Find the velocity of the image in the situation shown in the figure. (All velocities are in $m/s$)

  • A
    $0$
  • B
    $2$
  • C
    $8$
  • D
    $12$

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Similar Questions

An object approaches a convex mirror of radius of curvature $20 \,m$ along its optical axis. The image is observed to move from $\frac{25}{3} \,m$ to $\frac{50}{7} \,m$ from the mirror in $30 \,s$. What is the speed of the object in $km/h$?

$A$ plane mirror is moving with velocity $4\hat i + 5\hat j + 8\hat k$. $A$ point object in front of the mirror moves with a velocity $3\hat i + 4\hat j + 5\hat k$. Here,the $\hat k$ direction is along the normal to the plane mirror and facing towards the object. The velocity of the image is:

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$A$ particle is moving with velocity $\vec{v}_p = (\hat{i} + 2\hat{j} + 3\hat{k}) \text{ m/s}$. $A$ plane mirror exists in the $x-y$ plane. The mirror has a velocity $\vec{v}_m = (\hat{i} + 2\hat{j}) \text{ m/s}$. The velocity of the image (in $\text{m/s}$) is:

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An object is moving in front of a mirror as shown in the figure. Match the items in Column-$I$ with the values in Column-$II$.
$(i)$ Velocity of image $(a) \; 2 \; m/s$
$(ii)$ Velocity of image with respect to mirror $(b) \; 20 \; m/s$
$(iii)$ Velocity of image with respect to object $(c) \; 11 \; m/s$
$(iv)$ Velocity of image if mirror is stopped $(d) \; 22 \; m/s$

Choose the correct statement$(s)$ related to the motion of an object and its image in the case of mirrors.

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