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Lesser the force applied .............. ...

Lesser the force applied .............. is the moment of force.

A

greater

B

lesser

C

equal

D

none of these

Text Solution

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The correct Answer is:
To solve the question "Lesser the force applied .............. is the moment of force," we need to understand the relationship between force and the moment of force (also known as torque). Here’s a step-by-step breakdown of the solution: ### Step 1: Understand the Concept of Moment of Force The moment of force (torque) is a measure of the tendency of a force to rotate an object about an axis. It is calculated using the formula: \[ \text{Moment of Force (Torque)} = r \times F \] where: - \( r \) is the perpendicular distance from the axis of rotation to the line of action of the force. - \( F \) is the magnitude of the force applied. ### Step 2: Analyze the Relationship From the formula, we can see that the moment of force is directly proportional to the applied force \( F \). This means: - If the force \( F \) increases, the moment of force also increases. - If the force \( F \) decreases, the moment of force also decreases. ### Step 3: Fill in the Blank Given the statement "Lesser the force applied .............. is the moment of force," we can conclude that if the force applied is lesser, the moment of force will also be lesser. Therefore, the correct option to fill in the blank is "lesser." ### Final Answer Lesser the force applied, lesser is the moment of force.

To solve the question "Lesser the force applied .............. is the moment of force," we need to understand the relationship between force and the moment of force (also known as torque). Here’s a step-by-step breakdown of the solution: ### Step 1: Understand the Concept of Moment of Force The moment of force (torque) is a measure of the tendency of a force to rotate an object about an axis. It is calculated using the formula: \[ \text{Moment of Force (Torque)} = r \times F \] where: - \( r \) is the perpendicular distance from the axis of rotation to the line of action of the force. - \( F \) is the magnitude of the force applied. ...
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