vector makes with the lever arm. Determine the sign (positive or negative) of a torque using the right-hand rule. Calculate individual torques about a common axis and sum them to find the net torque.

  4. 14 Απρ 2021 · Introduction. Torque will be used to quantify forces applied to bodies which can rotate. Previously, in the particle model, it didn’t matter where on a body we applied a force. However, with rigid bodies, that is no longer true. (Things are no longer point particles.) Torque. The magnitude of the force.

  5. The moment of a force, or torque, is a measure of the force's tendency to cause rotation. It is defined as the product of the magnitude of the force and the perpendicular distance from the axis of rotation to the line of action of the force. In the case of a lever, the axis of rotation is called the fulcrum.

  6. The moment of a force, or torque, is a measure of the force’s tendency to cause rotation. It is de ned as the product of the magnitude of the force and the perpendicular distance from the axis of rotation to the line of action of the force. In the case of a lever, the axis of rotation is called the fulcrum.

  7. Torque is the rotational equivalent of a force. It is a measure of the effectiveness of a force in changing or accelerating a rotation (changing the angular velocity over a period of time). In equation form, the magnitude of torque is defined to be. τ = rF sin θ.

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