MP Board · Class 11 · Physics · System of Particles and Rotational MotionAccording to the theorem of parallel axes, $I = I{cm} + Mh^2$, where $h$ is:
Step-by-Step Solution
In the parallel axes theorem, $h$ represents the perpendicular distance between the axis passing through the center of mass and the parallel axis about which the moment of inertia is to be calculated.
Detailed Options Breakdown
Option : Radius of gyration
Incorrect choice. This distractor represents a common misunderstanding of the core principles of System of Particles and Rotational Motion.
Option 1: Perpendicular distance between two parallel axes (Correct Answer)
Correct choice. Refer to the step-by-step verified solution guidelines above for details.
Option 2: Length of the object
Incorrect choice. This distractor represents a common misunderstanding of the core principles of System of Particles and Rotational Motion.
Option 3: Radius of the body
Incorrect choice. This distractor represents a common misunderstanding of the core principles of System of Particles and Rotational Motion.
💡 Study Guide: This question tests core syllabus concepts from System of Particles and Rotational Motion. For formulas, key summaries, and mock exam reference guides, read the full System of Particles and Rotational Motion Revision Notes.