Q.Differentiate between Inertial and Gravitational masses.
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Start your 14-day free trial to unlock the full solution →Inertial mass is defined via a body's resistance to acceleration under a force; gravitational mass is defined via the gravitational force it feels; the two turn out, experimentally, to always be equal.
Inertial mass (m_i): This is the mass that appears in Newton's second law, F = m_i a, i.e. m_i = F/a. It measures the body's inertia — its resistance to a change in its state of motion when a force is applied. It is measured, in principle, by applying a known force to the body and measuring the acceleration produced.
Gravitational mass (m_g): This is the mass that appears in Newton's law of gravitation, F = G M m_g / r^2, and also in the weight of a body, W = m_g g. It measures the strength of the gravitational force the body experiences (or exerts). It is measured, in principle, by comparing the gravitational pull on the body with a known standard (e.g. using a beam balance/weighing).
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