Question:

A force $F$ is given by $F=a t +b t^{2}$, where $t$ is time. What are the dimensions of $a$ and $b$ respectively ?

Updated On: Jun 20, 2022
  • $\left[ MLT ^{-1}\right]$ and $\left[ MLT ^{-4}\right]$
  • $\left[ MLT ^{-3}\right]$ and $\left[ MLT ^{-4}\right]$
  • $\left[ MLT ^{-4}\right]$ and $\left[ MLT ^{2}\right]$
  • $\left[ ML^{2}T ^{3}\right]$ and $\left[ M^{-1}L^2T \right]$
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The Correct Option is B

Solution and Explanation

Every equation relating physical quantities should be in dimensional balance.
The given equation is $F=at +bt^{2}$
Every equation relating physical quantities should be in dimensional balance. It means that the dimensions of the terms on both sides of the equation must be the same. The reason for this is that only similar quantities can be equated.
Dimensions of force F are
$F=\left[ MLT ^{-2}\right]$
Comparing with first term of given expression, we have
$\left[ MLT ^{-2}\right]=[a][ T ]$
$\Rightarrow [a]=\left[ MLT ^{-3}\right]$
Similarly, comparing with second term, we have
$\left[ MLT ^{-2}\right]=[b][ T ]^{2}$
$\Rightarrow [b]=\left[ MLT ^{-4}\right]$
Hence, dimensions of a and b are $\left[ MLT ^{-3}\right]$ and $\left[ MLT ^{-4}\right]$ respectively.
: The physical quantities separated by the symbols $+,-,=,>,
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Concepts Used:

Physical World

The physical world includes the complications of the natural world around us. It is a type of analysis of the physical world around us to understand how it works. The fundamental forces that control nature are:

  • Gravitational Force is a universal force that exists as an outcome of mutual attraction between any two objects with respect to their masses.
  • Electromagnetic Force can be understood as the force that is present between the charged particles. The force is stated by Coulomb’s law.
  • Strong Nuclear Force is the force that ties the protons and neutrons in a nucleus. Of all the elemental forces in nature, a strong nuclear force is the strongest as its name suggests.
  • Weak Nuclear Force can only be noticed in some of the nuclear processes such as the beta decay of the nucleus.