MCQ
Two semicircular rings of linear mass densities $\lambda $ and $3\lambda $ and of radius $R$ each are joining to form a complete ring. The distance of the centre of the mass of complete ring from its geometrical centre is
  • A
    $\frac{{2R}}{{3\pi }}$
  • $\frac {R}{\pi }$
  • C
    $\frac{{2R}}{{\pi }}$
  • D
    $\frac{R}{{3\pi }}$

Answer

Correct option: B.
$\frac {R}{\pi }$
b
Let the mass of ring having density $\lambda$ be $M.$

Centre of mass

$\frac{M_{1} x_{1}+M_{2} x_{2}}{M_{1}+M_{2}}=\frac{-M \frac{2 R}{\pi}+3 M \cdot \frac{2 R}{\pi}}{4 M}=\frac{R}{\pi}$

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Given that $W = \vec F.\,\vec s\, = 0$ and $F \ne 0\,,\,s \ne 0,$ then
When a particle executes simple Harmonic motion, the nature of graph of velocity as function of displacement will be.
An object of mass $0.2\, kg$ executes simple harmonic along $X-$ axis with frequency of $\frac{{25}}{\pi }Hz$. At the position $x = 0.04m$, the object has kinetic energy of $0.5 \,J$ and potential energy of $0.4\, J$ amplitude of oscillation in meter is equal to
In the Ingen Hauz’s experiment the wax melts up to lengths $10$ and $25 cm$ on two identical rods of different materials. The ratio of thermal conductivities of the two materials is
A stick of length $l$ and mass $M$ lies on a frictionless horizontal surface on which it is free to move in any way. A ball of mass $m$ moving with speed $v$ collides elastically with the stick as shown in the figure. If after the collision ball comes to rest, then what should be the mass of the ball
The ratio of the coefficient of volume expansion of a glass container to that of a viscous liquid kept inside the container is $1 : 4$. What fraction of the inner volume of the container should the liquid occupy so that the volume of the remaining vacant space will be same at all temperatures ?
A lorry and a car moving with the same $K.E.$ are brought to rest by applying the same retarding force, then
The coefficient of friction between two surfaces is $\mu  = 0.8$.The tension in the string shown in the figure is ........ $N$ 
A 10kg mass moves along $x-$axis. Its acceleration as a function of its position is shown in the figure. What is the total work done on the mass by the force as the mass moves from $x = 0$ to $x = 8\,cm$
When the velocity of body is variable, then